首页> 美国卫生研究院文献>Journal of Bacteriology >Deletion of cgR_1596 and cgR_2070 Encoding NlpC/P60 Proteins Causes a Defect in Cell Separation in Corynebacterium glutamicum R
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Deletion of cgR_1596 and cgR_2070 Encoding NlpC/P60 Proteins Causes a Defect in Cell Separation in Corynebacterium glutamicum R

机译:编码NlpC / P60蛋白的cgR_1596和cgR_2070的缺失导致谷氨酸棒杆菌R中细胞分离的缺陷

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摘要

In previous work, random genome deletion mutants of Corynebacterium glutamicum R were generated using the insertion sequence (IS) element IS31831 and the Cre/loxP excision system. One of these mutants, C. glutamicum strain RD41, resulting from the deletion of a 10.1-kb genomic region (ΔcgR_1595 through cgR_1604) from the WT strain, showed cell elongation, and several lines appeared on the cell surface (bamboo shape). The morphological changes were suppressed by overexpression of cgR_1596. Single disruption of cgR_1596 in WT C. glutamicum R resulted in morphological changes similar to those observed in the RD41 strain. CgR_1596 has a predicted secretion signal peptide in the amino-terminal region and a predicted NlpC/P60 domain, which is conserved in cell wall hydrolases, in the carboxyl-terminal region. In C. glutamicum R, CgR_0802, CgR_1596, CgR_2069, and CgR_2070 have the NlpC/P60 domain; however, only simultaneous disruption of cgR_1596 and cgR_2070, and not cgR_2070 single disruption, resulted in cell growth delay and more severe morphological changes than disruption of cgR_1596. Transmission electron microscopy revealed multiple septa within individual cells of cgR_1596 single and cgR_1596-cgR_2070 double disruptants. Taken together, these results suggest that cgR_1596 and cgR_2070 are involved in cell separation and cell growth in C. glutamicum.
机译:在以前的工作中,使用插入序列(IS)元素IS31831和Cre / loxP切除系统生成了谷氨酸棒状杆菌R的随机基因组缺失突变体。这些突变体之一,即谷氨酸棒杆菌RD41,由于从WT菌株中删除了10.1kb基因组区域(ΔcgR_1595至cgR_1604)而显示出细胞伸长,并且在细胞表面出现了几条线(竹子形状)。 cgR_1596的过表达抑制了形态变化。谷氨酸棒杆菌R中cgR_1596的单次破坏导致形态变化类似于在RD41菌株中观察到的形态变化。 CgR_1596在氨基末端区域具有预测的分泌信号肽,在羧基末端区域具有预测的NlpC / P60结构域,该结构域在细胞壁水解酶中保守。在谷氨酸棒杆菌R中,CgR_0802,CgR_1596,CgR_2069和CgR_2070具有NlpC / P60结构域;但是,仅同时破坏cgR_1596和cgR_2070,而不破坏cgR_2070单个破坏,比cgR_1596破坏导致细胞生长延迟和更严重的形态变化。透射电子显微镜显示cgR_1596单和cgR_1596-cgR_2070双破坏物的单个细胞内有多个隔片。综上所述,这些结果表明cgR_1596和cgR_2070参与谷氨酸棒杆菌的细胞分离和细胞生长。

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