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硫胺素在离体大鼠肝细胞中的转运与代谢

Transport and metabolism of thiamin in isolated rat hepatocytes.

作者信息

Lumeng L, Edmondson J W, Schenker S, Li T K

出版信息

J Biol Chem. 1979 Aug 10;254(15):7265-8.

PMID:457680
Abstract

This study examines thiamin transport in isolated rat hepatocytes and its relationship to thiamin phosphorylation. In an Na+ medium, [35S]thiamin, 3 microM, was accumulated rapidly by the cells, and a near study state intra-/extracellular distribution ratio of 3 was attained in 1 min. However, the uptake of radioactivity continued to increase with time owing principally to the accumulation of [35S]thiamin pyrophosphate (TPP). In a choline, Li+ or K+ medium, the steady state intra-/extracellular distribution ratio of [35S]thiamin was decreased to less than or equal to 1.1. Accordingly, the rate of formation of [35S]TPP also decreased. Ouabain and uncouplers of oxidative phosphorylation significantly lowered the distribution ratio of intra-/extracellular [35S]thiamin. These data indicate that thiamin transport in liver is concentrative, Na+-dependent, and dependent on biological energy. Additionally, they suggest that thiamin transport plays a significant role in governing the rate of synthesis of TPP. Neither pyrithiamin, an inhibitor of thiamin pyrophosphokinase nor o-benzoylthiamin disulfide, a permeable thiamin analog, affected the distribution ratio of intra-/extracellular [35S]thiamin, but preferentially inhibited the phosphorylation of [35S]thiamin. By contrast, amprolium primarily inhibited uptake. These data suggest that thiamin transport and phosphorylation can be differentiated by the action of appropriate inhibitors.

摘要

本研究检测了硫胺素在分离的大鼠肝细胞中的转运及其与硫胺素磷酸化的关系。在Na⁺培养基中,3 μM的[³⁵S]硫胺素被细胞迅速摄取,1分钟内细胞内外分布比接近3的研究状态。然而,放射性摄取随时间持续增加,主要是由于[³⁵S]硫胺素焦磷酸(TPP)的积累。在胆碱、Li⁺或K⁺培养基中,[³⁵S]硫胺素的稳态细胞内外分布比降至小于或等于1.1。相应地,[³⁵S]TPP的形成速率也降低。哇巴因和氧化磷酸化解偶联剂显著降低了细胞内外[³⁵S]硫胺素的分布比。这些数据表明肝脏中硫胺素的转运是浓缩性的、依赖Na⁺且依赖生物能量的。此外,它们表明硫胺素转运在控制TPP的合成速率中起重要作用。硫胺素焦磷酸激酶抑制剂吡啶硫胺素和可渗透的硫胺素类似物邻苯甲酰硫胺二硫化物均未影响细胞内外[³⁵S]硫胺素的分布比,但优先抑制[³⁵S]硫胺素的磷酸化。相比之下,氨丙啉主要抑制摄取。这些数据表明硫胺素转运和磷酸化可通过适当抑制剂的作用加以区分。

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