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Thymic selection threshold defined by compartmentalization of Ras/MAPK signalling.由Ras/丝裂原活化蛋白激酶信号通路的分隔所定义的胸腺选择阈值。
Nature. 2006 Dec 7;444(7120):724-9. doi: 10.1038/nature05269. Epub 2006 Nov 1.
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Regulation of ras signaling dynamics by Sos-mediated positive feedback.由Sos介导的正反馈对ras信号动力学的调控。
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Compartmentalized Ras/MAPK signaling.区室化的Ras/丝裂原活化蛋白激酶信号传导
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RasGRP1 and RasGRP3 regulate B cell proliferation by facilitating B cell receptor-Ras signaling.RasGRP1和RasGRP3通过促进B细胞受体-Ras信号传导来调节B细胞增殖。
J Immunol. 2005 Dec 1;175(11):7179-84. doi: 10.4049/jimmunol.175.11.7179.
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Signaling interplay in Ras superfamily function.Ras超家族功能中的信号相互作用。
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CAPRI and RASAL impose different modes of information processing on Ras due to contrasting temporal filtering of Ca2+.由于对Ca2+的时间过滤方式不同,CAPRI和RASAL对Ras施加了不同的信息处理模式。
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A diacylglycerol-protein kinase C-RasGRP1 pathway directs Ras activation upon antigen receptor stimulation of T cells.二酰基甘油-蛋白激酶C-RasGRP1信号通路在T细胞抗原受体受到刺激时指导Ras激活。
Mol Cell Biol. 2005 Jun;25(11):4426-41. doi: 10.1128/MCB.25.11.4426-4441.2005.
8
Deregulated expression of RasGRP1 initiates thymic lymphomagenesis independently of T-cell receptors.RasGRP1的失调表达独立于T细胞受体引发胸腺淋巴瘤发生。
Oncogene. 2005 Apr 14;24(16):2695-704. doi: 10.1038/sj.onc.1208334.
9
Phosphorylation of RasGRP3 on threonine 133 provides a mechanistic link between PKC and Ras signaling systems in B cells.苏氨酸133位点的RasGRP3磷酸化在B细胞中建立了蛋白激酶C(PKC)与Ras信号系统之间的机制联系。
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10
Activation of RasGRP3 by phosphorylation of Thr-133 is required for B cell receptor-mediated Ras activation.B细胞受体介导的Ras激活需要通过苏氨酸-133磷酸化激活RasGRP3。
Proc Natl Acad Sci U S A. 2004 Nov 23;101(47):16612-7. doi: 10.1073/pnas.0407468101. Epub 2004 Nov 15.

两种Ras激活剂RasGRP和SOS之间不同寻常的相互作用,在淋巴细胞中建立了敏感且强大的Ras激活。

Unusual interplay of two types of Ras activators, RasGRP and SOS, establishes sensitive and robust Ras activation in lymphocytes.

作者信息

Roose Jeroen P, Mollenauer Marianne, Ho Mary, Kurosaki Tomohiro, Weiss Arthur

机构信息

Department of Medicine, University of California-San Francisco, 513 Parnassus Avenue, San Francisco, CA 94143-0795, USA.

出版信息

Mol Cell Biol. 2007 Apr;27(7):2732-45. doi: 10.1128/MCB.01882-06. Epub 2007 Feb 5.

DOI:10.1128/MCB.01882-06
PMID:17283063
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1899892/
Abstract

Ras activation is crucial for lymphocyte development and effector function. Both T and B lymphocytes contain two types of Ras activators: ubiquitously expressed SOS and specifically expressed Ras guanyl nucleotide-releasing protein (RasGRP). The need for two activators is enigmatic since both are activated following antigen receptor stimulation. In addition, RasGRP1 appears to be dominant over SOS in an unknown manner. The crystal structure of SOS provides a clue: an unusual allosteric Ras-GTP binding pocket. Here, we demonstrate that RasGRP orchestrates Ras signaling in two ways: (i) by activating Ras directly and (ii) by facilitating priming of SOS with RasGTP that binds the allosteric pocket. Priming enhances SOS' in vivo activity and creates a positive RasGTP-SOS feedback loop that functions as a rheostat for Ras activity. Without RasGRP1, initiation of this loop is impaired because SOS' catalyst is its own product (RasGTP)-hence the dominance of RasGRP1. Introduction of an active Ras-like molecule (RasV12C40) in T- and B-cell lines can substitute for RasGRP function and enhance SOS' activity via its allosteric pocket. The unusual RasGRP-SOS interplay results in sensitive and robust Ras activation that cannot be achieved with either activator alone. We hypothesize that this mechanism enables lymphocytes to maximally respond to physiologically low levels of stimulation.

摘要

Ras激活对于淋巴细胞发育和效应功能至关重要。T淋巴细胞和B淋巴细胞均含有两种类型的Ras激活剂:普遍表达的SOS和特异性表达的Ras鸟苷酸释放蛋白(RasGRP)。需要两种激活剂的原因尚不明朗,因为两者在抗原受体刺激后均被激活。此外,RasGRP1似乎以未知方式在SOS之上占主导地位。SOS的晶体结构提供了一条线索:一个不同寻常的变构Ras - GTP结合口袋。在此,我们证明RasGRP以两种方式协调Ras信号传导:(i)通过直接激活Ras,以及(ii)通过促进与结合变构口袋的RasGTP对SOS的引发作用。引发作用增强了SOS在体内的活性,并形成一个正向的RasGTP - SOS反馈环,该反馈环充当Ras活性的变阻器。没有RasGRP1,这个环的启动就会受损,因为SOS的催化剂是其自身产物(RasGTP)——因此RasGRP1占主导地位。在T细胞系和B细胞系中引入一种活性类Ras分子(RasV12C40)可以替代RasGRP的功能,并通过其变构口袋增强SOS的活性。RasGRP与SOS之间这种不同寻常的相互作用导致了敏感而强大的Ras激活,这是单独使用任何一种激活剂都无法实现的。我们推测这种机制使淋巴细胞能够对生理水平的低刺激做出最大反应。