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首页> 外文期刊>Journal of bacteriology >Role of the CipA Scaffoldin Protein in Cellulose Solubilization, as Determined by Targeted Gene Deletion and Complementation in Clostridium thermocellum
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Role of the CipA Scaffoldin Protein in Cellulose Solubilization, as Determined by Targeted Gene Deletion and Complementation in Clostridium thermocellum

机译:CipA支架蛋白蛋白在纤维素增溶中的作用,通过热纤梭菌中靶向基因的缺失和互补来确定。

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摘要

The CipA scaffoldin protein plays a key role in the Clostridium thermocellum cellulosome. Previous studies have revealed that mutants deficient in binding or solubilizing cellulose also exhibit reduced expression of CipA. To confirm that CipA is, in fact, necessary for rapid solubilization of crystalline cellulose, the gene was deleted from the chromosome using targeted gene deletion technologies. The CipA deletion mutant exhibited a 100-fold reduction in cellulose solubilization rate, although it was eventually able to solubilize 80% of the 5 g/liter cellulose initially present. The deletion mutant was complemented by a copy of cipA expressed from a replicating plasmid. In this strain, Avicelase activity was restored, although the rate was 2-fold lower than that in the wild type and the duration of the lag phase was increased. The cipA coding sequence is located at the beginning of a gene cluster containing several other genes thought to be responsible for the structural organization of the cellulosome, including olpB, orf2p, and olpA. Tandem mass spectrometry revealed a 10-fold reduction in the expression of olpB, which may explain the lower growth rate. This deletion experiment adds further evidence that CipA plays a key role in cellulose solubilization by C. thermocellum, and it raises interesting questions about the differential roles of the anchor scaffoldin proteins OlpB, Orf2p, and SdbA.
机译:CipA支架蛋白在热纤梭菌纤维素体中起关键作用。先前的研究表明,缺乏结合或增溶纤维素的突变体也表现出降低的CipA表达。为了确认CipA实际上是快速溶解结晶纤维素所必需的,使用靶向基因删除技术从染色体上删除了该基因。尽管CipA缺失突变体最终能够溶解最初存在的5 g /升纤维素的80%,但它的纤维素增溶速率却降低了100倍。缺失突变体由复制质粒表达的 cipA 拷贝补充。在该菌株中,Avicelase活性得以恢复,尽管其速率比野生型低2倍,并且延迟期的持续时间增加了。 cipA 编码序列位于一个基因簇的开始,该簇包含几个其他可能与纤维素小体的结构组织有关的基因,包括 olpB orf2p olpA 。串联质谱分析显示, olpB 的表达降低了10倍,这可能解释了较低的生长速率。此删除实验进一步证明了CipA在热纤梭菌的纤维素增溶中起关键作用,并且提出了有关锚支架蛋白OlpB,Orf2p和SdbA的不同作用的有趣问题。

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