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人线粒体肉碱/酰基肉碱载体带电氨基酸的定点诱变:对转运分子机制的深入了解

Site-directed mutagenesis of charged amino acids of the human mitochondrial carnitine/acylcarnitine carrier: insight into the molecular mechanism of transport.

作者信息

Giangregorio Nicola, Tonazzi Annamaria, Console Lara, Indiveri Cesare, Palmieri Ferdinando

机构信息

Department of Pharmaco-Biology, Laboratory of Biochemistry and Molecular Biology, University of Bari, 70125 Bari, Italy.

出版信息

Biochim Biophys Acta. 2010 Jun-Jul;1797(6-7):839-45. doi: 10.1016/j.bbabio.2010.03.017. Epub 2010 Mar 27.

Abstract

The structure/function relationships of charged residues of the human mitochondrial carnitine/acylcarnitine carrier, which are conserved in the carnitine/acylcarnitine carrier subfamily and exposed to the water-filled cavity of carnitine/acylcarnitine carrier in the c-state, have been investigated by site-directed mutagenesis. The mutants were expressed in Escherichia coli, purified and reconstituted in liposomes, and their transport activity was measured as 3H-carnitine/carnitine antiport. The mutants K35A, E132A, D179A and R275A were nearly inactive with transport activities between 5 and 10% of the wild-type carnitine/acylcarnitine carrier. R178A, K234A and D231A showed transport function of about 15% of the wild-type carnitine/acylcarnitine carrier. The substitutions of the other residues with alanine had little or no effect on the carnitine/acylcarnitine carrier activity. Marked changes in the kinetic parameters with three-fold higher Km and lower Vmax values with respect to the wild-type carnitine/acylcarnitine carrier were found when replacing Lys-35, Glu-132, Asp-179 and Arg-275 with alanine. Double mutants exhibited transport activities and kinetic parameters reflecting those of the single mutants; however, lack of D179A activity was partially rescued by the additional mutation R178A. The results provide evidence that Arg-275, Asp-179 and Arg-178, which protrude into the carrier's internal cavity at about the midpoint of the membrane, are the critical binding sites for carnitine. Furthermore, Lys-35 and Glu-132, which are very probably involved in the salt-bridge network located at the bottom of the cavity, play a major role in opening and closing the matrix gate.

摘要

人类线粒体肉碱/脂酰肉碱载体的带电残基的结构/功能关系已通过定点诱变进行了研究,这些残基在肉碱/脂酰肉碱载体亚家族中保守,且在c状态下暴露于肉碱/脂酰肉碱载体的充满水的腔中。突变体在大肠杆菌中表达、纯化并重新组装到脂质体中,其转运活性通过3H-肉碱/肉碱反向转运进行测定。突变体K35A、E132A、D179A和R275A几乎没有活性,其转运活性为野生型肉碱/脂酰肉碱载体的5%至10%。R178A、K234A和D231A显示出约为野生型肉碱/脂酰肉碱载体15%的转运功能。用丙氨酸替换其他残基对肉碱/脂酰肉碱载体活性几乎没有影响或没有影响。当用丙氨酸替换赖氨酸-35、谷氨酸-132、天冬氨酸-179和精氨酸-275时,相对于野生型肉碱/脂酰肉碱载体,动力学参数出现显著变化,Km值高出三倍,Vmax值降低。双突变体表现出反映单突变体的转运活性和动力学参数;然而,R178A的额外突变部分挽救了D179A缺乏的活性。结果提供了证据,表明在膜中点左右突入载体内腔的精氨酸-275、天冬氨酸-179和精氨酸-178是肉碱的关键结合位点。此外,很可能参与位于腔底部的盐桥网络的赖氨酸-35和谷氨酸-132在打开和关闭基质门中起主要作用。

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