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Regulation of alginate catabolism involves a GntR family repressor in the marine flavobacterium Zobellia galactanivorans Dsij(T)

机译:藻酸盐分解代谢的调节涉及在Zobellia Zobellia Galactanivorans Dsij(T)的GNTR家族压缩机

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摘要

Marine flavobacteria possess dedicated Polysaccharide Utilization Loci (PULs) enabling efficient degradation of a variety of algal polysaccharides. The expression of these PULs is tightly controlled by the presence of the substrate, yet details on the regulatory mechanisms are still lacking. The marine flavobacterium Zobellia galactanivorans Dsij(T) digests many algal polysaccharides, including alginate from brown algae. Its complex Alginate Utilization System (AUS) comprises a PUL and several other loci. Here, we showed that the expression of the AUS is strongly and rapidly (<30 min) induced upon addition of alginate, leading to biphasic substrate utilization. Polymeric alginate is first degraded into smaller oligosaccharides that accumulate in the extracellular medium before being assimilated. We found that AusR, a GntR family protein encoded within the PUL, regulates alginate catabolism by repressing the transcription of most AUS genes. Based on our genetic, genomic, transcriptomic and biochemical results, we propose the first model of regulation for a PUL in marine bacteria. AusR binds to promoters of AUS genes via single, double or triple copies of operator. Upon addition of alginate, secreted enzymes expressed at a basal level catalyze the initial breakdown of the polymer. Metabolic intermediates produced during degradation act as effectors of AusR and inhibit the formation of AusR/DNA complexes, thus lifting transcriptional repression.
机译:海洋黄杆菌具有专用的多糖利用基因座(脉冲),从而能够有效降解各种藻类多糖。这些脉冲的表达通过基板的存在而紧密控制,但是对调节机制的细节仍然缺乏。海洋黄杆菌Zobellia加酰胺蛋白酶Dsij(t)消化许多藻类多糖,包括来自棕海藻的藻酸盐。其复杂的藻酸盐利用系统(AUS)包括脉冲和其他几个基因座。在这里,我们表明,在加入海藻酸盐后,诱导的AUS的表达强烈且迅速(<30分钟),导致双相衬底利用。聚合物藻酸盐首先降解到较小的低聚糖中,在同化之前在细胞外培养基中积聚。我们发现AUSR,在脉冲内编码的GNTR家族蛋白质,通过压制大多数AUS基因的转录来调节藻酸盐分解代谢。基于我们的遗传,基因组,转录组和生化结果,我们提出了普通细菌中含有液的第一种调节模型。 AUSR通过单一,双或三拷贝的操作员与AUS基因的启动子结合。在加入藻酸盐后,在基础水平下表达的分泌酶催化聚合物的初始粒度。降解期间产生的代谢中间体作为AUSR的效果,抑制AUSR / DNA复合物的形成,从而提升转录抑制。

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  • 来源
    《Nucleic Acids Research》 |2020年第14期|共15页
  • 作者单位

    Sorbonne Univ CNRS Integrat Biol Marine Models LBI2M Stn Biol Roscoff SBR F-29680 Roscoff France;

    Sorbonne Univ CNRS Integrat Biol Marine Models LBI2M Stn Biol Roscoff SBR F-29680 Roscoff France;

    Sorbonne Univ CNRS Integrat Biol Marine Models LBI2M Stn Biol Roscoff SBR F-29680 Roscoff France;

    Univ Paris Saclay INRAE UVSQ VIM F-78350 Jouy En Josas France;

    Sorbonne Univ CNRS Integrat Biol Marine Models LBI2M Stn Biol Roscoff SBR F-29680 Roscoff France;

    Univ Paris Sorbonne Univ Lab Jacques Louis Lions CNRS F-75252 Paris France;

    Sorbonne Univ CNRS Integrat Biol Marine Models LBI2M Stn Biol Roscoff SBR F-29680 Roscoff France;

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  • 正文语种 eng
  • 中图分类 生物化学;
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