Phospho-p38 (T180) (2N7)兔单抗,Phospho-p38 (T180) (2N7) Rabbit Monoclonal Antibody
  • Phospho-p38 (T180) (2N7)兔单抗,Phospho-p38 (T180) (2N7) Rabbit Monoclonal Antibody

Phospho-p38 (T180) (2N7) Rabbit Monoclonal Antibody | 兔单抗 | EnkiLife恩玑生命

价格 询价
包装 1支
最小起订量 1支
发货地 湖北
更新日期 2025-10-20
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产品详情

中文名称:Phospho-p38 (T180) (2N7)兔单抗英文名称:Phospho-p38 (T180) (2N7) Rabbit Monoclonal Antibody
品牌: EnkiLife产地: 中国
产品类别: 抗体
是否进口: 用途: 科研
2025-10-20 Phospho-p38 (T180) (2N7)兔单抗 Phospho-p38 (T180) (2N7) Rabbit Monoclonal Antibody 1支/RMB EnkiLife 中国 抗体

产品概述

产品名称(Product Name)

Phospho-p38 (T180) (2N7) Rabbit Monoclonal Antibody

描述(Description)

Rabbit Monoclonal Antibody

宿主(Host)

Rabbit

应用(Application)

WB,FC

种属反应性(Reactivity)

Human

 

产品性能

偶联物(Conjugation)

Unconjugated

修饰(Modification)

Phospho Antibody

同种型(Isotype)

IgG

克隆(Clonality)

Monoclonal

形式(Form)

Liquid

存放说明(Storage)

Store at 4°C short term. Aliquot and store at -20°C long term. Avoid freeze/thaw cycles.

储存溶液(Buffer)

Supplied in 50mM Tris-Glycine(pH 7.4), 0.15M NaCl, 40%Glycerol, 0.01% New type preservative N and 0.05% BSA.

纯化方式(Purification)

Affinity purification

 

免疫原

基因名(Gene Name)

MAPK14

别名(Alternative Names)

CRK1, CSAID binding protein, CSBP, CSBP1, CSBP2, MAP kinase MXI2, MAP kinase p38, MAPK14, MAX-interacting protein 2, MK14, MXI2, Mitogen-activated protein kinase 14;

基因ID(Gene ID)

1432

蛋白ID(SwissProt ID)

Q16539

 

产品应用

稀释比(Dilution Ratio)

WB 1:1000, FCM 1:50

蛋白分子量(Molecular Weight)

41kDa

 

研究背景

The protein encoded by this gene is a member of the MAP kinase family. MAP kinases act as an integration point for multiple biochemical signals, and are involved in a wide variety of cellular processes such as proliferation, differentiation, transcription regulation and development. Serine/threonine kinase which acts as an essential component of the MAP kinase signal transduction pathway. MAPK14 is one of the four p38 MAPKs which play an important role in the cascades of cellular responses evoked by extracellular stimuli such as proinflammatory cytokines or physical stress leading to direct activation of transcription factors. Accordingly, p38 MAPKs phosphorylate a broad range of proteins and it has been estimated that they may have approximately 200 to 300 substrates each. Some of the targets are downstream kinases which are activated through phosphorylation and further phosphorylate additional targets. RPS6KA5/MSK1 and RPS6KA4/MSK2 can directly phosphorylate and activate transcription factors such as CREB1, ATF1, the NF-kappa-B isoform RELA/NFKB3, STAT1 and STAT3, but can also phosphorylate histone H3 and the nucleosomal protein HMGN1. RPS6KA5/MSK1 and RPS6KA4/MSK2 play important roles in the rapid induction of immediate-early genes in response to stress or mitogenic stimuli, either by inducing chromatin remodeling or by recruiting the transcription machinery. On the other hand, two other kinase targets, MAPKAPK2/MK2 and MAPKAPK3/MK3, participate in the control of gene expression mostly at the post-transcriptional level, by phosphorylating ZFP36 (tristetraprolin) and ELAVL1, and by regulating EEF2K, which is important for the elongation of mRNA during translation. MKNK1/MNK1 and MKNK2/MNK2, two other kinases activated by p38 MAPKs, regulate protein synthesis by phosphorylating the initiation factor EIF4E2. MAPK14 interacts also with casein kinase II, leading to its activation through autophosphorylation and further phosphorylation of TP53/p53. In the cytoplasm, the p38 MAPK pathway is an important regulator of protein turnover. For example, CFLAR is an inhibitor of TNF-induced apoptosis whose proteasome-mediated degradation is regulated by p38 MAPK phosphorylation. In a similar way, MAPK14 phosphorylates the ubiquitin ligase SIAH2, regulating its activity towards EGLN3. MAPK14 may also inhibit the lysosomal degradation pathway of autophagy by interfering with the intracellular trafficking of the transmembrane protein ATG9. Another function of MAPK14 is to regulate the endocytosis of membrane receptors by different mechanisms that impinge on the small GTPase RAB5A. In addition, clathrin-mediated EGFR internalization induced by inflammatory cytokines and UV irradiation depends on MAPK14-mediated phosphorylation of EGFR itself as well as of RAB5A effectors. Ectodomain shedding of transmembrane proteins is regulated by p38 MAPKs as well. In response to inflammatory stimuli, p38 MAPKs phosphorylate the membrane-associated metalloprotease ADAM17. Such phosphorylation is required for ADAM17-mediated ectodomain shedding of TGF-alpha family ligands, which results in the activation of EGFR signaling and cell proliferation. Another p38 MAPK substrate is FGFR1. FGFR1 can be translocated from the extracellular space into the cytosol and nucleus of target cells, and regulates processes such as rRNA synthesis and cell growth. FGFR1 translocation requires p38 MAPK activation. In the nucleus, many transcription factors are phosphorylated and activated by p38 MAPKs in response to different stimuli. Classical examples include ATF1, ATF2, ATF6, ELK1, PTPRH, DDIT3, TP53/p53 and MEF2C and MEF2A. The p38 MAPKs are emerging as important modulators of gene expression by regulating chromatin modifiers and remodelers. The promoters of several genes involved in the inflammatory response, such as IL6, IL8 and IL12B, display a p38 MAPK-dependent enrichment of histone H3 phosphorylation on 'Ser-10' (H3S10ph) in LPS-stimulated myeloid cells. This phosphorylation enhances the accessibility of the cryptic NF- kappa-B-binding sites marking promoters for increased NF-kappa-B recruitment. Phosphorylates CDC25B and CDC25C which is required for binding to 14-3-3 proteins and leads to initiation of a G2 delay after ultraviolet radiation. Phosphorylates TIAR following DNA damage, releasing TIAR from GADD45A mRNA and preventing mRNA degradation. The p38 MAPKs may also have kinase-independent roles, which are thought to be due to the binding to targets in the absence of phosphorylation. Protein O-Glc-N-acylation catalyzed by the OGT is regulated by MAPK14, and, although OGT does not seem to be phosphorylated by MAPK14, their interaction increases upon MAPK14 activation induced by glucose deprivation. This interaction may regulate OGT activity by recruiting it to specific targets such as neurofilament H, stimulating its O-Glc- N-acylation. Required in mid-fetal development for the growth of embryo-derived blood vessels in the labyrinth layer of the placenta. Also plays an essential role in developmental and stress-induced erythropoiesis, through regulation of EPO gene expression. Isoform MXI2 activation is stimulated by mitogens and oxidative stress and only poorly phosphorylates ELK1 and ATF2. Isoform EXIP may play a role in the early onset of apoptosis. Phosphorylates S100A9 at 'Thr-113'.

 

研究领域

关键字: MAPK14;Phospho-p38;(T180);(2N7);Rabbit;Monoclonal;Antibody;一抗

公司简介

武汉恩玑生命科技有限公司(EnkiLife)是一家深耕生命科学,专注细胞生物学和免疫学科研试剂的研发、生产与销售的生物技术企业,在全球100多个国家和地区开展业务,致力于为科研工作者提供高质量的产品和卓越的客户服务,推动生命科学的发展。 EnkiLife的产品线涵盖细胞系、原代细胞、细胞培养基、血清、细胞检测试剂盒、重组靶点蛋白、细胞因子、重组抗体、ELISA试剂盒、生化试剂盒等,并提供技术服务与定制开发,覆盖了生命科学研究的各大关键领域,包括细胞生物学、癌症、免疫学、神经科学、心血管疾病、干细胞、表观遗传学、内分泌、蛋白质组学、代谢组学等,全方位满足您的实验需求,让您享受科研的乐趣! 公司现已建立四大技术平台: EnCyto?细胞培养及检测平台:拥有细胞系库(500+)、原代细胞库(500+)、基础培养基和完全培养基(1200+) EnkiPro?重组蛋白平台:现货产品2000+,可提供定制化表达服务 EnAb?重组抗体平台:重组兔单抗(3000+),可提供定制化和标记服务 EnKits?试剂盒开发平台:可提供优质的ELISA试剂盒、配套试剂、抗体对、生化试剂盒等相关产品 EnkiLife在生产管理方面引入ISO9001质量管理体系和信息化、自动化的管理工具,拥有高效稳定的交付能力,与全球知名品牌建立了紧密的合作。 EnkiLife始终坚持以技术创新为驱动,以匠心铸就品质,以品质服务客户。 我们期待与更多的全球科研工作者和企业携手合作,共同推动生命科学领域的进步与发展。
成立日期 2024-08-02 (2年) 注册资本 271万人民币
员工人数 10-50人 年营业额 ¥ 100万-300万
主营行业 生化试剂,抗体,细胞培养,癌症研究,细胞生物学 经营模式 工厂,试剂,定制,服务
  • 武汉恩玑生命科技有限公司
VIP 1年
  • 公司成立:2年
  • 注册资本:271万人民币
  • 企业类型:有限责任公司(自然人投资或控股)
  • 主营产品:细胞系;原代细胞;培养基;血清;细胞荧光染料;重组蛋白;抗体;标记试剂盒;WB试剂盒;IHC试剂盒;ELISA试剂盒;生化试剂盒
  • 公司地址:东湖新技术开发区高新大道666号C6栋
询盘

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