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The Genomic Landscape of the Fungus-Specific SWI/SNF Complex Subunit, Snf6, in Candida albicans

机译:白色念珠菌中特定于真菌的SWI / SNF复合亚基Snf6的基因组景观

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SWI/SNF is an ATP-dependent chromatin-remodeling complex that is required for the regulation of gene expression in eukaryotes. While most of the fungal SWI/SNF components are evolutionarily conserved with those of the metazoan SWI/SNF, subunits such as Snf6 are specific to certain fungi and thus represent potential antifungal targets. We have characterized the role of the Snf6 protein in Candida albicans . Our data showed that although there was low conservation of its protein sequence with other fungal orthologs, Snf6 was copurified with bona fide SWI/SNF complex subunits. The role of Snf6 in C. albicans was investigated by determining its genome-wide occupancy using chromatin immunoprecipitation coupled to tiling arrays in addition to transcriptional profiling of the snf6 conditional mutant. Snf6 directs targets that were enriched in functions related to carbohydrate and amino acid metabolic circuits, to cellular transport, and to heat stress responses. Under hypha-promoting conditions, Snf6 expanded its set of targets to include promoters of genes related to respiration, ribosome biogenesis, mating, and vesicle transport. In accordance with the genomic occupancy data, an snf6 doxycycline-repressible mutant exhibited growth defects in response to heat stress and also when grown in the presence of different fermentable and nonfermentable carbon sources. Snf6 was also required to differentiate invasive hyphae in response to different cues. This study represents the first comprehensive characterization, at the genomic level, of the role of SWI/SNF in the pathogenic yeast C. albicans and uncovers functions that are essential for fungal morphogenesis and metabolic flexibility. IMPORTANCE Candida albicans is a natural component of the human microbiota but also an opportunistic pathogen that causes life-threatening infections in immunosuppressed patients. Current therapeutics include a limited number of molecules that suffer from limitations, including growing clinical resistance and toxicity. New molecules are being clinically investigated; however, the majority of these potential antifungals target the same processes as do the standard antifungals and might confront the same problems of toxicity and loss of efficiency due to the common resistance mechanisms. Here, we characterized the role of Snf6, a fungus-specific subunit of the chromatin-remodeling complex SWI/SNF. Our genomic and phenotypic data demonstrated a central role of Snf6 in biological processes that are critical for a fungal pathogen to colonize its host and cause disease, suggesting Snf6 as a possible antifungal target.
机译:SWI / SNF是ATP依赖的染色质重塑复合物,是真核生物基因表达调控所必需的。虽然大多数真菌SWI / SNF成分与后生动物SWI / SNF的成分在进化上是保守的,但亚基(如Snf6)特定于某些真菌,因此代表了潜在的抗真菌靶标。我们已经表征了Snf6蛋白在白色念珠菌中的作用。我们的数据显示,尽管与其他真菌直系同源物的蛋白质序列保守性较低,但Snf6与真正的SWI / SNF复杂亚基共纯化。 Snf6在白色念珠菌中的作用是通过使用染色质免疫沉淀法与平铺阵列偶联以及除snf6条件突变体的转录谱分析来确定其在全白色念珠菌中的作用而进行的。 Snf6引导的目标物具有丰富的功能,这些功能与碳水化合物和氨基酸代谢回路,细胞转运以及热应激反应有关。在促进菌丝的条件下,Snf6扩大了其靶标的范围,使其包括与呼吸,核糖体生物发生,交配和囊泡转运相关的基因的启动子。根据基因组占用数据,snf6强力霉素可抑制的突变体在响应热应激时以及在存在不同可发酵和不可发酵碳源的情况下生长时均显示出生长缺陷。还需要Snf6来区分侵入菌丝,以响应不同的提示。这项研究代表了SWI / SNF在致病性酵母白念珠菌中的基因组水平上的首次全面表征,并揭示了真菌形态发生和代谢灵活性所必需的功能。重要信息白色念珠菌是人类微生物群的自然组成部分,也是一种机会病原体,可在免疫抑制患者中引起威胁生命的感染。当前的治疗剂包括受限制的分子的数量有限,包括日益增长的临床抵抗力和毒性。新分子正在临床研究中。但是,这些潜在的抗真菌药中大多数与标准抗真菌药针对的过程相同,并且由于常见的抗药性机制而可能面临相同的毒性和效率损失问题。在这里,我们表征了Snf6的作用,Snf6是染色质重塑复合体SWI / SNF的一种真菌特异性亚基。我们的基因组和表型数据表明,Snf6在真菌病原体定居其宿主并引起疾病的关键生物过程中起着核心作用,表明Snf6是可能的抗真菌靶标。

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