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The Cotranslational Maturation of the Type I Membrane Glycoprotein Tyrosinase: The Heat Shock Protein 70 System Hands Off to the Lectin-based Chaperone System

机译:I型膜糖蛋白酪氨酸酶的共翻译成熟:热休克蛋白70系统移交给基于凝集素的伴侣系统。

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摘要

The maturation of eukaryotic secretory cargo initiates cotranslationally and cotranslocationally as the polypeptide chain emerges into the endoplasmic reticulum lumen. Here, we characterized the cotranslational maturation pathway for the human type I membrane glycoprotein tyrosinase. To recapitulate the cotranslational events, including glycosylation, signal sequence cleavage, chaperone binding, and oxidation, abbreviated transcripts lacking a stop codon were in vitro translated in the presence of semipermeabilized melanocyte membranes. This created a series of ribosome/translocon-arrested chains of increasing lengths, simulating intermediates in the cotranslational folding process. Initially, nascent chains were found to associate with the heat shock protein (Hsp) 70 family member BiP. As the nascent chains elongated and additional glycans were transferred, BiP binding rapidly decreased and the lectin-based chaperone system was recruited in its place. The lectin chaperone calnexin bound to the nascent chain after the addition of two glycans, and calreticulin association followed upon the addition of a third. The glycan-specific oxidoreductase ERp57 was cross-linked to tyrosinase when calnexin and calreticulin were associated. This timing coincided with the formation of disulfide bonds within tyrosinase and the cleavage of its signal sequence. Therefore, tyrosinase maturation initiates cotranslationally with the Hsp70 system and is handed off to the lectin chaperone system that first uses calnexin before calreticulin. Interestingly, divergence in the maturation pathways of wild-type and mutant albino tyrosinase can already be observed for translocon-arrested nascent chains.
机译:当多肽链进入内质网腔时,真核分泌物的成熟通过翻译和共易位而开始。在这里,我们表征了人类I型膜糖蛋白酪氨酸酶的共翻译成熟途径。为了概括共翻译事件,包括糖基化,信号序列切割,伴侣结合和氧化,在缺乏半透化黑素细胞膜的情况下,体外翻译了缺少终止密码子的缩写转录本。这创建了一系列长度不断增加的核糖体/转运子阻滞链,模拟了共翻译折叠过程中的中间体。最初,发现新生链与热激蛋白(Hsp)70家族成员BiP相关。随着新生链的延长和其他聚糖的转移,BiP结合迅速减少,并且基于凝集素的分子伴侣系统被招募代替。在添加两个聚糖后,凝集素伴侣钙粘蛋白与新生链结合,在添加第三个聚糖后,钙网蛋白缔合。当钙结合蛋白和钙网蛋白结合时,聚糖特异性氧化还原酶ERp57与酪氨酸酶交联。该时间与酪氨酸酶内二硫键的形成及其信号序列的切割相吻合。因此,酪氨酸酶成熟与Hsp70系统共翻译,并转交给首先使用钙蛋白的人凝集素伴侣系统,然后再使用钙网蛋白。有趣的是,野生型和突变型白化酪氨酸酶的成熟途径中的分歧已经可以通过转位阻滞的新生链观察到。

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