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Major sulfonate transporter Soa1 in Saccharomyces cerevisiae and considerable substrate diversity in its fungal family

机译:酿酒酵母中的主要磺酸盐转运蛋白Soa1及其真菌家族中大量的底物多样性

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摘要

Sulfate is a well-established sulfur source for fungi; however, in soils sulfonates and sulfate esters, especially choline sulfate, are often much more prominent. Here we show that Saccharomyces cerevisiae YIL166C(SOA1) encodes an inorganic sulfur (sulfate, sulfite and thiosulfate) transporter that also catalyses sulfonate and choline sulfate uptake. Phylogenetic analysis of fungal SOA1 orthologues and expression of 20 members in the sul1Δ sul2Δ soa1Δ strain, which is deficient in inorganic and organic sulfur compound uptake, reveals that these transporters have diverse substrate preferences for sulfur compounds. We further show that SOA2, a S. cerevisiae SOA1 paralogue found in S. uvarum, S. eubayanus and S. arboricola is likely to be an evolutionary remnant of the uncharacterized open reading frames YOL163W and YOL162W. Our work highlights the importance of sulfonates and choline sulfate as sulfur sources in the natural environment of S. cerevisiae and other fungi by identifying fungal transporters for these compounds.
机译:硫酸盐是一种公认​​的真菌硫源。但是,在土壤中,磺酸盐和硫酸酯,尤其是胆碱硫酸盐通常更为突出。在这里,我们显示酿酒酵母YIL166C(SOA1)编码一种无机硫(硫酸盐,亚硫酸盐和硫代硫酸盐)转运蛋白,它也催化磺酸盐和胆碱硫酸盐的吸收。系统发育分析真菌SOA1直向同源物和sul1Δsul2Δsoa1Δ菌株中20个成员的表达,该菌株缺乏无机和有机硫化合物的吸收,揭示了这些转运蛋白对硫化合物具有不同的底物偏好。我们进一步表明,SOA2,一种在啤酒酵母,葡萄球菌和树栖葡萄球菌中发现的酿酒酵母SOA1旁系同源物,很可能是未鉴定的开放阅读框YOL163W和YOL162W的进化残余。我们的工作通过确定这些化合物的真菌转运蛋白,突出了在酿酒酵母和其他真菌的自然环境中磺酸盐和胆碱硫酸盐作为硫源的重要性。

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