Paterson Institute for Cancer Research, University of Manchester, Wilmslow Road, Manchester, M20 4BX, UK.
J Cell Sci. 2012 Nov 15;125(Pt 22):5453-66. doi: 10.1242/jcs.109157. Epub 2012 Sep 6.
The chitin synthase that makes the primary septum during cell division in budding yeasts is an important therapeutic target with an unknown activation mechanism. We previously found that the C2-domain of the Saccharomyces cerevisiae Inn1 protein plays an essential but uncharacterised role at the cleavage site during cytokinesis. By combining a novel degron allele of INN1 with a point mutation in the C2-domain, we screened for mutations in other genes that suppress the resulting defect in cell division. In this way, we identified 22 dominant mutations of CHS2 (chitin synthase II) that map to two neighbouring sites in the catalytic domain. Chs2 in isolated cell membranes is normally nearly inactive (unless protease treatment is used to bypass inhibition); however, the dominant suppressor allele Chs2-V377I has enhanced activity in vitro. We show that Inn1 associates with Chs2 in yeast cell extracts. It also interacts in a yeast two-hybrid assay with the N-terminal 65% of Chs2, which contains the catalytic domain. In addition to compensating for mutations in the Inn1 C2-domain, the dominant CHS2 alleles suppress cytokinesis defects produced by the lack of the Cyk3 protein. Our data support a model in which the C2-domain of Inn1 acts in conjunction with Cyk3 to regulate the catalytic domain of Chs2 during cytokinesis. These findings suggest novel approaches for developing future drugs against important fungal pathogens.
在出芽酵母细胞分裂过程中形成初生隔膜的几丁质合酶是一个重要的治疗靶点,其激活机制尚不清楚。我们之前发现,酿酒酵母 Inn1 蛋白的 C2 结构域在胞质分裂过程中的切割位点发挥着重要但尚未阐明的作用。通过将 Inn1 的新型降解结构域等位基因与 C2 结构域中的点突变相结合,我们筛选了其他基因中的突变,这些突变可以抑制细胞分裂过程中产生的缺陷。通过这种方式,我们鉴定了 Chs2(几丁质合酶 II)的 22 个显性突变,这些突变位于催化结构域的两个相邻位点。在分离的细胞膜中,Chs2 通常几乎没有活性(除非使用蛋白酶处理来绕过抑制);然而,显性抑制等位基因 Chs2-V377I 在体外具有增强的活性。我们表明 Inn1 在酵母细胞提取物中与 Chs2 相关联。它还在酵母双杂交测定中与 Chs2 的 N 端 65%相互作用,该区域包含催化结构域。除了补偿 Inn1 C2 结构域的突变外,显性 CHS2 等位基因还可以抑制 Cyk3 缺失引起的胞质分裂缺陷。我们的数据支持这样一种模型,即 Inn1 的 C2 结构域与 Cyk3 一起在胞质分裂过程中调节 Chs2 的催化结构域。这些发现为开发针对重要真菌病原体的新型药物提供了新的方法。