首页> 美国卫生研究院文献>Biochemical Journal >Effect of liver fatty acid binding protein on fatty acid movement between liposomes and rat liver microsomes.
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Effect of liver fatty acid binding protein on fatty acid movement between liposomes and rat liver microsomes.

机译:肝脂肪酸结合蛋白对脂质体和大鼠肝微粒体之间脂肪酸运动的影响。

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摘要

Although movement of fatty acids between bilayers can occur spontaneously, it has been postulated that intracellular movement is facilitated by a class of proteins named fatty acid binding proteins (FABP). In this study we have incorporated long chain fatty acids into multilamellar liposomes made of phosphatidylcholine, incubated them with rat liver microsomes containing an active acyl-CoA synthetase, and measured formation of acyl-CoA in the absence or presence of FABP purified from rat liver. FABP increased about 2-fold the accumulation of acyl-CoA when liposomes were the fatty acid donor. Using fatty acid incorporated into liposomes made either of egg yolk lecithin or of dipalmitoylphosphatidylcholine, it was found that the temperature dependence of acyl-CoA accumulation in the presence of FABP correlated with both the physical state of phospholipid molecules in the liposomes and the binding of fatty acid to FABP, suggesting that fatty acid must first desorb from the liposomes before FABP can have an effect. An FABP-fatty acid complex incubated with microsomes, in the absence of liposomes, resulted in greater acyl-CoA formation than when liposomes were present, suggesting that desorption of fatty acid from the membrane is rate-limiting in the accumulation of acyl-CoA by this system. Finally, an equilibrium dialysis cell separating liposomes from microsomes on opposite sides of a Nuclepore filter was used to show that liver FABP was required for the movement and activation of fatty acid between the compartments. These studies show that liver FABP interacts with fatty acid that desorbs from phospholipid bilayers, and promotes movement to a membrane-bound enzyme, suggesting that FABP may act intracellularly by increasing net desorption of fatty acid from cell membranes.
机译:尽管脂肪酸在双层之间的移动可以自发发生,但是已经假定一类称为脂肪酸结合蛋白(FABP)的蛋白质可以促进细胞内移动。在这项研究中,我们将长链脂肪酸掺入了由磷脂酰胆碱制成的多层脂质体中,将其与含有活性酰基辅酶A合成酶的大鼠肝微粒体一起孵育,并在不存在或存在从大鼠肝脏中纯化的FABP的情况下测量了酰基辅酶A的形成。当脂质体为脂肪酸供体时,FABP使酰基-CoA的积累增加约2倍。使用由蛋黄卵磷脂或二棕榈酰磷脂酰胆碱制成的脂质体中掺入的脂肪酸,发现在FABP存在下酰基辅酶A积累的温度依赖性与脂质体中磷脂分子的物理状态和脂肪的结合均相关脂肪酸转化为FABP,表明脂肪酸必须先从脂质体上解吸,然后FABP才能发挥作用。与脂质体不存在时相比,在没有脂质体的情况下,与微粒体一起孵育的FABP-脂肪酸复合物会导致更大的酰基辅酶A形成,这表明脂肪酸从膜上的解吸限制了酰基辅酶A的积累。这个系统。最后,在核孔滤器相对两侧的脂质体和微粒体之间分离出一个平衡透析细胞,以显示肝脏FABP是隔室之间脂肪酸移动和活化所必需的。这些研究表明,肝脏FABP与从磷脂双层中解吸的脂肪酸相互作用,并促进向膜结合酶的移动,这表明FABP可能通过增加脂肪酸从细胞膜的净解吸作用而在细胞内发挥作用。

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