Cusick John K, Hager Elizabeth, Gill Ronald E
California Northstate University College of Medicine, 9700 West Taron Drive, Elk Grove, CA 95757, USA
Department of Microbiology, University of Colorado Anschutz Medical Campus, Aurora, CO 80045, USA.
FEMS Microbiol Lett. 2015 Jan;362(1):1-8. doi: 10.1093/femsle/fnu028. Epub 2014 Dec 4.
The BsgA protease is required for the earliest morphological changes observed in Myxococcus xanthus development. We hypothesize that the BsgA protease is required to cleave an inhibitor of the developmental program, and isolation of genetic bypass suppressors of a bsgA mutant was used to identify signaling components controlling development downstream of the BsgA protease. Strain M955 was created by transposon mutagenesis of a bsgA mutant followed by screening for strains that could develop despite the absence of the BsgA protease. Strain M955 was able to aggregate, form fruiting bodies, and partially restored the production of viable spores in comparison to the parental bsgA mutant. The bsgA Tn5Ω955 strain partially restored developmental expression to a subset of genes normally induced during development, and expressed one developmentally induced fusion at higher amounts during vegetative growth in comparison to wild-type cells. The transposon in strain M955 was localized to a Ribonuclease D homolog that appears to exist in an operon with a downstream aminopeptidase-encoding gene. The identification of a third distinct bypass suppressor of the BsgA protease suggests that the BsgA protease may regulate a potentially complex pathway during the initiation of the M. xanthus developmental program.
Bsga蛋白酶是黄色黏球菌发育过程中最早观察到的形态变化所必需的。我们假设Bsga蛋白酶是切割发育程序抑制剂所必需的,并且通过分离bsga突变体的遗传旁路抑制子来鉴定控制Bsga蛋白酶下游发育的信号成分。菌株M955是通过对bsga突变体进行转座子诱变,然后筛选出尽管没有Bsga蛋白酶但仍能发育的菌株而产生的。与亲本bsga突变体相比,菌株M955能够聚集、形成子实体,并部分恢复了活孢子的产生。bsga Tn5Ω955菌株部分恢复了对发育过程中正常诱导的一部分基因的发育表达,并且与野生型细胞相比,在营养生长期间以更高的量表达了一种发育诱导融合蛋白。菌株M955中的转座子定位于一种核糖核酸酶D同源物,该同源物似乎与一个下游氨基肽酶编码基因存在于一个操纵子中。对Bsga蛋白酶的第三个不同的旁路抑制子的鉴定表明,Bsga蛋白酶可能在黄色黏球菌发育程序启动过程中调节一条潜在的复杂途径。