Nutrition Physiology, Technische Universität München, Freising, Germany.
Compr Physiol. 2018 Mar 25;8(2):843-869. doi: 10.1002/cphy.c170038.
As the organ with one of the largest surface areas facing the environment and responsible for nutrient uptake, the small intestine expresses numerous transport proteins in its brush-border membrane for efficient absorption and supply of dietary macro- and micronutrients. The understanding of regulation and functional interplay of these nutrient transporters is of emerging interest in nutrition and medical physiology research in respect to development of diabetes, obesity, and inflammatory bowel disease worldwide. The peptide transporter 1 (PepT1, SLC15A1) is abundantly expressed particularly in the intestinal tract and provides highly effective transport of amino acids in the form of di- and tripeptides and features a substantial acceptance for structurally related compounds and drugs. These characteristics bring PepT1 into focus for nutritional and medical/pharmaceutical approaches, as it is the essential hub responsible for oral bioavailability of dietary protein/peptide supplements and peptide-like drugs in eukaryotic organisms. Detailed analysis of molecular processes regulating PepT1 expression and function achieved in the last two decades has helped to define and use adjusting tools and to better integrate the transporter's role in cell and organ physiology. In this article, we provide an overview of the current knowledge on PepT1 function in health and disease, and on regulatory factors modulating its gene and protein expression as well as transport activity. © 2018 American Physiological Society. Compr Physiol 8:843-869, 2018.
作为与环境直接接触的表面积最大的器官之一,小肠在其刷状缘膜中表达了众多的转运蛋白,以有效吸收和供应膳食中的宏量和微量营养素。这些营养转运蛋白的调节和功能相互作用的理解,在涉及全球糖尿病、肥胖症和炎症性肠病的营养和医学生理学研究中引起了关注。肽转运蛋白 1(PepT1,SLC15A1)在肠道中大量表达,特别提供了二肽和三肽形式的氨基酸的高效转运,并且对结构相关的化合物和药物具有较大的接受性。这些特性使 PepT1 成为营养和医疗/药物方法的焦点,因为它是负责真核生物中膳食蛋白质/肽补充剂和肽样药物口服生物利用度的基本枢纽。在过去的二十年中,对调节 PepT1 表达和功能的分子过程的详细分析,有助于定义和使用调节工具,并更好地整合转运蛋白在细胞和器官生理学中的作用。在本文中,我们概述了 PepT1 在健康和疾病中的功能以及调节其基因和蛋白质表达以及转运活性的调节因子的最新知识。© 2018 美国生理学会。综合生理学 8:843-869,2018。