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Functional activity of L-carnitine transporters in human airway epithelial cells

机译:左旋肉碱转运蛋白在人气道上皮细胞中的功能活性

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Carnitine plays a physiologically important role in the beta-oxidation of fatty acids, facilitating the transport of long chain fatty acids across the inher mitochondrial membrane. Distribution of carnitine within the body tissues is mainly performed by novel organic cation transporter (OCTN) family, including the isoforms OCTN1 (SLC22A4) and OCTN2 (SLC22A5) expressed in human. We performed here a characterization of carnitine transport in human airway epithelial cells A549, Calu-3, NCl-H441, and BEAS-2B, by means of an integrated approach combining data of mRNA/protein expression with the kinetic and inhibition analyses of L-[H-3]carnitine transport. Carnitine uptake was strictly Na+-dependent in all cell models. In A549 and BEAS-2B cells, carnitine uptake was mediated by one high -affinity component (K-m <2 mu M) identifiable with OCTN2. In both these cell models, indeed, carnitine uptake was maximally inhibited by betaine and strongly reduced by SLC22A5/OCTN2 silencing. Conversely, Calu-3 and NCI-H441 exhibited both a high (K-m similar to 20 mu M) and a low affinity (K-m > 1 mM) transport component. While the high affinity component is identifiable with OCTN2, the low affinity uptake is mediated by ATB(0,+), a Na+, and Cl--coupled transport system for neutral and cationic amino acids, as demonstrated by the inhibition by leucine and arginine, as well as by SLC6A14/ATB(0,+) silencing. The presence of this transporter leads to a massive accumulation of carnitine inside the cells and may be of peculiar relevance in pathologic conditions of carnitine deficiency, such as those associated to OCTN2 defects. (C) 2015 Elsevier B.V. All rights reserved.
机译:肉碱在脂肪酸的β-氧化中起着重要的生理作用,促进长链脂肪酸穿过线粒体膜的转运。肉碱在人体组织中的分布主要由新型有机阳离子转运蛋白(OCTN)家族完成,包括在人体内表达的同工型OCTN1(SLC22A4)和OCTN2(SLC22A5)。我们在这里通过结合mRNA和蛋白质表达数据以及L-动力学和抑制分析的整合方法,对人气道上皮细胞A549,Calu-3,NCl-H441和BEAS-2B中的肉碱转运进行了表征。 [H-3]肉碱运输。在所有细胞模型中,肉碱的摄取均严格依赖于Na +。在A549和BEAS-2B细胞中,肉碱的摄取是由一种可与OCTN2识别的高亲和力组分(K-m <2μM)介导的。实际上,在这两种细胞模型中,甜菜碱均最大程度地抑制了肉碱的摄入,而SLC22A5 / OCTN2沉默则极大地降低了肉碱的摄入。相反,Calu-3和NCI-H441既表现出高(K-m类似于20μM),又表现出低亲和力(K-m> 1 mM)。虽然高亲和力成分可通过OCTN2识别,但低亲和力吸收是由ATB(0,+),一种Na +和Cl耦合的中性和阳离子氨基酸转运系统介导的,如亮氨酸和精氨酸的抑制作用,以及通过SLC6A14 / ATB(0,+)沉默。该转运蛋白的存在导致细胞内肉碱的大量积累,并且在肉碱缺乏的病理状况(例如与OCTN2缺陷相关的病理状况)中可能具有特殊的意义。 (C)2015 Elsevier B.V.保留所有权利。

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