内质网伴侣在蛋白质折叠和质量控制中的作用

Benjamin M Adams, Nathan P Canniff, Kevin P Guay, Daniel N Hebert
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引用次数: 0

摘要

分子伴侣有助于新生链在细胞内折叠。分子伴侣还有助于质量控制决策,因为持续的分子伴侣结合有助于将末端折叠错误的蛋白质分类降解。内质网(ER)中有两个主要的分子伴侣家族,它们可以帮助蛋白质达到其原生结构,并评估成熟过程的保真度。内质网 Hsp70 合子 BiP 支持腺嘌呤核苷酸调节的与具有暴露疏水区域的非原生蛋白质的结合。与此相反,依赖于碳水化合物的伴侣系统涉及膜蛋白 calnexin 及其可溶性同系物 calreticulin,可识别暴露的亲水蛋白修饰的特定糖型,其组成由一系列糖苷酶和转移酶控制。在这里,我们对这些不同伴侣系统的特性、作用机制和功能进行了比较和对比,这些伴侣系统并行或共同工作,为穿过真核生物分泌途径的大量底物提供帮助。
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The Role of Endoplasmic Reticulum Chaperones in Protein Folding and Quality Control.

Molecular chaperones assist the folding of nascent chains in the cell. Chaperones also aid in quality control decisions as persistent chaperone binding can help to sort terminal misfolded proteins for degradation. There are two major molecular chaperone families in the endoplasmic reticulum (ER) that assist proteins in reaching their native structure and evaluating the fidelity of the maturation process. The ER Hsp70 chaperone, BiP, supports adenine nucleotide-regulated binding to non-native proteins that possess exposed hydrophobic regions. In contrast, the carbohydrate-dependent chaperone system involving the membrane protein calnexin and its soluble paralogue calreticulin recognize a specific glycoform of an exposed hydrophilic protein modification for which the composition is controlled by a series of glycosidases and transferases. Here, we compare and contrast the properties, mechanisms of action and functions of these different chaperones systems that work in parallel, as well as together, to assist a large variety of substrates that traverse the eukaryotic secretory pathway.

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来源期刊
CiteScore
3.30
自引率
0.00%
发文量
7
期刊介绍: Molecular biology has been providing an overwhelming amount of data on the structural components and molecular machineries of the cell and its organelles and the complexity of intra- and intercellular communication. The molecular basis of hereditary and acquired diseases is beginning to be unravelled, and profound new insights into development and evolutionary biology have been gained from molecular approaches. Progress in Molecular and Subcellular Biology summarises the most recent developments in this fascinating area of biology.
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