Importance of uncharged polar residues and proline in the proximal two-thirds (Pro107-Ser128) of the highly conserved region of mouse ileal Na+-dependent bile acid transporter, Slc10a2, in transport activity and cellular expression.

Q1 Biochemistry, Genetics and Molecular Biology BMC Physiology Pub Date : 2013-02-04 DOI:10.1186/1472-6793-13-4
Tohru Saeki, Kosuke Sato, Shiho Ito, Keisuke Ikeda, Ryuhei Kanamoto
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引用次数: 5

Abstract

Background: SLC10A2-mediated reabsorption of bile acids at the distal end of the ileum is the first step in enterohepatic circulation. Because bile acids act not only as detergents but also as signaling molecules in lipid metabolism and energy production, SLC10A2 is important as the key transporter for understanding the in vivo kinetics of bile acids. SLC10A family members and the homologous genes of various species share a highly conserved region corresponding to Gly104-Pro142 of SLC10A2. The functional importance of this region has not been fully elucidated.

Results: To elucidate the functional importance of this region, we previously performed mutational analysis of the uncharged polar residues and proline in the distal one-third (Thr130-Pro142) of the highly conserved region in mouse Slc10a2. In this study, proline and uncharged polar residues in the remaining two-thirds of this region in mouse Slc10a2 were subjected to mutational analysis, and taurocholic acid uptake and cell surface localization were examined. Cell surface localization of Slc10a2 is necessary for bile acid absorption. Mutants in which Asp or Leu were substituted for Pro107 (P107N or P107L) were abundantly expressed, but their cell surface localization was impaired. The S126A mutant was completely impaired in cellular expression. The T110A and S128A mutants exhibited remarkably enhanced membrane expression. The S112A mutant was properly expressed at the cell surface but transport activity was completely lost. Replacement of Tyr117 with various amino acids resulted in reduced transport activity. The degree of reduction roughly depended on the van der Waals volume of the side chains.

Conclusions: The functional importance of proline and uncharged polar residues in the highly conserved region of mouse Slc10a2 was determined. This information will contribute to the design of bile acid-conjugated prodrugs for efficient drug delivery or SLC10A2 inhibitors for hypercholesterolemia treatment.

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小鼠回肠Na+依赖性胆汁酸转运体Slc10a2高度保守区域近三分之二(Pro107-Ser128)的非带电极性残基和脯氨酸在转运活性和细胞表达中的重要性。
背景:slc10a2介导的胆汁酸在回肠远端重吸收是肠肝循环的第一步。由于胆汁酸不仅作为清洁剂,而且作为脂质代谢和能量产生的信号分子,SLC10A2作为理解胆汁酸体内动力学的关键转运蛋白是重要的。SLC10A家族成员与各种物种的同源基因共享一个高度保守的区域,对应于SLC10A2的Gly104-Pro142。这一区域的功能重要性尚未得到充分阐明。结果:为了阐明该区域的功能重要性,我们之前对小鼠Slc10a2高度保守区域远三分之一(Thr130-Pro142)的不带电极性残基和脯氨酸进行了突变分析。本研究对小鼠Slc10a2中该区域剩余三分之二的脯氨酸和不带电极性残基进行了突变分析,并检测了牛磺胆酸摄取和细胞表面定位。Slc10a2的细胞表面定位是胆汁酸吸收所必需的。以Asp或Leu取代Pro107的突变体(P107N或P107L)大量表达,但其细胞表面定位受损。S126A突变体的细胞表达完全受损。T110A和S128A突变体的膜表达显著增强。S112A突变体在细胞表面正常表达,但运输活性完全丧失。用各种氨基酸替代Tyr117导致运输活性降低。还原的程度大致取决于侧链的范德华体积。结论:确定了小鼠Slc10a2高度保守区脯氨酸和非带电极性残基的功能重要性。这一信息将有助于设计胆汁酸结合的前药,用于有效的药物递送或SLC10A2抑制剂用于高胆固醇血症的治疗。
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来源期刊
BMC Physiology
BMC Physiology Biochemistry, Genetics and Molecular Biology-Physiology
CiteScore
9.60
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0.00%
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0
期刊介绍: BMC Physiology is an open access journal publishing original peer-reviewed research articles in cellular, tissue-level, organismal, functional, and developmental aspects of physiological processes. BMC Physiology (ISSN 1472-6793) is indexed/tracked/covered by PubMed, MEDLINE, BIOSIS, CAS, EMBASE, Scopus, Zoological Record and Google Scholar.
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