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Dynamics and ligand-induced conformational changes in human prolyl oligopeptidase analyzed by hydrogen/deuterium exchange mass spectrometry

机译:氢/氘交换质谱法分析人脯氨酰寡肽酶的动力学和配体诱导的构象变化

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摘要

Prolyl oligopeptidase (PREP) is conserved in many organisms across life. It is involved in numerous processes including brain function and neuropathology, that require more than its strict proteolytic role. It consists of a seven-bladed β-propeller juxtaposed to a catalytic α/β-hydrolase domain. The conformational dynamics of PREP involved in domain motions and the gating mechanism that allows substrate accessibility remain elusive. Here we used Hydrogen Deuterium eXchange Mass Spectrometry (HDX-MS) to derive the first near-residue resolution analysis of global PREP dynamics in the presence or absence of inhibitor bound in the active site. Clear roles are revealed for parts that would be critical for the activation mechanism. In the free state, the inter-domain interface is loose, providing access to the catalytic site. Inhibitor binding “locks” the two domains together exploiting prominent interactions between the loop of the first β-propeller blade and its proximal helix from the α/β-hydrolase domain. Loop A, thought to drive gating, is partially stabilized but remains flexible and dynamic. These findings provide a conformational guide for further dissection of the gating mechanism of PREP, that would impact drug development. Moreover, they offer a structural framework against which to study proteolysis-independent interactions with disordered proteins like α-synuclein involved in neurodegenerative disease.
机译:脯氨酰寡肽酶(PREP)在整个生命中的许多生物中都是保守的。它涉及许多过程,包括脑功能和神经病理学,这些过程不仅需要严格的蛋白水解作用。它由与催化α/β水解酶域并列的七叶β螺旋桨组成。参与区域运动的PREP的构象动力学以及允许基质可及性的门控机制仍然难以捉摸。在这里,我们使用氢氘交换质谱(HDX-MS)来推导在活性位点中存在或不存在抑制剂的情况下,全球PREP动力学的第一个近残留分辨率分析。对于激活机制至关重要的部分,揭示了明确的角色。在自由状态下,域间界面松散,提供了进入催化部位的通道。抑制剂结合将两个域“锁定”在一起,从而利用了第一个β螺旋桨叶片的环与其来自α/β水解酶域的近端螺旋之间的突出相互作用。回路A被认为是驱动选通的,部分稳定,但仍保持灵活和动态。这些发现为进一步剖析PREP的门控机制提供了构象指导,这将影响药物的开发。此外,它们提供了一个结构框架,可用来研究与涉及神经退行性疾病的无序蛋白(如α-突触核蛋白)的蛋白水解独立相互作用。

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