Horiuchi Takayuki, Taoka Masato, Isobe Toshiaki, Komano Teruya, Inouye Sumiko
Department of Biology, Tokyo Metropolitan University, Minamiohsawa, Hachioji, Tokyo 192-0397, Japan.
J Biol Chem. 2002 Jul 26;277(30):26753-60. doi: 10.1074/jbc.M111214200. Epub 2002 May 7.
Two genes, fruA and csgA, encoding a putative transcription factor and C-factor, respectively, are essential for fruiting body formation of Myxococcus xanthus. To investigate the role of fruA and csgA genes in developmental gene expression, developing cells as well as vegetative cells of M. xanthus wild-type, fruA::Tc, and csgA731 strains were pulse-labeled with [(35)S]methionine, and the whole cell proteins were analyzed using two-dimensional immobilized pH gradient/SDS-PAGE. Differences in protein synthesis patterns among more than 700 protein spots were detected during development of the three strains. Fourteen proteins showing distinctly different expression patterns in mutant cells were analyzed in more detail. Five of the 14 proteins were identified as elongation factor Tu (EF-Tu), Dru, DofA, FruA, and protein S by immunoblot analysis and mass spectroscopy. A gene encoding DofA was cloned and sequenced. Although both fruA and csgA genes regulate early development of M. xanthus, they were found to differently regulate expression of several developmental genes. The production of six proteins, including DofA and protein S, was dependent on fruA, whereas the production of two proteins was dependent on csgA, and one protein was dependent on both fruA and csgA. To explain the present findings, a new model was presented in which different levels of FruA phosphorylation may distinctively regulate the expression of two groups of developmental genes.
两个基因fruA和csgA,分别编码一种假定的转录因子和C因子,对黄色粘球菌子实体的形成至关重要。为了研究fruA和csgA基因在发育基因表达中的作用,用[³⁵S]甲硫氨酸对黄色粘球菌野生型、fruA::Tc和csgA731菌株的发育细胞以及营养细胞进行脉冲标记,并用二维固定pH梯度/SDS-PAGE分析全细胞蛋白质。在这三种菌株的发育过程中,检测到700多个蛋白质斑点的蛋白质合成模式存在差异。对14种在突变细胞中表现出明显不同表达模式的蛋白质进行了更详细的分析。通过免疫印迹分析和质谱鉴定,14种蛋白质中的5种被鉴定为延伸因子Tu(EF-Tu)、Dru、DofA、FruA和蛋白质S。克隆并测序了编码DofA的基因。尽管fruA和csgA基因都调节黄色粘球菌的早期发育,但发现它们对几种发育基因的表达调控方式不同。包括DofA和蛋白质S在内的六种蛋白质的产生依赖于fruA,而两种蛋白质的产生依赖于csgA,一种蛋白质的产生同时依赖于fruA和csgA。为了解释目前的发现,提出了一个新模型,其中不同水平的FruA磷酸化可能特异性地调节两组发育基因的表达。