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2
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Comprehensive proteomic analysis of interphase and mitotic 14-3-3-binding proteins.间期和有丝分裂期14-3-3结合蛋白的综合蛋白质组学分析
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Identification of a new microtubule-interacting protein Mip-90.一种新的微管相互作用蛋白Mip-90的鉴定。
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本文引用的文献

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14-3-3 proteins in the nervous system.神经系统中的14-3-3蛋白。
Nat Rev Neurosci. 2003 Sep;4(9):752-62. doi: 10.1038/nrn1197.
2
BAD and glucokinase reside in a mitochondrial complex that integrates glycolysis and apoptosis.BAD与葡萄糖激酶存在于一个整合糖酵解与细胞凋亡的线粒体复合体中。
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Proteomic changes in renal cancer and co-ordinate demonstration of both the glycolytic and mitochondrial aspects of the Warburg effect.肾癌中的蛋白质组学变化以及对瓦伯格效应的糖酵解和线粒体方面的协同证明。
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The binding site for regulatory 14-3-3 protein in plant plasma membrane H+-ATPase: involvement of a region promoting phosphorylation-independent interaction in addition to the phosphorylation-dependent C-terminal end.植物质膜H⁺-ATP酶中调节性14-3-3蛋白的结合位点:除了磷酸化依赖性的C末端外,一个促进非磷酸化依赖性相互作用的区域也参与其中。
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Hyperhomocysteinemia: genetic determinants and selected mouse models.高同型半胱氨酸血症:遗传决定因素及选定的小鼠模型
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6
14-3-3s regulate fructose-2,6-bisphosphate levels by binding to PKB-phosphorylated cardiac fructose-2,6-bisphosphate kinase/phosphatase.14-3-3s通过与蛋白激酶B磷酸化的心脏果糖-2,6-二磷酸激酶/磷酸酶结合来调节果糖-2,6-二磷酸水平。
EMBO J. 2003 Jul 15;22(14):3514-23. doi: 10.1093/emboj/cdg363.
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Neuroscience. Insulin insults may spur Alzheimer's disease.神经科学。胰岛素损伤可能会引发阿尔茨海默病。
Science. 2003 Jul 4;301(5629):40-1. doi: 10.1126/science.301.5629.40.
8
14-3-3epsilon is important for neuronal migration by binding to NUDEL: a molecular explanation for Miller-Dieker syndrome.14-3-3ε通过与NUDEL结合对神经元迁移很重要:对米勒-迪克尔综合征的分子解释。
Nat Genet. 2003 Jul;34(3):274-85. doi: 10.1038/ng1169.
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Xylulose 5-phosphate mediates glucose-induced lipogenesis by xylulose 5-phosphate-activated protein phosphatase in rat liver.磷酸木酮糖通过大鼠肝脏中磷酸木酮糖激活的蛋白磷酸酶介导葡萄糖诱导的脂肪生成。
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The death domain kinase RIP has an essential role in DNA damage-induced NF-kappa B activation.死亡结构域激酶RIP在DNA损伤诱导的核因子κB激活中起关键作用。
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通过14-3-3亲和纯化200多种人类磷酸化蛋白揭示了与细胞代谢、增殖和运输调控的新联系。

14-3-3-affinity purification of over 200 human phosphoproteins reveals new links to regulation of cellular metabolism, proliferation and trafficking.

作者信息

Pozuelo Rubio Mercedes, Geraghty Kathryn M, Wong Barry H C, Wood Nicola T, Campbell David G, Morrice Nick, Mackintosh Carol

机构信息

MRC Protein Phosphorylation Unit, School of Life Sciences, University of Dundee, Dundee DD1 5EH, Scotland, UK.

出版信息

Biochem J. 2004 Apr 15;379(Pt 2):395-408. doi: 10.1042/BJ20031797.

DOI:10.1042/BJ20031797
PMID:14744259
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1224091/
Abstract

14-3-3-interacting proteins were isolated from extracts of proliferating HeLa cells using 14-3-3 affinity chromatography, eluting with a phosphopeptide that competes with targets for 14-3-3 binding. The isolated proteins did not bind to 14-3-3 proteins (14-3-3s) after dephosphorylation with protein phosphatase 2A (PP2A), indicating that binding to 14-3-3s requires their phosphorylation. The binding proteins identified by tryptic mass fingerprinting and Western blotting include many enzymes involved in generating precursors such as purines (AMP, GMP and ATP), FAD, NADPH, cysteine and S-adenosylmethionine, which are needed for cell growth, regulators of cell proliferation, including enzymes of DNA replication, proteins of anti-oxidative metabolism, regulators of actin dynamics and cellular trafficking, and proteins whose deregulation has been implicated in cancers, diabetes, Parkinsonism and other neurological diseases. Several proteins bound to 14-3-3-Sepharose in extracts of proliferating cells, but not in non-proliferating, serum-starved cells, including a novel microtubule-interacting protein ELP95 (EMAP-like protein of 95 kDa) and a small HVA22/Yop1p-related protein. In contrast, the interactions of 14-3-3s with the N-methyl-D-aspartate receptor 2A subunit and NuMA (nuclear mitotic apparatus protein) were not regulated by serum. Overall, our findings suggest that 14-3-3s may be central to integrating the regulation of biosynthetic metabolism, cell proliferation, survival, and other processes in human cells.

摘要

利用14-3-3亲和层析从增殖的HeLa细胞提取物中分离出与14-3-3相互作用的蛋白质,用一种与14-3-3结合靶点竞争的磷酸肽进行洗脱。用蛋白磷酸酶2A(PP2A)去磷酸化后,分离出的蛋白质不再与14-3-3蛋白(14-3-3s)结合,这表明与14-3-3s的结合需要其磷酸化。通过胰蛋白酶质量指纹图谱和蛋白质印迹鉴定出的结合蛋白包括许多参与生成前体物质的酶,如嘌呤(AMP、GMP和ATP)、FAD、NADPH、半胱氨酸和S-腺苷甲硫氨酸,这些都是细胞生长所必需的;细胞增殖调节因子,包括DNA复制酶、抗氧化代谢蛋白、肌动蛋白动力学调节因子和细胞运输调节因子;以及那些失调与癌症、糖尿病、帕金森病和其他神经疾病有关的蛋白质。几种蛋白质在增殖细胞提取物中与14-3-3琼脂糖结合,但在非增殖的血清饥饿细胞中不结合,其中包括一种新型微管相互作用蛋白ELP95(95 kDa的EMAP样蛋白)和一种小的HVA22/Yop1p相关蛋白。相比之下,14-3-3s与N-甲基-D-天冬氨酸受体2A亚基和NuMA(核有丝分裂器蛋白)的相互作用不受血清调节。总体而言,我们的研究结果表明,14-3-3s可能是整合人类细胞生物合成代谢、细胞增殖、存活及其他过程调控的核心。