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ATP对糖转运调控的分子决定因素。

Molecular determinants of sugar transport regulation by ATP.

作者信息

Levine Kara B, Cloherty Erin K, Hamill Stephanie, Carruthers Anthony

机构信息

Department of Biochemistry and Molecular Pharmacology, Lazare Research Building, University of Massachusetts Medical School, 364 Plantation Street, Worcester, Massachusetts 01605, USA.

出版信息

Biochemistry. 2002 Oct 22;41(42):12629-38. doi: 10.1021/bi0258997.

Abstract

Intracellular ATP inhibits human erythrocyte net sugar transport by binding cooperatively to the glucose transport protein (GluT1). ATP binding produces altered transporter affinity for substrate and promotes substrate occlusion within a post-translocation vestibule formed by GluT1 cytosolic domains. The accompanying paper (Cloherty, E. K., Levine, K. B., Graybill, C., and Carruthers, A. (2002) Biochemistry 41, 12639-12651) demonstrates that reduced intracellular pH promotes high-affinity ATP binding to GluT1 but inhibits ATP-modulation of GluT1-mediated sugar transport. The present study explores the role of GluT1 residues 326-343 (a proposed GluT1 ATP-binding site subdomain) in GluT1 ATP binding by using alanine scanning mutagenesis. Cos-7 and HEK cells were transfected with a cDNA encoding full-length human GluT1 terminating in a carboxyl-terminal hemagglutinin (HA)-His6 epitope. The transporter (GluT1.HA.H6) is expressed at the surface of both cell-types and is catalytically active. In HEK cells, both parental GluT1- and GluT1.HA.H6-mediated sugar transport are acutely sensitive to cellular metabolic inhibition. Isolated, detergent-solubilized GluT1.HA.H6 is photolabeled by [gamma-32P]-azidoATP in an ATP-protectable manner. Alanine substitution of E329 or G332/R333/R334 enhances GluT1.HA.H6 [gamma-32P]azidoATP photoincorporation but blocks acute modulation of net sugar transport by cellular metabolic inhibition. These actions resemble those of reduced pH on ATP binding to and modulation of red cell GluT1. It is proposed that cooperative nucleotide binding to GluT1 and nucleotide modulation of GluT1-mediated sugar transport are regulated by a proton-sensitive saltbridge (Glu329-Arg333/334).

摘要

细胞内的ATP通过与葡萄糖转运蛋白(GluT1)协同结合来抑制人类红细胞的净糖转运。ATP结合会改变转运蛋白对底物的亲和力,并促进底物在由GluT1胞质结构域形成的转运后前庭内的封闭。随附论文(Cloherty, E. K., Levine, K. B., Graybill, C., and Carruthers, A. (2002) Biochemistry 41, 12639 - 12651)表明,细胞内pH值降低会促进高亲和力的ATP与GluT1结合,但会抑制ATP对GluT1介导的糖转运的调节作用。本研究通过丙氨酸扫描诱变探索了GluT1第326 - 343位残基(一个假定的GluT1 ATP结合位点亚结构域)在GluT1 ATP结合中的作用。用编码在羧基末端带有血凝素(HA)-His6表位的全长人类GluT1的cDNA转染Cos - 7细胞和HEK细胞。转运蛋白(GluT1.HA.H6)在两种细胞类型的表面均有表达且具有催化活性。在HEK细胞中,亲本GluT1和GluT1.HA.H6介导的糖转运对细胞代谢抑制均高度敏感。分离的、经去污剂溶解的GluT1.HA.H6可被[γ - 32P] - 叠氮ATP以一种可被ATP保护的方式进行光标记。E329或G332/R333/R334的丙氨酸替代增强了GluT1.HA.H6的[γ - 32P]叠氮ATP光掺入,但阻断了细胞代谢抑制对净糖转运的急性调节。这些作用类似于pH值降低对ATP与红细胞GluT1结合及调节的影响。有人提出,与GluT1的协同核苷酸结合以及GluT1介导的糖转运的核苷酸调节受质子敏感盐桥(Glu329 - Arg333/334)调控。

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