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首页> 外文期刊>Brazilian Journal of Medical and Biological Research >The quality control of glycoprotein folding in the endoplasmic reticulum, a trip from trypanosomes to mammals
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The quality control of glycoprotein folding in the endoplasmic reticulum, a trip from trypanosomes to mammals

机译:内质网糖蛋白折叠的质量控制,从锥虫到哺乳动物的旅程

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摘要

The present review deals with the stages of synthesis and processing of asparagine-linked oligosaccharides occurring in the lumen of the endoplasmic reticulum and their relationship to the acquisition by glycoproteins of their proper tertiary structures. Special emphasis is placed on reactions taking place in trypanosomatid protozoa since their study has allowed the detection of the transient glucosylation of glycoproteins catalyzed by UDP-Glc:glycoprotein glucosyltransferase and glucosidase II. The former enzyme has the unique property of covalently tagging improperly folded conformations by catalyzing the formation of protein-linked Glc1Man7GlcNAc2, Glc1Man8GlcNac2 and Glc1Man9GlcNAc2 from the unglucosylated proteins. Glucosyltransferase is a soluble protein of the endoplasmic reticulum that recognizes protein domains exposed in denatured but not in native conformations (probably hydrophobic amino acids) and the innermost N-acetylglucosamine unit that is hidden from macromolecular probes in most native glycoproteins. In vivo, the glucose units are removed by glucosidase II. The influence of oligosaccharides in glycoprotein folding is reviewed as well as the participation of endoplasmic reticulum chaperones (calnexin and calreticulin) that recognize monoglucosylated species in the same process. A model for the quality control of glycoprotein folding in the endoplasmic reticulum, i.e., the mechanism by which cells recognize the tertiary structure of glycoproteins and only allow transit to the Golgi apparatus of properly folded species, is discussed. The main elements of this control are calnexin and calreticulin as retaining components, the UDP-Glc:glycoprotein glucosyltransferase as a sensor of tertiary structures and glucosidase II as the releasing agent.
机译:本文综述了内质网腔中天冬酰胺连接寡糖的合成和加工阶段及其与糖蛋白获得适当三级结构的关系。由于锥虫原虫中发生的反应特别受关注,因为他们的研究已允许检测由UDP-Glc:糖蛋白葡糖基转移酶和葡糖苷酶II催化的糖蛋白的瞬时糖基化。前一种酶具有独特的性质,可通过催化非糖基化蛋白形成的蛋白质连接的Glc1Man7GlcNAc2,Glc1Man8GlcNac2和Glc1Man9GlcNAc2共价标记不正确折叠的构象。葡萄糖基转移酶是一种内质网的可溶性蛋白,可识别以变性但非天然构象(可能是疏水氨基酸)暴露的蛋白质结构域和大多数天然糖蛋白中大分子探针中隐藏的最里面的N-乙酰氨基葡萄糖单元。在体内,葡萄糖单位被葡糖苷酶II去除。综述了寡糖对糖蛋白折叠的影响,以及在同一过程中识别单糖基化物质的内质网伴侣(钙粘蛋白和钙网蛋白)的参与。讨论了内质网中糖蛋白折叠质量控制的模型,即细胞识别糖蛋白三级结构并仅允许其转移到正确折叠物种的高尔基体的机制。该控制的主要元素是钙粘蛋白和钙网蛋白作为保留成分,UDP-Glc:糖蛋白葡糖基转移酶作为三级结构的传感器,葡糖苷酶II作为释放剂。

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