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Identification of protein disulfide isomerase 1 as a key isomerase for disulfide bond formation in apolipoprotein B100

机译:蛋白质二硫键异构酶1的鉴定为载脂蛋白B100中二硫键形成的关键异构酶

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Apolipoprotein (apo) B is an obligatory component of very low density lipoprotein (VLDL), and its cotranslational and posttranslational modifications are important in VLDL synthesis, secretion, and hepatic lipid homeostasis. ApoB100 contains 25 cysteine residues and eight disulfide bonds. Although these disulfide bonds were suggested to be important in maintaining apoB100 function, neither the specific oxidoreductase involved nor the direct role of these disulfide bonds in apoB100-lipidation is known. Here we used RNA knockdown to evaluate both MTP-dependent and -independent roles of PDI1 in apoB100 synthesis and lipidation in McA-RH7777 cells. Pdi1 knockdown did not elicit any discernible detrimental effect under normal, unstressed conditions. However, it decreased apoB100 synthesis with attenuated MTP activity, delayed apoB100 oxidative folding, and reduced apoB100 lipidation, leading to defective VLDL secretion. The oxidative folding–impaired apoB100 was secreted mainly associated with LDL instead of VLDL particles from PDI1-deficient cells, a phenotype that was fully rescued by overexpression of wild-type but not a catalytically inactive PDI1 that fully restored MTP activity. Further, we demonstrate that PDI1 directly interacts with apoB100 via its redox-active CXXC motifs and assists in the oxidative folding of apoB100. Taken together, these findings reveal an unsuspected, yet key role for PDI1 in oxidative folding of apoB100 and VLDL assembly.
机译:载脂蛋白(apo)B是极低密度脂蛋白(VLDL)的必需成分,其共翻译和翻译后修饰在VLDL合成,分泌和肝脂质稳态中很重要。 ApoB100包含25个半胱氨酸残基和8个二硫键。尽管这些二硫键被认为对维持apoB100的功能很重要,但是既不涉及特定的氧化还原酶,也不知道这些二硫键在apoB100脂质中的直接作用。在这里,我们使用RNA抑制来评估PDI1在McA-RH7777细胞apoB100合成和脂化中的MTP依赖性和非依赖性作用。在正常无压力的条件下,Pdi1敲低没有引起任何明显的有害作用。但是,它降低了apoB100的合成,降低了MTP活性,延迟了apoB100的氧化折叠,并减少了apoB100的脂化作用,导致VLDL分泌缺陷。氧化折叠受损的apoB100的分泌主要与LDI而不是PDI1缺陷细胞的VLDL颗粒有关,这种表型可以通过野生型的过表达而完全挽救,但不能完全恢复MTP活性的无催化活性的PDI1。此外,我们证明PDI1通过其氧化还原活性CXXC图案直接与apoB100相互作用,并协助apoB100的氧化折叠。综上所述,这些发现揭示了PDI1在apoB100和VLDL装配体的氧化折叠中具有意想不到的关键作用。

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