Kanbe M, Shibata S, Umino Y, Jenal U, Aizawa S-I
Graduate School of Natural Sciences, Nagoya City University, 1 Yamanohata, Mizuho, Nagoya 467-8501, Japan.
CREST, Japan Science and Technology Agency (JST), 1064-18 Takahori, Hirata, Takanezawa, Shioya-gun, Tochigi 329-1206, Japan.
Microbiology (Reading). 2005 Feb;151(Pt 2):433-438. doi: 10.1099/mic.0.27386-0.
When motile swarmer cells of Caulobacter crescentus differentiate into sessile stalked cells, the flagellum is ejected. To elucidate the molecular mechanism of the flagellar ejection, flagellar hook-basal body (HBB) complexes from C. crescentus were purified and characterized. The purified HBBs were less stable against acidic pH or protease treatment than HBBs of Salmonella typhimurium, supporting the view that flagellar ejection from C. crescentus is initiated by destruction of the fragile basal structures. In addition, protease treatment of the purified flagella resulted in the specific digestion of the MS ring complex, revealing for the first time the intact structure of the whole rod.
当新月柄杆菌的游动性群游细胞分化为固着的柄细胞时,鞭毛会被排出。为阐明鞭毛排出的分子机制,对新月柄杆菌的鞭毛钩-基体(HBB)复合物进行了纯化和表征。与鼠伤寒沙门氏菌的HBB相比,纯化后的新月柄杆菌HBB对酸性pH或蛋白酶处理的稳定性较差,这支持了新月柄杆菌鞭毛排出是由脆弱的基部结构破坏引发的观点。此外,对纯化后的鞭毛进行蛋白酶处理导致MS环复合物被特异性消化,首次揭示了整个杆部的完整结构。