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首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Guanine nucleotide induced conformational change of Cdc42 revealed by hydrogen/deuterium exchange mass spectrometry
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Guanine nucleotide induced conformational change of Cdc42 revealed by hydrogen/deuterium exchange mass spectrometry

机译:氢/氘交换质谱揭示鸟嘌呤核苷酸诱导的Cdc42构象变化

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摘要

Cdc42 regulates pathways related to cell division. Dysregulation of Cdc42 can lead to cancer, cardiovascular diseases and neurodegenerative diseases. GTP induced activation mechanism plays an important role in the activity and biological functions of Cdc42. P-loop, Switch I and Switch II are critical regions modulating the enzymatic activity of Cdc42. We applied amide hydrogen/deuterium exchange coupled with liquid chromatography mass spectrometry (HDXMS) to investigate the dynamic changes of apo-Cdc42 after GDP, GTP and GMP-PCP binding. The natural substrate GTP induced significant decreases of deuteration in P-loop and Switch II, moderate changes of deuteration in Switch I and significant changes of deuteration in the alpha 7 helix, a region far away from the active site. GTP binding induced similar effects on H/D exchange to its non-hydrolysable analog, GMP-PCP. HDXMS results indicate that GTP binding blocked the solvent accessibility in the active site leading to the decrease of H/D exchange rate surrounding the active site, and further triggered a conformational change resulting in the drastic decrease of H/D exchange rate at the remote alpha 7 helix. Comparing the deuteration levels in three activation states of apo-Cdc42, Cdc42-GDP and Cdc42-GMP-PCP, the apo-Cdc42 has the most flexible structure, which can be stabilized by guanine nucleotide binding. The rates of H/D exchange of Cdc42-GDP are between the GMP-PCP-bound and the apo form, but more closely to the GMP-PCP-bound form. Our results show that the activation of Cdc42 is a process of conformational changes involved with P-loop, Switch II and alpha 7 helix for structural stabilization. (C) 2015 Elsevier B.V. All rights reserved.
机译:Cdc42调节与细胞分裂有关的途径。 Cdc42失调可导致癌症,心血管疾病和神经退行性疾病。 GTP诱导的激活机制在Cdc42的活性和生物学功能中起着重要作用。 P环,开关I和开关II是调节Cdc42酶活性的关键区域。我们应用酰胺氢/氘交换结合液相色谱质谱(HDXMS)来研究GDP,GTP和GMP-PCP结合后apo-Cdc42的动态变化。天然底物GTP导致P环和Switch II的氘代显着减少,Switch I的氘代适度变化,而远离活性位点的alpha 7螺旋中的氘代显着变化。 GTP结合诱导H / D交换与其不可水解的类似物GMP-PCP相似的效果。 HDXMS结果表明,GTP结合阻止了活性位点中的溶剂可及性,从而导致活性位点周围的H / D交换速率降低,并进一步触发了构象变化,从而导致远程α处的H / D交换速率急剧降低。 7螺旋。比较载脂蛋白-Cdc42,载脂蛋白42-GDP和载脂蛋白-GMP-PCP在三种激活状态下的氘化水平,载脂蛋白-Cdc42具有最灵活的结构,可通过鸟嘌呤核苷酸结合使其稳定。 Cdc42-GDP的H / D交换速率介于GMP-PCP结合形式和apo形式之间,但更接近于GMP-PCP结合形式。我们的结果表明,Cdc42的激活是构象变化的过程,涉及P环,Switch II和alpha 7螺旋结构稳定化。 (C)2015 Elsevier B.V.保留所有权利。

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