Proteolytic processing and compartmentalization of the primary translation products of mammalian apolipoprotein mRNAs.

J I Gordon, H F Sims, A W Strauss, A M Scanu, C Edelstein, R E Byrne
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引用次数: 18

Abstract

The steps involved in the initial assembly of apolipoproteins and lipids into supramolecular arrays (nascent lipoprotein particles) are largely unknown. Examination of the proteolytic processing and compartmentalization of the primary translation products of apolipoprotein mRNAs represents one approach to deciphering the molecular details of lipoprotein assembly. The structures of the primary translation products of seven mammalian apolipoprotein mRNAs has been determined in the past several years. The organization of apolipoprotein signal peptides is typical of eukaryotic prepeptides, although an unusual degree of sequence conservation is present among the signal segments of apo AI, AIV, and E. For those apolipoprotein sequences studied in detail, SRP-dependent cotranslational translocation and proteolytic processing appears to be highly efficient and results in sequestration of the processed protein within the lumen of the endoplasmic reticulum (ER). However the mechanism by which these lipid-binding proteins avoid arrest during their translocation through the lipid bilayer of the ER membrane remains obscure. The two principal human HDL apolipoproteins undergo novel extracellular post-translational proteolytic processing, which results in removal of nonhomologous propeptides. The proteases responsible for proapo AI and AII processing appear to be different. The processing of these proapolipoproteins provides a potential series of steps for regulating the ordered assembly of HDL constituents.

哺乳动物载脂蛋白mrna主要翻译产物的蛋白水解加工和区隔化。
载脂蛋白和脂质最初组装成超分子阵列(新生脂蛋白颗粒)的步骤在很大程度上是未知的。检查载脂蛋白mrna的主要翻译产物的蛋白水解加工和区隔化是破译脂蛋白组装分子细节的一种方法。在过去的几年里,七种哺乳动物载脂蛋白mrna的主要翻译产物的结构已经被确定。载脂蛋白信号肽的组织结构是真核生物前肽的典型特征,尽管载脂蛋白AI、AIV和e的信号片段之间存在不同寻常的序列保守性。对于那些详细研究的载脂蛋白序列,srp依赖的共翻译易位和蛋白质水解加工似乎是高效的,并导致加工后的蛋白质在内质网(ER)的管腔内被隔离。然而,这些脂质结合蛋白在通过内质网膜的脂质双分子层转运时避免阻滞的机制仍然不清楚。两种主要的人类HDL载脂蛋白经过新的细胞外翻译后蛋白水解处理,导致非同源前肽的去除。负责proapo AI和AII加工的蛋白酶似乎不同。这些原载脂蛋白的加工为调节HDL成分的有序组装提供了一系列潜在的步骤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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