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有机阳离子/肉碱转运体OCTN2(SLC22A5)的功能区域:在肉碱识别中的作用

Functional regions of organic cation/carnitine transporter OCTN2 (SLC22A5): roles in carnitine recognition.

作者信息

Inano Akihiro, Sai Yoshimichi, Kato Yukio, Tamai Ikumi, Ishiguro Masaji, Tsuji Akira

机构信息

Faculty of Pharmaceutical Sciences, Kanazawa University, Japan.

出版信息

Drug Metab Pharmacokinet. 2004 Jun;19(3):180-9. doi: 10.2133/dmpk.19.180.

Abstract

The organic cation/carnitine transporter OCTN2 transports carnitine in a sodium-dependent manner, whereas it transports organic cations sodium-independently. To elucidate the functional domain in OCTN2, we constructed chimeric proteins of human OCTN2 (hOCTN2) and mouse OCTN3 (mOCTN3) and introduced mutations at several amino acids conserved among human, rat and mouse OCTN2. We found that transmembrane domains (TMD) 1-7 are responsible for organic cation transport and for sodium dependence in carnitine transport. Within TMD1-7, Q180 and Q207 of hOCTN2 are the critical amino acids for the sodium dependence, and double mutation of Q180 and Q207 resulted in minimal change in transport activity when sodium was removed from the uptake medium. We propose that sodium-dependent affinity for carnitine is dependent on sodium recognition by these critical amino acids in hOCTN2, whereas carnitine transport by OCTN2 requires functional linkage between TMD1-7 and TMD11.

摘要

有机阳离子/肉碱转运体OCTN2以钠依赖的方式转运肉碱,而它以钠非依赖的方式转运有机阳离子。为了阐明OCTN2中的功能结构域,我们构建了人OCTN2(hOCTN2)和小鼠OCTN3(mOCTN3)的嵌合蛋白,并在人、大鼠和小鼠OCTN2中保守的几个氨基酸处引入突变。我们发现跨膜结构域(TMD)1 - 7负责有机阳离子转运以及肉碱转运中的钠依赖性。在TMD1 - 7内,hOCTN2的Q180和Q207是钠依赖性的关键氨基酸,当从摄取培养基中去除钠时,Q180和Q207的双突变导致转运活性的变化最小。我们提出,对肉碱的钠依赖性亲和力取决于hOCTN2中这些关键氨基酸对钠的识别,而OCTN2介导的肉碱转运需要TMD1 - 7和TMD11之间的功能连接。

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