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首页> 外文期刊>Applied Microbiology and Biotechnology >GltS, the sodium-coupled L-glutamate uptake system of Corynebacterium glutamicum: identification of the corresponding gene and impact on L-glutamate production
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GltS, the sodium-coupled L-glutamate uptake system of Corynebacterium glutamicum: identification of the corresponding gene and impact on L-glutamate production

机译:GltS,谷氨酸棒杆菌的钠偶联的L-谷氨酸摄取系统:鉴定相应基因及其对L-谷氨酸生产的影响

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摘要

A screening procedure was established to identify Corynebacterium glutamicum transposon mutants with an altered L-glutamate excretion behaviour. By this microtiter plate-based approach seven non- or less excreting C. glutamicum strains and two hyper-excreters were found. The subsequently carried out molecular analysis of a hyper-producing clone led to the identification of the gltS gene, which codes for the sodium-coupled secondary L-glutamate uptake system in C. glutamicum. Characterization of a gltS deletion strain revealed that this transporter has a weak but significant impact on L-glutamate production induced by biotin limitation in the wild type. Obviously, GltS leads to the re-uptake of excreted L-glutamate causing a futile cycle. In accord with this hypothesis, the overexpression of gltS decreased L-glutamate production.
机译:建立了筛选程序以鉴定具有改变的L-谷氨酸排泄行为的谷氨酸棒杆菌转座子突变体。通过这种基于微量滴定板的方法,发现了七个不排泄或更少排泄的谷氨酸棒杆菌菌株和两个超排泄器。随后对高产克隆的分子分析导致对gltS基因的鉴定,该基因编码谷氨酸棒杆菌中钠耦合的次级L-谷氨酸摄取系统。 gltS缺失菌株的表征表明,该转运蛋白对野生型生物素限制诱导的L-谷氨酸生产具有微弱但重要的影响。显然,GltS导致重新摄取排泄的L-谷氨酸,从而导致无效循环。根据该假设,gltS的过表达降低了L-谷氨酸的产生。

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  • 来源
    《Applied Microbiology and Biotechnology》 |2003年第6期|738-742|共5页
  • 作者单位

    Institut für Biochemie der Universität zu Köln Zülpicher-Strasse 47 50674 Cologne Germany;

    Institut für Biochemie der Universität zu Köln Zülpicher-Strasse 47 50674 Cologne Germany;

    Institut für Biochemie der Universität zu Köln Zülpicher-Strasse 47 50674 Cologne Germany;

    Institut für Biochemie der Universität zu Köln Zülpicher-Strasse 47 50674 Cologne Germany;

    Institut für Biochemie der Universität zu Köln Zülpicher-Strasse 47 50674 Cologne Germany;

    Institut für Biochemie der Universität zu Köln Zülpicher-Strasse 47 50674 Cologne Germany;

    Institut für Biochemie der Universität zu Köln Zülpicher-Strasse 47 50674 Cologne Germany;

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