首页> 外文OA文献 >Signal transduction in Dictyostelium fgd A mutants with a defective interaction between surface cAMP receptors and a GTP-binding regulatory protein [published erratum appears in J Cell Biol 1988 Dec;107(6 Pt 1):following 2463]
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Signal transduction in Dictyostelium fgd A mutants with a defective interaction between surface cAMP receptors and a GTP-binding regulatory protein [published erratum appears in J Cell Biol 1988 Dec;107(6 Pt 1):following 2463]

机译:在表面cAMP受体和GTP结合调节蛋白之间相互作用有缺陷的Dictyostelium fgd A突变体中的信号转导[发表的勘误表载于J Cell Biol 1988 Dec; 107(6 Pt 1):之后2463]

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摘要

Transmembrane signal transduction was investigated in four Dictyostelium discoideum mutants that belong to the fgd A complementation group. The results show the following. (a) Cell surface cAMP receptors are present in fgd A mutants, but cAMP does not induce any of the intracellular responses, including the activation of adenylate or guanylate cyclase and chemotaxis. (b) cAMP induces down- regulation and the covalent modification (presumably phosphorylation) of the cAMP receptor. (c) The inhibitory effects of GTP gamma S and GDP beta S on cAMP binding are reduced; the stimulatory effect of cAMP on GTP gamma S binding is lost in fgd A mutants. (d) Basal high-affinity GTPase activity is reduced 40% and the stimulatory effect of cAMP is decreased from 40% in wild type to 30% in fgd A. (e) GTP-mediated stimulation and inhibition of adenylate cyclase is normal in mutant membranes. The results suggest a defective interaction between cell surface cAMP receptors and a specific G-protein in fgd A mutants. This interaction appears to be essential for nearly all signal transduction pathways in Dictyostelium discoideum.
机译:在属于fgd A互补组的四个Dictyostelium discoideum突变体中研究了跨膜信号转导。结果显示如下。 (a)细胞表面的cAMP受体存在于fgd A突变体中,但cAMP不会诱导任何细胞内应答,包括腺苷酸或鸟苷酸环化酶的激活和趋化作用。 (b)cAMP诱导了cAMP受体的下调和共价修饰(可能是磷酸化)。 (c)降低了GTPγS和GDPβS对cAMP结合的抑制作用;在fgd A突变体中,cAMP对GTPγS结合的刺激作用消失了。 (d)基础高亲和力GTPase活性降低40%,而cAMP的刺激作用从野生型的40%降低至fgd A的30%。(e)GTP介导的刺激和腺苷酸环化酶的抑制在突变体中是正常的膜。结果表明,细胞表面的cAMP受体与fgd A突变体中的特定G蛋白之间的相互作用存在缺陷。这种相互作用似乎对于盘基网柄菌中几乎所有信号转导途径都是必不可少的。

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