首页> 美国卫生研究院文献>Cell Regulation >Separate Roles and Different Routing of Calnexin and ERp57 in Endoplasmic Reticulum Quality Control Revealed by Interactions with Asialoglycoprotein Receptor Chains
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Separate Roles and Different Routing of Calnexin and ERp57 in Endoplasmic Reticulum Quality Control Revealed by Interactions with Asialoglycoprotein Receptor Chains

机译:Calnexin和ERp57在与内质网糖蛋白受体链相互作用揭示的内质网质量控制中的独立作用和不同途径

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摘要

The thiol oxidoreductase endoplasmic reticulum (ER)p57 interacts with newly synthesized glycoproteins through ternary complexes with the chaperones/lectins calnexin or calreticulin. On proteasomal inhibition calnexin and calreticulin concentrate in the pericentriolar endoplasmic reticulum-derived quality control compartment that we recently described. Surprisingly, ERp57 remained in an endoplasmic reticulum pattern. Using asialoglycoprotein receptor H2a and H2b as models, we determined in pulse-chase experiments that both glycoproteins initially bind to calnexin and ERp57. However, H2b, which will exit to the Golgi, dissociated from calnexin and remained bound for a longer period to ERp57, whereas the opposite was true for the endoplasmic reticulum-associated degradation substrate H2a that will go to the endoplasmic reticulum-derived quality control compartment. At 15°C, ERp57 colocalized with H2b adjacent to an endoplasmic reticulum-Golgi intermediate compartment marker. Posttranslational inhibition of glucose excision prolonged association of H2a precursor to calnexin but not to ERp57. Preincubation with a low concentration (15 μg/ml) of the glucosidase inhibitor castanospermine prevented the association of H2a to ERp57 but not to calnexin. This low concentration of castanospermine accelerated the degradation of H2a, suggesting that ERp57 protects the glycoprotein from degradation and not calnexin. Our results suggest an early chaperone-mediated sorting event with calnexin being involved in the quality control retention of molecules bound for endoplasmic reticulum-associated degradation and ERp57 giving initial protection from degradation and later assisting the maturation of molecules that will exit to the Golgi.
机译:硫醇氧化还原酶内质网(ER)p57通过与伴侣/凝集素钙连接蛋白或钙网蛋白的三元复合物与新合成的糖蛋白相互作用。关于蛋白酶体抑制作用,钙调蛋白和钙网蛋白浓缩在我们最近描述的源自中心粒内质网的质控区室中。出乎意料的是,ERp57保持内质网模式。使用去唾液酸糖蛋白受体H2a和H2b作为模型,我们在脉冲追踪实验中确定了这两种糖蛋白最初都与钙连蛋白和ERp57结合。然而,H2b(将离开高尔基体)从钙合蛋白上解离,并与ERp57的结合时间更长,而与内质网相关的降解底物H2a则相反,它将进入内质网来源的质量控制区。在15°C时,ERp57与H2b共定位于邻近内质网-高尔基体中间区室标记的位置。葡萄糖切除的翻译后抑制延长了H2a前体与钙连蛋白的结合,但不与ERp57结合。用低浓度(15μg/ ml)的葡糖苷酶抑制剂粟精胺预孵育可防止H2a与ERp57缔合,但与钙结合蛋白无关。粟精胺的这种低浓度加速了H2a的降解,表明ERp57保护糖蛋白免于降解而不是钙结合蛋白。我们的结果表明,早期的分子伴侣介导的分选事件与钙调蛋白参与质控与内质网相关降解结合的分子的质量控制保留有关,而ERp57则为降解提供了初步的保护,并随后协助了将离开高尔基体的分子成熟。

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