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Supernatant protein factor which stimulates the conversion of squalene to lanosterol is a cytosolic squalene transfer protein and enhances cholesterol biosynthesis

机译:上清蛋白因子刺激细胞的转化 角鲨烯到羊毛甾醇是一种胞质角鲨烯转移蛋白 并增强胆固醇的生物合成

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摘要

Squalene epoxidase, a membrane-associated enzyme that converts squalene to squalene 2,3-oxide, plays an important role in the maintenance of cholesterol homeostasis. In 1957, Bloch and colleagues identified a factor from rat liver cytosol termed “supernatant protein factor (SPF),” which promotes the squalene epoxidation catalyzed by rat liver microsomes with oxygen, NADPH, FAD, and phospholipid [Tchen, T. T. & Bloch, K. (1957) J. Biol. Chem. 226, 921–930]. Although purification of SPF by 11,000-fold was reported, no information is so far available on the primary structure or biological function of SPF. Here we report the cDNA cloning and expression of SPF from rat and human. The encoded protein of 403 amino acids belongs to a family of cytosolic lipid-binding/transfer proteins such as α-tocopherol transfer protein, cellular retinal binding protein, yeast phosphatidylinositol transfer protein (Sec14p), and squid retinal binding protein. Recombinant SPF produced in Escherichia coli enhances microsomal squalene epoxidase activity and promotes intermembrane transfer of squalene in vitro. SPF mRNA is expressed abundantly in the liver and small intestine, both of which are important sites of cholesterol biosynthesis. SPF is expressed significantly in isolated hepatocytes, but the expression level was markedly decreased after 48 h of in vitro culture. Moreover, SPF was not detectable in most of the cell lines tested, including HepG2 and McARH7777 hepatomas. Transfection of SPF cDNA in McARH7777 significantly stimulated de novo cholesterol biosynthesis. These data suggest that SPF is a cytosolic squalene transfer protein capable of regulating cholesterol biosynthesis.
机译:角鲨烯环氧酶是一种膜相关的酶,可将角鲨烯转化为角鲨烯2,3-氧化物,在维持胆固醇稳态中起着重要作用。 1957年,布洛赫(Bloch)及其同事从大鼠肝细胞溶质中鉴定出一种因子,称为“上清蛋白因子(SPF)”,该因子可促进由大鼠肝微粒体通过氧气,NADPH,FAD和磷脂催化的角鲨烯环氧化[Tchen,TT&Bloch,K (1957)J.Biol。化学226,921–930]。尽管已报道将SPF纯化11,000倍,但到目前为止尚无SPF一级结构或生物学功能的信息。在这里,我们报告从大鼠和人类的SPF的cDNA克隆和表达。编码的403个氨基酸的蛋白属于胞质脂质结合/转移蛋白家族,例如α-生育酚转移蛋白,细胞视网膜结合蛋白,酵母磷脂酰肌醇转移蛋白(Sec14p)和鱿鱼视网膜结合蛋白。在大肠杆菌中产生的重组SPF增强了微粒体角鲨烯环氧酶的活性并促进了跨膜 角鲨烯的体外转移。 SPF mRNA表达 大量存在于肝脏和小肠中 胆固醇生物合成的重要部位。 SPF表示 在分离的肝细胞中表达显着,但表达水平为 体外培养48 h后明显减少。 此外,在大多数测试的细胞系中均无法检测到SPF, 包括HepG2和McARH7777肝癌。 SPF cDNA的转染 在McARH7777中明显刺激了从头开始 胆固醇的生物合成。这些数据表明SPF是 能够调节细胞质的角鲨烯转移蛋白 胆固醇的生物合成。

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