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Structural Insight for the Roles of Fas Death Domain Binding to FADD and Oligomerization Degree of the Fas - FADD complex in the Death Inducing Signaling Complex Formation: A Computational Study

机译:FAS死亡结构域与Fas - FADD复合物中Fas-FADD复合物的FasDD和低聚度的作用的结构洞察力诱导信号传播复合物形成:计算研究

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摘要

Fas binding to Fas-associated death domain (FADD) activates FADD-caspase-8 binding to form death-inducing signaling complex (DISC) that triggers apoptosis. The Fas-Fas association exists primary as dimer in the Fas-FADD complex and the Fas-FADD tetramer complexes have the tendency to form higher order oligomer. The importance of the oligomerized Fas-FADD complex in DISC formation has been confirmed. This study sought to provide structural insight for the roles of Fas death domain (Fas DD) binding to FADD and the oligomerization of Fas DD-FADD complex in activating FADD-procaspase-8 binding. Results show Fas DD binding to FADD stabilized the FADD conformation, including the increased stability of the critical residues in FADD death effector domain (FADD DED) for FADD-procaspase-8 binding. Fas DD binding to FADD resulted in the decreased degree of both correlated and anti-correlated motion of the residues in FADD and caused the reversed correlated motion between FADD DED and FADD death domain (FADD DD). The exposure of procaspase-8 binding residues in FADD that allows FADD to interact with procaspase-8 was observed with Fas DD binding to FADD. We also observed different degrees of conformational and motion changes of FADD in the Fas DD-FADD complex with different degrees of oligomerization. The increased conformational stability and the decreased degree of correlated motion of the residues in FADD in Fas DD-FADD tetramer complex were observed compared to those in Fas DD-FADD dimer complex. This study provides structural evidence for the roles of Fas DD binding to FADD and the oligomerization degree of Fas DD-FADD complex in DISC formation to signal apoptosis.
机译:Fas与Fas相关死亡域(FADD)的结合会激活FADD-caspase-8结合,从而形成触发凋亡的死亡诱导信号复合物(DISC)。 Fas-Fas缔合主要以二聚体形式存在于Fas-FADD配合物中,而Fas-FADD四聚体则倾向于形成更高阶的低聚物。已经证实了低聚的Fas-FADD复合物在DISC形成中的重要性。这项研究试图提供结构性见解,以了解Fas死亡域(Fas DD)与FADD结合的作用以及Fas DD-FADD复合物的寡聚在激活FADD-procaspase-8结合中的作用。结果显示,Fas DD与FADD的结合稳定了FADD构象,包括FADD死亡效应子域(FADD DED)中对FADD-procaspase-8结合的关键残基的稳定性提高。 Fas DD与FADD的结合导致FADD中残基的相关运动和反相关运动程度降低,并导致FADD DED和FADD死亡域(FADD DD)之间的相关运动反向。 Fas DD与FADD结合后,观察到FADD中procaspase-8结合残基的暴露使FADD与procaspase-8相互作用。我们还观察到Fas DD-FADD复合物中FADD构象和运动变化的程度不同,寡聚程度不同。与Fas DD-FADD二聚体复合物中的FADD相比,观察到FADD中构象稳定性增加,残基相关运动的程度降低。该研究为Fas DD与FADD结合的作用以及Fas DD-FADD复合物在DISC形成中的凋亡信号化中的低聚作用提供了结构性证据。

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