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螺旋结构域在脂肪酸从脂肪细胞和心脏脂肪酸结合蛋白向膜转移中的作用:嵌合蛋白分析

Role of the helical domain in fatty acid transfer from adipocyte and heart fatty acid-binding proteins to membranes: analysis of chimeric proteins.

作者信息

Liou Heng-Ling, Kahn Peter C, Storch Judith

机构信息

Department of Nutritional Sciences, and the Department of Biochemistry and Microbiology, Rutgers University, New Brunswick, New Jersey 08901-8525, USA.

出版信息

J Biol Chem. 2002 Jan 18;277(3):1806-15. doi: 10.1074/jbc.M107987200. Epub 2001 Oct 23.

Abstract

The adipocyte and heart fatty acid-binding proteins (A- and HFABP) are members of a lipid-binding protein family with a beta-barrel body capped by a small helix-turn-helix motif. Both proteins are hypothesized to transport fatty acid (FA) to phospholipid membranes through a collisional process. Previously, we suggested that the helical domain is particularly important for the electrostatic interactions involved in this transfer mechanism (Herr, F. M., Aronson, J., and Storch, J. (1996) Biochemistry 35, 1296-1303; and Liou, H.-L., and Storch, J. (2001) Biochemistry 40, 6475-6485). Despite their using qualitatively similar FA transfer mechanisms, differences in absolute transfer rates as well as regulation of transfer from AFABP versus HFABP, prompted us to consider the structural determinants that underlie these functional disparities. To determine the specific elements underlying the functional differences between AFABP and HFABP in FA transfer, two pairs of chimeric proteins were generated. The first and second pairs had the entire helical domain and the first alpha-helix exchanged between A- and HFABP, respectively. The transfer rates of anthroyloxy-labeled fatty acid from proteins to small unilamellar vesicles were compared with the wild type AFABP and HFABP. The results suggest that the alphaII-helix is important in determining the absolute FA transfer rates. Furthermore, the alphaI-helix appears to be particularly important in regulating protein sensitivity to the negative charge of membranes. The alphaI-helix of HFABP and the alphaII-helix of AFABP increased the sensitivity to anionic vesicles; the alphaI-helix of AFABP and alphaII-helix of HFABP decreased the sensitivity. The differential sensitivities to negative charge, as well as differential absolute rates of FA transfer, may help these two proteins to function uniquely in their respective cell types.

摘要

脂肪细胞脂肪酸结合蛋白和心脏脂肪酸结合蛋白(A-FABP和HFABP)是脂质结合蛋白家族的成员,其β桶状结构由一个小的螺旋-转角-螺旋基序封闭。这两种蛋白都被认为是通过碰撞过程将脂肪酸(FA)转运到磷脂膜上。此前,我们认为螺旋结构域对于这种转运机制中涉及的静电相互作用尤为重要(赫尔,F.M.,阿隆森,J.,和斯托奇,J.(1996年)《生物化学》35卷,1296 - 1303页;以及刘,H.-L.,和斯托奇,J.(2001年)《生物化学》40卷,6475 - 6485页)。尽管它们在定性上使用相似的FA转运机制,但绝对转运速率的差异以及A-FABP与HFABP之间转运调节的差异,促使我们考虑这些功能差异背后的结构决定因素。为了确定FA转运过程中A-FABP和HFABP功能差异背后的具体元件,构建了两对嵌合蛋白。第一对和第二对分别在A-FABP和HFABP之间交换了整个螺旋结构域和第一个α螺旋。将蒽氧基标记的脂肪酸从蛋白转运到小单层囊泡的转运速率与野生型A-FABP和HFABP进行了比较。结果表明,αII螺旋对于确定绝对FA转运速率很重要。此外,αI螺旋似乎在调节蛋白对膜负电荷的敏感性方面尤为重要。HFABP的αI螺旋和A-FABP的αII螺旋增加了对阴离子囊泡的敏感性;A-FABP的αI螺旋和HFABP的αII螺旋降低了敏感性。对负电荷的不同敏感性以及FA转运的不同绝对速率,可能有助于这两种蛋白在各自的细胞类型中发挥独特的功能。

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