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鸡源Src蛋白失活形式的2.35埃晶体结构:一个具有多重调控相互作用的动态分子。

The 2.35 A crystal structure of the inactivated form of chicken Src: a dynamic molecule with multiple regulatory interactions.

作者信息

Williams J C, Weijland A, Gonfloni S, Thompson A, Courtneidge S A, Superti-Furga G, Wierenga R K

机构信息

European Molecular Biology Laboratory, Meyerhofstrasse 1, Heidelberg, D-69117, Germany.

出版信息

J Mol Biol. 1997 Dec 19;274(5):757-75. doi: 10.1006/jmbi.1997.1426.

Abstract

The Src protein tyrosine kinase plays a critical role in a variety of signal transduction pathways. Strict regulation of its activity is necessary for proper signalling. We present here the crystal structure of chicken Src which is phosphorylated at Tyr527 and represents its least active form. Our structure, similar to the recently reported human Hck and Src structures, contains the SH3, SH2 and the kinase domains and the C-terminal regulatory tail but not the N-terminal unique domain. The SH3 domain uses its hydrophobic surface to coordinate the SH2-kinase linker such that residues Gln251 and Leu255 specifically interact with side chains in the beta2-beta3 and the alphaC-beta4 loops of the N-terminal lobe opposite of the kinase active site. This position of the SH3 domain and the coordination of the SH2-kinase linker also optimally places the SH2 domain such that the phosphorylated Tyr527 in the C-terminal tail interacts with the SH2 binding pocket. Analogous to Cdk2 kinase, the position of the Src alphaC-helix in the N-terminal lobe is swung out disrupting the position of the active site residues. Superposition of other protein kinases including human Hck and Src onto chicken Src indicate that the alphaC-helix position is affected by the relative position of the N-terminal lobe with respect to the C-terminal lobe of the kinase and that the presence of the SH3/SH2-kinase linker/N-terminal lobe interactions restricts the kinase lobes and alphaC-helix access to the active conformation. These superpositions also suggest that the highly conserved alphaC-beta4 loop restricts the conformational freedom of the N-terminal lobe by anchoring it to the C-terminal lobe. Finally, based on sequence alignments and conservation of hydrophobic residues in the Src SH2-kinase linker as well as in the alphaC-beta4 and beta2-beta3 loops, we propose that the Src-related kinases, Abl, Btk and Csk, share the same quaternary structure.

摘要

Src蛋白酪氨酸激酶在多种信号转导途径中发挥关键作用。严格调控其活性对于正常信号传导至关重要。我们在此展示了酪氨酸527位点磷酸化的鸡源Src的晶体结构,该结构代表其活性最低的形式。我们的结构与最近报道的人源Hck和Src结构相似,包含SH3、SH2和激酶结构域以及C端调节尾巴,但不包含N端独特结构域。SH3结构域利用其疏水表面来协调SH2-激酶连接区,使得谷氨酰胺251和亮氨酸255残基与激酶活性位点相对的N端叶的β2-β3和αC-β4环中的侧链特异性相互作用。SH3结构域的这个位置以及SH2-激酶连接区的协调作用还使SH2结构域处于最佳位置,从而使C端尾巴中磷酸化的酪氨酸527与SH2结合口袋相互作用。与细胞周期蛋白依赖性激酶2(Cdk2)激酶类似,Src的αC螺旋在N端叶中的位置向外摆动,破坏了活性位点残基的位置。将包括人源Hck和Src在内的其他蛋白激酶与鸡源Src进行叠加表明,αC螺旋的位置受激酶N端叶相对于C端叶的相对位置影响,并且SH3/SH2-激酶连接区/N端叶相互作用的存在限制了激酶叶和αC螺旋进入活性构象。这些叠加还表明,高度保守的αC-β4环通过将N端叶锚定到C端叶来限制其构象自由度。最后,基于Src的SH2-激酶连接区以及αC-β4和β2-β3环中疏水残基的序列比对和保守性,我们提出与Src相关的激酶Abl、Btk和Csk具有相同的四级结构。

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