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Phosphorylation of Bem2p and Bem3p may contribute to local activation of Cdc42p at bud emergence

机译:Bem2p和Bem3p的磷酸化可能有助于芽萌发时Cdc42p的局部活化

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摘要

Site-specific activation of the Rho-type GTPase Cdc42p is critical for the establishment of cell polarity. Here we investigated the role and regulation of the GTPase-activating enzymes (GAPs) Bem2p and Bem3p for Cdc42p activation and actin polarization at bud emergence in Saccharomyces cerevisiae. Bem2p and Bem3p are localized throughout the cytoplasm and the cell cortex in unbudded G1 cells, but accumulate at sites of polarization after bud emergence. Inactivation of Bem2p results in hyperactivation of Cdc42p and polarization toward multiple sites. Bem2p and Bem3p are hyperphosphorylated at bud emergence most likely by the Cdc28p-Cln2p kinase. This phosphorylation appears to inhibit their GAP activity in vivo, as non-phosphorylatable Bem3p mutants are hyperactive and interfere with Cdc42p activation. Taken together, our results indicate that Bem2p and Bem3p may function as global inhibitors of Cdc42p activation during G1, and their inactivation by the Cdc28p/Cln kinase contributes to site-specific activation of Cdc42p at bud emergence.
机译:Rho型GTPase Cdc42p的位点特异性激活对于建立细胞极性至关重要。在这里,我们调查了酿酒酵母芽萌芽时GTPase激活酶(GAPs)Bem2p和Bem3p对Cdc42p激活和肌动蛋白极化的作用和调节。 Bem2p和Bem3p分布在未预算的G1细胞中的整个细胞质和细胞皮质中,但在芽出芽后聚集在极化位点。 Bem2p的失活导致Cdc42p的过度激活和向多个位点的极化。 Bem2p和Bem3p在芽出芽时最有可能被Cdc28p-Cln2p激酶磷酸化。这种磷酸化似乎抑制了其在体内的GAP活性,因为不可磷酸化的Bem3p突变体过度活跃并干扰Cdc42p激活。两者合计,我们的结果表明,Bem2p和Bem3p可能在G1期间充当Cdc42p激活的整体抑制剂,并且它们的Cdc28p / Cln激酶失活有助于芽萌发时Cdc42p的位点特异性激活。

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