首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Sphingomyelin depletion in cultured cells blocks proteolysis of sterol regulatory element binding proteins at site 1
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Sphingomyelin depletion in cultured cells blocks proteolysis of sterol regulatory element binding proteins at site 1

机译:鞘细胞中鞘磷脂的耗竭阻止位点1上固醇调节元件结合蛋白的蛋白水解

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摘要

The current studies explore the mechanism by which the sphingomyelin content of mammalian cells regulates transcription of genes encoding enzymes of cholesterol synthesis. Previous studies by others have shown that depletion of sphingomyelin by treatment with neutral sphingomyelinase causes a fraction of cellular cholesterol to translocate from the plasma membrane to the endoplasmic reticulum where it expands a regulatory pool that leads to down-regulation of cholesterol synthesis and up-regulation of cholesterol esterification. Here we show that sphingomyelinase treatment of cultured Chinese hamster ovary cells prevents the nuclear entry of sterol regulatory element binding protein-2 (SREBP-2), a membrane-bound transcription factor required for transcription of several genes involved in the biosynthesis and uptake of cholesterol. Nuclear entry is blocked because sphingomyelinase treatment inhibits the proteolytic cleavage of SREBP-2 at site 1, thereby preventing release of the active NH2-terminal fragments from cell membranes. Sphingomyelinase treatment thus mimics the inhibitory effect on SREBP processing that occurs when exogenous sterols are added to cells. Sphingomyelinase treatment did not block site 1 proteolysis of SREBP-2 in 25-RA cells, a line of Chinese hamster ovary cells that is resistant to the suppressive effects of sterols, owing to an activating point mutation in the gene encoding SREBP cleavage-activating protein. In 25-RA cells, sphingomyelinase treatment also failed to down-regulate the mRNA for 3-hydroxy-3-methylglutaryl CoA synthase, a cholesterol biosynthetic enzyme whose transcription depends on the cleavage of SREBPs. Considered together with previous data, the current results indicate that cells regulate the balance between cholesterol and sphingomyelin content by regulating the proteolytic cleavage of SREBPs.
机译:当前的研究探索了哺乳动物细胞中鞘磷脂含量调节编码胆固醇合成酶的基因转录的机制。其他人先前的研究表明,用中性鞘磷脂酶处理会耗尽鞘磷脂,导致一部分细胞胆固醇从质膜转运到内质网,从而扩大调节池,从而导致胆固醇合成的下调和上调胆固醇酯化。在这里,我们显示鞘磷脂酶处理培养的中国仓鼠卵巢细胞可阻止固醇调节元件结合蛋白2(SREBP-2)的核进入,固醇调节元件结合蛋白2(SREBP-2)是膜结合的转录因子,是参与生物合成和胆固醇吸收的几个基因转录所必需的。由于鞘磷脂酶处理抑制了位点1处SREBP-2的蛋白水解切割,因此阻止了核进入,从而防止了活性NH2末端片段从细胞膜释放。因此,鞘磷脂酶处理模拟了当向细胞中添加外源固醇时发生的对SREBP加工的抑制作用。鞘磷脂酶处理并没有阻止25-RA细胞中SREBP-2的1位蛋白水解,这是一列中国仓鼠卵巢细胞,由于编码SREBP裂解激活蛋白的基因中的激活点突变而对甾醇的抑制作用有抵抗力。在25 RA细胞中,鞘磷脂酶处理也未能下调3-羟基-3-甲基戊二酰辅酶A合酶的mRNA,这是一种胆固醇生物合成酶,其转录取决于SREBP的裂解。与以前的数据一起考虑,当前结果表明细胞通过调节SREBPs的蛋白水解切割来调节胆固醇和鞘磷脂含量之间的平衡。

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