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人源c-Src介导的依赖构象的人源p52Shc磷酸化作用

Conformation-Dependent Human p52Shc Phosphorylation by Human c-Src.

作者信息

Tsutsui Yuko, Johnson Jennifer M, Demeler Borries, Kinter Michael T, Hays Franklin A

机构信息

†Department of Biochemistry and Molecular Biology, University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma 73104, United States.

‡Department of Biochemistry, The University of Texas Health Sciences Center at San Antonio, 7750 Floyd Curl Drive, San Antonio, Texas 78229-3900, United States.

出版信息

Biochemistry. 2015 Jun 9;54(22):3469-82. doi: 10.1021/acs.biochem.5b00122. Epub 2015 May 26.

Abstract

Phosphorylation of the human p52Shc adaptor protein is a key determinant in modulating signaling complex assembly in response to tyrosine kinase signaling cascade activation. The underlying mechanisms that govern p52Shc phosphorylation status are unknown. In this study, p52Shc phosphorylation by human c-Src was investigated using purified proteins to define mechanisms that affect the p52Shc phosphorylation state. We conducted biophysical characterizations of both human p52Shc and human c-Src in solution as well as membrane-mimetic environments using the acidic lipid phosphatidylinositol 4-phosphate or a novel amphipathic detergent (2,2-dihexylpropane-1,3-bis-β-D-glucopyranoside). We then identified p52Shc phosphorylation sites under various solution conditions, and the amount of phosphorylation at each identified site was quantified using mass spectrometry. These data demonstrate that the p52Shc phosphorylation level is altered by the solution environment without affecting the fraction of active c-Src. Mass spectrometry analysis of phosphorylated p52Shc implies functional linkage among phosphorylation sites. This linkage may drive preferential coupling to protein binding partners during signaling complex formation, such as during initial binding interactions with the Grb2 adaptor protein leading to activation of the Ras/MAPK signaling cascade. Remarkably, tyrosine residues involved in Grb2 binding were heavily phosphorylated in a membrane-mimetic environment. The increased phosphorylation level in Grb2 binding residues was also correlated with a decrease in the thermal stability of purified human p52Shc. A schematic for the phosphorylation-dependent interaction between p52Shc and Grb2 is proposed. The results of this study suggest another possible therapeutic strategy for altering protein phosphorylation to regulate signaling cascade activation.

摘要

人p52Shc衔接蛋白的磷酸化是响应酪氨酸激酶信号级联激活来调节信号复合物组装的关键决定因素。控制p52Shc磷酸化状态的潜在机制尚不清楚。在本研究中,使用纯化的蛋白质研究了人c-Src对p52Shc的磷酸化作用,以确定影响p52Shc磷酸化状态的机制。我们使用酸性脂质磷脂酰肌醇4-磷酸或新型两亲性去污剂(2,2-二己基丙烷-1,3-双-β-D-吡喃葡萄糖苷),对溶液以及膜模拟环境中的人p52Shc和人c-Src进行了生物物理表征。然后,我们确定了各种溶液条件下p52Shc的磷酸化位点,并使用质谱法定量了每个已确定位点的磷酸化量。这些数据表明,溶液环境会改变p52Shc的磷酸化水平,而不影响活性c-Src的比例。对磷酸化p52Shc的质谱分析表明磷酸化位点之间存在功能联系。这种联系可能在信号复合物形成过程中驱动与蛋白质结合伴侣的优先偶联,例如在与Grb2衔接蛋白的初始结合相互作用导致Ras/MAPK信号级联激活的过程中。值得注意的是,在膜模拟环境中,参与Grb2结合的酪氨酸残基被大量磷酸化。Grb2结合残基中磷酸化水平的增加也与纯化的人p52Shc的热稳定性降低相关。我们提出了p52Shc与Grb2之间磷酸化依赖性相互作用的示意图。本研究结果提示了另一种通过改变蛋白质磷酸化来调节信号级联激活的潜在治疗策略。

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