{"results":[{"entryType":"UniProtKB reviewed (Swiss-Prot)","primaryAccession":"P26651","secondaryAccessions":["B2RA54"],"uniProtkbId":"TTP_HUMAN","entryAudit":{"firstPublicDate":"1992-08-01","lastAnnotationUpdateDate":"2026-09-02","lastSequenceUpdateDate":"1992-08-01","entryVersion":217,"sequenceVersion":1},"annotationScore":5.0,"organism":{"scientificName":"Homo sapiens","commonName":"Human","taxonId":9606,"lineage":["Eukaryota","Metazoa","Chordata","Craniata","Vertebrata","Euteleostomi","Mammalia","Eutheria","Euarchontoglires","Primates","Haplorrhini","Catarrhini","Hominidae","Homo"]},"proteinExistence":"1: Evidence at protein level","proteinDescription":{"recommendedName":{"fullName":{"evidences":[{"evidenceCode":"ECO:0000305"}],"value":"mRNA decay activator protein ZFP36"}},"alternativeNames":[{"fullName":{"value":"G0/G1 switch regulatory protein 24"}},{"fullName":{"evidences":[{"evidenceCode":"ECO:0000305"}],"value":"Growth factor-inducible nuclear protein NUP475"}},{"fullName":{"evidences":[{"evidenceCode":"ECO:0000303","source":"PubMed","id":"2062660"}],"value":"Tristetraprolin"}},{"fullName":{"evidences":[{"evidenceCode":"ECO:0000312","source":"HGNC","id":"HGNC:12862"}],"value":"Zinc finger protein 36"},"shortNames":[{"evidences":[{"evidenceCode":"ECO:0000250","source":"UniProtKB","id":"P22893"}],"value":"Zfp-36"}]}]},"genes":[{"geneName":{"evidences":[{"evidenceCode":"ECO:0000312","source":"HGNC","id":"HGNC:12862"}],"value":"ZFP36"},"synonyms":[{"value":"G0S24"},{"evidences":[{"evidenceCode":"ECO:0000250","source":"UniProtKB","id":"P22893"}],"value":"NUP475"},{"value":"RNF162A"},{"value":"TIS11A"},{"evidences":[{"evidenceCode":"ECO:0000303","source":"PubMed","id":"2062660"}],"value":"TTP"}]}],"comments":[{"texts":[{"evidences":[{"evidenceCode":"ECO:0000250","source":"UniProtKB","id":"P22893"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"10330172"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"10751406"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"11279239"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"11719186"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"12115244"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"12748283"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"15187101"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"15634918"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"15687258"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"15766526"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"16364915"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"16702957"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"17030620"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"17369404"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"18367721"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"19188452"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"20221403"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"20702587"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"21775632"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"23644599"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"25815583"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"26926077"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"27182009"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"27193233"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"31439631"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"9703499"}],"value":"Zinc-finger RNA-binding protein that destabilizes several cytoplasmic AU-rich element (ARE)-containing mRNA transcripts by promoting their poly(A) tail removal or deadenylation, and hence provide a mechanism for attenuating protein synthesis (PubMed:10330172, PubMed:10751406, PubMed:11279239, PubMed:12115244, PubMed:12748283, PubMed:15187101, PubMed:15634918, PubMed:16702957, PubMed:17030620, PubMed:20221403, PubMed:20702587, PubMed:21775632, PubMed:23644599, PubMed:25815583, PubMed:27193233, PubMed:31439631, PubMed:9703499). Acts as an 3'-untranslated region (UTR) ARE mRNA-binding adapter protein to communicate signaling events to the mRNA decay machinery (PubMed:15687258, PubMed:23644599). Recruits deadenylase CNOT7 (and probably the CCR4-NOT complex) via association with CNOT1, and hence promotes ARE-mediated mRNA deadenylation (PubMed:23644599). Functions also by recruiting components of the cytoplasmic RNA decay machinery to the bound ARE-containing mRNAs (PubMed:11719186, PubMed:12748283, PubMed:15687258, PubMed:16364915). Self regulates by destabilizing its own mRNA (PubMed:15187101). Binds to 3'-UTR ARE of numerous mRNAs and of its own mRNA (PubMed:10330172, PubMed:10751406, PubMed:12115244, PubMed:15187101, PubMed:15634918, PubMed:16702957, PubMed:17030620, PubMed:19188452, PubMed:20221403, PubMed:20702587, PubMed:21775632, PubMed:25815583). Plays a role in anti-inflammatory responses; suppresses tumor necrosis factor (TNF)-alpha production by stimulating ARE-mediated TNF mRNA decay and several other inflammatory ARE-containing mRNAs in interferon (IFN)- and/or lipopolysaccharide (LPS)-induced macrophages (By similarity). Also plays a role in the regulation of dendritic cell maturation at the post-transcriptional level, and hence operates as part of a negative feedback loop to limit the inflammatory response (PubMed:18367721). Promotes ARE-mediated mRNA decay of hypoxia-inducible factor HIF1A mRNA during the response of endothelial cells to hypoxia (PubMed:21775632). Positively regulates early adipogenesis of preadipocytes by promoting ARE-mediated mRNA decay of immediate early genes (IEGs) (By similarity). Negatively regulates hematopoietic/erythroid cell differentiation by promoting ARE-mediated mRNA decay of the transcription factor STAT5B mRNA (PubMed:20702587). Plays a role in maintaining skeletal muscle satellite cell quiescence by promoting ARE-mediated mRNA decay of the myogenic determination factor MYOD1 mRNA (By similarity). Associates also with and regulates the expression of non-ARE-containing target mRNAs at the post-transcriptional level, such as MHC class I mRNAs (PubMed:18367721). Participates in association with argonaute RISC catalytic components in the ARE-mediated mRNA decay mechanism; assists microRNA (miRNA) targeting ARE-containing mRNAs (PubMed:15766526). May also play a role in the regulation of cytoplasmic mRNA decapping; enhances decapping of ARE-containing RNAs, in vitro (PubMed:16364915). Involved in the delivery of target ARE-mRNAs to processing bodies (PBs) (PubMed:17369404). In addition to its cytosolic mRNA-decay function, affects nuclear pre-mRNA processing (By similarity). Negatively regulates nuclear poly(A)-binding protein PABPN1-stimulated polyadenylation activity on ARE-containing pre-mRNA during LPS-stimulated macrophages (By similarity). Also involved in the regulation of stress granule (SG) and P-body (PB) formation and fusion (By similarity). Plays a role in the regulation of keratinocyte proliferation, differentiation and apoptosis (PubMed:27182009). Plays a role as a tumor suppressor by inhibiting cell proliferation in breast cancer cells (PubMed:26926077)"}],"commentType":"FUNCTION"},{"texts":[{"evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"14679154"}],"value":"(Microbial infection) Negatively regulates HTLV-1 TAX-dependent transactivation of viral long terminal repeat (LTR) promoter"}],"commentType":"FUNCTION"},{"texts":[{"evidences":[{"evidenceCode":"ECO:0000250","source":"UniProtKB","id":"P22893"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"11719186"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"14766228"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"15687258"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"15766526"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"16126846"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"16364915"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"16702957"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"20221403"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"21964062"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"23644599"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"25106868"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"26926077"}],"value":"Associates with cytoplasmic CCR4-NOT and PAN2-PAN3 deadenylase complexes to trigger ARE-containing mRNA deadenylation and decay processes (By similarity). Part of a mRNA decay activation complex at least composed of poly(A)-specific exoribonucleases CNOT6, EXOSC2 and XRN1 and mRNA-decapping enzymes DCP1A and DCP2 (PubMed:15687258). Associates with the RNA exosome complex (PubMed:11719186). Interacts (via phosphorylated form) with 14-3-3 proteins; these interactions promote exclusion of ZFP36 from cytoplasmic stress granules in response to arsenite treatment in a MAPKAPK2-dependent manner and does not prevent CCR4-NOT deadenylase complex recruitment or ZFP36-induced ARE-containing mRNA deadenylation and decay processes (By similarity). Interacts with 14-3-3 proteins; these interactions occur in response to rapamycin in an Akt-dependent manner (PubMed:16702957). Interacts with AGO2 and AGO4 (PubMed:15766526). Interacts (via C-terminus) with CNOT1; this interaction occurs in a RNA-independent manner and induces mRNA deadenylation (PubMed:23644599). Interacts (via N-terminus) with CNOT6 (PubMed:15687258). Interacts with CNOT6L (By similarity). Interacts (via C-terminus) with CNOT7; this interaction occurs in a RNA-independent manner, induces mRNA deadenylation and is inhibited in a phosphorylation MAPKAPK2-dependent manner (PubMed:25106868). Interacts (via unphosphorylated form) with CNOT8; this interaction occurs in a RNA-independent manner and is inhibited in a phosphorylation MAPKAPK2-dependent manner (By similarity). Interacts with DCP1A (PubMed:15687258). Interacts (via N-terminus) with DCP2 (PubMed:15687258, PubMed:16364915). Interacts with EDC3 (PubMed:16364915). Interacts (via N-terminus) with EXOSC2 (PubMed:15687258). Interacts with heat shock 70 kDa proteins (PubMed:20221403). Interacts with KHSRP; this interaction increases upon cytokine-induced treatment (PubMed:16126846). Interacts with MAP3K4; this interaction enhances the association with SH3KBP1/CIN85 (PubMed:20221403). Interacts with MAPKAPK2; this interaction occurs upon skeletal muscle satellite cell activation (By similarity). Interacts with NCL (PubMed:20221403). Interacts with NUP214; this interaction increases upon lipopolysaccharide (LPS) stimulation (PubMed:14766228). Interacts with PABPC1; this interaction occurs in a RNA-dependent manner (PubMed:20221403). Interacts (via hypophosphorylated form) with PABPN1 (via RRM domain and C-terminal arginine-rich region); this interaction occurs in the nucleus in a RNA-independent manner, decreases in presence of single-stranded poly(A) RNA-oligomer and in a p38 MAPK-dependent-manner and inhibits nuclear poly(A) tail synthesis (By similarity). Interacts with PAN2 (By similarity). Interacts (via C3H1-type zinc finger domains) with PKM (PubMed:26926077). Interacts (via C3H1-type zinc finger domains) with nuclear RNA poly(A) polymerase (By similarity). Interacts with PPP2CA; this interaction occurs in LPS-stimulated cells and induces ZFP36 dephosphorylation, and hence may promote ARE-containing mRNAs decay (By similarity). Interacts (via C-terminus) with PRR5L (via C-terminus); this interaction may accelerate ZFP36-mediated mRNA decay during stress (PubMed:21964062). Interacts (via C-terminus) with SFN; this interaction occurs in a phosphorylation-dependent manner (By similarity). Interacts (via extreme C-terminal region) with SH3KBP1/CIN85 (via SH3 domains); this interaction enhances MAP3K4-induced phosphorylation of ZFP36 at Ser-66 and Ser-93 and does not alter neither ZFP36 binding to ARE-containing transcripts nor TNF mRNA decay (PubMed:20221403). Interacts with XRN1 (PubMed:15687258). Interacts (via C-terminus and Ser-186 phosphorylated form) with YWHAB; this interaction occurs in a p38/MAPKAPK2-dependent manner, increases cytoplasmic localization of ZFP36 and protects ZFP36 from Ser-186 dephosphorylation by serine/threonine phosphatase 2A, and hence may be crucial for stabilizing ARE-containing mRNAs (By similarity). Interacts (via phosphorylated form) with YWHAE (By similarity). Interacts (via C-terminus) with YWHAG; this interaction occurs in a phosphorylation-dependent manner (By similarity). Interacts with YWHAH; this interaction occurs in a phosphorylation-dependent manner (By similarity). Interacts with YWHAQ; this interaction occurs in a phosphorylation-dependent manner (By similarity). Interacts with (via C-terminus) YWHAZ; this interaction occurs in a phosphorylation-dependent manner (By similarity). Interacts (via P-P-P-P-G repeats) with GIGYF2; the interaction is direct (By similarity)"}],"commentType":"SUBUNIT"},{"texts":[{"evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"14679154"}],"value":"(Microbial infection) Interacts (via C-terminus) with HTLV-1 TAX (via C-terminus); this interaction inhibits HTLV-1 TAX to transactivate viral long terminal repeat (LTR) promoter (PubMed:14679154)"}],"commentType":"SUBUNIT"},{"commentType":"INTERACTION","interactions":[{"interactantOne":{"uniProtKBAccession":"P26651","intActId":"EBI-374248"},"interactantTwo":{"uniProtKBAccession":"A5YKK6-2","geneName":"CNOT1","intActId":"EBI-16057352"},"numberOfExperiments":4,"organismDiffer":false},{"interactantOne":{"uniProtKBAccession":"P26651","intActId":"EBI-374248"},"interactantTwo":{"uniProtKBAccession":"Q9NPI6","geneName":"DCP1A","intActId":"EBI-374238"},"numberOfExperiments":2,"organismDiffer":false},{"interactantOne":{"uniProtKBAccession":"P26651","intActId":"EBI-374248"},"interactantTwo":{"uniProtKBAccession":"Q96F86","geneName":"EDC3","intActId":"EBI-997311"},"numberOfExperiments":2,"organismDiffer":false},{"interactantOne":{"uniProtKBAccession":"P26651","intActId":"EBI-374248"},"interactantTwo":{"uniProtKBAccession":"Q13643","geneName":"FHL3","intActId":"EBI-741101"},"numberOfExperiments":4,"organismDiffer":false},{"interactantOne":{"uniProtKBAccession":"P26651","intActId":"EBI-374248"},"interactantTwo":{"uniProtKBAccession":"Q8WXH2","geneName":"JPH3","intActId":"EBI-1055254"},"numberOfExperiments":3,"organismDiffer":false},{"interactantOne":{"uniProtKBAccession":"P26651","intActId":"EBI-374248"},"interactantTwo":{"uniProtKBAccession":"P16284","geneName":"PECAM1","intActId":"EBI-716404"},"numberOfExperiments":3,"organismDiffer":false},{"interactantOne":{"uniProtKBAccession":"P26651","intActId":"EBI-374248"},"interactantTwo":{"uniProtKBAccession":"Q06455-2","geneName":"RUNX1T1","intActId":"EBI-11984663"},"numberOfExperiments":3,"organismDiffer":false},{"interactantOne":{"uniProtKBAccession":"P26651","intActId":"EBI-374248"},"interactantTwo":{"uniProtKBAccession":"P08670","geneName":"VIM","intActId":"EBI-353844"},"numberOfExperiments":3,"organismDiffer":false}]},{"commentType":"SUBCELLULAR LOCATION","note":{"texts":[{"evidences":[{"evidenceCode":"ECO:0000250","source":"UniProtKB","id":"P22893"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"15014438"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"17369404"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"20221403"}],"value":"Shuttles between nucleus and cytoplasm in a CRM1-dependent manner (By similarity). Localized predominantly in the cytoplasm in a p38 MAPK- and YWHAB-dependent manner (By similarity). Colocalizes with SH3KBP1 and MAP3K4 in the cytoplasm (PubMed:20221403). Component of cytoplasmic stress granules (SGs) (By similarity). Localizes to cytoplasmic stress granules upon energy starvation (PubMed:15014438). Localizes in processing bodies (PBs) (PubMed:17369404). Excluded from stress granules in a phosphorylation MAPKAPK2-dependent manner (By similarity). Shuttles in and out of both cytoplasmic P-body and SGs (By similarity)"}]},"subcellularLocations":[{"location":{"evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"15014438"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"27182009"}],"value":"Nucleus","id":"SL-0191"}},{"location":{"evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"10330172"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"12115244"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"14766228"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"15014438"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"20221403"}],"value":"Cytoplasm","id":"SL-0086"}},{"location":{"evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"15014438"}],"value":"Cytoplasmic granule","id":"SL-0281"}},{"location":{"evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"17369404"}],"value":"Cytoplasm, P-body","id":"SL-0230"}}]},{"commentType":"SUBCELLULAR LOCATION","note":{"texts":[{"evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"14679154"}],"value":"(Microbial infection) Colocalizes with HTLV-1 TAX in the nucleus and the cytoplasm in a region surrounding the nucleus"}]},"subcellularLocations":[{"location":{"evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"14679154"}],"value":"Nucleus","id":"SL-0191"}},{"location":{"evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"14679154"}],"value":"Cytoplasm","id":"SL-0086"}}]},{"texts":[{"evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"18367721"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"27182009"}],"value":"Expressed in both basal and suprabasal epidermal layers (PubMed:27182009). Expressed in epidermal keratinocytes (PubMed:27182009). Expressed strongly in mature dendritic cells (PubMed:18367721). Expressed in immature dendritic cells (at protein level) (PubMed:18367721)"}],"commentType":"TISSUE SPECIFICITY"},{"texts":[{"evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"14766228"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"15187101"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"15634918"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"16508015"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"20166898"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"27182009"}],"value":"Up-regulated by T cell activation (PubMed:15634918). Up-regulated in keratinocytes in response to wounding (PubMed:27182009). Up-regulated by lipopolysaccharide (LPS) in a p38 MAPK- and ERK-dependent manner (at protein level) (PubMed:15187101, PubMed:16508015). Up-regulated strongly during epidermal repair after wounding in keratinocytes (PubMed:20166898). Up-regulated strongly by epidermal growth factor (EGF) and tumor necrosis factor (TNF) in keratinocytes (PubMed:20166898). Up-regulated moderately by granulocyte macrophage colony-stimulating factor (GM-CSF) and fibroblast growth factor (FGF1) in keratinocytes (PubMed:20166898). Up-regulated also by glucocorticoid dexamethasone in keratinocytes (PubMed:20166898). Up-regulated by LPS in a p38 MAPK-dependent manner (PubMed:14766228, PubMed:15187101)"}],"commentType":"INDUCTION"},{"texts":[{"evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"10330172"}],"value":"The C3H1-type zinc finger domains are necessary for ARE-binding activity (PubMed:10330172)"}],"commentType":"DOMAIN"},{"texts":[{"evidences":[{"evidenceCode":"ECO:0000250","source":"UniProtKB","id":"P22893"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"16702957"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"20221403"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"26926077"}],"value":"Phosphorylated. Phosphorylation at serine and/or threonine residues occurs in a p38 MAPK- and MAPKAPK2-dependent manner (PubMed:16702957). Phosphorylated by MAPKAPK2 at Ser-60 and Ser-186; phosphorylation increases its stability and cytoplasmic localization, promotes binding to 14-3-3 adapter proteins and inhibits the recruitment of cytoplasmic CCR4-NOT and PAN2-PAN3 deadenylase complexes to the mRNA decay machinery, thereby inhibiting ZFP36-induced ARE-containing mRNA deadenylation and decay processes. Phosphorylation by MAPKAPK2 does not impair ARE-containing RNA-binding. Phosphorylated in a MAPKAPK2- and p38 MAPK-dependent manner upon skeletal muscle satellite cell activation; this phosphorylation inhibits ZFP36-mediated mRNA decay activity, and hence stabilizes MYOD1 mRNA (By similarity). Phosphorylated by MAPK1 upon mitogen stimulation (By similarity). Phosphorylated at Ser-66 and Ser-93; these phosphorylations increase in a SH3KBP1-dependent manner (PubMed:20221403). Phosphorylated at serine and threonine residues in a pyruvate kinase PKM- and p38 MAPK-dependent manner (PubMed:26926077). Phosphorylation at Ser-60 may participate in the PKM-mediated degradation of ZFP36 in a p38 MAPK-dependent manner (PubMed:26926077). Dephosphorylated by serine/threonine phosphatase 2A at Ser-186 (By similarity)"}],"commentType":"PTM"},{"texts":[{"evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"26926077"}],"value":"Ubiquitinated; pyruvate kinase (PKM)-dependent ubiquitination leads to proteasomal degradation through a p38 MAPK signaling pathway (PubMed:26926077)"}],"commentType":"PTM"}],"features":[{"type":"Chain","location":{"start":{"value":1,"modifier":"EXACT"},"end":{"value":326,"modifier":"EXACT"}},"description":"mRNA decay activator protein ZFP36","featureId":"PRO_0000089163"},{"type":"Repeat","location":{"start":{"value":71,"modifier":"EXACT"},"end":{"value":75,"modifier":"EXACT"}},"description":"P-P-P-P-G"},{"type":"Repeat","location":{"start":{"value":198,"modifier":"EXACT"},"end":{"value":202,"modifier":"EXACT"}},"description":"P-P-P-P-G"},{"type":"Repeat","location":{"start":{"value":219,"modifier":"EXACT"},"end":{"value":223,"modifier":"EXACT"}},"description":"P-P-P-P-G"},{"type":"Zinc finger","location":{"start":{"value":103,"modifier":"EXACT"},"end":{"value":131,"modifier":"EXACT"}},"description":"C3H1-type 1","evidences":[{"evidenceCode":"ECO:0000255","source":"PROSITE-ProRule","id":"PRU00723"}]},{"type":"Zinc finger","location":{"start":{"value":141,"modifier":"EXACT"},"end":{"value":169,"modifier":"EXACT"}},"description":"C3H1-type 2","evidences":[{"evidenceCode":"ECO:0000255","source":"PROSITE-ProRule","id":"PRU00723"}]},{"type":"Region","location":{"start":{"value":1,"modifier":"EXACT"},"end":{"value":174,"modifier":"EXACT"}},"description":"Necessary for localization of ARE-containing mRNAs to processing bodies (PBs)","evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"17369404"}]},{"type":"Region","location":{"start":{"value":1,"modifier":"EXACT"},"end":{"value":100,"modifier":"EXACT"}},"description":"Necessary and sufficient for the association with mRNA decay enzymes and mRNA decay activation","evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"15687258"}]},{"type":"Region","location":{"start":{"value":1,"modifier":"EXACT"},"end":{"value":15,"modifier":"EXACT"}},"description":"Necessary for nuclear export","evidences":[{"evidenceCode":"ECO:0000250","source":"UniProtKB","id":"P47973"}]},{"type":"Region","location":{"start":{"value":13,"modifier":"EXACT"},"end":{"value":66,"modifier":"EXACT"}},"description":"Disordered","evidences":[{"evidenceCode":"ECO:0000256","source":"SAM","id":"MobiDB-lite"}]},{"type":"Region","location":{"start":{"value":78,"modifier":"EXACT"},"end":{"value":102,"modifier":"EXACT"}},"description":"Disordered","evidences":[{"evidenceCode":"ECO:0000256","source":"SAM","id":"MobiDB-lite"}]},{"type":"Region","location":{"start":{"value":95,"modifier":"EXACT"},"end":{"value":168,"modifier":"EXACT"}},"description":"Necessary for nuclear localization","evidences":[{"evidenceCode":"ECO:0000250","source":"UniProtKB","id":"P47973"}]},{"type":"Region","location":{"start":{"value":97,"modifier":"EXACT"},"end":{"value":173,"modifier":"EXACT"}},"description":"Necessary for RNA-binding","evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"10751406"},{"evidenceCode":"ECO:0000269","source":"PubMed","id":"12748283"}]},{"type":"Region","location":{"start":{"value":100,"modifier":"EXACT"},"end":{"value":326,"modifier":"EXACT"}},"description":"Necessary for localization of ARE-containing mRNAs to processing bodies (PBs)","evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"17369404"}]},{"type":"Region","location":{"start":{"value":103,"modifier":"EXACT"},"end":{"value":194,"modifier":"EXACT"}},"description":"Necessary for interaction with PABPN1","evidences":[{"evidenceCode":"ECO:0000250","source":"UniProtKB","id":"P22893"}]},{"type":"Region","location":{"start":{"value":174,"modifier":"EXACT"},"end":{"value":326,"modifier":"EXACT"}},"description":"Necessary for mRNA decay activation","evidences":[{"evidenceCode":"ECO:0000269","source":"PubMed","id":"15687258"}]},{"type":"Region","location":{"start":{"value":175,"modifier":"EXACT"},"end":{"value":245,"modifier":"EXACT"}},"description":"Disordered","evidences":[{"evidenceCode":"ECO:0000256","source":"SAM","id":"MobiDB-lite"}]},{"type":"Region","location":{"start":{"value":273,"modifier":"EXACT"},"end":{"value":292,"modifier":"EXACT"}},"description":"Disordered","evidences":[{"evidenceCode":"ECO:0000256","source":"SAM","id":"MobiDB-lite"}]},{"type":"Region","location":{"start":{"value":312,"modifier":"EXACT"},"end":{"value":326,"modifier":"EXACT"}},"description":"Interaction with 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