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首页> 外文期刊>Biochemical Pharmacology >Functional analysis of pharmacogenetic variants of human organic cation/carnitine transporter 2 (hOCTN2) identified in Singaporean populations.
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Functional analysis of pharmacogenetic variants of human organic cation/carnitine transporter 2 (hOCTN2) identified in Singaporean populations.

机译:在新加坡人群中发现的人类有机阳离子/肉碱转运蛋白2(hOCTN2)药理遗传变异的功能分析。

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摘要

The human organic cation/carnitine transporter-2 (hOCTN2; SLC22A5) mediates the cellular influx of organic cations such as carnitine, which is essential for fatty acid oxidation. Primary carnitine deficiency has been associated with a wide range of hOCTN2 gene mutations. Six novel nonsynonymous single nucleotide polymorphisms in the hOCTN2 gene were identified recently in Chinese and Indian populations of Singapore. The present study evaluated the impact of these polymorphisms on hOCTN2 function and expression in HEK-293 cells. Transport function was markedly impaired in variants that encoded amino acid substitutions D122Y (<20% of wild-type control) and K302E ( approximately 45% of wild-type) in the large extracellular loop and large intracellular loop of hOCTN2, respectively. The function of the other four variants was unimpaired (E109K, V175M, K191N and A214V). From biotinylation and immunofluorescence experiments, the expression of the D122Y and K302E-hOCTN2 variants at the plasma membrane of HEK-293 cells was decreased relative to the wild-type hOCTN2 but total cellular expression was unchanged. Transporter kinetic studies indicated a decrease in the V(max) for l-carnitine influx by K302E-hOCTN2 to 49% of wild-type control, while K(m) remained unchanged; kinetic evaluation of D122Y-hOCTN2 was not possible due to its low transport function. The K302E-hOCTN2 variant was also more susceptible than the wild-type transporter to inhibition by the drugs cimetidine, pyrilamine and verapamil. These findings indicate that impaired plasma membrane targeting of the D122Y and K302E-hOCTN2 variants that occur in Singaporean populations contributes to decreased carnitine influx.
机译:人类有机阳离子/肉碱转运蛋白-2(hOCTN2; SLC22A5)介导了肉碱等有机阳离子的细胞流入,这对于脂肪酸氧化至关重要。原发性肉碱缺乏与多种hOCTN2基因突变有关。最近在新加坡的中国和印度人口中发现了hOCTN2基因中的六个新的非同义单核苷酸多态性。本研究评估了这些多态性对hOCTN2功能和HEK-293细胞表达的影响。在分别编码hOCTN2的大细胞外环和大细胞内环中的氨基酸取代D122Y(野生型对照的<20%)和K302E(野生型的约45%)的变体中,转运功能显着受损。其他四个变体的功能未受影响(E109K,V175M,K191N和A214V)。根据生物素化和免疫荧光实验,相对于野生型hOCTN2,HEK-293细胞质膜上D122Y和K302E-hOCTN2变体的表达降低,但总细胞表达未改变。转运蛋白动力学研究表明,K302E-hOCTN2使左旋肉碱流入的V(max)降低至野生型对照的49%,而K(m)保持不变。 D122Y-hOCTN2的转运功能低,无法进行动力学评估。与野生型转运蛋白相比,K302E-hOCTN2变体还更容易受到西咪替丁,吡拉明和维拉帕米的抑制作用。这些发现表明,新加坡人群中发生的D122Y和K302E-hOCTN2变体的质膜靶向受损,导致肉碱流入减少。

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