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通过分子动力学模拟研究 TRAF6 蛋白三聚体的结构特征。

Structural Characterization of the Trimerization of TRAF6 Protein Through Molecular Dynamics Simulations.

机构信息

Department of Biochemistry and Biophysics, University of Kalyani, Nadia, Kalyani, 741235, India.

出版信息

Interdiscip Sci. 2019 Sep;11(3):428-436. doi: 10.1007/s12539-017-0259-y. Epub 2017 Sep 11.

DOI:10.1007/s12539-017-0259-y
PMID:28895065
Abstract

The tumour necrosis factor (TNF) receptor-associated factor (TRAF) family of proteins having E3 ligase activity are the key molecules involved in cellular immune response pathways. TRAF6 is a unique member of the TRAF superfamily differing from other members of the family, owing to its specific interactions with molecules outside the TNF receptor superfamily. The C-terminal domain of TRAF proteins contains the catalytic residues and are known to be involved in self-oligomerization forming a mushroom-shaped trimeric structure, which is the functional form of the protein. However, the monomeric crystal structure of TRAF6 C-terminal domain has been already determined, but the trimeric structure of the same is still not available. We here applied computational structural modelling and molecular dynamics simulations studies to get insights into the molecular interactions involved in determining the trimeric structure of the TRAF6 C-terminal domain. The non-availability of the trimeric structure of the TRAF6 C-terminal domain prevented the elucidation of the molecular mechanism of many different biological processes. Our results suggest that the trimer complex is transient in nature. The amino acid residues Lys340 and Glu345 in the coiled coil domain in the C-terminus of TRAF6 play a critical role in trimer structure formation. This structural modelling study may therefore be utilized to obtain the experimentally validated trimeric structure of this important protein.

摘要

肿瘤坏死因子(TNF)受体相关因子(TRAF)家族的蛋白具有 E3 连接酶活性,是参与细胞免疫反应途径的关键分子。TRAF6 是 TRAF 超家族的独特成员,与 TNF 受体超家族之外的分子特异性相互作用,不同于家族中的其他成员。TRAF 蛋白的 C 端结构域包含催化残基,已知参与自身寡聚化形成蘑菇形三聚体结构,这是蛋白质的功能形式。然而,TRAF6 C 端结构域的单体晶体结构已经确定,但该结构域的三聚体结构仍然未知。我们在这里应用计算结构建模和分子动力学模拟研究,深入了解决定 TRAF6 C 端结构域三聚体结构的分子相互作用。TRAF6 C 端结构域三聚体结构的不可用性阻止了对许多不同生物学过程的分子机制的阐明。我们的结果表明,三聚复合物在性质上是短暂的。TRAF6 C 端卷曲螺旋域中的氨基酸残基 Lys340 和 Glu345 在三聚体结构形成中起关键作用。因此,这项结构建模研究可用于获得该重要蛋白的实验验证的三聚体结构。

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