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NOD1CARD可能通过多种界面进行RIP2介导的CARD-CARD相互作用:来自分子动力学模拟的见解。

NOD1CARD Might Be Using Multiple Interfaces for RIP2-Mediated CARD-CARD Interaction: Insights from Molecular Dynamics Simulation.

作者信息

Maharana Jitendra, Pradhan Sukanta Kumar, De Sachinandan

机构信息

Department of Bioinformatics, Orissa University of Agriculture and Technology, Bhubaneswar, Odisha, India.

Animal Genomics Lab., Animal Biotechnology Centre, ICAR-National Dairy Research Institute, Karnal, Haryana, India.

出版信息

PLoS One. 2017 Jan 23;12(1):e0170232. doi: 10.1371/journal.pone.0170232. eCollection 2017.

Abstract

The nucleotide-binding and oligomerization domain (NOD)-containing protein 1 (NOD1) plays the pivotal role in host-pathogen interface of innate immunity and triggers immune signalling pathways for the maturation and release of pro-inflammatory cytokines. Upon the recognition of iE-DAP, NOD1 self-oligomerizes in an ATP-dependent fashion and interacts with adaptor molecule receptor-interacting protein 2 (RIP2) for the propagation of innate immune signalling and initiation of pro-inflammatory immune responses. This interaction (mediated by NOD1 and RIP2) helps in transmitting the downstream signals for the activation of NF-κB signalling pathway, and has been arbitrated by respective caspase-recruitment domains (CARDs). The so-called CARD-CARD interaction still remained contradictory due to inconsistent results. Henceforth, to understand the mode and the nature of the interaction, structural bioinformatics approaches were employed. MD simulation of modelled 1:1 heterodimeric complexes revealed that the type-Ia interface of NOD1CARD and the type-Ib interface of RIP2CARD might be the suitable interfaces for the said interaction. Moreover, we perceived three dynamically stable heterotrimeric complexes with an NOD1:RIP2 ratio of 1:2 (two numbers) and 2:1. Out of which, in the first trimeric complex, a type-I NOD1-RIP2 heterodimer was found interacting with an RIP2CARD using their type-IIa and IIIa interfaces. However, in the second and third heterotrimer, we observed type-I homodimers of NOD1 and RIP2 CARDs were interacting individually with RIP2CARD and NOD1CARD (in type-II and type-III interface), respectively. Overall, this study provides structural and dynamic insights into the NOD1-RIP2 oligomer formation, which will be crucial in understanding the molecular basis of NOD1-mediated CARD-CARD interaction in higher and lower eukaryotes.

摘要

含核苷酸结合寡聚化结构域(NOD)的蛋白1(NOD1)在固有免疫的宿主-病原体界面中起关键作用,并触发免疫信号通路,促使促炎细胞因子成熟和释放。识别iE-DAP后,NOD1以ATP依赖的方式进行自我寡聚化,并与衔接分子受体相互作用蛋白2(RIP2)相互作用,以传播固有免疫信号并启动促炎免疫反应。这种相互作用(由NOD1和RIP2介导)有助于传递下游信号以激活NF-κB信号通路,并且已由各自的半胱天冬酶募集结构域(CARD)介导。由于结果不一致,所谓的CARD-CARD相互作用仍然存在矛盾。因此,为了了解相互作用的模式和性质,采用了结构生物信息学方法。对建模的1:1异源二聚体复合物进行的分子动力学模拟表明,NOD1CARD的Ia型界面和RIP2CARD的Ib型界面可能是上述相互作用的合适界面。此外,我们发现了三种动态稳定的异源三聚体复合物,NOD1与RIP2的比例为1:2(两个数字)和2:1。其中,在第一个三聚体复合物中,发现一个I型NOD1-RIP2异源二聚体使用其IIa型和IIIa型界面与一个RIP2CARD相互作用。然而,在第二个和第三个异源三聚体中,我们观察到NOD1和RIP2 CARD的I型同二聚体分别与RIP2CARD和NOD1CARD(在II型和III型界面)单独相互作用。总的来说,这项研究提供了对NOD1-RIP2寡聚体形成的结构和动力学见解,这对于理解高等和低等真核生物中NOD1介导的CARD-CARD相互作用的分子基础至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4456/5256935/d245138a2fd7/pone.0170232.g001.jpg

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