Talaia Gabriel, Gournas Christos, Saliba Elie, Barata-Antunes Cláudia, Casal Margarida, André Bruno, Diallinas George, Paiva Sandra
Centre of Molecular and Environmental Biology, Department of Biology, University of Minho, Campus of Gualtar, Braga 4710-057, Portugal.
Molecular Physiology of the Cell, Université Libre de Bruxelles (ULB), IBMM, Gosselies, Belgium.
J Mol Biol. 2017 Nov 24;429(23):3678-3695. doi: 10.1016/j.jmb.2017.09.014. Epub 2017 Sep 28.
Eukaryotic α-arrestins connect environmental or stress signaling pathways to the endocytosis of plasma membrane transporters or receptors. The Saccharomyces cerevisiae lactate transporter Jen1p has been used as a model cargo for elucidating the mechanisms underlying endocytic turnover in response to carbon sources. Here, we discover a novel pathway of Jen1p endocytosis mediated by the α-arrestin Bul1p in response to the presence of cycloheximide or rapamycin, or prolonged growth in lactate. While cycloheximide or rapamycin modify cells pleiotropically, the major effect of prolonged growth in lactate was shown to be external pH alkalinization. Importantly, employment of specific inactive Jen1p versions showed that Bul1p-dependent endocytosis requires lactate transport, according to the signal imposed. Our results support a model where conformational changes of Jen1p, associated with substrate/H symport, are critical for the efficiency of Bul1p-dependent Jen1p turnover.
真核生物α-抑制蛋白将环境或应激信号通路与质膜转运蛋白或受体的内吞作用联系起来。酿酒酵母乳酸转运蛋白Jen1p已被用作模型货物,以阐明响应碳源时内吞周转的潜在机制。在这里,我们发现了一种由α-抑制蛋白Bul1p介导的Jen1p内吞作用的新途径,该途径响应于环己酰亚胺或雷帕霉素的存在,或在乳酸中长时间生长。虽然环己酰亚胺或雷帕霉素对细胞有多种影响,但长时间在乳酸中生长的主要影响是细胞外pH值碱化。重要的是,使用特定的无活性Jen1p版本表明,根据施加的信号,Bul1p依赖性内吞作用需要乳酸转运。我们的结果支持了一个模型,即与底物/H同向转运相关的Jen1p构象变化对于Bul1p依赖性Jen1p周转的效率至关重要。