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首页> 外文期刊>Journal of molecular recognition: JMR >Structural insights into the MDP binding and CARD-CARD interaction in zebrafish (Danio rerio) NOD2: A molecular dynamics approach
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Structural insights into the MDP binding and CARD-CARD interaction in zebrafish (Danio rerio) NOD2: A molecular dynamics approach

机译:斑马鱼中的MDP结合和CARD-CARD相互作用的结构见解(Danio rerio)NOD2:分子动力学方法

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摘要

Nucleotide binding and oligomerization domain (NOD2) is a key component of innate immunity that is highly specific for muramyl dipeptide (MDP) - a peptidoglycan component of bacterial cell wall. MDP recognition by NOD2-leucine rich repeat (LRR) domain activates NF-κB signaling through a protein-protein interaction between caspase activating and recruitment domains (CARDs) of NOD2 and downstream receptor interacting and activating protein kinase 2 (RIP2). Due to the lack of crystal/NMR structures, MDP recognition and CARD-CARD interaction are poorly understood. Herein, we have predicted the probable MDP and CARD-CARD binding surfaces in zebrafish NOD2 (zNOD2) using various in silico methodologies. The results show that the conserved residues Phe819, Phe871, Trp875, Trp929, Trp899, and Arg845 located at the concave face of zNOD2-LRR confer MDP recognition by hydrophobic and hydrogen bond (H-bond) interactions. Molecular dynamics simulations reveal a stable association between the electropositive surface on zNOD2-CARDa and the electronegative surface on zRIP2-CARD reinforced mostly by H-bonds and electrostatic interactions. Importantly, a 3.5 ? salt bridge is observed between Arg60 of zNOD2-CARDa and Asp494 of zRIP2-CARD. Arg11 and Lys53 of zNOD2-CARDa and Ser498 and Glu508 of zRIP2-CARD are critical residues for CARD-CARD interaction and NOD2 signaling. The 2.7 ? H-bond between Lys104 of the linker and Glu508 of zRIP2-CARD suggests a possible role of the linker for shaping CARD-CARD interaction. These findings are consistent with existing mutagenesis data. We provide first insight into MDP recognition and CARD-CARD interaction in the zebrafish that will be useful to understand the molecular basis of NOD signaling in a broader perspective.
机译:核苷酸结合和寡聚结构域(NOD2)是先天免疫的关键组成部分,其固有的免疫原性是对鼠李二酰二肽(MDP)高度特异性的-细菌细胞壁的肽聚糖组分。富含NOD2亮氨酸重复序列(LRR)域的MDP识别可通过NOD2的胱天蛋白酶激活和募集域(CARD)与下游受体相互作用和激活蛋白激酶2(RIP2)之间的蛋白相互作用来激活NF-κB信号传导。由于缺乏晶体/ NMR结构,对MDP识别和CARD-CARD相互作用的了解很少。在这里,我们已经使用各种计算机模拟方法预测了斑马鱼NOD2(zNOD2)中可能的MDP和CARD-CARD结合表面。结果表明,位于zNOD2-LRR凹面的保守残基Phe819,Phe871,Trp875,Trp929,Trp899和Arg845通过疏水和氢键(H键)相互作用赋予MDP识别能力。分子动力学模拟显示,zNOD2-CARDa上的正电表面与zRIP2-CARD上的负电表面之间主要由氢键和静电相互作用增强,两者之间具有稳定的联系。重要的是3.5吗?在zNOD2-CARDa的Arg60和zRIP2-CARD的Asp494之间观察到盐桥。 zNOD2-CARDa的Arg11和Lys53和zRIP2-CARD的Ser498和Glu508是CARD-CARD相互作用和NOD2信号传导的关键残基。 2.7?接头的Lys104和zRIP2-CARD的Glu508之间的氢键暗示了接头对塑造CARD-CARD相互作用的可能作用。这些发现与现有的诱变数据一致。我们提供了对斑马鱼中MDP识别和CARD-CARD相互作用的初步了解,这将有助于从更广泛的角度了解NOD信号的分子基础。

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