Bruno K S, Morrell J L, Hamer J E, Staiger C J
Department of Biological Sciences, Purdue University, West Lafayette, IN 47907, USA.
Mol Microbiol. 2001 Oct;42(1):3-12. doi: 10.1046/j.1365-2958.2001.02605.x.
In the filamentous fungus, Aspergillus nidulans, multiple rounds of nuclear division occur before cytokinesis, allowing an unambiguous identification of genes required specifically for cytokinesis. As in animal cells, both an intact microtubule cytoskeleton and progression through mitosis are required for actin ring formation and contraction. The sepH gene from A. nidulans was discovered in a screen for temperature-sensitive cytokinesis mutants. Sequence analysis showed that SEPH is 42% identical to the serine-threonine kinase Cdc7p from fission yeast. Signalling through the Septation Initiation Network (SIN), which includes Cdc7p and the GTPase Spg1p, is emerging as a primary regulatory pathway used by fission yeast to control cytokinesis. A similar group of proteins comprise the Mitotic Exit Network (MEN) in budding yeast. This is the first direct evidence for the existence of a functional SIN-MEN pathway outside budding and fission yeast. In addition to SEPH, potential homologues were also identified in other fungi and plants but not in animal cells. Deletion of sepH resulted in a viable strain that failed to septate at any temperature. Interestingly, quantitative analysis of the actin cytoskeleton revealed that sepH is required for construction of the actin ring. Therefore, SEPH is distinct from its counterpart in fission yeast, in which SIN components operate downstream of actin ring formation and are necessary for ring contraction and later events of septation. We conclude that A. nidulans has components of a SIN-MEN pathway, one of which, SEPH, is required for early events during cytokinesis.
在丝状真菌构巢曲霉中,核分裂会在胞质分裂之前进行多轮,这使得能够明确鉴定出胞质分裂特需的基因。与动物细胞一样,完整的微管细胞骨架和有丝分裂进程对于肌动蛋白环的形成和收缩都是必需的。构巢曲霉的sepH基因是在对温度敏感的胞质分裂突变体的筛选中发现的。序列分析表明,SEPH与裂殖酵母的丝氨酸 - 苏氨酸激酶Cdc7p有42%的同源性。通过隔膜起始网络(SIN)进行信号传导,其中包括Cdc7p和GTP酶Spg1p,正逐渐成为裂殖酵母用于控制胞质分裂的主要调节途径。一组类似的蛋白质构成了芽殖酵母中的有丝分裂退出网络(MEN)。这是在芽殖酵母和裂殖酵母之外存在功能性SIN - MEN途径的首个直接证据。除了SEPH之外,在其他真菌和植物中也鉴定出了潜在的同源物,但在动物细胞中未发现。sepH的缺失导致了一个在任何温度下都无法形成隔膜的存活菌株。有趣的是,对肌动蛋白细胞骨架的定量分析表明,sepH是构建肌动蛋白环所必需的。因此,SEPH与其在裂殖酵母中的对应物不同,在裂殖酵母中,SIN组分在肌动蛋白环形成的下游起作用,并且是环收缩和随后隔膜形成事件所必需的。我们得出结论,构巢曲霉具有SIN - MEN途径的组分,其中之一SEPH是胞质分裂早期事件所必需的。