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核苷酸依赖性构象变化通过与抗原加工相关的转运体指导肽的输出。

Nucleotide-dependent conformational changes direct peptide export by the transporter associated with antigen processing.

作者信息

Lee James, Manon Victor, Chen Jue

机构信息

Laboratory of Membrane Biophysics and Biology, the Rockefeller University, New York, NY 10065, USA.

Laboratory of Membrane Biophysics and Biology, the Rockefeller University, New York, NY 10065, USA; Weill Cornell/Rockefeller/Sloan Kettering Tri-Institutional MD-PhD Program, New York, NY 10065, USA.

出版信息

Immunity. 2025 Sep 9;58(9):2166-2175.e4. doi: 10.1016/j.immuni.2025.08.003. Epub 2025 Aug 29.

Abstract

The transporter associated with antigen processing (TAP) delivers peptide antigens from the cytoplasm into the endoplasmic reticulum (ER) for loading onto major histocompatibility complex class I (MHC-I) molecules. To examine the mechanisms of peptide transport and release into the ER, we determined cryo-electron microscopy structures of the human TAP heterodimer in multiple functional states along the transport cycle. In the inward-facing conformation, when the peptide translocation cavity within the TAP heterodimer is exposed to the cytosol, ATP binding strengthened intradomain assembly. Transition to the outward-facing conformation, when the transporter opens to the ER lumen, led to a complete reconfiguration of the peptide-binding site, facilitating peptide release. ATP hydrolysis opened the catalytically active nucleotide-binding consensus site, and the subsequent separation of the nucleotide-binding domains reset the transport cycle. These findings establish a comprehensive structural framework for understanding unilateral peptide transport, vanadate trapping, and trans-inhibition-an internal feedback mechanism that prevents excessive peptide accumulation and activation of the ER stress response.

摘要

抗原加工相关转运体(TAP)将肽抗原从细胞质转运至内质网(ER),以便加载到主要组织相容性复合体I类(MHC-I)分子上。为了研究肽转运及释放到内质网中的机制,我们确定了人TAP异二聚体在转运循环中多个功能状态下的冷冻电镜结构。在内向构象中,当TAP异二聚体内的肽转运腔暴露于胞质溶胶时,ATP结合增强了结构域内组装。向外向构象转变时,即转运体向内质网腔开放时,导致肽结合位点完全重新配置,促进肽释放。ATP水解打开了具有催化活性的核苷酸结合共有位点,随后核苷酸结合结构域的分离重置了转运循环。这些发现为理解单向肽转运、钒酸盐捕获和反式抑制——一种防止肽过度积累和内质网应激反应激活的内部反馈机制——建立了一个全面的结构框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eee5/12422388/7b3f35e9a4ec/nihms-2104708-f0001.jpg

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