Yasuda Satoru, Hasui Satoko, Kobayashi Masaki, Itagaki Shirou, Hirano Takeshi, Iseki Ken
Laboratory of Clinical Pharmaceutics and Therapeutics, Division of Pharmascience, Faculty of Pharmaceutical Sciences, Hokkaido University, Sapporo 060-0812, Japan.
Biosci Biotechnol Biochem. 2008 Feb;72(2):329-34. doi: 10.1271/bbb.70347. Epub 2008 Feb 7.
The aim of this study was to elucidate the mechanism of folate transport in the placenta. A study of folate was carried out to determine which carriers transport folates in the human choriocarcinoma cell line BeWo, a model cell line for the placenta. We investigated the effects of buffer pH and various compounds on folate uptake. In the first part of the study, the expression levels of the mRNA of the folate receptor alpha (FRalpha), the reduced folate carrier (RFC), and heme carrier protein 1 (HCP1) were determined in BeWo cells by RT-PCR analysis. Folate uptake into BeWo cells was greater under an acidic buffer condition than under a neutral one. Structure analogs of folates inhibited folate uptake under all buffer pH conditions, but anion drugs (e.g., pravastatin) inhibited folate uptake only under an acidic buffer condition. Although thiamine pyrophosphate (TPP), a substrate of RFC, had no effect on folate uptake, hemin (a weak inhibitor of folate uptake via HCP1) decreased folate uptake to about 80% of the control level under an acidic buffer condition. Furthermore, kinetic analysis showed that hemin inhibited the low-affinity phase of folate uptake under an acidic buffer condition. We conclude that pH-dependent folate uptake in BeWo cells is mediated by at least two carriers. RFC is not involved in folate uptake, but FRalpha (high affinity phase) and HCP1 (low affinity phase) transport folate in BeWo cells.
本研究的目的是阐明胎盘叶酸转运的机制。开展了一项关于叶酸的研究,以确定在人绒毛膜癌细胞系BeWo(一种胎盘模型细胞系)中哪些载体转运叶酸。我们研究了缓冲液pH值和各种化合物对叶酸摄取的影响。在研究的第一部分中,通过逆转录聚合酶链反应(RT-PCR)分析确定了BeWo细胞中叶酸受体α(FRα)、还原型叶酸载体(RFC)和血红素载体蛋白1(HCP1)的mRNA表达水平。在酸性缓冲条件下,BeWo细胞对叶酸的摄取量大于中性条件下。叶酸的结构类似物在所有缓冲液pH条件下均抑制叶酸摄取,但阴离子药物(如普伐他汀)仅在酸性缓冲条件下抑制叶酸摄取。虽然RFC的底物硫胺素焦磷酸(TPP)对叶酸摄取没有影响,但血红素(通过HCP1摄取叶酸的弱抑制剂)在酸性缓冲条件下将叶酸摄取量降低至对照水平的约80%。此外,动力学分析表明,血红素在酸性缓冲条件下抑制叶酸摄取的低亲和力阶段。我们得出结论,BeWo细胞中pH依赖性叶酸摄取至少由两种载体介导。RFC不参与叶酸摄取,但FRα(高亲和力阶段)和HCP1(低亲和力阶段)在BeWo细胞中转运叶酸。