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Sulfate Transport in Penicillium chrysogenum:Cloning and Characterization of the sutA and sutB Genes

机译:产黄青霉中的硫酸盐转运:sutA和sutB基因的克隆和鉴定

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摘要

In industrial fermentations, Penicillium chrysogenum uses sulfate as the source of sulfur for the biosynthesis of penicillin. By a PCR-based approach, two genes, sutA and sutB, whose encoded products belong to the SulP superfamily of sulfate permeases were isolated. Transformation of a sulfate uptake-negative sB3 mutant of Aspergillus nidulans with the sutB gene completely restored sulfate uptake activity. The sutA gene did not complement the A. nidulans sB3 mutation, even when expressed under control of the sutB promoter. Expression of both sutA and sutB in P. chrysogenum is induced by growth under sulfur starvation conditions. However, sutA is expressed to a much lower level than is sutB. Disruption of sutB resulted in a loss of sulfate uptake ability. Overall, the results show that SutB is the major sulfate permease involved in sulfate uptake by P. chrysogenum.
机译:在工业发酵中,产黄青霉使用硫酸盐作为硫的来源,用于青霉素的生物合成。通过基于PCR的方法,分离了两个基因sutA和sutB,其编码产物属于硫酸盐渗透酶的SulP超家族。用sutB基因转化构巢曲霉的硫酸盐吸收阴性sB3突变体可完全恢复硫酸盐吸收活性。即使当在sutB启动子的控制下表达时,sutA基因也不能互补构巢曲霉sB3突变。 sutA和sutB在产黄青霉中的表达是通过在硫饥饿条件下的生长诱导的。但是,与utB相比,sutA的表达水平要低得多。 sutB的破坏导致硫酸盐吸收能力的丧失。总体而言,结果表明,SutB是主要的硫酸盐渗透酶,参与了产黄青霉的硫酸盐吸收。

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