1. Gene
  2. Jak2 - Janus kinase 2 Gene

Jak2 - Janus kinase 2 Gene

中文名称:两面神激酶 2

种属: Rattus norvegicus

基因 ID: 24514 | 基因类型: protein coding

关于 Jak2

Primary_assembly 1: 226,995,334-227,054,189 forward strand.mRatBN7.2:CM026974.1

This gene has 2 transcripts (splice variants), 265 orthologues, 32 paralogues and is associated with 95 phenotypes. Biased expression in Thymus (RPKM 325.), Spleen (RPKM 258.4) and 9 other tissues.

功能概要

该基因编码的蛋白可启动多种功能,包括胰岛素受体底物结合活性;蛋白 C 端结合活性;和信号受体结合活性。参与多个过程,包括细胞表面受体信号通路;蛋白质运输的积极调节;和细胞凋亡过程的调节。位于胞质溶胶中;常染色质;和核仁。活跃于谷氨酸能突触和突触后。用于研究多种疾病,包括高尿酸血症;肝病(多发性);非酒精性脂肪肝病;视网膜脱离;和血小板增多症。胃肠系统癌症生物标志物(多种);心脏疾病;肝硬化;和肥胖。该基因的人类直系同源基因与多种疾病有关,包括胃肠系统癌症(多种);血液系统癌症(多发性);肝血管疾病(多发性);炎症性肠病(多发性);和肺非小细胞癌(多发性)。与人类 JAK2(Janus 激酶 2)同源。 [由基因组资源联盟提供,2022 年 4 月]

Enables several functions, including Insulin Receptor substrate binding activity; protein C-terminus binding activity; and signaling receptor binding activity. Involved in several processes, including cell surface receptor signaling pathway; positive regulation of protein transport; and regulation of apoptotic process. Located in cytosol; euchromatin; and nucleolus. Is active in glutamatergic synapse and postsynapse. Used to study several diseases, including hyperuricemia; liver disease (multiple); non-alcoholic fatty liver disease; retinal detachment; and thrombocytosis. Biomarker of gastrointestinal system Cancer (multiple); heart disease; liver cirrhosis; and obesity. Human ortholog(s) of this gene implicated in several diseases, including gastrointestinal system Cancer (multiple); hematologic Cancer (multiple); hepatic vascular disease (multiple); inflammatory bowel disease (multiple); and lung non-small cell carcinoma (multiple). Orthologous to human JAK2 (Janus kinase 2). [provided by Alliance of Genome Resources, Apr 2022]

Jak2 基因产物(1)

mRNA Protein Name
NM_031514.1 NP_113702.1 tyrosine-protein kinase JAK2
基因本体论
  • 分子功能
  • 生物过程
  • 细胞组分
分子功能 GO 注释 逻辑证据 参考文献 来源
enables acetylcholine receptor binding IPI
IPI: 通过物理相互作用推断
12244045 RGD
enables growth hormone receptor binding IPI
IPI: 通过物理相互作用推断
10502458 RGD
enables insulin receptor substrate binding IPI
IPI: 通过物理相互作用推断
15701573 RGD
enables peptide hormone receptor binding IPI
IPI: 通过物理相互作用推断
11244571 RGD
enables phosphatidylinositol 3-kinase binding IPI
IPI: 通过物理相互作用推断
15530849 RGD
enables protein binding IPI
IPI: 通过物理相互作用推断
8912646 RGD
enables protein tyrosine kinase activity IMP
IMP: 通过突变表型推断
15659221 RGD
enables type 1 angiotensin receptor binding IPI
IPI: 通过物理相互作用推断
9287353 RGD
生物过程 GO 注释 逻辑证据 参考文献 来源
involved in axon regeneration IMP
IMP: 通过突变表型推断
15716400 RGD
involved in cell surface receptor signaling pathway via JAK-STAT IDA
IDA: 通过直接分析推断
11064147 RGD
involved in growth hormone receptor signaling pathway via JAK-STAT IDA
IDA: 通过直接分析推断
11244571 RGD
involved in hormone-mediated signaling pathway IDA
IDA: 通过直接分析推断
11064147 RGD
involved in intrinsic apoptotic signaling pathway in response to oxidative stress IMP
IMP: 通过突变表型推断
15659221 RGD
involved in modulation of chemical synaptic transmission IDA
IDA: 通过直接分析推断
22284190 RGD
involved in modulation of chemical synaptic transmission IMP
IMP: 通过突变表型推断
22284190 RGD
involved in negative regulation of apoptotic process IMP
IMP: 通过突变表型推断
22382519 RGD
involved in negative regulation of cardiac muscle cell apoptotic process IMP
IMP: 通过突变表型推断
23796350 RGD
involved in negative regulation of cell-cell adhesion IMP
IMP: 通过突变表型推断
15530849 RGD
involved in negative regulation of neuron apoptotic process IMP
IMP: 通过突变表型推断
12244045 RGD
involved in nuclear receptor-mediated mineralocorticoid signaling pathway IMP
IMP: 通过突变表型推断
15932931 RGD
involved in platelet-derived growth factor receptor signaling pathway IMP
IMP: 通过突变表型推断
15948243 RGD
involved in positive regulation of DNA-binding transcription factor activity IMP
IMP: 通过突变表型推断
15322111 RGD
involved in positive regulation of MAPK cascade IMP
IMP: 通过突变表型推断
16567515 RGD
involved in positive regulation of apoptotic process IMP
IMP: 通过突变表型推断
16269269 RGD
involved in positive regulation of cell activation IMP
IMP: 通过突变表型推断
15256805 RGD
involved in positive regulation of cell differentiation IMP
IMP: 通过突变表型推断
16514419 RGD
involved in positive regulation of cell migration IMP
IMP: 通过突变表型推断
15530849 RGD
involved in positive regulation of cell population proliferation IMP
IMP: 通过突变表型推断
16567515 RGD
involved in positive regulation of cytosolic calcium ion concentration IMP
IMP: 通过突变表型推断
16597920 RGD
involved in positive regulation of epithelial cell apoptotic process IMP
IMP: 通过突变表型推断
22777122 RGD
involved in positive regulation of growth factor dependent skeletal muscle satellite cell proliferation IMP
IMP: 通过突变表型推断
23869758 RGD
involved in positive regulation of insulin secretion IMP
IMP: 通过突变表型推断
16597920 RGD
involved in positive regulation of interleukin-1 beta production IMP
IMP: 通过突变表型推断
16934228 RGD
involved in positive regulation of nitric oxide biosynthetic process IMP
IMP: 通过突变表型推断
12595539 RGD
involved in positive regulation of nitric-oxide synthase biosynthetic process IDA
IDA: 通过直接分析推断
11536325 RGD
involved in positive regulation of protein import into nucleus IMP
IMP: 通过突变表型推断
15530849 RGD
involved in positive regulation of vascular associated smooth muscle cell proliferation IMP
IMP: 通过突变表型推断
23516544 RGD
involved in protein autophosphorylation IMP
IMP: 通过突变表型推断
15530849 RGD
involved in regulation of nitric oxide biosynthetic process IGI
IGI: 通过遗传相互作用推断
16055727 RGD
involved in regulation of postsynapse to nucleus signaling pathway EXP
EXP: 通过实验结果推断
22284190 RGD
involved in regulation of postsynapse to nucleus signaling pathway IDA
IDA: 通过直接分析推断
22284190 RGD
involved in response to amine IEP
IEP: 通过表达模式推断
29486150 RGD
involved in response to hydroperoxide IMP
IMP: 通过突变表型推断
15659221 RGD
involved in response to organic cyclic compound IEP
IEP: 通过表达模式推断
29486150 RGD
involved in response to oxidative stress IMP
IMP: 通过突变表型推断
16269269 RGD
involved in type II interferon-mediated signaling pathway IDA
IDA: 通过直接分析推断
11536325 RGD
involved in tyrosine phosphorylation of STAT protein IMP
IMP: 通过突变表型推断
15659221 RGD
细胞组分 GO 注释 逻辑证据 参考文献 来源
located in euchromatin IDA
IDA: 通过直接分析推断
8756581 RGD
is active in glutamatergic synapse EXP
EXP: 通过实验结果推断
22284190 RGD
is active in glutamatergic synapse IDA
IDA: 通过直接分析推断
22284190 RGD
is active in glutamatergic synapse IMP
IMP: 通过突变表型推断
22284190 RGD
is active in postsynapse IDA
IDA: 通过直接分析推断
22284190 RGD
EXP:通过实验结果推断 IDA:通过直接分析推断 IPI:通过物理相互作用推断 IMP:通过突变表型推断 IGI:通过遗传相互作用推断 IEP:通过表达模式推断

Jak2 蛋白结构

FERM_F1

FERM_F1: pfam18379 (38 - 133)

FERM_F2

FERM_F2: pfam18377 (142 - 260)

FERM_C_JAK2

FERM_C_JAK2: cd13333 (265 - 385)

SH2_Jak2

SH2_Jak2: cd10379 (385 - 481)

PTK_Jak2_rpt1

PTK_Jak2_rpt1: cd05078 (544 - 805)

PTKc_Jak2_rpt2

PTKc_Jak2_rpt2: cd14205 (843 - 1126)

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  • 1132 a.a.
蛋白主名 其他名称

tyrosine-protein kinase JAK2

JAK-2

Janus kinase 2 (a protein tyrosine kinase)

Jak2 蛋白互作信息

分类
蛋白名称 蛋白编号 互作蛋白 互作蛋白种属 互作蛋白编号 实验方法 参考文献
种属内
Jak2 Q62689 Ptpn11 Rattus norvegicus P41499 8912646
种属间: 跨种属相互作用 种属内: 同种属相互作用

直系同源

种属 基因名 来源 基因 ID
Homo sapiens Jak2 NCBI NCBI:3717