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The helical domain of intestinal fatty acid binding protein is critical for collisional transfer of fatty acids to phospholipid membranes

机译:肠道脂肪酸结合蛋白的螺旋结构域对于脂肪酸向磷脂膜的碰撞转移至关重要

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摘要

Fatty acid binding proteins (FABPs) exhibit a β-barrel topology, comprising 10 antiparallel β-sheets capped by two short α-helical segments. Previous studies suggested that fatty acid transfer from several FABPs occurs during interaction between the protein and the acceptor membrane, and that the helical domain of the FABPs plays an important role in this process. In this study, we employed a helix-less variant of intestinal FABP (IFABP-HL) and examined the rate and mechanism of transfer of fluorescent anthroyloxy fatty acids (AOFA) from this protein to model membranes in comparison to the wild type (wIFABP). In marked contrast to wIFABP, IFABP-HL does not show significant modification of the AOFA transfer rate as a function of either the concentration or the composition of the acceptor membranes. These results suggest that the transfer of fatty acids from IFABP-HL occurs by an aqueous diffusion-mediated process, i.e., in the absence of the helical domain, effective collisional transfer of fatty acids to membranes does not occur. Binding of wIFABP and IFABP-HL to membranes was directly analyzed by using a cytochrome c competition assay, and it was shown that IFABP-HL was 80% less efficient in preventing cytochrome c from binding to membranes than the native IFABP. Collectively, these results indicate that the α-helical region of IFABP is involved in membrane interactions and thus plays a critical role in the collisional mechanism of fatty acid transfer from IFABP to phospholipid membranes.
机译:脂肪酸结合蛋白(FABP)呈现出一个β桶形拓扑,包括10个反平行的β折叠,被两个短的α螺旋片段覆盖。先前的研究表明,在蛋白质与受体膜之间的相互作用期间会发生从数个FABP的脂肪酸转移,并且FABP的螺旋结构域在此过程中起着重要作用。在这项研究中,我们采用了无螺旋的肠道FABP(IFABP-HL)变体,并研究了与野生型(wIFABP)相比,荧光蒽氧基脂肪酸(AOFA)从该蛋白质向模型膜的转移速率和机制。 。与wIFABP明显不同的是,IFABP-HL并未显示出受主膜浓度或组成的函数对AOFA转移速率的显着影响。这些结果表明,脂肪酸从IFABP-HL的转移是通过水扩散介导的过程发生的,即在不存在螺旋结构域的情况下,不会发生脂肪酸向膜的有效碰撞转移。通过使用细胞色素c竞争试验直接分析了wIFABP和IFABP-HL与膜的结合,并且表明IFABP-HL在防止细胞色素c与膜的结合上的效率比天然IFABP低80%。总的来说,这些结果表明IFABP的α-螺旋区参与膜相互作用,因此在脂肪酸从IFABP转移到磷脂膜的碰撞机理中起关键作用。

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