首页> 外文期刊>The Journal of Experomental Medicine >Retention of adenovirus E19 glycoprotein in the endoplasmic reticulum is essential to its ability to block antigen presentation.
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Retention of adenovirus E19 glycoprotein in the endoplasmic reticulum is essential to its ability to block antigen presentation.

机译:腺病毒E19糖蛋白在内质网中的保留对其阻断抗原呈递的能力至关重要。

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The E3/19K glycoprotein of adenovirus functions to diminish recognition of adenovirus-infected cells by major histocompatibility complex class I-restricted cytotoxic T lymphocytes (CTLs) by binding intracellular class I molecules and preventing them from reaching the plasma membrane. In the present study we have characterized the nature of the interaction between E3/19K and the H-2Kd (Kd) molecule. An E3/19K molecule genetically engineered to terminate six residues from its normal COOH terminus (delta E19), was found to associate with Kd in a manner indistinguishable from wild-type E3/19K. Unlike E3/19K, however, delta E19 was transported through the Golgi complex to the plasma membrane, where it could be detected biochemically and immunocytochemically using a monoclonal antibody specific for the lumenal domain of E3/19K. Importantly, delta E19 also differed from E3/19K in being unable to prevent the presentation of Kd-restricted viral proteins to CTLs. This is unlikely to be due to delta E19 having a lower avidity for Kd than E3/19K, since delta E19 was able to compete with E3/19K for Kd binding, both physically, and functionally in nullifying the E3/19K blockade of antigen presentation. These findings indicate that the ability of E3/19K to block antigen presentation is due solely to its ability to retain newly synthesized class I molecules in the endoplasmic reticulum.
机译:腺病毒E3 / 19K糖蛋白的功能是通过结合细胞内I类分子并阻止其到达质膜,从而减少主要组织相容性I类限制性细胞毒性T淋巴细胞(CTL)对腺病毒感染细胞的识别。在本研究中,我们已经表征了E3 / 19K与H-2Kd(Kd)分子之间相互作用的性质。发现经过基因工程改造以终止其正常COOH末端的六个残基(δE19)的E3 / 19K分子与Kd缔合的方式与野生型E3 / 19K没有区别。但是,与E3 / 19K不同,δE19通过高尔基体转运到质膜,在那里可以使用对E3 / 19K腔结构域特异的单克隆抗体进行生化和免疫细胞化学检测。重要的是,δE19与E3 / 19K的不同还在于它无法阻止Kd限制性病毒蛋白向CTL的呈递。这不太可能是由于δE19对Kd的亲和力低于E3 / 19K,因为δE19能够在物理上和功能上与E3 / 19K竞争Kd结合,从而使对抗原呈递的E3 / 19K阻断无效。这些发现表明,E3 / 19K阻断抗原呈递的能力仅归因于其将新合成的I类分子保留在内质网中的能力。

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