Yoshihara Shizue, Geng Xiaoxing, Ikeuchi Masahiko
Department of Life Sciences (Biology), University of Tokyo, Komaba 3-8-1, Meguro, Tokyo, 153-8902 Japan.
Plant Cell Physiol. 2002 May;43(5):513-21. doi: 10.1093/pcp/pcf061.
The unicellular motile cyanobacterium Synechocystis sp. PCC 6803 exhibits phototactic motility that depends on the type IV-like thick pilus structure. By gene disruption analysis, we showed that a gene cluster of slr1041, slr1042, slr1043 and slr1044, whose predicted products are homologous to PatA, CheY, CheW and MCP, respectively, was more or less required for pilus assembly, motility and natural transformation competency with extraneous DNA. By sequence homology, the missing cheA-like gene in this cluster was identified as novel split genes, slr0073 and slr0322, at separate loci on the genome. This was confirmed by non-motile phenotype of their disruptants. Unique hyperpiliation was observed in the slr1042 and slr0073 disruptants, suggestive of their specific interaction with pilT1. The genes, thus identified as pil genes in this study, were designated pilG (slr1041), pilH (slr1042), pilI (slr1043), pilJ (slr1044), pilL-N (slr0073) and pilL-C (slr0322).
单细胞运动性蓝藻集胞藻PCC 6803表现出依赖IV型菌毛样结构的趋光性运动。通过基因破坏分析,我们发现slr1041、slr1042、slr1043和slr1044基因簇对于菌毛组装、运动性以及与外源DNA的自然转化能力或多或少是必需的,其预测产物分别与PatA、CheY、CheW和MCP同源。通过序列同源性分析,该基因簇中缺失的cheA样基因被鉴定为基因组上不同位点的新的分裂基因,即slr0073和slr0322。这通过它们的破坏株的非运动表型得到证实。在slr1042和slr0073破坏株中观察到独特的超菌毛化现象,提示它们与pilT1存在特异性相互作用。本研究中如此鉴定出的基因被命名为pilG(slr1041)、pilH(slr1042)、pilI(slr1043)、pilJ(slr1044)、pilL-N(slr0073)和pilL-C(slr0322)。