首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >STRUCTURAL FEATURES OF THE INVARIANT CHAIN FRAGMENT CLIP CONTROLLING RAPID RELEASE FROM HLA-DR MOLECULES AND INHIBITION OF PEPTIDE BINDING
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STRUCTURAL FEATURES OF THE INVARIANT CHAIN FRAGMENT CLIP CONTROLLING RAPID RELEASE FROM HLA-DR MOLECULES AND INHIBITION OF PEPTIDE BINDING

机译:控制HLA-DR分子快速释放的恒定链片段片段的结构特征和肽结合的抑制

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摘要

The invariant chain (Ii) prevents binding of ligands to major histocompatibility complex (MHC) class II molecules in the endoplasmic reticulum and during intracellular transport, Stepwise removal of the Ii in a trans-Golgi compartment renders MHC class II molecules accessible for peptide loading, with CLIP (class II-associated Ii peptides) as the final fragment to be released. Here we show that CLIP can be subdivided into distinct functional regions. The C-terminal segment (residues 92-105) of the CLIP-(81-105) fragment mediates inhibition of self- and antigenic peptide binding to HLA-DR2 molecules, In contrast, the N-terminal segment CLIP-(81-98) binds to the Staphylococcus aureus enterotoxin B contact site outside the peptide-binding groove on the alpha 1 domain and does not interfere with peptide binding. Its functional significance appears to lie in the contribution to CLIP removal: the dissociation of CLIP-(81-105) is characterized by a fast off-rate, which is accelerated at endosomal pH, whereas in the absence of the N-terminal CLIP-(81-91), the off-rate of C-terminal CLIP-(92-105) is slow and remains unaltered at low pH. Mechanistically, the N-terminal segment of CLIP seems to prevent tight interactions of CLIP side chains with specificity pockets in the peptide-binding groove that normally occurs during maturation of long-lived class II-peptide complexes. [References: 50]
机译:不变链(Ii)可防止配体与内质网和细胞内运输过程中的主要组织相容性复合物(MHC)II类分子结合,在高尔基体反式区室中逐步去除Ii使得MHC II类分子可用于肽加载, CLIP(II类相关的Ii肽)作为最终片段被释放。在这里,我们显示CLIP可以细分为不同的功能区域。 CLIP-(81-105)片段的C末端片段(残基92-105)介导抑制自身和抗原肽与HLA-DR2分子结合,相反,N末端片段CLIP-(81-98 )结合到金黄色葡萄球菌肠毒素B接触位点的alpha 1域上的肽结合槽之外,并且不干扰肽结合。它的功能意义似乎在于对CLIP去除的贡献:CLIP-(81-105)的解离具有快速的解离速率,该速率在内体pH值下加速,而在没有N端CLIP-的情况下(81-91),C末端CLIP-(92-105)的脱速率缓慢,并且在低pH值下保持不变。从机理上讲,CLIP的N末端片段似乎阻止了CLIP侧链与肽结合槽中的特异性口袋的紧密相互作用,而后者通常是在长寿命的II类-肽复合物成熟期间发生的。 [参考:50]

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