Sheng Y, Tiberi M, Booth R A, Ma C, Liu X J
Loeb Research Institute, Ottawa Hospital, K1Y 4E9, Ottawa, Canada.
Curr Biol. 2001 Mar 20;11(6):405-16. doi: 10.1016/s0960-9822(01)00123-3.
Progesterone induces the resumption of meiosis (maturation) in Xenopus oocytes through a nongenomic mechanism involving inhibition of an oocyte adenylyl cyclase and reduction of intracellular cAMP. However, progesterone action in Xenopus oocytes is not blocked by pertussis toxin, and this finding indicates that the inhibition of the oocyte adenylyl cyclase is not mediated by the alpha subunits of classical G(i)-type G proteins.
To investigate the possibility that G protein betagamma subunits, rather than alpha subunits, play a key role in regulating oocyte maturation, we have employed two structurally distinct G protein betagamma scavengers (G(t)alpha and betaARK-C(CAAX)) to sequester free Gbetagamma dimers. We demonstrated that the injection of mRNA encoding either of these Gbetagamma scavengers induced oocyte maturation. The Gbetagamma scavengers bound an endogenous, membrane-associated Gbeta subunit, indistinguishable from Xenopus Gbeta1 derived from mRNA injection. The injection of Xenopus Gbeta1 mRNA, together with bovine Ggamma2 mRNA, elevated oocyte cAMP levels and inhibited progesterone-induced oocyte maturation.
An endogenous G protein betagamma dimer, likely including Xenopus Gbeta1, is responsible for maintaining oocyte meiosis arrest. Resumption of meiosis is induced by Gbetagamma scavengers in vitro or, naturally, by progesterone via a mechanism that suppresses the release of Gbetagamma.
孕酮通过一种非基因组机制诱导非洲爪蟾卵母细胞减数分裂(成熟)的恢复,该机制涉及抑制卵母细胞腺苷酸环化酶并降低细胞内cAMP水平。然而,非洲爪蟾卵母细胞中的孕酮作用不受百日咳毒素的阻断,这一发现表明卵母细胞腺苷酸环化酶的抑制不是由经典G(i)型G蛋白的α亚基介导的。
为了研究G蛋白βγ亚基而非α亚基在调节卵母细胞成熟中起关键作用的可能性,我们使用了两种结构不同的G蛋白βγ清除剂(G(t)α和βARK-C(CAAX))来隔离游离的Gβγ二聚体。我们证明,注射编码这些Gβγ清除剂中任何一种的mRNA均可诱导卵母细胞成熟。Gβγ清除剂结合了一种内源性的、与膜相关的Gβ亚基,与注射mRNA产生的非洲爪蟾Gβ1无法区分。注射非洲爪蟾Gβ1 mRNA与牛Gγ2 mRNA一起,可提高卵母细胞cAMP水平并抑制孕酮诱导的卵母细胞成熟。
一种内源性G蛋白βγ二聚体,可能包括非洲爪蟾Gβ1,负责维持卵母细胞减数分裂停滞。减数分裂的恢复在体外由Gβγ清除剂诱导,或者在自然情况下由孕酮通过抑制Gβγ释放的机制诱导。