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一个位于人神经丝氨酸蛋白酶抑制剂 Trp154 周围的疏水区控制着螺旋 F 的动力学,这对抑制和聚集有影响。

A hydrophobic patch surrounding Trp154 in human neuroserpin controls the helix F dynamics with implications in inhibition and aggregation.

机构信息

Protein Conformation and Enzymology Lab, Department of Biosciences, Jamia Millia Islamia (A Central University), New Delhi-110025, India.

Translational Bioinformatics Group, International Centre for Genetic Engineering and Biotechnology (ICGEB), Aruna Asaf Ali Marg, New Delhi-110067, India.

出版信息

Sci Rep. 2017 Feb 23;7:42987. doi: 10.1038/srep42987.

Abstract

Neuroserpin (NS) mediated inhibition of tissue-type plasminogen activator (tPA) is important for brain development, synapse formation and memory. Aberrations in helix F and β-sheet A movement during inhibition can directly lead to epilepsy or dementia. Conserved W154 residue in a hydrophobic patch between helix F and β-sheet A is ideally placed to control their movement during inhibition. Molecular Dynamics (MD) simulation on wild type (WT) NS and its two variants (W154A and W154P) demonstrated partial deformation in helix F and conformational differences in strands 1A and 2A only in W154P. A fluorescence and Circular Dichroism (CD) analysis with purified W154 variants revealed a significant red-shift and an increase in α-helical content in W154P as compared to W154A and WT NS. Kinetics of tPA inhibition showed a decline in association rates (k) for W154A as compared to WT NS with indication of complex formation. Appearance of cleaved without complex formation in W154P indicates that the variant acts as substrate due to conformational misfolding around helix F. Both the variants however showed increased rate of aggregation as compared to WT NS. The hydrophobic patch identified in this study may have importance in helix F dynamics of NS.

摘要

神经丝氨酸蛋白酶抑制剂(NS)介导的组织型纤溶酶原激活物(tPA)抑制对于大脑发育、突触形成和记忆至关重要。在抑制过程中螺旋 F 和 β-折叠 A 运动的异常会直接导致癫痫或痴呆。螺旋 F 和 β-折叠 A 之间疏水区中保守的 W154 残基理想地控制了它们在抑制过程中的运动。对野生型(WT)NS 及其两种变体(W154A 和 W154P)的分子动力学(MD)模拟表明,仅在 W154P 中,螺旋 F 发生部分变形,1A 和 2A 链发生构象差异。与 W154A 和 WT NS 相比,用纯化的 W154 变体进行荧光和圆二色性(CD)分析显示,W154P 中的红移和 α-螺旋含量增加显著。tPA 抑制的动力学研究表明,与 WT NS 相比,W154A 的缔合速率(k)下降,表明复合物的形成。W154P 中出现无复合物形成的切割表明,由于螺旋 F 周围的构象错误,该变体充当底物。然而,与 WT NS 相比,这两种变体的聚集速率都增加了。本研究中鉴定的疏水区可能对 NS 螺旋 F 动力学具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b926/5322333/1a0dbdb7f650/srep42987-f1.jpg

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