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一种载脂蛋白对脂质代谢的调节作用。

Regulation of lipid metabolism by a lipid-carrying protein.

作者信息

Dempsey M E

出版信息

Curr Top Cell Regul. 1984;24:63-86. doi: 10.1016/b978-0-12-152824-9.50014-9.

Abstract

The overall conclusion to be made from the information presented here is that for many reasons SCP is a highly unusual protein. Some of these reasons are, first, SCP serves as cofactor for a number of different membrane-bound enzymes catalyzing specific steps in lipid metabolism. Second, SCP is involved in intracellular transport or movement of both cholesterol and fatty acids. Third, SCP is remarkably abundant and ubiquitous; its structure is conserved throughout nature. Fourth, SCP is exported to the blood stream from its site of synthesis by some, perhaps unique, mechanism and then rapidly taken up by specific tissues, e.g., the adrenal. Fifth, SCP is free in the cytosol and can also move to the inner mitochondrial membrane, where it is tightly bound. Sixth, SCP undergoes a dramatic diurnal variation in amount, reflecting changes in synthetic rate. Its half-life is less than an hour. Seventh, the diurnal variation in amount is triggered by feeding and influenced by several hormones. The diurnal variation is lost but a high level of SCP is maintained in the face of debilitating conditions, i.e., starvation, diabetes. Eighth, malignant cells exhibit defects in the uptake, synthesis, or turnover of SCP. Ninth, the synthesis of SCP is regulated by the efficiency of translation of its ever abundant mRNA. Tenth, there is much more to be learned about the functions and regulation of SCP.

摘要

从这里呈现的信息得出的总体结论是,由于多种原因,SCP是一种非常特殊的蛋白质。其中一些原因如下:第一,SCP作为多种不同膜结合酶的辅因子,催化脂质代谢中的特定步骤。第二,SCP参与胆固醇和脂肪酸的细胞内运输或移动。第三,SCP含量显著丰富且分布广泛;其结构在整个自然界中是保守的。第四,SCP通过某种可能独特的机制从其合成部位被输出到血流中,然后被特定组织迅速摄取,例如肾上腺。第五,SCP在细胞质中是游离的,也可以移动到线粒体内膜,在那里它紧密结合。第六,SCP的含量呈现出显著的昼夜变化,反映了合成速率的变化。其半衰期小于一小时。第七,含量的昼夜变化由进食引发,并受多种激素影响。在诸如饥饿、糖尿病等衰弱状况下,昼夜变化消失,但SCP仍维持在高水平。第八,恶性细胞在SCP的摄取、合成或周转方面存在缺陷。第九,SCP的合成受其大量存在的mRNA翻译效率的调节。第十,关于SCP的功能和调节还有很多有待了解的地方。

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