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兔小肠绒毛细胞刷状缘膜钠-谷氨酰胺共转运体的鉴定与特性分析

Identification and characterization of rabbit small intestinal villus cell brush border membrane Na-glutamine cotransporter.

作者信息

Talukder Jamilur R, Kekuda Ramesh, Saha Prosenjit, Arthur Subha, Sundaram Uma

机构信息

Section of Digestive Diseases, Department of Medicine, School of Medicine, West Virginia University, Morgantown, WV 26506, USA.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2008 Jul;295(1):G7-G15. doi: 10.1152/ajpgi.00606.2007. Epub 2008 Apr 24.

Abstract

Glutamine, the primary metabolic fuel for the mammalian small intestinal enterocytes, is primarily assimilated by Na-amino acid cotransporters. Although Na-solute cotransport has been shown to exist in the brush border membrane (BBM) of the absorptive villus cells, the identity of Na-glutamine cotransport in rabbit small intestinal villus cells was unknown. Na-dependent glutamine uptake is present in villus BBM vesicles. An intravesicular proton gradient did not stimulate this Na-dependent glutamine uptake, whereas Li+ did not significantly suppress this uptake. These observations in concert with amino acid substitution studies suggested that Na-glutamine cotransporter in the villus cell BBM was the newly identified cotransporter B0AT1 (SLC6A19). Quantitative real-time PCR identified the message for this cotransporter in villus cells. Thus a full-length cDNA of B0AT1 was cloned and expressed in MDA-MB-231 cells. This expressed cotransporter exhibited characteristics similar to those observed in villus cells from the rabbit small intestine. Antibody was generated for B0AT1 that demonstrated the presence of this cotransporter protein in the villus cell BBM. Kinetic studies defined the kinetic parameters of this cotransporter. Thus this study describes the identification, cloning, and characterization of the Na-amino acid cotransporter responsible for the assimilation of a critical amino acid by the absorptive villus cells in the mammalian small intestine.

摘要

谷氨酰胺是哺乳动物小肠肠上皮细胞的主要代谢燃料,主要通过钠-氨基酸共转运体被吸收。尽管已证明钠-溶质共转运存在于吸收性绒毛细胞的刷状缘膜(BBM)中,但兔小肠绒毛细胞中钠-谷氨酰胺共转运体的身份尚不清楚。绒毛BBM囊泡中存在钠依赖性谷氨酰胺摄取。囊泡内质子梯度并未刺激这种钠依赖性谷氨酰胺摄取,而锂离子也未显著抑制这种摄取。这些观察结果与氨基酸替代研究表明,绒毛细胞BBM中的钠-谷氨酰胺共转运体是新鉴定的共转运体B0AT1(SLC6A19)。定量实时PCR确定了绒毛细胞中该共转运体的信使核糖核酸。因此,克隆了B0AT1的全长互补脱氧核糖核酸并在MDA-MB-231细胞中表达。这种表达的共转运体表现出与兔小肠绒毛细胞中观察到的特征相似的特性。针对B0AT1产生了抗体,该抗体证明了这种共转运体蛋白在绒毛细胞BBM中的存在。动力学研究确定了该共转运体的动力学参数。因此,本研究描述了负责哺乳动物小肠吸收性绒毛细胞吸收一种关键氨基酸的钠-氨基酸共转运体的鉴定、克隆和特性。

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