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Depletion of a polo-like kinase in Candida albicans activates cyclase-dependent hyphal-like growth

机译:白色念珠菌中polo样激酶的耗尽激活环化酶依赖性菌丝样生长

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Morphogenesis in the fungal pathogen Candida albicans is an important virulence-determining factor, as a dimorphic switch between yeast and hyphal growth forms can increase pathogenesis. We identified CaCDC5, a cell cycle regulatory polo-like kinase (PLK) in C. albicans and demonstrate that shutting off its expression induced cell cycle defects and dramatic changes in morphology. Cells lacking CaCdc5p were blocked early in nuclear division with very short spindles and unseparated chromatin. GFP-tagged CaCdc5p localized to unseparated spindle pole bodies, the spindle, and chromatin, consistent with a role in spindle elongation at an earlier point in the cell cycle than that described for the homologue Cdc5p in yeast. Strikingly, the cell cycle defects were accompanied by the formation of hyphal-like filaments under yeast growth conditions. Filament growth was determinate, as the filaments started to die after 24 h. The filaments resembled serum-induced hyphae with respect to morphology, organization of cytoplasmic microtubules, localization of nuclei, and expression of hyphal-specific components. Filament formation required CaCDC35, but not EFG1 or CPH1 Similar defects in spindle elongation and a corresponding induction of filaments occurred when yeast cells were exposed to hydroxyurea. Because CaCdc5p does not appear to act as a direct repressor of hyphal growth, the data suggest that a target of CaCdc5p function is associated with hyphal-like development. Thus, an internal, cell cycle-related cue can activate hyphal regulatory networks in Candida. [References: 65]
机译:真菌病原体白色念珠菌中的形态发生是重要的毒力决定因素,因为酵母和菌丝生长形式之间的双态转换会增加发病机理。我们确定了CaCDC5,在白色念珠菌中的一种细胞周期调控polo样激酶(PLK),并证明关闭它的表达可诱导细胞周期缺陷和形态上的显着变化。缺乏CaCdc5p的细胞在核分裂早期被阻塞,纺锤体非常短,染色质未分离。 GFP标记的CaCdc5p定位于未分离的纺锤极体,纺锤体和染色质,这与在酵母菌体内同源Cdc5p所描述的细胞周期早期的纺锤体伸长中的作用一致。令人惊讶的是,在酵母生长条件下,细胞周期缺陷伴随着菌丝样细丝的形成。细丝的生长决定了,因为细丝在24小时后开始死亡。这些细丝在形态,细胞质微管的组织,细胞核的定位以及菌丝特异性成分的表达方面类似于血清诱导的菌丝。形成细丝需要CaCDC35,但不需要EFG1或CPH1。当酵母细胞暴露于羟基脲时,纺锤体伸长率出现类似缺陷,并相应地诱导出细丝。因为CaCdc5p似乎不充当菌丝生长的直接阻遏物,所以数据表明CaCdc5p功能的靶标与菌丝样发育有关。因此,内部的与细胞周期有关的提示可以激活念珠菌中的菌丝调节网络。 [参考:65]

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