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Spontaneous Cleavages of a Heterologous Protein the CenA Endoglucanase of Cellulomonas fimi in Escherichia coli

机译:在大肠杆菌中Celulomonas fimi的Cena内切葡聚糖酶的自发性切割在大肠杆菌中

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摘要

CenA is an endoglucanase secreted by the Gram-positive cellulolytic bacterium, Cellulomonas fimi, to the environment as a glycosylated protein. The role of glycosylation in CenA is unclear. However, it seems not crucial for functional activity and secretion since the unglycosylated counterpart, recombinant CenA (rCenA), is both bioactive and secretable in Escherichia coli. Using a systematic screening approach, we have demonstrated that rCenA is subjected to spontaneous cleavages (SC) in both the cytoplasm and culture medium of E. coli, under the influence of different environmental factors. The cleavages were found to occur in both the cellulose-binding (CellBD) and catalytic domains, with a notably higher occurring rate detected in the former than the latter. In CellBD, the cleavages were shown to occur close to potential N-linked glycosylation sites, suggesting that these sites might serve as ‘attributive tags’ for differentiating rCenA from endogenous proteins and the points of initiation of SC. It is hypothesized that glycosylation plays a crucial role in protecting CenA from SC when interacting with cellulose in the environment. Subsequent to hydrolysis, SC would ensure the dissociation of CenA from the enzyme-substrate complex. Thus, our findings may help elucidate the mechanisms of protein turnover and enzymatic cellulolysis.
机译:CENA是由革兰氏阳性菌的纤维素分解,纤维单胞FIMI分泌的内切葡聚糖酶,对环境的糖基化蛋白。糖基化的CENA的作用尚不清楚。然而,这似乎不是由于非糖基化的对应功能活动和分泌的关键,重组CENA(rCenA),既是生物活性和分泌的大肠杆菌。使用系统的筛选方法,我们已经证明,rCenA经受在细胞质和大肠杆菌的培养基既自发裂解(SC),不同的环境因素的影响下。发现所述裂解在纤维素结合(CellBD)和催化结构域都发生,具有显着更高的发生率在比后者前者检测。在CellBD,均表现的分裂发生接近潜在的N连接糖基化位点,这表明这些网站可能会成为“定语标签”从内源性蛋白和SC开始的点区分rCenA。据推测,糖基化起着与环境中的纤维素交互时保护CENA从SC了至关重要的作用。随后的水解,SC将确保CENA从酶 - 底物复合物的解离。因此,我们的研究结果可能有助于阐明蛋白质代谢和酶cellulolysis的机制。

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