首页> 美国卫生研究院文献>Cell Regulation >Amino acid substitutions in the Dictyostelium G alpha subunit G alpha 2 produce dominant negative phenotypes and inhibit the activation of adenylyl cyclase guanylyl cyclase and phospholipase C.
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Amino acid substitutions in the Dictyostelium G alpha subunit G alpha 2 produce dominant negative phenotypes and inhibit the activation of adenylyl cyclase guanylyl cyclase and phospholipase C.

机译:Dictyostelium G alpha亚基G alpha 2中的氨基酸取代产生显性负表型并抑制腺苷酸环化酶鸟苷酸环化酶和磷脂酶C的激活。

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摘要

Previous studies have demonstrated that the Dictyostelium G alpha subunit G alpha 2 is essential for the cAMP-activation of adenylyl cyclase and guanylyl cyclase and that g alpha 2 null mutants do not aggregate. In this manuscript, we extend the analysis of the function of G alpha 2 in regulating downstream effectors by examining the in vivo developmental and physiological phenotypes of both wild-type and g alpha 2 null cells carrying a series of mutant G alpha 2 subunits expressed from the cloned G alpha 2 promoter. Our results show that wild-type cells expressing G alpha 2 subunits carrying mutations G40V and Q208L in the highly conserved GAGESG (residues 38-43) and GGQRS (residues 206-210) domains, which are expected to reduce the intrinsic GTPase activity, are blocked in multicellular development. Analysis of down-stream effector pathways essential for mediating aggregation indicates that cAMP-mediated activation of guanylyl cyclase and phosphatidylinositol-phospholipase C (PI-PLC) is almost completely inhibited and that there is a substantial reduction of cAMP-mediated activation of adenylyl cyclase. Moreover, neither mutant G alpha 2 subunit can complement g alpha 2 null mutants. Expression of G alpha 2(G43V) and G alpha 2(G207V) have little or no effect on the effector pathways and can partially complement g alpha 2 null cells. Our results suggest a model in which the dominant negative phenotypes resulting from the expression of G alpha 2(G40V) and G alpha 2(Q208L) are due to a constitutive adaptation of the effectors through a G alpha 2-mediated pathway. Analysis of PI-PLC in g alpha 2 null mutants and in cell lines expressing mutant G alpha 2 proteins also strongly suggests that G alpha 2 is the G alpha subunit that directly activates PI-PLC during aggregation. Moreover, overexpression of wild-type G alpha 2 results in the ability to precociously activate guanylyl cyclase by cAMP in vegetative cells, suggesting that G alpha 2 may be rate limiting in the developmental regulation of guanylyl cyclase activation. In agreement with previous results, the activation of adenylyl cyclase, while requiring G alpha 2 function in vivo, does not appear to be directly carried out by the G alpha 2 subunit. Our data are consistent with adenylyl cyclase being directly activated by either another G alpha subunit or by beta gamma subunits released on activation of the G protein containing G alpha 2.
机译:先前的研究表明,Dictyostelium G alpha亚基G alpha 2对于腺苷酸环化酶和鸟苷酸环化酶的cAMP激活是必不可少的,并且g alpha 2无效突变体不会聚集。在本手稿中,我们通过检查野生型和g alpha 2无效细胞的体内发育和生理表型,扩展了G alpha 2在调节下游效应子中的功能的分析,这些无效类型携带了一系列突变的G alpha 2亚基,克隆的G alpha 2启动子。我们的结果表明,在高度保守的GAGESG(残基38-43)和GGQRS(残基206-210)域中表达携带突变G40V和Q208L的G alpha 2亚基的野生型细胞,有望降低内在的GTPase活性。在多细胞发育中受阻。对介导聚集必不可少的下游效应器途径的分析表明,cAMP介导的鸟苷酸环化酶和磷脂酰肌醇磷脂酶C(PI-PLC)的激活几乎被完全抑制,并且cAMP介导的腺苷酸环化酶的激活显着降低。而且,突变体G alpha 2亚基均不能补充g alpha 2空突变体。 G alpha 2(G43V)和G alpha 2(G207V)的表达对效应子途径几乎没有影响,并且可以部分补充g alpha 2空细胞。我们的结果提出了一个模型,其中由G alpha 2(G40V)和G alpha 2(Q208L)的表达产生的显性负表型是由于效应物通过G alpha 2介导的途径组成型适应性引起的。在g alpha 2无效突变体和表达突变G alpha 2蛋白的细胞系中对PI-PLC的分析也强烈表明,G alpha 2是在聚集过程中直接激活PI-PLC的G alpha亚基。此外,野生型Gα2的过表达导致通过cAMP在营养细胞中过早激活鸟苷酸环化酶的能力,这表明Gα2可能在鸟苷酸环化酶激活的发育调控中是速率限制的。与先前的结果一致,腺苷酸环化酶的激活虽然在体内需要G alpha 2功能,但似乎并没有直接由G alpha 2亚基进行。我们的数据与腺苷酸环化酶被另一个G alpha亚基或激活含有G alpha 2的G蛋白时释放的βγ亚基直接激活的结果一致。

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