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首页> 外文期刊>The journal of immunology >The Varicellovirus UL49.5 Protein Blocks the Transporter Associated with Antigen Processing (TAP) by Inhibiting Essential Conformational Transitions in the 6+6 Transmembrane TAP Core Complex
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The Varicellovirus UL49.5 Protein Blocks the Transporter Associated with Antigen Processing (TAP) by Inhibiting Essential Conformational Transitions in the 6+6 Transmembrane TAP Core Complex

机译:水痘病毒UL49.5蛋白通过抑制6 + 6跨膜TAP核心复合物中的必需构象转变来阻断与抗原加工(TAP)相关的转运蛋白。

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摘要

TAP translocates virus-derived peptides from the cytosol into the endoplasmic reticulum, where the peptides are loaded onto MHC class I molecules. This process is crucial for the detection of virus-infected cells by CTL that recognize the MHC class I-peptide complexes at the cell surface. The varicellovirus bovine herpesvirus 1 encodes a protein, UL49.5, that acts as a potent inhibitor of TAP. UL49.5 acts in two ways, as follows: 1) by blocking conformational changes of TAP required for the translocation of peptides into the endoplasmic reticulum, and 2) by targeting TAP1 and TAP2 for proteasomal degradation. At present, it is unknown whether UL49.5 interacts with TAP1, TAP2, or both. The contribution of other members of the peptide-loading complex has not been established. Using TAP-deficient cells reconstituted with wild-type and recombinant forms of TAP1 and TAP2, TAP was defined as the prime target of UL49.5 within the peptide-loading complex. The presence of TAP1 and TAP2 was required for efficient interaction with UL49.5. Using deletion mutants of TAP1 and TAP2, the 6+6 transmembrane core complex of TAP was shown to be sufficient for UL49.5 to interact with TAP and block its function. However, UL49.5-induced inhibition of peptide transport was most efficient in cells expressing full-length TAP1 and TAP2. Inhibition of TAP by UL49.5 appeared to be independent of the presence of other peptide-loading complex components, including tapasin. These results demonstrate that UL49.5 acts directly on the 6+6 transmembrane TAP core complex of TAP by blocking essential conformational transitions required for peptide transport.
机译:TAP将病毒衍生的肽从胞质溶胶中转移到内质网,在此将肽加载到MHC I类分子上。这个过程对于通过CTL检测在细胞表面识别MHC I类肽复合物的病毒感染细胞至关重要。痘苗病毒牛疱疹病毒1编码一种蛋白质UL49.5,可作为TAP的有效抑制剂。 UL49.5以两种方式起作用,如下所示:1)通过阻止将肽易位进入内质网所需的TAP的构象变化,以及2)通过靶向TAP1和TAP2进行蛋白酶体降解。目前,尚不清楚UL49.5是否与TAP1,TAP2或两者交互。尚未确定肽负载复合物的其他成员的贡献。使用用野生型和重组形式的TAP1和TAP2重构的TAP缺陷细胞,将TAP定义为肽加载复合物中UL49.5的主要靶标。 TAP1和TAP2的存在是与UL49.5进行有效交互所必需的。使用TAP1和TAP2的缺失突变体,显示TAP的6 + 6跨膜核心复合物足以使UL49.5与TAP相互作用并阻断其功能。但是,UL49.5诱导的肽转运抑制在表达全长TAP1和TAP2的细胞中最有效。 UL49.5对TAP的抑制作用似乎与其他载有肽的复杂成分(包括胰蛋白酶)的存在无关。这些结果表明,UL49.5通过阻断肽转运所需的必要构象转变,直接作用于TAP的6 + 6跨膜TAP核心复合物。

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