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TAPBPR 采用配体非依赖性对接机制来伴侣 MR1 分子。

TAPBPR employs a ligand-independent docking mechanism to chaperone MR1 molecules.

机构信息

Center for Computational and Genomic Medicine, Department of Pathology and Laboratory Medicine, The Children's Hospital of Philadelphia, Philadelphia, PA, USA.

Department of Biochemistry and Biophysics, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, USA.

出版信息

Nat Chem Biol. 2022 Aug;18(8):859-868. doi: 10.1038/s41589-022-01049-9. Epub 2022 Jun 20.

Abstract

Chaperones tapasin and transporter associated with antigen processing (TAP)-binding protein related (TAPBPR) associate with the major histocompatibility complex (MHC)-related protein 1 (MR1) to promote trafficking and cell surface expression. However, the binding mechanism and ligand dependency of MR1/chaperone interactions remain incompletely characterized. Here in vitro, biochemical and computational studies reveal that, unlike MHC-I, TAPBPR recognizes MR1 in a ligand-independent manner owing to the absence of major structural changes in the MR1 α helix between empty and ligand-loaded molecules. Structural characterization using paramagnetic nuclear magnetic resonance experiments combined with restrained molecular dynamics simulations reveals that TAPBPR engages conserved surfaces on MR1 to induce similar adaptations to those seen in MHC-I/TAPBPR co-crystal structures. Finally, nuclear magnetic resonance relaxation dispersion experiments using F-labeled diclofenac show that TAPBPR can affect the exchange kinetics of noncovalent metabolites with the MR1 groove, serving as a catalyst. Our results support a role of chaperones in stabilizing nascent MR1 molecules to enable loading of endogenous or exogenous cargo.

摘要

伴侣蛋白 tapasin 和抗原加工相关转运蛋白(TAP)结合蛋白相关(TAPBPR)与主要组织相容性复合体(MHC)相关蛋白 1(MR1)结合,促进运输和细胞表面表达。然而,MR1/伴侣蛋白相互作用的结合机制和配体依赖性仍不完全清楚。本研究通过体外生化和计算研究表明,与 MHC-I 不同,由于 MR1α 螺旋在空载和配体加载分子之间没有主要结构变化,TAPBPR 以非配体依赖的方式识别 MR1。使用顺磁核磁共振实验结合约束分子动力学模拟进行结构表征表明,TAPBPR 与 MR1 上的保守表面结合,诱导与 MHC-I/TAPBPR 共晶结构中观察到的相似适应。最后,使用 F 标记的双氯芬酸进行核磁共振弛豫弥散实验表明,TAPBPR 可以影响非共价代谢物与 MR1 凹槽的交换动力学,充当催化剂。我们的结果支持伴侣蛋白在稳定新生 MR1 分子以允许加载内源性或外源性货物方面的作用。

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