Balamurugan Krishnaswamy, Ashokkumar Balasubramaniem, Moussaif Mustapha, Sze Ji Ying, Said Hamid M
VA Medical Center-151, Long Beach, CA 90822, USA.
Am J Physiol Cell Physiol. 2007 Aug;293(2):C670-81. doi: 10.1152/ajpcell.00516.2006. Epub 2007 May 2.
Two putative orthologs to the human reduced folate carrier (hRFC), folt-1 and folt-2, which share a 40 and 31% identity, respectively, with the hRFC sequence, have been identified in the Caenorhabditis elegans genome. Functional characterization of the open reading frame of the putative folt-1 and folt-2 showed folt-1 to be a specific folate transporter. Transport of folate by folt-1 expressed in a heterologous expression system showed an acidic pH dependence, saturability (apparent K(m) of 1.23 +/- 0.18 microM), a similar degree of inhibition by reduced and substituted folate derivatives, sensitivity to the anti-inflammatory drug sulfasalazine (apparent K(i) of 0.13 mM), and inhibition by anion transport inhibitors, e.g., DIDS. Knocking down (silencing) or knocking out the folt-1 gene led to a significant inhibition of folate uptake by intact living C. elegans. We also cloned the 5'-regulatory region of the folt-1 gene and confirmed promoter activity of the construct in vivo in living C. elegans. With the use of the transcriptional fusion construct (i.e., folt-1::GFP), the expression pattern of folt-1 in different tissues of living animal was found to be highest in the pharynx and intestine. Furthermore, folt-1::GFP expression was developmentally and adaptively regulated in vivo. These studies demonstrate for the first time the existence of a specialized folate uptake system in C. elegans that has similar characteristics to the folate uptake process of the human intestine. Thus C. elegans provides a genetically tractable model that can be used to study integrative aspects of the folate uptake process in the context of the whole animal level.
在秀丽隐杆线虫基因组中已鉴定出与人类还原型叶酸载体(hRFC)的两个假定直系同源物,即folt-1和folt-2,它们与hRFC序列的同一性分别为40%和31%。对假定的folt-1和folt-2开放阅读框的功能表征表明,folt-1是一种特异性叶酸转运蛋白。在异源表达系统中表达的folt-1对叶酸的转运表现出酸性pH依赖性、可饱和性(表观K(m)为1.23±0.18 microM)、还原型和取代型叶酸衍生物的抑制程度相似、对抗炎药柳氮磺胺吡啶敏感(表观K(i)为0.13 mM)以及受阴离子转运抑制剂(如DIDS)抑制。敲低(沉默)或敲除folt-1基因会导致完整活的秀丽隐杆线虫对叶酸摄取的显著抑制。我们还克隆了folt-1基因的5'调控区,并在活的秀丽隐杆线虫体内证实了该构建体的启动子活性。使用转录融合构建体(即folt-1::GFP),发现folt-1在活体动物不同组织中的表达模式在咽部和肠道中最高。此外,folt-1::GFP的表达在体内受到发育和适应性调节。这些研究首次证明秀丽隐杆线虫中存在一种专门的叶酸摄取系统,其具有与人类肠道叶酸摄取过程相似的特征。因此,秀丽隐杆线虫提供了一个遗传上易于处理的模型,可用于在整个动物水平的背景下研究叶酸摄取过程的综合方面。