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The G1 Cyclin Cln3 Regulates Morphogenesis in Candida albicans

机译:G1细胞周期蛋白Cln3调节白色念珠菌的形态发生。

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In Saccharomyces cerevisiae, the G1 cyclin Cln3 initiates the Start of a mitotic cell cycle in response to size and nutrient inputs. Loss of Cln3 delays but does not prevent Start, due to the eventual Cln3-independent transcription of CLN1 and CLN2. When unbudded cells of the human pathogen Candida albicans were depleted of the G1 cyclin Cln3 they increased in size but did not bud. Thus, unlike S. cerevisiae, Cln3 is essential for budding in C. albicans. However, eventually the large unbudded cells spontaneously produced filamentous forms. The morphology was growth medium dependent; on nutritionally poor medium the polarized outgrowths fulfilled the formal criteria for true hyphae. This state is stable, and continued growth leads to a hyphal mycelium, which invades the agar substratum. Interestingly, it is also required for normal hyphal development, as Cln3-depleted cells develop morphological abnormalities if challenged with hyphal inducing signals such as serum or neutral pH. Taken together, these results show that, in C. albicans, Cln3 has assumed a critical role in coordinating mitotic cell division with differentiation.
机译:中,G 1 细胞周期蛋白Cln3响应于大小和营养输入而启动有丝分裂细胞周期的开始。由于最终会导致 CLN1 CLN2的不依赖Cln3的转录,Cln3的丢失会延迟但不能阻止启动。当人类病原体白色念珠菌的未预算细胞出现时, / em>耗尽了G 1 细胞周期蛋白Cln3,它们的大小增加了但没有芽。因此,与 S不同。酿酒酵母中,Cln3对于在 C中出芽至关重要。 。但是,最终大的未预算细胞自发产生丝状形式。形态是生长培养基依赖性的。在营养不良的培养基上,两极分化的产物满足了真正菌丝的正式标准。这种状态是稳定的,持续生长会导致菌丝菌丝体侵入琼脂基质。有趣的是,它也是正常菌丝发育所必需的,因为如果用菌丝诱导信号(例如血清或中性pH)攻击,则Cln3耗尽的细胞会形成形态异常。综上所述,这些结果表明在 C中。在白色念珠菌中,Cln3在协调有丝分裂细胞分化与分化中发挥了关键作用。

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