Wysocki R, Chéry C C, Wawrzycka D, Van Hulle M, Cornelis R, Thevelein J M, Tamás M J
Institute of Microbiology, Wroclaw University, Przybyszewskiego 63, 51-148 Wroclaw, Poland.
Mol Microbiol. 2001 Jun;40(6):1391-401. doi: 10.1046/j.1365-2958.2001.02485.x.
The Saccharomyces cerevisiae FPS1 gene encodes a glycerol channel protein involved in osmoregulation. We present evidence that Fps1p mediates influx of the trivalent metalloids arsenite and antimonite in yeast. Deletion of FPS1 improves tolerance to arsenite and potassium antimonyl tartrate. Under high osmolarity conditions, when the Fps1p channel is closed, wild-type cells show the same degree of As(III) and Sb(III) tolerance as the fps1Delta mutant. Additional deletion of FPS1 in mutants defective in arsenite and antimonite detoxification partially suppresses their hypersensitivity to metalloid salts. Cells expressing a constitutively open form of the Fps1p channel are highly sensitive to both arsenite and antimonite. We also show by direct transport assays that arsenite uptake is mediated by Fps1p. Yeast cells appear to control the Fps1p-mediated pathway of metalloid uptake, as expression of the FPS1 gene is repressed upon As(III) and Sb(III) addition. To our knowledge, this is the first report describing a eukaryotic uptake mechanism for arsenite and antimonite and its involvement in metalloid tolerance.
酿酒酵母FPS1基因编码一种参与渗透调节的甘油通道蛋白。我们提供的证据表明,Fps1p介导酵母中三价类金属亚砷酸盐和亚锑酸盐的流入。删除FPS1可提高对亚砷酸盐和酒石酸锑钾的耐受性。在高渗透压条件下,当Fps1p通道关闭时,野生型细胞对As(III)和Sb(III)的耐受性与fps1Delta突变体相同。在亚砷酸盐和亚锑酸盐解毒缺陷的突变体中额外删除FPS1可部分抑制它们对类金属盐的超敏反应。表达Fps1p通道组成型开放形式的细胞对亚砷酸盐和亚锑酸盐都高度敏感。我们还通过直接转运分析表明,亚砷酸盐的摄取是由Fps1p介导的。酵母细胞似乎控制着Fps1p介导的类金属摄取途径,因为在添加As(III)和Sb(III)后,FPS1基因的表达受到抑制。据我们所知,这是第一份描述真核生物中亚砷酸盐和亚锑酸盐摄取机制及其与类金属耐受性关系的报告。