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首页> 外文期刊>Journal of bacteriology >Identification of a third secondary carrier (DcuC) for anaerobic C4-dicarboxylate transport in Escherichia coli: roles of the three Dcu carriers in uptake and exchange.
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Identification of a third secondary carrier (DcuC) for anaerobic C4-dicarboxylate transport in Escherichia coli: roles of the three Dcu carriers in uptake and exchange.

机译:鉴定用于大肠杆菌中厌氧C4-二羧酸盐运输的第三种次级载体(DcuC):这三种Dcu载体在吸收和交换中的作用。

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摘要

In Escherichia coli, two carriers (DcuA and DcuB) for the transport of C4 dicarboxylates in anaerobic growth were known. Here a novel gene dcuC was identified encoding a secondary carrier (DcuC) for C4 dicarboxylates which is functional in anaerobic growth. The dcuC gene is located at min 14.1 of the E. coli map in the counterclockwise orientation. The dcuC gene combines two open reading frames found in other strains of E. coli K-12. The gene product (DcuC) is responsible for the transport of C4 dicarboxylates in DcuA-DcuB-deficient cells. The triple mutant (dcuA dcuB dcuC) is completely devoid of C4-dicarboxylate transport (exchange and uptake) during anaerobic growth, and the bacteria are no longer capable of growth by fumarate respiration. DcuC, however, is not required for C4-dicarboxylate uptake in aerobic growth. The dcuC gene encodes a putative protein of 461 amino acid residues with properties typical for secondary procaryotic carriers. DcuC shows sequence similarity to the two major anaerobic C4-dicarboxylate carriers DcuA and DcuB. Mutants producing only DcuA, DcuB, or DcuC were prepared. In the mutants, DcuA, DcuB, and DcuC were each able to operate in the exchange and uptake mode.
机译:在大肠杆菌中,已知在厌氧生长中用于运输C4二羧酸盐的两种载体(DcuA和DcuB)。在这里确定了一个新的基因dcuC,它编码C4二羧酸盐的次级载体(DcuC),该载体在厌氧生长中起作用。 dcuC基因以逆时针方向位于大肠杆菌图谱的最小14.1。 dcuC基因结合了在大肠杆菌K-12其他菌株中发现的两个开放阅读框。基因产物(DcuC)负责在DcuA-DcuB缺陷细胞中转运C4二羧酸盐。该三重突变体(dcuA dcuB dcuC)在厌氧生长过程中完全没有C4-二羧酸盐转运(交换和吸收),并且细菌不再能够通过富马酸盐呼吸来生长。但是,在有氧生长中摄取C4-二羧酸盐不需要DcuC。 dcuC基因编码一个461个氨基酸残基的推定蛋白质,具有次级原核生物载体的典型特性。 DcuC显示与两个主要的厌氧C4-二羧酸盐载体DcuA和DcuB的序列相似性。制备仅产生DcuA,DcuB或DcuC的突变体。在突变体中,DcuA,DcuB和DcuC均能够以交换和摄取模式运行。

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