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MADS Box Transcription Factor Mbx2/Pvg4 Regulates Invasive Growth and Flocculation by Inducing gsf2+ Expression in Fission Yeast

机译:MADS框转录因子Mbx2 / Pvg4通过诱导裂变酵母中gsf2 +表达调节侵袭性生长和絮凝。

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摘要

The fission yeast Schizosaccharomyces pombe exhibits invasive growth and nonsexual flocculation in response to nitrogen limitation. Gsf2, a flocculin of fission yeast, is required not only for nonsexual flocculation but also for invasive growth through the recognition of galactose residues on cell surface glycoconjugates. We found that pyruvylation negatively regulates nonsexual flocculation by capping the galactose residues of N-linked galactomannan. We investigated whether pyruvylation also regulates invasive growth. The pvg4+ gene originally was isolated as a multicopy suppressor of a pvg4 mutant defective in the pyruvylation of N-linked oligosaccharides. However, we did not detect a defect in cell surface pyruvylation in the pvg4/mbx2 deletion mutant, as assessed by alcian blue staining and a Q-Sepharose binding assay. Instead, the deletion prevented invasive growth under conditions of low nitrogen and high glucose, and it reduced the adhesion and flocculation of otherwise flocculent mutants by reducing gsf2+ expression. mbx2+-overexpressing strains exhibited nonsexual and calcium-dependent aggregation, which was inhibited in the presence of galactose but mediated by the induction of gsf2+. These findings indicate that Mbx2 mediates invasive growth and flocculation via the transcriptional activation of gsf2+ in fission yeast. In addition, we found that fission yeast Mbx2 induces the nonsexual flocculation of budding yeast by the activation of FLO1.
机译:裂殖酵母粟酒裂殖酵母显示出侵袭性生长和响应性氮限制的非性絮凝。 Gsf2,裂变酵母的絮凝蛋白,不仅对于非性絮凝而言是必需的,而且对于通过识别细胞表面糖缀合物上的半乳糖残基的侵入性生长也是必需的。我们发现丙酮酸化通过限制N-连接的半乳​​甘露聚糖的半乳糖残基来负调控非性絮凝。我们调查了丙酮酸是否也调节侵袭性生长。 pvg4 + 基因最初是作为N-连接寡糖丙酮化中缺陷的pvg4突变体的多拷贝抑制剂而分离的。但是,我们没有检测到pvg4 / mbx2缺失突变体中细胞表面丙酮酸的缺陷,这是通过阿尔辛蓝染色和Q-琼脂糖结合试验评估的。相反,该缺失阻止了在低氮和高葡萄糖条件下的侵袭性生长,并且通过降低gsf2 + 的表达而减少了絮凝突变体的粘附和絮凝。 mbx2 + 过表达的菌株表现出非性和钙依赖性聚集,在半乳糖存在下受到抑制,但由gsf2 + 的诱导介导。这些发现表明,Mbx2通过裂变酵母中gsf2 + 的转录激活介导侵袭性生长和絮凝。此外,我们发现裂变酵母Mbx2通过激活FLO1诱导出芽酵母的无性絮凝。

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