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首页> 外文期刊>The Journal of biological chemistry >A general chemical crosslinking strategy for structural analyses of weakly interacting proteins applied to preTCR–pMHC complexes
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A general chemical crosslinking strategy for structural analyses of weakly interacting proteins applied to preTCR–pMHC complexes

机译:弱相互作用蛋白质结构分析的一般化学交联策略,应用于Pretcr-PMHC复合物

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T lymphocytes discriminate between healthy and infected or cancerous cells via T-cell receptor-mediated recognition of peptides bound and presented by cell-surface-expressed major histocompatibility complex molecules (MHCs). Pre-T-cell receptors (preTCRs) on thymocytes foster development of αβT lymphocytes through their β chain interaction with MHC displaying self-peptides on thymic epithelia. The specific binding of a preTCR with a peptide–MHC complex (pMHC) has been identified previously as forming a weak affinity complex with a distinct interface from that of mature αβTCR. However, a lack of appropriate tools has limited prior efforts to investigate this unique interface. Here we designed a small-scale linkage screening protocol using bismaleimide linkers for determining residue-specific distance constraints between transiently interacting protein pairs in solution. Employing linkage distance restraint-guided molecular modeling, we report the oriented solution docking geometry of a preTCRβ–pMHC interaction. The linkage model of preTCRβ–pMHC complex was independently verified with paramagnetic pseudocontact chemical shift (PCS) NMR of the unlinked protein mixtures. Using linkage screens, we show that the preTCR binds with differing affinities to peptides presented by MHC in solution. Moreover, the C-terminal peptide segment is a key determinant in preTCR–pMHC recognition. We also describe the process for future large-scale production and purification of the linked constructs for NMR, X-ray crystallography, and single-molecule electron microscopy studies.
机译:T淋巴细胞通过T细胞受体介导的肽鉴定在细胞表面表达的主要组织相容性复合分子(MHCs)结合并呈递的肽的肽识别和感染或癌细胞之间。 T细胞受体(PRETCRS)胸腺细胞培养αβT淋巴细胞的发展通过β链与MHC展示胸腺上皮细胞的β链相互作用。预先用肽-MHC复合物(PMHC)的特异性结合已鉴定为形成弱亲和力络合物,其与来自成熟αβTCR的不同界面。但是,缺乏适当的工具在努力的情况下有限,以调查这种独特的界面。在这里,我们设计了一种小型连杆筛选方案,该方案使用双边酰亚胺连接器来确定溶液瞬时相互作用蛋白对之间的残留物距离约束。采用连杆距离约束引导分子建模,我们报告了普拉克-PMHC相互作用的面向溶液对接几何形状。普拉克-PMHC复合物的连锁模型独立地用解释蛋白质混合物的顺磁性伪变性化学换档(PCS)NMR验证。使用连杆屏幕,我们表明PretCR与溶液中MHC呈递的肽的不同亲和力结合。此外,C-末端肽段是预见的PMHC识别中的关键决定因素。我们还描述了对NMR,X射线晶体学和单分子电子显微镜研究的未来大规模生产和纯化的工艺。

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