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Mapping the Hsp90 Genetic Interaction Network in Candida albicans Reveals Environmental Contingency and Rewired Circuitry

机译:绘制白色念珠菌中的Hsp90基因相互作用网络图揭示了环境应变和电路布线

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摘要

The molecular chaperone Hsp90 regulates the folding of diverse signal transducers in all eukaryotes, profoundly affecting cellular circuitry. In fungi, Hsp90 influences development, drug resistance, and evolution. Hsp90 interacts with ∼10% of the proteome in the model yeast Saccharomyces cerevisiae, while only two interactions have been identified in Candida albicans, the leading fungal pathogen of humans. Utilizing a chemical genomic approach, we mapped the C. albicans Hsp90 interaction network under diverse stress conditions. The chaperone network is environmentally contingent, and most of the 226 genetic interactors are important for growth only under specific conditions, suggesting that they operate downstream of Hsp90, as with the MAPK Hog1. Few interactors are important for growth in many environments, and these are poised to operate upstream of Hsp90, as with the protein kinase CK2 and the transcription factor Ahr1. We establish environmental contingency in the first chaperone network of a fungal pathogen, novel effectors upstream and downstream of Hsp90, and network rewiring over evolutionary time.
机译:分子伴侣蛋白Hsp90调节所有真核生物中各种信号转导子的折叠,深刻影响细胞电路。在真菌中,Hsp90影响发育,耐药性和进化。 Hsp90与模型酵母酿酒酵母中约10%的蛋白质组相互作用,而在白色念珠菌(人类的主要真菌病原体)中仅发现了两种相互作用。利用化学基因组学方法,我们在各种胁迫条件下绘制了白色念珠菌Hsp90相互作用网络。伴侣网络在环境上是有条件的,并且226种遗传相互作用体中的大多数仅在特定条件下才对生长很重要,这表明它们与MAPK Hog1一样在Hsp90的下游运行。很少有相互作用因子对许多环境中的生长很重要,并且这些相互作用因子有望像蛋白激酶CK2和转录因子Ahr1一样在Hsp90的上游运行。我们在真菌病原体的第一个伴侣网络,Hsp90上游和下游的新型效应子以及随着进化的时间重新布线的网络中建立了环境偶然性。

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