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无序结构域改变多结构域癌蛋白c-Src折叠调控结构域的构象集。

Disordered Domain Shifts the Conformational Ensemble of the Folded Regulatory Domain of the Multidomain Oncoprotein c-Src.

作者信息

Gurumoorthy Viswanathan, Shrestha Utsab R, Zhang Qiu, Pingali Sai Venkatesh, Boder Eric T, Urban Volker S, Smith Jeremy C, Petridis Loukas, O'Neill Hugh

机构信息

UT/ORNL Graduate School of Genome and Science Technology, University of Tennessee, Knoxville, Tennessee 37996, United States.

UT/ORNL Center for Molecular Biophysics, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, United States.

出版信息

Biomacromolecules. 2023 Feb 13;24(2):714-723. doi: 10.1021/acs.biomac.2c01158. Epub 2023 Jan 24.

Abstract

c-Src kinase is a multidomain non-receptor tyrosine kinase that aberrantly phosphorylates several signaling proteins in cancers. Although the structural properties of the regulatory domains (SH3-SH2) and the catalytic kinase domain have been extensively characterized, there is less knowledge about the N-terminal disordered region (SH4UD) and its interactions with the other c-Src domains. Here, we used domain-selective isotopic labeling combined with the small-angle neutron scattering contrast matching technique to study SH4UD interactions with SH3-SH2. Our results show that in the presence of SH4UD, the radius of gyration () of SH3-SH2 increases, indicating that it has a more extended conformation. Hamiltonian replica exchange molecular dynamics simulations provide a detailed molecular description of the structural changes in SH4UD-SH3-SH2 and show that the regulatory loops of SH3 undergo significant conformational changes in the presence of SH4UD, while SH2 remains largely unchanged. Overall, this study highlights how a disordered region can drive a folded region of a multidomain protein to become flexible, which may be important for allosteric interactions with binding partners. This may help in the design of therapeutic interventions that target the regulatory domains of this important family of kinases.

摘要

c-Src激酶是一种多结构域非受体酪氨酸激酶,在癌症中会异常磷酸化多种信号蛋白。尽管调节结构域(SH3-SH2)和催化激酶结构域的结构特性已得到广泛表征,但关于N端无序区域(SH4UD)及其与c-Src其他结构域的相互作用的了解较少。在此,我们使用结构域选择性同位素标记结合小角中子散射对比匹配技术来研究SH4UD与SH3-SH2的相互作用。我们的结果表明,在存在SH4UD的情况下,SH3-SH2的回转半径()增加,表明其具有更伸展的构象。哈密顿副本交换分子动力学模拟提供了SH4UD-SH3-SH2结构变化的详细分子描述,并表明在存在SH4UD的情况下,SH3的调节环会发生显著的构象变化,而SH2基本保持不变。总体而言,这项研究突出了一个无序区域如何驱动多结构域蛋白的折叠区域变得灵活,这可能对与结合伴侣的变构相互作用很重要。这可能有助于设计针对这一重要激酶家族调节结构域的治疗干预措施。

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