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人类硫胺素转运蛋白-1(hTHTR1)的细胞生物学。细胞内运输与膜靶向机制。

Cell biology of the human thiamine transporter-1 (hTHTR1). Intracellular trafficking and membrane targeting mechanisms.

作者信息

Subramanian Veedamali S, Marchant Jonathan S, Parker Ian, Said Hamid M

机构信息

Department of Neurobiology and Behavior, University of California, Irvine 92697, USA.

出版信息

J Biol Chem. 2003 Feb 7;278(6):3976-84. doi: 10.1074/jbc.M210717200. Epub 2002 Nov 25.

Abstract

The human thiamine transporter hTHTR1 is involved in the cellular accumulation of thiamine (vitamin B1) in many tissues. Thiamine deficiency disorders, such as thiamine-responsive megaloblastic anemia (TRMA), which is associated with specific mutations within hTHTR1, likely impairs the functionality and/or intracellular targeting of hTHTR1. Unfortunately, nothing is known about the mechanisms that control the intracellular trafficking or membrane targeting of hTHTR1. To identify molecular determinants involved in hTHTR1 targeting, we generated a series of hTHTR1 truncations fused with the green fluorescent protein and imaged the targeting and trafficking dynamics of each construct in living duodenal epithelial cells. Whereas the full-length fusion protein was functionally expressed at the plasma membrane, analysis of the truncated mutants demonstrated an essential role for both NH(2)-terminal sequence and the integrity of the backbone polypeptide for cell surface expression. Most notably, truncation of hTHTR1 within a region where several TRMA truncations are clustered resulted in intracellular retention of the mutant protein. Finally, confocal imaging of the dynamics of intracellular hTHTR1 vesicles revealed a critical role for microtubules, but not microfilaments, in hTHTR1 trafficking. Taken together, these results correlate hTHTR1 structure with cellular expression profile and reveal a critical dependence on hTHTR1 backbone integrity and microtubule-based trafficking processes for functional expression of hTHTR1.

摘要

人类硫胺素转运体hTHTR1参与许多组织中硫胺素(维生素B1)的细胞积累。硫胺素缺乏症,如与hTHTR1内特定突变相关的硫胺素反应性巨幼细胞贫血(TRMA),可能会损害hTHTR1的功能和/或细胞内定位。不幸的是,关于控制hTHTR1细胞内运输或膜定位的机制尚不清楚。为了确定参与hTHTR1定位的分子决定因素,我们构建了一系列与绿色荧光蛋白融合的hTHTR1截短体,并对每个构建体在活十二指肠上皮细胞中的定位和运输动态进行成像。全长融合蛋白在质膜上功能性表达,而截短突变体的分析表明,NH(2)-末端序列和骨干多肽的完整性对细胞表面表达都起着至关重要的作用。最值得注意的是,在几个TRMA截短体聚集的区域内截短hTHTR1会导致突变蛋白在细胞内滞留。最后,对细胞内hTHTR1囊泡动态的共聚焦成像显示,微管而非微丝在hTHTR1运输中起关键作用。综上所述,这些结果将hTHTR1结构与细胞表达谱相关联,并揭示了hTHTR1功能性表达对hTHTR1骨干完整性和基于微管的运输过程的关键依赖性。

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