首页> 外文期刊>Molecular biology of the cell >Delineation of the roles played by RasG and RasC in cAMP-dependent signal transduction during the early development of Dictyostelium discoideum
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Delineation of the roles played by RasG and RasC in cAMP-dependent signal transduction during the early development of Dictyostelium discoideum

机译:在盘基网柄菌的早期发育过程中描述RasG和RasC在cAMP依赖性信号转导中的作用

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摘要

On starvation, the cellular slime mold Dictyostelium discoideum initiates a program of development leading to formation of multicellular structures. The initial cell aggregation requires chemotaxis to cyclic AMP (cAMP) and relay of the cAMP signal by the activation of adenylyl cyclase (ACA), and it has been shown previously that the Ras protein RasC is involved in both processes. Insertional inactivation of the rasG gene resulted in delayed aggregation and a partial inhibition of early gene expression, suggesting that RasG also has a role in early development. Both chemotaxis and ACA activation were reduced in the rasG(-) cells, but the effect on chemotaxis was more pronounced. When the responses of rasG(-) cells to cAMP were compared with the responses of rasC(-) and rasC(-)rasG(-) strains, generated in otherwise isogenic backgrounds, these studies revealed that signal transduction through RasG is more important in chemotaxis and early gene expression, but that signal transduction through RasC is more important in ACA activation. Because the loss of either of the two Ras proteins alone did not result in a total loss of signal output down either of the branches of the cAMP signal-response pathway, there appears to be some overlap of function.
机译:饥饿时,细胞粘液霉菌盘基网柄菌启动了发育计划,导致形成多细胞结构。初始细胞聚集需要趋化于环状AMP(cAMP),并通过腺苷酸环化酶(ACA)的激活来传递cAMP信号,并且先前已证明Ras蛋白RasC参与了这两个过程。 rasG基因的插入失活导致延迟的聚集和早期基因表达的部分抑制,表明RasG在早期发育中也起作用。 rasG(-)细胞中趋化性和ACA激活均降低,但对趋化性的影响更为明显。当将rasG(-)细胞对cAMP的反应与rasC(-)和rasC(-)rasG(-)菌株在其他等基因背景下产生的反应进行比较时,这些研究表明,通过RasG进行信号转导在趋化性和早期基因表达,但通过RasC进行的信号转导在ACA激活中更为重要。因为仅两个Ras蛋白中任一个的丧失都不会导致沿cAMP信号响应途径的任一分支向下输出的信号全部丧失,所以功能似乎有些重叠。

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