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首页> 外文期刊>Protein Expression and Purification >Expression, purification, and characterization of a structurally disordered and functional C-terminal autoinhibitory domain (AID) of the 70 kDa 40S ribosomal protein S6 kinase-1 (S6K1)
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Expression, purification, and characterization of a structurally disordered and functional C-terminal autoinhibitory domain (AID) of the 70 kDa 40S ribosomal protein S6 kinase-1 (S6K1)

机译:70 kDa 40S核糖体蛋白S6激酶-1(S6K1)的结构紊乱和功能性C末端自抑制域(AID)的表达,纯化和表征

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摘要

S6K1 is a member of the AGC subfamily of serine-threonine protein kinases, whereby catalytic activation requires dual phosphorylation of critical residues in the conserved T-loop (T229) and hydrophobic motif (HM; T389) peptide regions of its catalytic kinase domain (residues 1-398). In addition to its kinase domain, S6K1 contains a C-terminal autoinhibitory domain (AID; residues 399-502), which prevents T-loop and HM phosphorylation; and autoinhibition is relieved on multi-site Ser-Thr phosphorylation of the AID (S411, S418, T421, and S424). Interestingly, 66 of the 104 C-terminal AID amino acid residues were computer predicted to exist in structurally disordered peptide regions, begetting interest as to how such dynamics could be coupled to autoregulation. To begin addressing this issue, we developed and optimized protocols for efficient AID expression and purification. Consistent with computer predictions, aberrant mobilities in both SDS-PAGE and size-exclusion chromatography, as well as low chemical shift dispersion in H-1-N-15 HSQC NMR spectra, indicated purified recombinant AID to be largely unfolded. Yet, trans-addition of purified AID effectively inhibited PDK1-catalyzed T-loop phosphorylation of a catalytic kinase domain construct of S6K1. Using an identical purification protocol, similar protein yields of a tetraphospho-mimic mutant AID(D2ED) construct were obtained; and this construct displayed only weak inhibition of PDK1-catalyzed T229 phosphorylation. Purification of the structurally 'disordered' and functional C-terminal AID and AID(D2ED) constructs will facilitate studies aimed to understand the role of conformational plasticity and protein phosphorylation in modulating autoregulatory domain-domain interactions. (C) 2007 Elsevier Inc. All rights reserved.
机译:S6K1是丝氨酸-苏氨酸蛋白激酶的AGC亚家族的成员,因此催化激活要求其催化激酶结构域(残基)的保守T环(T229)和疏水基序(HM; T389)肽区域中的关键残基进行双重磷酸化1-398)。除了其激酶结构域之外,S6K1还包含一个C端自抑制域(AID;残基399-502),可防止T环和HM磷酸化;并通过AID的多位Ser-Thr磷酸化(S411,S418,T421和S424)缓解了自抑制作用。有趣的是,计算机预测104个C端AID氨基酸残基中有66个存在于结构紊乱的肽区域中,引起了人们对这种动力学如何与自动调节耦合的兴趣。为了解决这个问题,我们开发并优化了协议,以实现有效的AID表达和纯化。与计算机预测一致,SDS-PAGE和尺寸排阻色谱法中的异常迁移率以及H-1-N-15 HSQC NMR光谱中的化学位移低,表明纯化的重组AID大部分未折叠。然而,纯化AID的反式添加可有效抑制S6K1催化激酶结构域构建体的PDK1催化的T环磷酸化。使用相同的纯化方案,获得了类似四磷酸模拟突变体AID(D2ED)构建体的相似蛋白质收率。并且该构建体仅显示出对PDK1催化的T229磷酸化的弱抑制。纯化结构上“无序的”和功能性的C末端AID和AID(D2ED)构建体将促进旨在了解构象可塑性和蛋白质磷酸化在调节自调控域-域相互作用中的作用的研究。 (C)2007 Elsevier Inc.保留所有权利。

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