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螺旋8和螺旋10参与大鼠单羧酸转运蛋白MCT1的底物识别。

Helix 8 and helix 10 are involved in substrate recognition in the rat monocarboxylate transporter MCT1.

作者信息

Rahman B, Schneider H P, Bröer A, Deitmer J W, Bröer S

机构信息

Physiologisches Institut der Universität, Tübingen, Germany.

出版信息

Biochemistry. 1999 Aug 31;38(35):11577-84. doi: 10.1021/bi990973f.

Abstract

Transport of lactate, pyruvate, and the ketone bodies, acetoacetate and beta-hydroxybutyrate, is mediated in many mammalian cells by the monocarboxylate transporter MCT1. To be accepted as a substrate, a carboxyl group and an unpolar side chain are necessary. Site-directed mutagenesis of the rat MCT1 was used to identify residues which are involved in substrate recognition. Helices 8 and 10 but not helix 9 were found to contain critical residues for substrate recognition. Mutation of arginine 306 to threonine in helix 8 resulted in strongly reduced transport activity. Concomitantly, saturable transport was transformed into a nonsaturable dependence of transport activity on lactate concentration, suggesting that binding of the substrate was strongly impaired. Furthermore, proton translocation in the mutant was partially uncoupled from monocarboxylate transport. Mutation of phenylalanine 360 to cysteine in helix 10 resulted in an altered substrate side chain recognition. In contrast to the wild-type transporter, monocarboxylates with more bulky and polar side chains were recognized by the mutated MCT1. Mutation of selected residues in helix 9 and helix 11 (C336A, H337Q, and E391Q) did not cause alterations of the transport properties of MCT1. It is suggested that substrate binding occurs in the carboxy-terminal half of MCT1 and that helices 8 and 10 are involved in the recognition of different parts of the substrate.

摘要

在许多哺乳动物细胞中,乳酸、丙酮酸以及酮体(乙酰乙酸和β-羟基丁酸)的转运是由单羧酸转运蛋白MCT1介导的。要成为被转运的底物,必须具备一个羧基和一个非极性侧链。利用大鼠MCT1的定点诱变来确定参与底物识别的残基。发现8号螺旋和10号螺旋而非9号螺旋含有底物识别的关键残基。8号螺旋中的精氨酸306突变为苏氨酸导致转运活性大幅降低。同时,饱和转运转变为转运活性对乳酸浓度的非饱和依赖性,这表明底物的结合受到严重损害。此外,突变体中的质子转运与单羧酸转运部分解偶联。10号螺旋中的苯丙氨酸360突变为半胱氨酸导致底物侧链识别发生改变。与野生型转运蛋白不同,突变的MCT1能够识别具有更大体积和极性侧链的单羧酸。9号螺旋和11号螺旋中选定残基(C336A、H337Q和E391Q)的突变并未导致MCT1转运特性的改变。研究表明,底物结合发生在MCT1的羧基末端一半区域,并且螺旋8和螺旋10参与底物不同部分的识别。

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