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条件性敲除小鼠肠道中的 Slc5a6 基因会损害生物素吸收。

Conditional knockout of the Slc5a6 gene in mouse intestine impairs biotin absorption.

机构信息

Department of Medicine, University of California, School of Medicine, Irvine, CA, USA.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2013 Jan 1;304(1):G64-71. doi: 10.1152/ajpgi.00379.2012. Epub 2012 Oct 25.

Abstract

The Slc5a6 gene expresses a plasma membrane protein involved in the transport of the water-soluble vitamin biotin; the transporter is commonly referred to as the sodium-dependent multivitamin transporter (SMVT) because it also transports pantothenic acid and lipoic acid. The relative contribution of the SMVT system toward carrier-mediated biotin uptake in the native intestine in vivo has not been established. We used a Cre/lox technology to generate an intestine-specific (conditional) SMVT knockout (KO) mouse model to address this issue. The KO mice exhibited absence of expression of SMVT in the intestine compared with sex-matched littermates as well as the expected normal SMVT expression in other tissues. About two-thirds of the KO mice died prematurely between the age of 6 and 10 wk. Growth retardation, decreased bone density, decreased bone length, and decreased biotin status were observed in the KO mice. Microscopic analysis showed histological abnormalities in the small bowel (shortened villi, dysplasia) and cecum (chronic active inflammation, dysplasia) of the KO mice. In vivo (and in vitro) transport studies showed complete inhibition in carrier-mediated biotin uptake in the intestine of the KO mice compared with their control littermates. These studies provide the first in vivo confirmation in native intestine that SMVT is solely responsible for intestinal biotin uptake. These studies also provide evidence for a casual association between SMVT function and normal intestinal health.

摘要

Slc5a6 基因表达一种参与水溶性维生素生物素运输的质膜蛋白;该转运蛋白通常被称为钠依赖性多种维生素转运蛋白(SMVT),因为它还运输泛酸和硫辛酸。SMVT 系统在体内天然肠道中对载体介导的生物素摄取的相对贡献尚未确定。我们使用 Cre/lox 技术生成了一种肠道特异性(条件)SMVT 敲除(KO)小鼠模型来解决这个问题。与性别匹配的同窝仔相比,KO 小鼠的肠道中 SMVT 表达缺失,而其他组织中 SMVT 的表达正常。大约三分之二的 KO 小鼠在 6 至 10 周龄之间过早死亡。KO 小鼠表现出生长迟缓、骨密度降低、骨长度缩短和生物素状态下降。显微镜分析显示 KO 小鼠的小肠(绒毛缩短、发育不良)和盲肠(慢性活动性炎症、发育不良)存在组织学异常。体内(和体外)转运研究表明,与对照同窝仔相比,KO 小鼠的肠道中载体介导的生物素摄取完全受到抑制。这些研究首次在天然肠道中证实 SMVT 是肠道生物素摄取的唯一途径。这些研究还为 SMVT 功能与正常肠道健康之间的因果关系提供了证据。

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