首页> 外文OA文献 >Evidence that His110 of the protein FadL in the outer membrane of Escherichia coli is involved in the binding and uptake of long-chain fatty acids: possible role of this residue in carboxylate binding.
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Evidence that His110 of the protein FadL in the outer membrane of Escherichia coli is involved in the binding and uptake of long-chain fatty acids: possible role of this residue in carboxylate binding.

机译:大肠杆菌外膜中FadL蛋白的His110参与长链脂肪酸的结合和摄取的证据:该残基在羧酸盐结合中的可能作用。

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摘要

The binding of exogenous fatty acids to the outer-membrane protein FadL of Escherichia coli is specific for long-chain fatty acids (C14-C18). Oleoyl alcohol [(Z)-9-octadecen-1-ol] and methyl oleate were unable to displace FadL-specific binding of [3H]oleate (C18:1), suggesting that the carboxylate of the long-chain fatty acid was required for binding. Therefore the binding of exogenous fatty acids to FadL is governed, in part, by the carboxy group of the long-chain fatty acid. Treatment of whole cells with 1 mM diethyl pyrocarbonate (DEPC) depressed binding by 43-73% over the range of oleate concentrations used (10-500 nM). On the basis of these results and the notion that histidine residues often play a role involving proton transfer and charge-pairing, the five histidine residues within FadL (His110, His226, His327, His345 and His418) were replaced by alanine using site-directed mutagenesis. Altered FadL proteins were correctly localized in the outer membrane at wild-type levels and retained the heat-modifiable property characteristic of the wild-type protein. Initial screening of these fadL mutants revealed that the replacement of His110 by Ala resulted in a decreased growth rate on minimal oleate/agar plates. The rates of long-chain fatty acid transport for delta fadL strains harbouring each mutation on a plasmid, with the exception of fadLH110A, were the same, or nearly the same, as those for the wild-type. fadLH110A was also defective in binding, arguing that the functional effect of this mutation was at the level of long-chain-fatty-acid binding.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:外源脂肪酸与大肠杆菌的外膜蛋白FadL的结合对长链脂肪酸(C14-C18)具有特异性。油醇[(Z)-9-octadecen-1-ol]和油酸甲酯无法取代[3H]油酸酯(C18:1)的FadL特异性结合,表明需要长链脂肪酸的羧酸盐用于绑定。因此,外源脂肪酸与FadL的结合部分地由长链脂肪酸的羧基控制。在所使用的油酸盐浓度范围(10-500 nM)内,用1 mM焦碳酸二乙酯(DEPC)处理整个细胞会使结合降低43-73%。根据这些结果以及组氨酸残基经常起质子转移和电荷配对作用的观念,使用定点诱变法将丙氨酸取代了FadL中的五个组氨酸残基(His110,His226,His327,His345和His418)。 。改变的FadL蛋白以野生型水平正确定位在外膜中,并保留了野生型蛋白的热可修饰特性。对这些fadL突变体的初步筛选显示,Ala替代His110导致在最小油酸盐/琼脂平板上生长速度降低。除fadLH110A外,质​​粒上具有每个突变的delta fadL菌株的长链脂肪酸转运速率与野生型的速率相同或几乎相同。 fadLH110A的结合也有缺陷,认为该突变的功能作用是在长链脂肪酸结合的水平上。(摘要截短为250字)

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    Black, P N; Zhang, Q;

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  • 年度 1995
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