Department of Microbiology, University of Georgia, Athens, GA, USA.
Department of Microbiology, University of Georgia, Athens, GA, USA.
Cell Rep. 2024 Nov 26;43(11):114904. doi: 10.1016/j.celrep.2024.114904. Epub 2024 Oct 30.
Cryptococcus neoformans, the causative agent of cryptococcosis and a representative of the Basidiomycota phylum of Fungi, is a valuable model for our understanding of eukaryotic/fungal biology. Negative feedback is a well-documented mechanism across Eukarya to regulate developmental transitions. Here, we describe a repressor of the yeast-to-hypha transition, Ref1, which completes a negative feedback loop driven by the master regulator of hyphal morphogenesis, Znf2, during sexual development. Alternative transcription of Ref1, driven by Znf2, produces a functionally distinct Ref1 isoform. Isoform-specific capacity for phase separation imparts this functional distinction, making Ref1 a stronger repressor and more vulnerable to proteolytic degradation. The multimodal nature of Ref1 provides versatility that allows cells to fine-tune Ref1 activity to suit developmental context. This work reveals a mechanism by which phase separation allows a transcriptional program to tailor its own repression to guide an organism through morphological transition.
新生隐球菌是隐球菌病的病原体,也是真菌界担子菌门的代表生物,是我们理解真核生物/真菌生物学的有价值的模型。负反馈是真核生物中广泛存在的一种调节发育转变的机制。在这里,我们描述了一个酵母到菌丝形态发生转变的阻遏物 Ref1,它在有性生殖过程中完成了由菌丝形态发生的主调控因子 Znf2 驱动的负反馈环。由 Znf2 驱动的 Ref1 的选择性转录产生了一种功能不同的 Ref1 同工型。相分离的同工型特异性能力赋予了这种功能区别,使 Ref1 成为更强的阻遏物,更容易受到蛋白水解降解。Ref1 的多模式性质提供了多功能性,使细胞能够微调 Ref1 的活性以适应发育环境。这项工作揭示了一种机制,即相分离允许一个转录程序调整其自身的抑制作用,以指导生物体通过形态转变。