首页> 外文期刊>Biochemistry and Cell Biology >Apolipoprotein B100 biogenesis: a complex array of intracellular mechanisms regulating folding, stability, and lipoprotein assembly.
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Apolipoprotein B100 biogenesis: a complex array of intracellular mechanisms regulating folding, stability, and lipoprotein assembly.

机译:载脂蛋白B100生物发生:调控折叠,稳定性和脂蛋白组装的复杂细胞内机制。

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摘要

Apolipoprotein B100 (apoB) is a large amphipathic lipid-binding protein that is synthesized by hepatocytes and used to assemble and stabilize very low density lipoproteins (VLDL). It may have been derived through evolution from other lipid-associating proteins such as microsomal triglyceride transfer protein or vitellogenin. The correct folding of apoB requires assistance from chaperone proteins in co-translational lipidation, disulfide bond formation, and glycosylation. Any impairment in these processes results in co-translational targeting of the misfolded apoB molecule for proteasomal degradation. In fact, most of the regulation of apoB production is mediated by intracellular degradation. ApoB that misfolds post-translationally, perhaps as a result of oxidative stress, may be eliminated through autophagy. This review focuses on the proposed pentapartite domain structure of apoB, the role that each domain plays in the binding of lipid species and regulation of apoB synthesis, and the process of VLDL assembly. The factors involved in the recognition, ubiquitination, and proteasomal delivery of defective apoB molecules are also discussed.
机译:载脂蛋白B100(apoB)是一种大型两亲性脂质结合蛋白,由肝细胞合成,用于组装和稳定非常低密度的脂蛋白(VLDL)。它可能是通过进化而衍生自其他脂质相关蛋白,例如微粒体甘油三酸酯转移蛋白或卵黄蛋白原。 apoB的正确折叠需要伴侣蛋白在共翻译脂质化,二硫键形成和糖基化方面的协助。这些过程中的任何损伤都会导致错折叠的apoB分子以共翻译为靶点进行蛋白酶体降解。实际上,apoB产生的大多数调节是由细胞内降解介导的。可能由于氧化应激而导致翻译后折叠错误的ApoB可通过自噬消除。这篇综述集中在拟议的apoB的五方结构域结构,每个结构域在脂质种类的结合和apoB合成的调控以及VLDL组装过程中所起的作用。还讨论了识别,泛素化和有缺陷的apoB分子的蛋白酶体传递所涉及的因素。

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