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单细胞运动蓝藻集胞藻6803中参与菌毛结构、运动性和转化能力的基因的突变分析。

Mutational analysis of genes involved in pilus structure, motility and transformation competency in the unicellular motile cyanobacterium Synechocystis sp. PCC 6803.

作者信息

Yoshihara S, Geng X, Okamoto S, Yura K, Murata T, Go M, Ohmori M, Ikeuchi M

机构信息

Department of Life Sciences (Biology), University of Tokyo, Komaba 3-8-1, Meguro, Tokyo, 153-8902 Japan.

出版信息

Plant Cell Physiol. 2001 Jan;42(1):63-73. doi: 10.1093/pcp/pce007.

Abstract

The relevance of pilus-related genes to motility, pilus structure on the cell surface and competency of natural transformation was studied by gene disruption analysis in the unicellular motile cyanobacterium Synechocystis: sp. PCC 6803. The genes disrupted in this study were chosen as related to the pil genes for biogenesis of the type IV pili in a Gram-negative bacterium Pseudomonas aeruginosa. It was found that motility of Synechocystis cells was lost in the mutants of slr0063, slr1274, slr1275, slr1276, slr1277 and sll1694 together with a simultaneous loss of the thick pili on the cell surface. Competency of the natural transformation was lost in the mutants listed above and slr0197-disruptant. The gene slr0197 was previously predicted as a competence gene by a search with sequence-independent DNA-binding structure [Yura et al. (1999) DNA Res. 6: 75]. It was suggested that both DNA uptake for natural transformation and motility are mediated by a specific type IV-like pilus structure, while a putative DNA-binding protein encoded by slr0197 is additionally required for the DNA uptake. Based on the homology with the pil genes in P: aeruginosa, slr0063, slr1274, slr1275, slr1276, slr1277 and sll1694 were designated pilB1, pilM, pilN, pilO, pilQ and pilA1, respectively. The gene slr0197 was designated comA.

摘要

通过对单细胞运动性蓝藻集胞藻6803进行基因破坏分析,研究了菌毛相关基因与运动性、细胞表面菌毛结构以及自然转化能力之间的相关性。本研究中破坏的基因是根据革兰氏阴性菌铜绿假单胞菌IV型菌毛生物合成的菌毛基因选择的。结果发现,集胞藻细胞在slr0063、slr1274、slr1275、slr1276、slr1277和sll1694突变体中失去了运动性,同时细胞表面的粗菌毛也消失了。上述突变体和slr0197破坏突变体丧失了自然转化能力。基因slr0197先前通过与序列无关的DNA结合结构搜索被预测为一个感受态基因[Yura等人(1999年)《DNA研究》6:75]。研究表明,自然转化的DNA摄取和运动性均由特定的IV型菌毛结构介导,而slr0197编码的一种假定的DNA结合蛋白是DNA摄取额外需要的。基于与铜绿假单胞菌菌毛基因的同源性,slr0063、slr1274、slr1275、slr1276、slr1277和sll1694分别被命名为pilB1、pilM、pilN、pilO、pilQ和pilA1。基因slr0197被命名为comA。

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