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细胞内脂肪酸转运机制:细胞质结合蛋白的作用

Mechanisms of intracellular fatty acid transport: role of cytoplasmic-binding proteins.

作者信息

Weisiger Richard A

机构信息

Department of Medicine, University of California, 357 Sciences Building, San Francisco, CA 94143-0538, USA.

出版信息

J Mol Neurosci. 2007 Sep;33(1):42-4. doi: 10.1007/s12031-007-0047-y.

Abstract

Cytosolic binding proteins are ubiquitous, yet their functions have been poorly defined. Research in multiple labs has now clarified two major transport functions for fatty acid binding proteins (FABPs), one of the most commonly studied examples of this diverse class. Most cellular fatty acids are bound to membranes. Because fatty acids are almost insoluble in water, their movement across the water between cellular membranes is very slow without FABP. FABP increases this rate by increasing the solubility of fatty acids in water. Many forms of FABP can also increase this rate by catalyzing release of the fatty acids from membranes. The first function is most valuable over longer distances (e.g., >1 microm in rat liver cells), while the second is most valuable for shorter distances. Thus, FABPs serve complementary intracellular transport functions. These conclusions may apply to other cytosolic proteins that bind poorly-soluble molecules.

摘要

胞质结合蛋白普遍存在,但其功能一直未得到明确界定。多个实验室的研究现已阐明了脂肪酸结合蛋白(FABP)的两种主要转运功能,FABP是这类多样蛋白中最常被研究的例子之一。大多数细胞脂肪酸与膜结合。由于脂肪酸几乎不溶于水,若无FABP,它们在细胞膜间的水环境中移动非常缓慢。FABP通过增加脂肪酸在水中的溶解度来提高这一速率。多种形式的FABP还可通过催化脂肪酸从膜上释放来提高这一速率。第一种功能在较长距离(如大鼠肝细胞中>1微米)时最有价值,而第二种功能在较短距离时最有价值。因此,FABP发挥互补的细胞内转运功能。这些结论可能适用于其他结合难溶性分子的胞质蛋白。

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