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Cholesterol, the central lipid of mammalian cells

机译:胆固醇,哺乳动物细胞的中心脂质

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Despite its importance for mammalian cell biology and human health, there are many basic aspects of cholesterol homeostasis that are not well understood. Even for the well-characterized delivery of cholesterol to cells via lipoproteins, a novel regulatory mechanism has been discovered recently, involving a serum protein called PCSK9, which profoundly affects lipoproteins and their receptors. Cells can export cholesterol by processes that require the activity of ABC transporters, but the molecular mechanisms for cholesterol transport remain unclear. Cholesterol levels in different organelles vary by 5-10-fold, and the mechanisms for maintaining these differences are now partially understood. Several proteins have been proposed to play a role in the inter-organelle movement of cholesterol, but many aspects of the mechanisms for regulating intracellular transport and distribution of cholesterol remain to be worked out. The endoplasmic reticulum is the main organelle responsible for regulation of cholesterol synthesis, and careful measurements have shown that the proteins responsible for sterol sensing respond over a very narrow range of cholesterol concentrations to provide very precise, switch-like control over cholesterol synthesis.
机译:尽管它对于哺乳动物细胞生物学和人类健康非常重要,但胆固醇稳态的许多基本方面尚未得到很好的理解。即使对于通过脂蛋白将胆固醇很好地传递到细胞中,最近也发现了一种新的调节机制,涉及一种称为PCSK9的血清蛋白,它会深刻影响脂蛋白及其受体。细胞可以通过需要ABC转运蛋白活性的过程输出胆固醇,但是胆固醇转运的分子机制仍然不清楚。不同细胞器中的胆固醇水平相差5-10倍,现在可以部分了解保持这些差异的机制。已经提出了几种蛋白质在胆固醇的细胞间运动中起作用,但是调节胆固醇的细胞内运输和分布的机制的许多方面仍有待研究。内质网是负责调节胆固醇合成的主要细胞器,仔细的测量表明,负责固醇感测的蛋白质在非常窄的胆固醇浓度范围内响应,从而提供了对胆固醇合成的非常精确的开关样控制。

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