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SOCS5 内在无序 N 端保守 JAK 相互作用区域的结构与功能表征

Structure and Functional Characterization of the Conserved JAK Interaction Region in the Intrinsically Disordered N-Terminus of SOCS5.

作者信息

Chandrashekaran Indu R, Mohanty Biswaranjan, Linossi Edmond M, Dagley Laura F, Leung Eleanor W W, Murphy James M, Babon Jeffrey J, Nicholson Sandra E, Norton Raymond S

机构信息

†Medicinal Chemistry, Monash Institute of Pharmaceutical Sciences, Monash University, 381 Royal Parade, Parkville, Victoria 3052, Australia.

§The Department of Medical Biology, University of Melbourne, Parkville, Victoria 3052, Australia.

出版信息

Biochemistry. 2015 Aug 4;54(30):4672-82. doi: 10.1021/acs.biochem.5b00619. Epub 2015 Jul 27.

Abstract

SOCS5 can negatively regulate both JAK/STAT and EGF-receptor pathways and has therefore been implicated in regulating both the immune response and tumorigenesis. Understanding the molecular basis for SOCS5 activity may reveal novel ways to target key components of these signaling pathways. The N-terminal region of SOCS5 coordinates critical protein interactions involved in inhibition of JAK/STAT signaling, and a conserved region within the N-terminus of SOCS5 mediates direct binding to the JAK kinase domain. Here we have characterized the solution conformation of this conserved JAK interaction region (JIR) within the largely disordered N-terminus of SOCS5. Using nuclear magnetic resonance (NMR) chemical shift analysis, relaxation measurements, and NOE analysis, we demonstrate the presence of preformed structural elements in the JIR of mouse SOCS5 (mSOCS5175-244), consisting of an α-helix encompassing residues 224-233, preceded by a turn and an extended structure. We have identified a phosphorylation site (Ser211) within the JIR of mSOCS5 and have investigated the role of phosphorylation in modulating JAK binding using site-directed mutagenesis.

摘要

SOCS5可对JAK/STAT和表皮生长因子受体(EGF-receptor)信号通路进行负调控,因此与免疫应答和肿瘤发生的调控均有关联。了解SOCS5活性的分子基础可能会揭示靶向这些信号通路关键组分的新方法。SOCS5的N端区域协调参与抑制JAK/STAT信号传导的关键蛋白质相互作用,并且SOCS5 N端内的一个保守区域介导与JAK激酶结构域的直接结合。在此,我们对SOCS5大部分无序的N端内这个保守的JAK相互作用区域(JIR)的溶液构象进行了表征。利用核磁共振(NMR)化学位移分析、弛豫测量和核Overhauser效应(NOE)分析,我们证明了小鼠SOCS5(mSOCS5175-244)的JIR中存在预先形成的结构元件,其由一个包含224-233位残基的α螺旋组成,前面有一个转角和一个伸展结构。我们在mSOCS5的JIR中鉴定出一个磷酸化位点(Ser211),并利用定点诱变研究了磷酸化在调节JAK结合中的作用。

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