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深入了解 TLR 细胞质 Toll/白细胞介素-1 受体结构域的序列结构关系,有助于理解哺乳动物 TLR2 异二聚体的保守功能。

Insight into the sequence-structure relationship of TLR cytoplasm's Toll/Interleukin-1 receptor domain towards understanding the conserved functionality of TLR 2 heterodimer in mammals.

机构信息

Department of Bioinformatics, Maulana Abul Kalam Azad University of Technology, Kolkata, India.

National Centre for Cell Science, Pune, India.

出版信息

J Biomol Struct Dyn. 2021 Sep;39(15):5348-5357. doi: 10.1080/07391102.2020.1786457. Epub 2020 Jul 8.

DOI:10.1080/07391102.2020.1786457
PMID:32643540
Abstract

The signaling response of TLR2 to ligands has always been as a homodimer or in heterodimerization with TLR1/TLR6. The Toll/Interleukin-1 Receptor (TIR) domain of the TLR cytoplasmic region regulates the dimerization and interactions with adaptor molecules to build an active signaling complex. To understand the conservation of functionality of the TLR2-heterodimers between the distantly related species human(h) and mice(m), the pattern of TIR-TIR interaction in heterodimers has been studied through the sequence-structural point of view. Comparative analysis of primary sequence and structural pattern of TLRs(1/2/6) corroborates higher sequence homology between TLR1 and TLR6. Molecular docking analysis of TLR2-TLR1 and TLR2-TLR6 cytoplasmic dimers in both mouse and human have identified that for interaction the BB loop/near-BB loop residues of TLR2 are involved with the near-DD loop of TLR1 and DD loop residues of TLR6 within the TIR domains, which may cause to differential signaling. Molecular dynamics simulation of dimers for both human and mice species recognize stable interface between near-BB/BB loop region of TLR2 and discrete near-DD and DD loop region of TLR1 and TLR6 respectively. The observed dimerization pattern in both the species is further supported by Alanine scanning mutation study. However, Solvent Accessible Surface Area (SASA) of BB and DD loop regions of the cytoplasmic monomers and the heterodimers suggests that while TLR2 BB loop is actively associated as the dimer interface with its heterodimer partners in both the species, the DD loop acts as the active interfacing region in hTLR1 and mTLR6. Communicated by Ramaswamy H. Sarma.

摘要

TLR2 配体的信号转导反应一直是同源二聚体或与 TLR1/TLR6 异源二聚体化。TLR 细胞质区域的 Toll/白细胞介素-1 受体 (TIR) 结构域调节二聚化和与衔接分子的相互作用,以构建活性信号复合物。为了了解人类(h)和小鼠(m)这两个远缘物种 TLR2 异源二聚体之间的功能保守性,通过序列-结构的角度研究了异源二聚体中 TIR-TIR 相互作用的模式。TLR(1/2/6)的一级序列和结构模式的比较分析证实 TLR1 和 TLR6 之间具有更高的序列同源性。在人和小鼠中 TLR2-TLR1 和 TLR2-TLR6 细胞质二聚体的分子对接分析表明,为了相互作用,TLR2 的 BB 环/近-BB 环残基与 TLR1 的近-DD 环和 TLR6 的 DD 环残基在 TIR 结构域内相互作用,这可能导致信号转导的差异。对人和小鼠种属的二聚体进行分子动力学模拟,分别识别 TLR2 近-BB/BB 环区域和 TLR1 和 TLR6 的离散近-DD 和 DD 环区域之间的稳定界面。在两种物种中观察到的二聚化模式进一步得到丙氨酸扫描突变研究的支持。然而,细胞质单体和异源二聚体的溶剂可及表面积 (SASA) 表明,尽管 TLR2 的 BB 环作为二聚体界面与两种物种中的异源二聚体伙伴积极相关,但 DD 环在 hTLR1 和 mTLR6 中充当活性界面区域。由 Ramaswamy H. Sarma 传达。

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