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A Putative Type II Secretion System Is Involved in Cellulose Utilization in Cytophaga hutchisonii

机译:推定的II型分泌系统参与<斜视> Cytophaga Hutchisonii 的纤维素利用率

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Cytophaga hutchinsonii is a gliding cellulolytic bacterium that degrades cellulose in a substrate contact-dependent manner. Specific proteins are speculated to be translocated to its extracellular milieu or outer membrane surface to participate in adhesion to cellulose and further digestion. In this study, we show that three orthologous genes encoding the major components (T2S-D, -F, and -G) of type II secretion system (T2SS) are involved in cellulose degradation but not in cell motility. The individual disruption of the three t2s genes results in a significantly retarded growth on cellobiose, regenerated amorphous cellulose, and Avicel cellulose. Enzymatic analyses demonstrate that, whereas the endoglucanase activity of the t2s mutant cells is increased, the β-glucosidase activity is remarkably reduced compared to that of WT cells. Further analyses reveal that the t2s mutant cells not only exhibit a different profile of cellulose-bound outer membrane proteins from that of wild-type cells, but also display a significant decrease in their capability to adhere to cellulose. These results indicate that a functional link exits between the putative T2SS and cellulose utilization in C. hutchinsonii , and thus provide a conceptual framework to understand the unique strategy deployed by C. hutchinsonii to assimilate cellulose.
机译:Cytophaga Hutchinsonii是一种滑动的纤维素溶解细菌,可使基材接触依赖性方式降解纤维素。拟拟合特异性蛋白质以易于其细胞外的环境或外膜表面,以参与纤维素和进一步消化的粘附性。在这项研究中,我们表明,编码II型分泌系统(T2SS)的主要成分(T2S-D,-F和-G)的三种正交基因涉及纤维素降解,但不含细胞运动。三个T2S基因的个体破坏导致纤维二糖,再生无定形纤维素和培养纤维素的显着延迟生长。酶促分析表明,与WT细胞相比,β-葡糖苷酶活性显着降低,而T2S突变细胞的活性显着降低。进一步分析表明,T2S突变细胞不仅与野生型细胞的结合外膜蛋白的不同型材不同,而且还显示其粘附到纤维素的能力显着降低。这些结果表明,在C. Hutchinsonii中的推定T2S和纤维素利用之间的功能链路在覆盖的T2S和纤维素利用之间离开,从而提供了一种了解由C. Hutchinsonii展开的独特策略来吸收纤维素的概念框架。

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