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The Mannitol Utilization System of the Marine Bacterium Zobellia galactanivorans

机译:海洋细菌Zobellia galactanivorans的甘露醇利用系统

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Mannitol is a polyol that occurs in a wide range of living organisms, where it fulfills different physiological roles. In particular, mannitol can account for as much as 20 to 30% of the dry weight of brown algae and is likely to be an important source of carbon for marine heterotrophic bacteria. Zobellia galactanivorans (Flavobacteriia) is a model for the study of pathways involved in the degradation of seaweed carbohydrates. Annotation of its genome revealed the presence of genes potentially involved in mannitol catabolism, and we describe here the biochemical characterization of a recombinant mannitol-2-dehydrogenase (M2DH) and a fructokinase (FK). Among the observations, the M2DH of Z. galactanivorans was active as a monomer, did not require metal ions for catalysis, and featured a narrow substrate specificity. The FK characterized was active on fructose and mannose in the presence of a monocation, preferentially K+. Furthermore, the genes coding for these two proteins were adjacent in the genome and were located directly downstream of three loci likely to encode an ATP binding cassette (ABC) transporter complex, suggesting organization into an operon. Gene expression analysis supported this hypothesis and showed the induction of these five genes after culture of Z. galactanivorans in the presence of mannitol as the sole source of carbon. This operon for mannitol catabolism was identified in only 6 genomes of Flavobacteriaceae among the 76 publicly available at the time of the analysis. It is not conserved in all Bacteroidetes; some species contain a predicted mannitol permease instead of a putative ABC transporter complex upstream of M2DH and FK ortholog genes.
机译:甘露醇是一种多元醇,存在于各种各样的生物中,在其中履行着不同的生理作用。特别地,甘露醇可占褐藻干重的20%至30%,并且可能是海洋异养细菌的重要碳源。半边形牛(Zobellia galactanivorans)(黄杆菌)是研究海藻碳水化合物降解途径的模型。其基因组的注释显示了可能参与甘露醇分解代谢的基因的存在,我们在这里描述了重组甘露醇-2-脱氢酶(M2DH)和果糖激酶(FK)的生化特性。在这些观察结果中,半乳糖Z. galantanivorans的M2DH作为单体具有活性,不需要金属离子进行催化,并且具有较窄的底物特异性。在单阳离子,优选K +存在下,表征的FK对果糖和甘露糖有活性。此外,编码这两种蛋白质的基因在基因组中相邻,位于三个可能编码ATP结合盒(ABC)转运蛋白复合物的基因座的下游,表明组织为操纵子。基因表达分析支持了这一假设,并显示了在甘露醇作为唯一碳源存在下培养半乳糖志贺氏菌后,这五个基因的诱导。在分析时公开的76个黄杆菌科中只有6个基因组中鉴定出了这种甘露醇分解代谢操纵子。不是所有的拟杆菌属都保守。一些物种在M2DH和FK直系同源基因上游包含预测的甘露醇渗透酶,而不是推定的ABC转运蛋白复合物。

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