Involvement of SLC16A1/MCT1 and SLC16A3/MCT4 in l-lactate transport in the hepatocellular carcinoma cell line

IF 1.7 4区 医学 Q3 PHARMACOLOGY & PHARMACY
Yuto Mukai, Atsushi Yamaguchi, Tomoya Sakuma, Takanobu Nadai, Ayako Furugen, Katsuya Narumi, Masaki Kobayashi
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引用次数: 1

Abstract

Fourteen isoforms of the monocarboxylate transporter (MCT) have been reported. Among the MCT isoforms, MCT1, MCT2, and MCT4 play a role in l-lactate/proton cotransport and are involved in the balance of intracellular energy and pH. Therefore, MCT1, MCT2, and MCT4 are associated with energy metabolism processes in normal and pathological cells. In the present study, we evaluated the expression of MCT1, MCT2, and MCT4 and the contribution of these three MCT isoforms to l-lactate uptake in hepatocellular carcinoma (HCC) cells. In HepG2 and Huh-7 cells, l-lactate transport was pH-dependent, which is characteristic of MCT1, MCT2, and MCT4. Furthermore, l-lactate uptake was selectively inhibited by MCT1 and MCT4 inhibitors in HepG2 and Huh-7 cells. Kinetic analysis of HepG2 cells demonstrated that l-lactate uptake was biphasic. Although the knockdown of MCT1 and MCT4 in the HepG2 cells decreased the uptake of l-lactate, the knockdown of MCT2 had no effect on the uptake of l-lactate. Consequently, we concluded that both MCT1 and MCT4 were involved in the transport of l-lactate in HepG2 and Huh-7 cells at pH 6.0. In contrast, PXB-cells, freshly isolated hepatocytes from humanized mouse livers, showed lower MCT4 expression and l-lactate uptake at pH 6.0 compared to that in HCC cell lines. In conclusion, MCT4, which contributes to l-lactate transport in HCC cells, is significantly different in HCC compared to normal hepatocytes, and has potential as a target for HCC treatment.

Abstract Image

SLC16A1/MCT1和SLC16A3/MCT4参与l-乳酸在肝癌细胞系中的转运
单羧酸转运体(MCT)的14种异构体已被报道。在MCT亚型中,MCT1、MCT2和MCT4参与l-乳酸/质子共转运,并参与细胞内能量和ph的平衡。因此,MCT1、MCT2和MCT4与正常和病理细胞的能量代谢过程有关。在本研究中,我们评估了MCT1、MCT2和MCT4的表达,以及这三种MCT亚型在肝细胞癌(HCC)细胞中对l-乳酸摄取的贡献。在HepG2和Huh-7细胞中,l-乳酸转运是ph依赖性的,这是MCT1、MCT2和MCT4的特征。此外,MCT1和MCT4抑制剂选择性地抑制了HepG2和Huh-7细胞的l-乳酸摄取。HepG2细胞的动力学分析表明,l-乳酸的摄取是双期的。虽然敲低MCT1和MCT4会降低HepG2细胞对l-乳酸的摄取,但敲低MCT2对l-乳酸的摄取没有影响。因此,我们得出结论,MCT1和MCT4都参与了pH 6.0时HepG2和Huh-7细胞中l-乳酸的转运。相比之下,pxb细胞,从人源化小鼠肝脏中新分离的肝细胞,与HCC细胞系相比,在pH 6.0时MCT4表达和l-乳酸摄取较低。综上所述,MCT4在HCC细胞中参与l-乳酸转运,与正常肝细胞相比存在显著差异,具有作为HCC治疗靶点的潜力。
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来源期刊
CiteScore
3.60
自引率
0.00%
发文量
35
审稿时长
6-12 weeks
期刊介绍: Biopharmaceutics & Drug Dispositionpublishes original review articles, short communications, and reports in biopharmaceutics, drug disposition, pharmacokinetics and pharmacodynamics, especially those that have a direct relation to the drug discovery/development and the therapeutic use of drugs. These includes: - animal and human pharmacological studies that focus on therapeutic response. pharmacodynamics, and toxicity related to plasma and tissue concentrations of drugs and their metabolites, - in vitro and in vivo drug absorption, distribution, metabolism, transport, and excretion studies that facilitate investigations related to the use of drugs in man - studies on membrane transport and enzymes, including their regulation and the impact of pharmacogenomics on drug absorption and disposition, - simulation and modeling in drug discovery and development - theoretical treatises - includes themed issues and reviews and exclude manuscripts on - bioavailability studies reporting only on simple PK parameters such as Cmax, tmax and t1/2 without mechanistic interpretation - analytical methods
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