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细胞质ATP对葡萄糖转运蛋白1(GLUT1)的抑制作用的结构基础

Structural basis of GLUT1 inhibition by cytoplasmic ATP.

作者信息

Blodgett David M, De Zutter Julie K, Levine Kara B, Karim Pusha, Carruthers Anthony

机构信息

Department of Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, Worcester, MA 01605, USA.

出版信息

J Gen Physiol. 2007 Aug;130(2):157-68. doi: 10.1085/jgp.200709818. Epub 2007 Jul 16.

Abstract

Cytoplasmic ATP inhibits human erythrocyte glucose transport protein (GLUT1)-mediated glucose transport in human red blood cells by reducing net glucose transport but not exchange glucose transport (Cloherty, E.K., D.L. Diamond, K.S. Heard, and A. Carruthers. 1996. Biochemistry. 35:13231-13239). We investigated the mechanism of ATP regulation of GLUT1 by identifying GLUT1 domains that undergo significant conformational change upon GLUT1-ATP interaction. ATP (but not GTP) protects GLUT1 against tryptic digestion. Immunoblot analysis indicates that ATP protection extends across multiple GLUT1 domains. Peptide-directed antibody binding to full-length GLUT1 is reduced by ATP at two specific locations: exofacial loop 7-8 and the cytoplasmic C terminus. C-terminal antibody binding to wild-type GLUT1 expressed in HEK cells is inhibited by ATP but binding of the same antibody to a GLUT1-GLUT4 chimera in which loop 6-7 of GLUT1 is substituted with loop 6-7 of GLUT4 is unaffected. ATP reduces GLUT1 lysine covalent modification by sulfo-NHS-LC-biotin by 40%. AMP is without effect on lysine accessibility but antagonizes ATP inhibition of lysine modification. Tandem electrospray ionization mass spectrometry analysis indicates that ATP reduces covalent modification of lysine residues 245, 255, 256, and 477, whereas labeling at lysine residues 225, 229, and 230 is unchanged. Exogenous, intracellular GLUT1 C-terminal peptide mimics ATP modulation of transport whereas C-terminal peptide-directed IgGs inhibit ATP modulation of glucose transport. These findings suggest that transport regulation involves ATP-dependent conformational changes in (or interactions between) the GLUT1 C terminus and the C-terminal half of GLUT1 cytoplasmic loop 6-7.

摘要

细胞质ATP通过减少葡萄糖净转运而非交换葡萄糖转运来抑制人红细胞葡萄糖转运蛋白(GLUT1)介导的人红细胞葡萄糖转运(克洛赫蒂,E.K.,D.L.戴蒙德,K.S.赫德,和A.卡拉瑟斯。1996年。《生物化学》。35:13231 - 13239)。我们通过鉴定在GLUT1与ATP相互作用时发生显著构象变化的GLUT1结构域,研究了ATP对GLUT1的调节机制。ATP(而非GTP)可保护GLUT1免受胰蛋白酶消化。免疫印迹分析表明,ATP的保护作用延伸至多个GLUT1结构域。在两个特定位置,ATP可降低肽导向抗体与全长GLUT1的结合:胞外环7 - 8和细胞质C末端。在HEK细胞中表达的野生型GLUT1的C末端抗体结合受到ATP抑制,但相同抗体与GLUT1 - GLUT4嵌合体(其中GLUT1的环6 - 7被GLUT4的环6 - 7取代)的结合不受影响。ATP使磺基 - NHS - LC - 生物素对GLUT1赖氨酸的共价修饰降低40%。AMP对赖氨酸可及性无影响,但可拮抗ATP对赖氨酸修饰的抑制作用。串联电喷雾电离质谱分析表明,ATP降低了赖氨酸残基245、255、256和477的共价修饰,而赖氨酸残基225、229和230的标记未变。外源性细胞内GLUT1 C末端肽模拟ATP对转运的调节作用,而C末端肽导向的IgG抑制ATP对葡萄糖转运的调节作用。这些发现表明,转运调节涉及GLUT1 C末端与GLUT1细胞质环6 - 7的C末端一半之间的ATP依赖性构象变化(或相互作用)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a039/2151632/810170220c79/jgp1300157f01.jpg

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