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本文引用的文献

1
Endocytosis by Numb breaks Notch symmetry at cytokinesis.Numb 通过胞吞作用在胞质分裂时破坏 Notch 的对称性。
Nat Cell Biol. 2012 Jan 22;14(2):131-9. doi: 10.1038/ncb2419.
2
The differential modulation of USP activity by internal regulatory domains, interactors and eight ubiquitin chain types.内部调节结构域、相互作用蛋白和八种泛素链类型对USP活性的差异调节。
Chem Biol. 2011 Dec 23;18(12):1550-61. doi: 10.1016/j.chembiol.2011.10.017.
3
Regulation of histone H2A and H2B deubiquitination and Xenopus development by USP12 and USP46.USP12 和 USP46 对组蛋白 H2A 和 H2B 去泛素化的调控及对非洲爪蟾发育的影响。
J Biol Chem. 2011 Mar 4;286(9):7190-201. doi: 10.1074/jbc.M110.158311. Epub 2010 Dec 23.
4
The translation initiation factor 3f (eIF3f) exhibits a deubiquitinase activity regulating Notch activation.翻译起始因子 3f(eIF3f)具有去泛素化酶活性,可调节 Notch 激活。
PLoS Biol. 2010 Nov 23;8(11):e1000545. doi: 10.1371/journal.pbio.1000545.
5
A combined ex vivo and in vivo RNAi screen for notch regulators in Drosophila reveals an extensive notch interaction network.一种结合了离体和体内 RNAi 筛选的方法,用于研究果蝇中的 notch 调节因子,揭示了一个广泛的 notch 相互作用网络。
Dev Cell. 2010 May 18;18(5):862-76. doi: 10.1016/j.devcel.2010.03.013.
6
Sanpodo: a context-dependent activator and inhibitor of Notch signaling during asymmetric divisions.Sanpodo:非对称分裂过程中 Notch 信号的上下文相关激活子和抑制剂。
Development. 2009 Dec;136(24):4089-98. doi: 10.1242/dev.040386. Epub 2009 Nov 11.
7
Breaking the chains: structure and function of the deubiquitinases.挣脱枷锁:去泛素化酶的结构与功能
Nat Rev Mol Cell Biol. 2009 Aug;10(8):550-63. doi: 10.1038/nrm2731.
8
Defining the human deubiquitinating enzyme interaction landscape.定义人类去泛素化酶相互作用图谱。
Cell. 2009 Jul 23;138(2):389-403. doi: 10.1016/j.cell.2009.04.042. Epub 2009 Jul 16.
9
The canonical Notch signaling pathway: unfolding the activation mechanism.经典Notch信号通路:揭示激活机制
Cell. 2009 Apr 17;137(2):216-33. doi: 10.1016/j.cell.2009.03.045.
10
Genome-wide analysis of Notch signalling in Drosophila by transgenic RNAi.通过转基因RNA干扰对果蝇Notch信号通路进行全基因组分析。
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泛素特异性蛋白酶 12(USP12)是 Notch 信号的负调控因子,作用于 Notch 受体向降解的运输。

The ubiquitin-specific protease 12 (USP12) is a negative regulator of notch signaling acting on notch receptor trafficking toward degradation.

机构信息

Institut Pasteur and CNRS Unité de Recherche Associée (URA) 2582, Signalisation Moléculaire et Activation Cellulaire, 25 Rue du Docteur Roux, 75724 Paris Cedex 15, France.

出版信息

J Biol Chem. 2012 Aug 24;287(35):29429-41. doi: 10.1074/jbc.M112.366807. Epub 2012 Jul 9.

DOI:10.1074/jbc.M112.366807
PMID:22778262
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3436160/
Abstract

Notch signaling is critical for development and adult tissue physiology, controlling cell fate in a context-dependent manner. Upon ligand binding, the transmembrane Notch receptor undergoes two ordered proteolytic cleavages releasing Notch intracellular domain, which regulates the transcription of Notch target genes. The strength of Notch signaling is of crucial importance and depends notably on the quantity of Notch receptor at the cell surface. Using an shRNA library screen monitoring Notch trafficking and degradation in the absence of ligand, we identified mammalian USP12 and its Drosophila melanogaster homolog as novel negative regulators of Notch signaling. USP12 silencing specifically interrupts Notch trafficking to the lysosomes and, as a consequence, leads to an increased amount of receptor at the cell surface and to a higher Notch activity. At the biochemical level, USP12 with its activator UAF1 deubiquitinate the nonactivated form of Notch in cell culture and in vitro. These results characterize a new level of conserved regulation of Notch signaling by the ubiquitin system.

摘要

Notch 信号通路对于发育和成人组织生理学至关重要,以依赖于上下文的方式控制细胞命运。配体结合后,跨膜 Notch 受体经历两次有序的蛋白水解切割,释放 Notch 细胞内结构域,后者调节 Notch 靶基因的转录。Notch 信号通路的强度至关重要,这主要取决于细胞表面 Notch 受体的数量。我们利用在没有配体的情况下监测 Notch 运输和降解的 shRNA 文库筛选,鉴定出哺乳动物 USP12 及其果蝇同源物作为 Notch 信号通路的新型负调控因子。USP12 的沉默特异性地中断了 Notch 向溶酶体的运输,因此导致细胞表面受体数量增加, Notch 活性增强。在生化水平上,USP12 与其激活因子 UAF1 在细胞培养和体外条件下对非激活形式的 Notch 进行去泛素化。这些结果描述了泛素系统对 Notch 信号通路的一个新的保守调控水平。