Surrer Daniela B, Fromm Martin F, Maas Renke, König Jörg
Institute of Experimental and Clinical Pharmacology and Toxicology, Friedrich-Alexander-Universität Erlangen-Nürnberg, Fahrstrasse 17, 91054 Erlangen, Germany.
Metabolites. 2022 Mar 22;12(4):273. doi: 10.3390/metabo12040273.
The uptake transporter NaCT (gene symbol ) is expressed in liver and brain and important for energy metabolism and brain development. Substrates include tricarboxylic acid cycle intermediates, e.g., citrate and succinate. To gain insights into the substrate spectrum of NaCT, we tested whether arginine and the cardioactive L-arginine metabolites asymmetric dimethylarginine (ADMA) and L-homoarginine are also transported by human and mouse NaCT/Nact. Using HEK293 cells overexpressing human or mouse NaCT/Nact we characterized these substances as substrates. Furthermore, inhibition studies were performed using the arginine derivative symmetric dimethylarginine (SDMA), the NaCT transport inhibitor BI01383298, and the prototypic substrate citrate. Arginine and the derivatives ADMA and L-homoarginine were identified as substrates of human and mouse NaCT. Transport of arginine and derivatives mediated by human and mouse NaCT were dose-dependently inhibited by SDMA. Whereas BI01383298 inhibited only human NaCT-mediated citrate uptake, it inhibits the uptake of arginine and derivatives mediated by both human NaCT and mouse Nact. In contrast, the prototypic substrate citrate inhibited the transport of arginine and derivatives mediated only by human NaCT. These results demonstrate a so far unknown link between NaCT/Nact and L-arginine and its cardiovascular important derivatives.
摄取转运体NaCT(基因符号 )在肝脏和大脑中表达,对能量代谢和大脑发育很重要。底物包括三羧酸循环中间体,例如柠檬酸和琥珀酸。为了深入了解NaCT的底物谱,我们测试了精氨酸以及具有心脏活性的L-精氨酸代谢物不对称二甲基精氨酸(ADMA)和L-高精氨酸是否也能被人和小鼠的NaCT/Nact转运。使用过表达人或小鼠NaCT/Nact的HEK293细胞,我们将这些物质鉴定为底物。此外,使用精氨酸衍生物对称二甲基精氨酸(SDMA)、NaCT转运抑制剂BI01383298和原型底物柠檬酸进行了抑制研究。精氨酸以及衍生物ADMA和L-高精氨酸被鉴定为人和小鼠NaCT的底物。SDMA剂量依赖性地抑制人和小鼠NaCT介导的精氨酸及其衍生物的转运。虽然BI01383298仅抑制人NaCT介导的柠檬酸摄取,但它抑制人NaCT和小鼠Nact介导的精氨酸及其衍生物的摄取。相比之下,原型底物柠檬酸仅抑制人NaCT介导的精氨酸及其衍生物的转运。这些结果证明了NaCT/Nact与L-精氨酸及其心血管重要衍生物之间迄今为止未知的联系。