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Mannosidase activity of EDEM1 and EDEM2 depends on an unfolded state of their glycoprotein substrates

机译:EDEM1和EDEM2的甘露糖苷酶活性取决于其糖蛋白底物的未折叠状态

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摘要

Extensive mannose trimming of nascent glycoprotein N-glycans signals their targeting to endoplasmic reticulum-associated degradation (ERAD). ER mannosidase I (ERManI) and the EDEM protein family participate in this process. However, whether the EDEMs are truly mannosidases can be addressed only by measuring mannosidase activity in vitro. Here, we reveal EDEM1 and EDEM2 mannosidase activities in vitro. Whereas ERManI significantly trims free N-glycans, activity of the EDEMs is modest on free oligosaccharides and on glycoproteins. However, mannosidase activity of ERManI and the EDEMs is significantly higher on a denatured glycoprotein. The EDEMs associate with oxidoreductases, protein disulfide isomerase, and especially TXNDC11, enhancing mannosidase activity on glycoproteins but not on free N-glycans. The finding that substrate unfolded status increases mannosidase activity solves an important conundrum, as current models suggest general slow mannose trimming. As we show, misfolded or unfolded glycoproteins are subject to differentially faster trimming (and targeting to ERAD) than well-folded ones.
机译:新生糖蛋白N-聚糖的广泛甘露糖修整表明它们靶向内质网相关降解(ERAD)。 ER甘露糖苷酶I(ERManI)和EDEM蛋白家族参与此过程。但是,仅通过测量体外的甘露糖苷酶活性就可以确定EDEM是否为真正的甘露糖苷酶。在这里,我们揭示了EDEM1和EDEM2甘露糖苷酶的活性。 ERManI可以显着修剪游离的N-聚糖,而EDEM的活性在游离的寡糖和糖蛋白上适度。但是,ERManI和EDEM的甘露糖苷酶活性在变性的糖蛋白上明显更高。 EDEM与氧化还原酶,蛋白质二硫键异构酶,尤其是TXNDC11结合,增强了甘露糖苷酶对糖蛋白的活性,但对游离N-聚糖的活性却不增强。底物未折叠状态可增加甘露糖苷酶活性的发现解决了一个重要难题,因为当前模型表明甘露糖修整一般较慢。正如我们所展示的,错误折叠或未折叠的糖蛋白的修整(和靶向ERAD)的速度要快于折叠良好的糖蛋白。

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