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来自腺病毒2的E3/19K是一种免疫颠覆蛋白,它与一个调节主要组织相容性复合体I类蛋白细胞内运输的结构基序结合。

E3/19K from adenovirus 2 is an immunosubversive protein that binds to a structural motif regulating the intracellular transport of major histocompatibility complex class I proteins.

作者信息

Jefferies W A, Burgert H G

机构信息

Department of Microbiology, University of British Columbia, Vancouver, Canada.

出版信息

J Exp Med. 1990 Dec 1;172(6):1653-64. doi: 10.1084/jem.172.6.1653.

Abstract

We have previously expressed in transgenic mice a chimeric H-2Kd/Kk protein called C31, which contains the extracellular alpha 1 domain of Kd, whereas the rest of the molecule is of Kk origin. This molecule functions as a restriction element for alloreactive and influenza A-specific cytotoxic T lymphocytes (CTL) but is only weakly expressed at the cell surface of splenocytes. Here, we show that the low cell surface expression is the result of slow intracellular transport and processing of the C31 protein. A set of hybrid molecules between Kd and Kk were used to localize the regions in major histocompatibility complex (MHC) molecules that are important for their intracellular transport and to further localize the structures responsible for binding to the adenovirus 2 E3/19K protein. This protein appears to be an important mediator of adenovirus persistence. It acts by binding to the immaturely glycosylated forms of MHC class I proteins in the endoplasmic reticulum (ER), preventing their passage to the cell surface and thereby reducing the recognition of infected cells by virus-specific T cells. We find the surprising result that intracellular transport and E3/19K binding are controlled primarily by the first half of the second domain of Kd, thus localizing these phenomena to the five polymorphic residues in this region of the Kd protein. This result implies that the E3/19K protein may act by inhibiting peptide binding or by disrupting the oligomerization of MHC class I molecules required for transport out of the ER. Alternatively, the E3/19K protein may inhibit the function of a positively acting transport molecule necessary for cell surface expression of MHC class I molecules.

摘要

我们之前已在转基因小鼠中表达了一种名为C31的嵌合H-2Kd/Kk蛋白,它包含Kd的细胞外α1结构域,而分子的其余部分源自Kk。该分子作为同种异体反应性和甲型流感特异性细胞毒性T淋巴细胞(CTL)的限制元件发挥作用,但在脾细胞的细胞表面仅微弱表达。在此,我们表明低细胞表面表达是C31蛋白细胞内转运和加工缓慢的结果。使用一组Kd和Kk之间的杂交分子来定位主要组织相容性复合体(MHC)分子中对其细胞内转运重要的区域,并进一步定位负责与腺病毒2 E3/19K蛋白结合的结构。这种蛋白似乎是腺病毒持续存在的重要介质。它通过与内质网(ER)中未成熟糖基化形式的MHC I类蛋白结合发挥作用,阻止它们转运到细胞表面,从而减少病毒特异性T细胞对感染细胞的识别。我们发现了一个惊人的结果,即细胞内转运和E3/19K结合主要由Kd第二个结构域的前半部分控制,从而将这些现象定位到Kd蛋白该区域的五个多态性残基上。这一结果意味着E3/19K蛋白可能通过抑制肽结合或破坏ER中转运所需的MHC I类分子的寡聚化来发挥作用。或者,E3/19K蛋白可能抑制MHC I类分子细胞表面表达所需的正向作用转运分子的功能。

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