首页> 美国卫生研究院文献>Journal of Virology >The Endoplasmic Reticulum Lumenal Domain of the Adenovirus Type 2 E3-19K Protein Binds to Peptide-Filled and Peptide-Deficient HLA-A*1101 Molecules
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The Endoplasmic Reticulum Lumenal Domain of the Adenovirus Type 2 E3-19K Protein Binds to Peptide-Filled and Peptide-Deficient HLA-A*1101 Molecules

机译:2型腺病毒E3-19K蛋白质的内质网腔腔结构域与肽填充和肽缺乏的HLA-A * 1101分子结合

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摘要

E3-19K is a type I membrane glycoprotein expressed by adenoviruses (Ads) to modulate host antiviral immune responses. We have developed an expression system for the endoplasmic reticulum lumenal domain (residues 1 to 100) of Ad type 2 E3-19K tagged with a C-terminal His6 sequence in baculovirus-infected insect cells. In this system, recombinant E3-19K is secreted into the culture medium. A characterization of soluble E3-19K by analytical ultracentrifugation and circular dichroism showed that the protein is monomeric and adopts a stable and correctly folded tertiary structure. Using a gel mobility shift assay and analytical ultracentrifugation, we showed that soluble E3-19K associates with soluble peptide-filled and peptide-deficient HLA-A*1101 molecules. This is the first example of a viral immunomodulatory protein that interacts with conformationally distinct forms of class I major histocompatibility complex molecules. The E3-19K/HLA-A*1101 complexes formed in a 1:1 stoichiometry with equilibrium dissociation constants (Kd) of 50 ± 10 nM for peptide-filled molecules and of about 10 μM for peptide-deficient molecules. A temperature-dependent proteolysis study revealed that the association of E3-19K with peptide-deficient HLA-A*1101 molecules stabilizes the binding groove. Importantly, our studies showed that peptide-deficient HLA-A*1101 molecules sequestered by E3-19K are capable of binding antigenic peptides and maturing into peptide-filled molecules. This firmly establishes that E3-19K does not block binding of antigenic peptides. Together, our results suggest that Ads have evolved to exploit the late and early stages of the class I antigen presentation pathway.
机译:E3-19K是由腺病毒(Ads)表达的I型膜糖蛋白,可调节宿主的抗病毒免疫反应。我们已经开发了一种在杆状病毒感染的昆虫细胞中用C端His6序列标记的Ad 2型E3-19K内质网腔结构域(残基1至100)的表达系统。在该系统中,重组E3-19K被分泌到培养基中。通过分析超速离心和圆二色性表征可溶E3-19K,表明该蛋白质为单体,并具有稳定且正确折叠的三级结构。使用凝胶迁移率变动分析和分析超速离心,我们显示了可溶性E3-19K与可溶性肽填充和肽缺陷HLA-A * 1101分子缔合。这是病毒免疫调节蛋白的第一个例子,它与I类主要组织相容性复合物分子的构象不同形式相互作用。 E3-19K / HLA-A * 1101复合物以1:1的化学计量比形成,平衡解离常数(Kd)对于肽填充的分子为50±10 nM,对于肽缺失的分子为约10μM。一项与温度有关的蛋白水解研究表明,E3-19K与缺乏肽的HLA-A * 1101分子的缔合可稳定结合槽。重要的是,我们的研究表明,E3-19K螯合的肽缺陷型HLA-A * 1101分子能够结合抗原肽并成熟为肽填充的分子。这牢固地证明E3-19K不会阻断抗原肽的结合。在一起,我们的结果表明,广告已经发展到利用I类抗原呈递途径的晚期和早期。

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