Molecular Physiology of the Cell, Université libre de Bruxelles (ULB), IBMM (Biopark), Gosselies, Belgium.
Center for Microscopy and Molecular Imaging (CMMI), Université libre de Bruxelles (ULB), IBMM (Biopark), Gosselies, Belgium.
Sci Rep. 2017 Oct 23;7(1):13816. doi: 10.1038/s41598-017-14124-2.
FTY720 is a sphingoid base analog that acts as an anticancer agent in animal models. Its effect on tumor cells stems largely from its ability to trigger endocytosis of several nutrient transporters. The observation that FTY720 similarly stimulates downregulation of amino acid permeases in yeast suggests that the cellular mechanisms it targets, which are still poorly characterized, are evolutionarily conserved. We here report that adding FTY720 to yeast cells results in rapid inhibition of the intrinsic activity of multiple permeases. This effect is associated with inhibition of the TORC1 kinase complex, which in turn promotes ubiquitin-dependent permease endocytosis. Further analysis of the Gap1 permease showed that FTY720 elicits its ubiquitylation via the same factors that promote this modification when TORC1 is inhibited by rapamycin. We also show that FTY720 promotes endocytosis of the LAT1/SLC7A5 amino acid transporter in HeLa cells, this being preceded by loss of its transport activity and by mTORC1 inhibition. Our data suggest that in yeast, TORC1 deactivation resulting from FTY720-mediated inhibition of membrane transport elicits permease endocytosis. The same process seems to occur in human cells even though our data and previous reports suggest that FTY720 promotes transporter endocytosis via an additional mechanism insensitive to rapamycin.
FTY720 是一种鞘氨醇碱基类似物,在动物模型中作为一种抗癌剂。它对肿瘤细胞的作用主要源于其触发几种营养转运蛋白内吞的能力。FTY720 同样刺激酵母中氨基酸渗透酶下调的观察结果表明,其靶向的细胞机制仍未得到充分描述,是进化保守的。我们在这里报告,向酵母细胞中添加 FTY720 会导致多种渗透酶固有活性的快速抑制。这种效应与 TORC1 激酶复合物的抑制有关,而后者又促进了泛素依赖性渗透酶内吞作用。对 Gap1 渗透酶的进一步分析表明,FTY720 通过与 TORC1 被 rapamycin 抑制时促进这种修饰的相同因子来引发其泛素化。我们还表明,FTY720 促进了 HeLa 细胞中 LAT1/SLC7A5 氨基酸转运体的内吞作用,这先于其转运活性的丧失和 mTORC1 抑制。我们的数据表明,在酵母中,FTY720 介导的膜转运抑制导致 TORC1 失活,引发渗透酶内吞。尽管我们的数据和以前的报告表明,FTY720 通过一种对 rapamycin 不敏感的额外机制促进转运体的内吞作用,但在人类细胞中似乎也发生了同样的过程。