State Key Program of Microbiology and Department of Microbiology, College of Life Sciences, Nankai University, Tianjin, China.
Fungal Genet Biol. 2010 Dec;47(12):994-1000. doi: 10.1016/j.fgb.2010.08.002. Epub 2010 Aug 16.
We describe here the functions of a Snf1/AMPK homolog in the human pathogenic yeast Cryptococcus neoformans, strain JEC21. We found that JEC21 SNF1 is a key regulator for the biosynthesis of the major virulence factors, stress resistance and alternative carbon source utilization. Disruption of JEC21 SNF1 results in defects of laccase activity and capsule production, sensitivity to cation stress. Especially, we found that JEC21 SNF1 is essential for growth at elevated temperature and for thermotolerance. To our knowledge, a role for Snf1 proteins in thermotolerance has not been reported. Furthermore, we observed a functional divergence between JEC21 SNF1 and its equivalent from serotype A strain H99. A high temperature is needed for H99 SNF1 to function in stress response and carbon source preference, but not for the JEC21 SNF1. Our results confirmed a critical role of JEC21 SNF1 in regulation of stress response and virulence. Revelation of divergent actions of SNF1 may help to understand the evolution of cryptococcal pathogenesis and provides insights into the strain-associated biosynthesis of virulence factors.
我们在这里描述了 Snf1/AMPK 同源物在人类致病性酵母新生隐球菌菌株 JEC21 中的功能。我们发现 JEC21 SNF1 是生物合成主要毒力因子、应激抗性和替代碳源利用的关键调节剂。JEC21 SNF1 的破坏导致漆酶活性和荚膜产生缺陷,对阳离子应激敏感。特别是,我们发现 JEC21 SNF1 对于在高温下生长和耐热性至关重要。据我们所知,Snf1 蛋白在耐热性中的作用尚未被报道。此外,我们观察到 JEC21 SNF1 与其来自 A 型血清型菌株 H99 的等效物之间存在功能分化。需要高温才能使 H99 SNF1 在应激反应和碳源偏好中发挥作用,但 JEC21 SNF1 则不需要。我们的结果证实了 JEC21 SNF1 在调节应激反应和毒力中的关键作用。SNF1 不同作用的揭示可能有助于理解隐球菌病发病机制的演变,并为了解与菌株相关的毒力因子生物合成提供了线索。