首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Similar mechanisms of fatty acid transfer from human anal rodent fatty acid-binding proteins to membranes: liver, intestine, heart muscle, and adipose tissue FABPs.
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Similar mechanisms of fatty acid transfer from human anal rodent fatty acid-binding proteins to membranes: liver, intestine, heart muscle, and adipose tissue FABPs.

机译:脂肪酸从人肛门啮齿动物脂肪酸结合蛋白转移到膜的相似机制:肝,肠,心肌和脂肪组织FABP。

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摘要

The mammalian fatty acid-binding proteins (FABPs) are thought to be important for the transport and metabolism of fatty acids in numerous cell types. The transfer of FA from different members of the FABP family to membranes has been shown to occur by two distinct mechanisms, an aqueous diffusion-based mechanism and a collisional mechanism, wherein the FABP interacts directly with membrane acceptors. Much of the work that underlies this concept comes from efforts using rodent FABPs. Given the increasing awareness of links between FABPs and several chronic diseases in humans, it was important to establish the mechanisms of FA transfer for human FABPs. In the present studies, we examined the rate and mechanism of fatty acid transfer from four pairs of human and rodent (rat or mouse, as specified) FABPs: hLFABP and rLFABP, hIFABP and rIFABP, hHFABP and rHFABP, and hAFABP and mAFABP. In the case of human IFABP, both the Ala54 and Thr54 forms were examined. The results show clearly that for all FABPs examined, the mechanisms of ligand transfer observed for rodent proteins hold true for their human counterparts. Moreover, it appears that the Ala to Thr substitution at residue 54 of the human IFABP does not alter the fundamental mechanism of ligand transfer to membranes, but nevertheless causes a consistent decrease in the rate of transfer.
机译:哺乳动物脂肪酸结合蛋白(FABP)被认为对于多种细胞类型中脂肪酸的运输和代谢很重要。已经表明FA从FABP家族的不同成员向膜的转移通过两种不同的机理发生,即基于水扩散的机理和碰撞机理,其中FABP直接与膜受体相互作用。该概念的基础很多工作来自使用啮齿动物FABP的努力。鉴于人们日益认识到FABP与人类几种慢性疾病之间的联系,因此建立FA转移机制对于人类FABP至关重要。在本研究中,我们检查了从四对人类和啮齿动物(如指定的大鼠或小鼠)FABP:hLFABP和rLFABP,hIFABP和rIFABP,hHFABP和rHFABP以及hAFABP和mAFABP中脂肪酸转移的速率和机理。对于人IFABP,同时检查了Ala54和Thr54形式。结果清楚地表明,对于所检查的所有FABP,啮齿动物蛋白所观察到的配体转移机制均适用于其人类对应物。此外,似乎在人IFABP的残基54处的Ala至Thr取代并没有改变配体转移至膜的基本机理,但是仍然导致转移速率的持续降低。

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