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在聚集过程中,RasC是腺苷酸环化酶和Akt/PKB最佳激活所必需的。

RasC is required for optimal activation of adenylyl cyclase and Akt/PKB during aggregation.

作者信息

Lim C J, Spiegelman G B, Weeks G

机构信息

Department of Microbiology and Immunology and Department of Medical Genetics, University of British Columbia, Vancouver, British Columbia, V6T 1Z3, Canada.

出版信息

EMBO J. 2001 Aug 15;20(16):4490-9. doi: 10.1093/emboj/20.16.4490.

Abstract

Disruption of Dictyostelium rasC, encoding a Ras subfamily protein, generated cells incapable of aggregation. While rasC expression is enriched in a cell type-specific manner during post-aggregative development, the defect in rasC(-) cells is restricted to aggregation and fully corrected by application of exogenous cAMP pulses. cAMP is not produced in rasC(-) cells stimulated by 2'-deoxy-cAMP, but is produced in response to GTPgammaS in cell lysates, indicating that G-protein-coupled cAMP receptor activation of adenylyl cyclase is regulated by RasC. However, cAMP-induced ERK2 phosphorylation is unaffected in rasC(-) cells, indicating that RasC is not an upstream activator of the mitogen-activated protein kinase required for cAMP relay. rasC(-) cells also exhibit reduced chemotaxis to cAMP during early development and delayed response to periodic cAMP stimuli produced by wild-type cells in chimeric mixtures. Furthermore, cAMP-induced Akt/PKB phosphorylation through a phosphatidylinositide 3-kinase (PI3K)-dependent pathway is dramatically reduced in rasC(-) cells, suggesting that G-protein-coupled serpentine receptor activation of PI3K is regulated by RasC. Cells lacking the RasGEF, AleA, exhibit similar defects as rasC(-) cells, suggesting that AleA may activate RasC.

摘要

编码Ras亚家族蛋白的盘基网柄菌rasC基因的破坏导致细胞无法聚集。虽然rasC表达在聚集后发育过程中以细胞类型特异性方式富集,但rasC(-)细胞中的缺陷仅限于聚集,并且通过施加外源性cAMP脉冲可完全纠正。在2'-脱氧-cAMP刺激的rasC(-)细胞中不产生cAMP,但在细胞裂解物中对GTPγS有反应时产生cAMP,表明腺苷酸环化酶的G蛋白偶联cAMP受体激活受RasC调节。然而,cAMP诱导的ERK2磷酸化在rasC(-)细胞中不受影响,表明RasC不是cAMP信号传递所需的丝裂原活化蛋白激酶的上游激活剂。在早期发育过程中,rasC(-)细胞对cAMP的趋化性也降低,并且在嵌合混合物中对野生型细胞产生的周期性cAMP刺激的反应延迟。此外,通过磷脂酰肌醇3-激酶(PI3K)依赖性途径的cAMP诱导的Akt/PKB磷酸化在rasC(-)细胞中显著降低,表明PI3K的G蛋白偶联蛇形受体激活受RasC调节。缺乏RasGEF,即AleA的细胞表现出与rasC(-)细胞类似的缺陷,表明AleA可能激活RasC。

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