Dynamic disequilibrium-based pathogenicity model in mutated pyrin's B30.2 domain-Casp1/p20 complex.

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Alaaeldin G Fayez, Ghada Nour Eldeen, Waheba A Zarouk, Khaled Hamed, Abeer Ramadan, Bardees M Foda, Maha M Kobesiy, Mai E Zekrie, Randa S Lotfy, Mona F Sokkar, Hala T El-Bassyouni
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引用次数: 2

Abstract

Background: The B30.2 variants lead to most relevant severity forms of familial Mediterranean fever (FMF) manifestations. The B30.2 domain plays a key role in protein-protein interaction (PPI) of pyrin with other apoptosis proteins and in regulation the cascade of inflammatory reactions. Pyrin-casp1 interaction is mainly responsible for the dysregulation of the inflammatory responses in FMF. Lower binding affinity was observed between the mutant B30.2 pyrin and casp1 without the release of the complete pathogenicity mechanism. The aim of this study was to identify the possible effects of the interface pocked residues in B30.2/SPRY-Casp1/p20 complex using molecular mechanics simulation and in silico analysis.

Results: It was found that Lys671Met, Ser703Ile, and Ala744Ser variants led mainly to shift of the binding affinity (∆G), dissociation constant (Kd), and root mean square deviation (RMSD) in B30.2/SPRY-Casp1/p20 complex leading to dynamic disequilibrium of the p20-B30.2/SPRY complex toward its complex form. The current pathogenicity model and its predicted implementation in the relevant colchicine dosage were delineated.

Conclusion: The molecular mechanics analysis of B30.2/SPRY-p20 complex harboring Lys671Met, Ser703Ile, and Ala744Ser variants showed dynamic disequilibrium of B30.2/SPRY-casp1/p20complex in context of the studied variants that could be a new computational model for FMF pathogenicity. This study also highlighted the specific biochemical markers that could be useful to adjust the colchicine dose in FMF patients.

Abstract Image

Abstract Image

Abstract Image

突变pyrin B30.2结构域- casp1 /p20复合体的动态不平衡致病性模型
背景:B30.2变异导致家族性地中海热(FMF)表现的最相关的严重形式。B30.2结构域在pyrin与其他凋亡蛋白的蛋白相互作用(PPI)和炎症反应级联调控中起关键作用。Pyrin-casp1相互作用是FMF炎症反应失调的主要原因。突变体B30.2 pyrin与casp1的结合亲和力较低,但未释放完整的致病机制。本研究的目的是通过分子力学模拟和硅分析来确定B30.2/SPRY-Casp1/p20复合物中界面孔化残基可能的影响。结果:发现Lys671Met、Ser703Ile和Ala744Ser变异主要导致B30.2/SPRY- casp1 /p20复合物的结合亲和力(∆G)、解离常数(Kd)和均方根偏差(RMSD)发生变化,导致p20-B30.2/SPRY复合物向其络合物形态动态不平衡。描述了目前的致病性模型及其在相关秋水仙碱剂量下的预测实现。结论:对含有Lys671Met、Ser703Ile和Ala744Ser变异的B30.2/SPRY-p20复合体的分子力学分析显示,B30.2/SPRY-casp1/p20复合体在研究变异背景下的动态不平衡可能成为FMF致病性的新计算模型。本研究还强调了可用于调节FMF患者秋水仙碱剂量的特定生化标记物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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