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Phosphorylation of Calcineurin at a Novel Serine-Proline Rich Region Orchestrates Hyphal Growth and Virulence in Aspergillus fumigatus

机译:新型丝氨酸脯氨酸富集区钙调磷酸酶的磷酸化协调烟曲霉菌的菌丝生长和毒力。

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The fungus Aspergillus fumigatus is a leading infectious killer in immunocompromised patients. Calcineurin, a calmodulin (CaM)-dependent protein phosphatase comprised of calcineurin A (CnaA) and calcineurin B (CnaB) subunits, localizes at the hyphal tips and septa to direct A. fumigatus invasion and virulence. Here we identified a novel serine-proline rich region (SPRR) located between two conserved CnaA domains, the CnaB-binding helix and the CaM-binding domain, that is evolutionarily conserved and unique to filamentous fungi and also completely absent in human calcineurin. Phosphopeptide enrichment and tandem mass spectrometry revealed the phosphorylation of A. fumigatus CnaA in vivo at four clustered serine residues (S406, S408, S410 and S413) in the SPRR. Mutation of the SPRR serine residues to block phosphorylation led to significant hyphal growth and virulence defects, indicating the requirement of calcineurin phosphorylation at the SPRR for its activity and function. Complementation analyses of the A. fumigatus ΔcnaA strain with cnaA homologs from the pathogenic basidiomycete Cryptococcus neoformans, the pathogenic zygomycete Mucor circinelloides, the closely related filamentous fungi Neurospora crassa, and the plant pathogen Magnaporthe grisea, revealed filamentous fungal-specific phosphorylation of CnaA in the SPRR and SPRR homology-dependent restoration of hyphal growth. Surprisingly, circular dichroism studies revealed that, despite proximity to the CaM-binding domain of CnaA, phosphorylation of the SPRR does not alter protein folding following CaM binding. Furthermore, mutational analyses in the catalytic domain, CnaB-binding helix, and the CaM-binding domains revealed that while the conserved PxIxIT substrate binding motif in CnaA is indispensable for septal localization, CaM is required for its function at the hyphal septum but not for septal localization. We defined an evolutionarily conserved novel mode of calcineurin regulation by phosphorylation in filamentous fungi in a region absent in humans. These findings suggest the possibility of harnessing this unique SPRR for innovative antifungal drug design to combat invasive aspergillosis.
机译:烟曲霉是免疫功能低下患者的主要感染杀手。钙调神经磷酸酶是由钙调神经磷酸酶A(CnaA)和钙调神经磷酸酶B(CnaB)亚基组成的钙调蛋白(CaM)依赖性蛋白磷酸酶,位于菌丝尖端和隔垫处,以指导烟曲霉的入侵和毒力。在这里,我们确定了位于两个保守的CnaA域,CnaB结合螺旋和CaM结合域之间的新型丝氨酸脯氨酸富集区(SPRR),该区域在进化上是保守的并且是丝状真菌所特有的,并且在人类钙调神经磷酸酶中也完全不存在。磷酸肽富集和串联质谱分析揭示了烟曲霉体内CnaA在SPRR中的四个簇状丝氨酸残基(S406,S408,S410和S413)上的磷酸化。 SPRR丝氨酸残基的突变以阻断磷酸化导致明显的菌丝生长和毒力缺陷,这表明在SPRR上钙调磷酸酶的磷酸化对其活性和功能有要求。烟曲霉ΔcnaA菌株与致病性担子菌新隐隐球菌,致病性合霉菌Mucor circinelloides,紧密相关的丝状真菌Neurospora crassa和植物病原体Magnaporthe grisea的cnaA同源物的互补分析显示丝状真菌特异性磷酸化。菌丝生长的SPRR和SPRR同源性依赖性恢复。出人意料的是,圆二色性研究表明,尽管靠近CnaA的CaM结合域,但SPRR的磷酸化并不会改变CaM结合后的蛋白质折叠。此外,在催化域,CnaB结合螺旋和CaM结合域中的突变分析表明,尽管CnaA中保守的PxIxIT底物结合基序对于间隔定位是必不可少的,但CaM是其在菌丝间隔的功能所必需的,而对于间隔定位。我们通过在人类不存在的区域中的丝状真菌中的磷酸化,定义了钙调神经磷酸调节的进化保守新模式。这些发现表明,有可能利用这种独特的SPRR进行创新的抗真菌药物设计,以对抗侵袭性曲霉病。

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