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组蛋白结构域对 Sevenless 活性的别构门控作用。

Allosteric gating of Son of sevenless activity by the histone domain.

机构信息

Department of Biochemistry, New York University School of Medicine, New York, NY 10016, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 Feb 23;107(8):3436-40. doi: 10.1073/pnas.0914315107. Epub 2010 Feb 4.

Abstract

Regulated activation of Ras by receptor tyrosine kinases (RTK) constitutes a key transduction step in signaling processes that control an array of fundamental cellular functions including proliferation, differentiation, and survival. The principle mechanism by which Ras is activated down stream of RTKs involves the stimulation of guanine nucleotide exchange by the ubiquitous guanine nucleotide exchange factor Son of sevenless (Sos). In resting conditions, Sos activity is constrained by intramolecular interactions that maintain the protein in an autoinhibited conformation. Structural, biochemical, and genetic studies have implicated the histone domain (Sos-H), which comprises the most N-terminal region of Sos, in the regulation of Sos autoinhibition. However, the molecular underpinnings of this regulatory function are not well understood. In the present study we demonstrate that Sos-H possesses in vitro and in vivo membrane binding activity that is mediated, in part, by the interactions between a cluster of basic residues and phosphatidic acid. This interaction is required for Sos-dependent activation of Ras following EGF stimulation. The inducible association of Sos-H with membranes contributes to the catalytic activity of Sos by forcing the domain to adopt a conformation that destabilizes the autoinhibitory state. Thus, Sos-H plays a critical role in governing the catalytic output of Sos through the coupling of membrane recruitment to the release of autoinhibition.

摘要

受体内酪氨酸激酶(RTK)调控的 Ras 激活构成了信号转导过程中的一个关键步骤,该过程控制着一系列基本的细胞功能,包括增殖、分化和存活。Ras 在下游 RTK 被激活的主要机制涉及普遍存在的鸟苷酸交换因子 Son of sevenless(Sos)的鸟嘌呤核苷酸交换的刺激。在静止状态下,Sos 的活性受到维持蛋白处于自动抑制构象的分子内相互作用的限制。结构、生化和遗传研究表明,组蛋白结构域(Sos-H),它包含 Sos 的最 N 端区域,在 Sos 的自动抑制调节中起作用。然而,这种调节功能的分子基础尚不清楚。在本研究中,我们证明 Sos-H 具有体外和体内的膜结合活性,部分通过一组碱性残基与磷酸脂酰酸之间的相互作用介导。这种相互作用是 EGF 刺激后 Sos 依赖的 Ras 激活所必需的。Sos-H 与膜的可诱导结合通过迫使该结构域采用一种不稳定自动抑制状态的构象,为 Sos 的催化活性做出贡献。因此,Sos-H 通过将膜募集与自动抑制释放偶联,在控制 Sos 的催化输出方面起着关键作用。

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本文引用的文献

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