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Novel P-Type ATPases Mediate High-Affinity Potassium or Sodium Uptake in Fungi

机译:新型P型ATP酶介导真菌中高亲和力钾或钠的吸收

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摘要

Fungi have an absolute requirement for K+, but K+ may be partially replaced by Na+. Na+ uptake in Ustilago maydis and Pichia sorbitophila was found to exhibit a fast rate, low Km, and apparent independence of the membrane potential. Searches of sequences with similarity to P-type ATPases in databases allowed us to identify three genes in these species, Umacu1, Umacu2, and PsACU1, that could encode P-type ATPases of a novel type. Deletion of the acu1 and acu2 genes proved that they encoded the transporters that mediated the high-affinity Na+ uptake of U. maydis. Heterologous expressions of the Umacu2 gene in K+ transport mutants of Saccharomyces cerevisiae and transport studies in the single and double Δacu1 and Δacu2 mutants of U. maydis revealed that the acu1 and acu2 genes encode transporters that mediated high-affinity K+ uptake in addition to Na+ uptake. Other fungi also have genes or pseudogenes whose translated sequences show high similarity to the ACU proteins of U. maydis and P. sorbitophila. In the phylogenetic tree of P-type ATPases all the identified ACU ATPases define a new cluster, which shows the lowest divergence with type IIC, animal Na+,K+-ATPases. The fungal high-affinity Na+ uptake mediated by ACU ATPases is functionally identical to the uptake that is mediated by some plant HKT transporters.
机译:真菌对K + 有绝对的要求,但K + 可能会被Na + 部分取代。发现在Ustilago maydis和嗜果毕赤酵母中Na + 的摄取速率快,Km低,并且膜电位明显独立。在数据库中搜索与P型ATP酶相似的序列,使我们能够鉴定这些物种中的三个基因Umacu1,Umacu2和PsACU1,它们可以编码新型P型ATP酶。 acu1和acu2基因的缺失证明它们编码介导高亲和力Na.sup> + 对美人鱼的摄取的转运蛋白。 Umacu2基因在酿酒酵母K + 转运突变体中的异源表达以及在U.maydis的单个和双重Δacu1和Δacu2突变体中的转运研究表明acu1和acu2基因编码的转运蛋白介导了高除了Na + 吸收外,还吸收K + 。其他真菌也具有其翻译序列与 U的ACU蛋白高度相似的基因或假基因。 maydis P。嗜山梨。在P型ATPase的系统发育树中,所有鉴定出的ACU ATPase都定义了一个新簇,该簇显示出与IIC类型的最低差异,即动物Na + ,K + -ATPases 。 ACU ATPases介导的真菌高亲和性Na + 摄取与某些植物HKT转运蛋白介导的摄取在功能上相同。

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