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Boron Tolerance in Aspergillus nidulans Is Sustained by the SltA Pathway Through the SLC-Family Transporters SbtA and SbtB

机译:通过SLC家庭转运蛋白SbtA和SbtB的SltA途径可维持构巢曲霉的硼耐受性

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摘要

Microbial cells interact with the environment by adapting to external changes. Signal transduction pathways participate in both sensing and responding in the form of modification of gene expression patterns, enabling cell survival. The filamentous fungal-specific SltA pathway regulates tolerance to alkalinity, elevated cation concentrations and, as shown in this work, also stress conditions induced by borates. Growth of sltA mutants is inhibited by increasing millimolar concentrations of boric acid or borax (sodium tetraborate). In an attempt to identify genes required for boron-stress response, we determined the boric acid or borax-dependent expression of sbtA and sbtB, orthologs of Saccharomyces cerevisiae bor1, and a reduction in their transcript levels in a ΔsltA mutant. Deletion of sbtA, but mainly that of sbtB, decreased the tolerance to boric acid or borax. In contrast, null mutants of genes coding for additional transporters of the Solute Carrier (SLC) family, sB, sbtD or sbtE, showed an unaltered growth pattern under the same stress conditions. Taken together, our results suggest that the SltA pathway induces, through SbtA and SbtB, the export of toxic concentrations of borates, which have largely recognized antimicrobial properties.
机译:微生物细胞通过适应外部变化与环境相互作用。信号转导途径以修饰基因表达模式的形式参与传感和响应,从而实现细胞存活。丝状真菌特异性SltA途径可调节对碱度的耐受性,阳离子浓度的升高,并且如本工作所示,还可调节硼酸盐诱导的胁迫条件。 sltA -突变体的生长通过增加毫摩尔浓度的硼酸或硼砂(四硼酸钠)来抑制。为了确定需要硼胁迫反应的基因,我们确定了sbtA和sbtB的硼酸或硼砂依赖性表达,酿酒酵母bor1的直系同源物以及ΔsltA突变体中其转录水平的降低。删除sbtA,但主要是删除sbtB,降低了对硼酸或硼砂的耐受性。相反,编码溶质载体(SLC)家族的其他转运蛋白,sB,sbtD或sbtE的基因的无效突变体在相同胁迫条件下显示出不变的生长模式。两者合计,我们的结果表明,SltA途径通过SbtA和SbtB诱导了毒性浓度高的硼酸盐的出口,而硼酸盐的毒性已得到广泛认可。

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