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分离的原纤维挽救了黄色粘球菌Dsp突变体中的凝聚力和发育。

Isolated fibrils rescue cohesion and development in the Dsp mutant of Myxococcus xanthus.

作者信息

Chang B Y, Dworkin M

机构信息

Department of Microbiology, University of Minnesota, Minneapolis 55455-0312.

出版信息

J Bacteriol. 1994 Dec;176(23):7190-6. doi: 10.1128/jb.176.23.7190-7196.1994.

Abstract

Extracellular fibrils are involved in cell cohesion and cell development in Myxococcus xanthus. One group of social motility mutants, Dsp, is unable to produce extracellular fibrils; these mutants also lose the abilities to cohere and to develop. Extracellular fibrils isolated from vegetative wild-type cells and added to Dsp cells fully restored the abilities of these cells to cohere and to undergo normal morphological development. The fibrils thus mimic the ability of intact, wild-type cells to carry out the same rescue. Optimal cohesion rescue by fibrils required calcium and magnesium ions, did not require protein synthesis, but was energy dependent, i.e., sodium azide and sodium cyanide blocked rescue. Cohesion rescue was also blocked by the diazo dye Congo red. Cohesion rescue is genus specific, i.e., isolated fibrils did not cause the cohesion of Pseudomonas aeruginosa, Bacillus subtilis, Proteus mirabilis, Escherichia coli, or the related myxobacterium Stigmatella aurantiaca. Developmental rescue of Dsp by isolated fibrils included aggregation, fruiting body formation, and myxospore morphogenesis. Developmental gene expression in the Dsp mutant was only partially rescued by the isolated fibrils.

摘要

细胞外纤维丝参与了黄色粘球菌的细胞黏附与细胞发育过程。一类社会运动突变体,即Dsp突变体,无法产生细胞外纤维丝;这些突变体也丧失了黏附与发育的能力。从营养期野生型细胞中分离得到的细胞外纤维丝添加到Dsp细胞中后,能完全恢复这些细胞的黏附能力以及进行正常形态发育的能力。因此,这些纤维丝模拟了完整野生型细胞进行相同拯救的能力。纤维丝实现最佳黏附拯救需要钙离子和镁离子,不需要蛋白质合成,但依赖能量,即叠氮化钠和氰化钠会阻断拯救过程。重氮染料刚果红也会阻断黏附拯救。黏附拯救具有属特异性,即分离得到的纤维丝不会引起铜绿假单胞菌、枯草芽孢杆菌、奇异变形杆菌、大肠杆菌或相关粘细菌橙色粘球菌的黏附。分离得到的纤维丝对Dsp突变体的发育拯救包括聚集、子实体形成和粘孢子形态发生。分离得到的纤维丝只能部分拯救Dsp突变体中的发育基因表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5070/197106/4a9f7b380d76/jbacter00041-0077-a.jpg

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