首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >E2-25K mediates US11-triggered retro-translocation of MHC class I heavy chains in a permeabilized cell system
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E2-25K mediates US11-triggered retro-translocation of MHC class I heavy chains in a permeabilized cell system

机译:E2-25K在透化细胞系统中介导US11触发的MHC I类重链的逆向易位

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In cells expressing human cytornegalovirus US11 protein, newly synthesized MHC class I heavy chains (HCs) are rapidly dislocated from the endoplasmic reticulum (ER) and degraded in the cytosol, a process that is similar to ER-associated degradation (ERAD), the pathway used for degradation of misfolded ER proteins. US11-triggered movement of HCs into the cytosol requires polyubiquitination, but it is unknown which ubiquitin-conjugating and ubiquitin-ligase enzymes are involved. To identify the ubiquitin-conjugating enzyme (E2) required for dislocation, we used a permeabilized cell system, in which endogenous cytosol can be replaced by cow liver cytosol. By fractionating the cytosol, we show that E2-25K can serve as the sole E2 required for dislocation of HCs in vitro. Purified recombinant E2-25K, together with components that convert this E2 to the active E2-ubiquitin thiolester form, can substitute for crude cytosol. E2-25K cannot be replaced by the conjugating enzymes HsUbc7/Ube2G2 or UIbe2G1, even though HsUbc7/Ube2G2 and its yeast homolog Ubc7p are known to participate in ERAD. The activity of E2-25K, as measured by ubiquitin dimer formation, is strikingly enhanced when added to permeabilized cells, likely by membrane-bound ubiquitin protein ligases. To identify these ligases, we tested RING domains of various ligases for their activation of E2-25K in vitro. We found that RING domains of gp78/AMFR, a ligase previously implicated in ERAD, and MARCHVII/axotrophin, a ligase of unknown function, greatly enhanced the activity of E2-25K. We conclude that in permeabilized, US11-expressing cells polyubiquitination of the HC substrate can be catalyzed by E2-25K, perhaps in cooperation with the ligase MARCHVII/axotrophin.
机译:在表达人类巨细胞病毒US11蛋白的细胞中,新合成的I类MHC重链(HCs)从内质网(ER)迅速脱位并在胞质溶胶中降解,这一过程类似于ER相关降解(ERAD)的途径用于降解错误折叠的ER蛋白。 US11触发的HCs向细胞质的移动需要多泛素化作用,但是尚不知道哪些泛素结合酶和泛素连接酶参与其中。为了确定脱位所需的泛素结合酶(E2),我们使用了透化的细胞系统,其中内源性细胞质可以被牛肝细胞质替代。通过分级分离胞质溶胶,我们显示E2-25K可以充当体外HCs脱位所需的唯一E2。纯化的重组E2-25K,连同将E2转化为活性E2-泛素硫醇酯形式的成分,可以代替粗制的细胞质。即使已知HsUbc7 / Ube2G2及其酵母同系物Ubc7p参与ERAD,也无法用结合酶HsUbc7 / Ube2G2或UIbe2G1代替E2-25K。当通过泛素二聚体形成测量时,E2-25K的活性显着增强,可能是通过膜结合的泛素蛋白连接酶添加到通透的细胞中。为了鉴定这些连接酶,我们测试了各种连接酶的RING域在体外对E2-25K的激活。我们发现,gp78 / AMFR的RING域(以前与ERAD有关的连接酶)和MARCHVII / axotrophin(一种功能未知的连接酶)大大增强了E2-25K的活性。我们得出的结论是,在透化的,表达US11的细胞中,HC底物的多聚泛素化可以被E2-25K催化,也许与连接酶MARCHVII / axotrophin协同作用。

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