Kaplan H B, Plamann L
Department of Microbiology and Molecular Genetics, University of Texas Medical School at Houston 77030, USA.
FEMS Microbiol Lett. 1996 Jun 1;139(2-3):89-95. doi: 10.1111/j.1574-6968.1996.tb08185.x.
Progression through early Myxococcus xanthus multicellular fruiting body development requires the generation of and response to extracellular A signal. Extracellular A signal is a specific set of amino acids at an extracellular concentration greater than 10 muM. It functions as a cell density signal during starvation that allows the cells to sense that a minimal cell density has been reached and development can proceed. The generation of extracellular A signal requires the products of three asg genes. They have recently been identified as AsgA, a fused two-component histidine protein kinase and response regulator; AsgB, a putative DNA-binding protein; and AsgC, the M, xanthus major sigma factor. Other elements of the A signaling pathway map to the sasB locus and appear to be A signal transducers. These elements are regulators of the earliest A signal-dependent gene, whose promoter is a member of the sigma-54 family. Continued study of the A signaling pathway is expected to identify additional components of this network required for the complex behavioural response of fruiting body formation.
黄色粘球菌早期多细胞子实体发育过程的进展需要产生细胞外A信号并对其作出反应。细胞外A信号是一组特定的氨基酸,细胞外浓度大于10μM。在饥饿期间,它作为一种细胞密度信号,使细胞能够感知到已达到最小细胞密度,发育可以继续进行。细胞外A信号的产生需要三个asg基因的产物。它们最近被鉴定为AsgA,一种融合的双组分组氨酸蛋白激酶和反应调节因子;AsgB,一种假定的DNA结合蛋白;以及AsgC,黄色粘球菌主要的σ因子。A信号通路的其他元件定位于sasB基因座,似乎是A信号转导器。这些元件是最早的A信号依赖性基因的调节因子,其启动子是σ-54家族的成员。对A信号通路的持续研究有望鉴定出该网络中形成子实体复杂行为反应所需的其他成分。