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裂殖酵母信息素应答途径的组成型激活诱导异位减数分裂,并揭示ste11作为丝裂原活化蛋白激酶的靶点。

Constitutive activation of the fission yeast pheromone-responsive pathway induces ectopic meiosis and reveals ste11 as a mitogen-activated protein kinase target.

作者信息

Kjaerulff Søren, Lautrup-Larsen Inger, Truelsen Søren, Pedersen Morten, Nielsen Olaf

机构信息

Institute of Molecular Biology, University of Copenhagen, Øster Farimagsgade 2A, DK-1353 Copenhagen K, Denmark.

出版信息

Mol Cell Biol. 2005 Mar;25(5):2045-59. doi: 10.1128/MCB.25.5.2045-2059.2005.

Abstract

In the fission yeast Schizosaccharomyces pombe, meiosis normally takes place in diploid zygotes resulting from conjugation of haploid cells. In the present study, we report that the expression of a constitutively activated version of the pheromone-responsive mitogen-activated protein kinase kinase kinase (MAP3K) Byr2 can induce ectopic meiosis directly in haploid cells. We find that the Ste11 transcription factor becomes constitutively expressed in these cells and that the expression of pheromone-responsive genes no longer depends on nitrogen starvation. Epistasis analysis revealed that these conditions bypassed the requirement for the meiotic activator Mei3. Since Mei3 is normally needed for inactivation of the meiosis-repressing protein kinase Pat1, this finding suggests that the strong Byr2 signal causes inactivation of Pat1 by an alternative mechanism. Consistent with this possibility, we found that haploid meiosis was dramatically reduced when Ste11 was mutated to mimic phosphorylation by Pat1. The mutation of two putative MAPK sites in Ste11 also dramatically reduced the level of haploid meiosis, suggesting that Ste11 is a direct target of Spk1. Supporting this, we show that Spk1 can interact physically with Ste11 and also phosphorylate the transcription factor in vitro. Finally, we demonstrate that ste11 is required for pheromone-induced G1 arrest. Interestingly, when we mutated Ste11 in the sites for Pat1 and Spk1 phosphorylation simultaneously, the cells could still arrest in G1 in response to pheromone, suggesting the existence of yet a third bifurcation of the signaling pathway.

摘要

在裂殖酵母粟酒裂殖酵母中,减数分裂通常发生在由单倍体细胞接合产生的二倍体合子中。在本研究中,我们报告称,组成型激活的信息素反应性丝裂原活化蛋白激酶激酶激酶(MAP3K)Byr2的表达可直接在单倍体细胞中诱导异位减数分裂。我们发现,Ste11转录因子在这些细胞中组成型表达,且信息素反应性基因的表达不再依赖于氮饥饿。上位性分析表明,这些条件绕过了对减数分裂激活剂Mei3的需求。由于Mei3通常是减数分裂抑制蛋白激酶Pat1失活所必需的,这一发现表明,强大的Byr2信号通过另一种机制导致Pat1失活。与此可能性一致的是,我们发现当Ste11发生突变以模拟被Pat1磷酸化时,单倍体减数分裂显著减少。Ste11中两个假定的MAPK位点的突变也显著降低了单倍体减数分裂的水平,表明Ste11是Spk1的直接靶标。支持这一点的是,我们表明Spk1可以与Ste11发生物理相互作用,并且还能在体外磷酸化该转录因子。最后,我们证明ste11是信息素诱导的G1期阻滞所必需的。有趣的是,当我们同时在Ste11的Pat1和Spk1磷酸化位点进行突变时,细胞仍然可以响应信息素而阻滞在G1期,这表明信号通路中还存在第三条分支。

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