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Evidence for a Role of the Regulator of G-Protein Signaling Protein CPRGS-1 in Gα Subunit CPG-1-Mediated Regulation of Fungal Virulence Conidiation and Hydrophobin Synthesis in the Chestnut Blight Fungus Cryphonectria parasitica

机译:G蛋白信号蛋白CPRGS-1调节剂在板栗枯萎病真菌Cryphonectria parasititit的Gα亚基CPG-1介导的真菌毒力钝化和疏水蛋白合成调控中的作用的证据。

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摘要

We previously reported that the chestnut blight fungus Cryphonectria parasitica expresses at least three G-protein α subunits and that Gα subunit CPG-1 is essential for regulated growth, pigmentation, sporulation, and virulence. We now report the cloning and characterization of a C. parasitica regulator of G-protein signaling (RGS) protein, CPRGS-1. The phylogenetic relationship of CPRGS-1 to orthologs from other fungi was inferred and found to be generally concordant with species relationships based on 18S ribosomal sequences and on morphology. However, Hemiascomycotine RGS branch lengths in particular were longer than for their 18S sequence counterparts, which correlates with functional diversification in the signaling pathway. Deletion of cprgs-1 resulted in reduced growth, sparse aerial mycelium, and loss of pigmentation, sporulation, and virulence. Disruption of cprgs-1 was also accompanied by a severe posttranscriptional reduction in accumulation of CPG-1 and Gβ subunit CPGB-1 and severely reduced expression of the hydrophobin-encoding gene cryparin. The changes in phenotype, cryparin expression, and CPGB-1 accumulation resulting from cprgs-1 gene deletion were also observed in a strain containing a mutationally activated copy of CPG-1 but not in strains containing constitutively activated mutant alleles of the other two identified Gα subunits, CPG-2 and CPG-3. Furthermore, cprgs-1 transcript levels were increased in the activated CPG-1 strain but were unaltered in activated CPG-2 and CPG-3 strains. The results strongly suggest that CPRGS-1 is involved in regulation of Gα subunit CPG-1-mediated signaling and establish a role for a RGS protein in the modulation of virulence, conidiation, and hydrophobin synthesis in a plant pathogenic fungus.
机译:我们以前曾报道过,栗叶枯萎真菌Cryphonectria parasitica表达至少三个G蛋白α亚基,而GαCPG-1亚基对于调节生长,色素沉着,孢子形成和毒力至关重要。我们现在报告克隆和表征的C.寄生虫的G蛋白信号(RGS)蛋白CPRGS-1调节器。据推断,CPRGS-1与其他真菌的直系同源物的系统发育关系与基于18S核糖体序列和形态的物种关系总体上是一致的。然而,特别是半胱氨酸类烟碱RGS的分支长度比其18S序列对应物更长,这与信号传导途径中的功能多样化相关。 cprgs-1的缺失导致生长减少,气生菌丝稀疏以及色素沉着,孢子形成和毒力降低。 cprgs-1的破坏还伴随着CPG-1和Gβ亚基CPGB-1积累的转录后转录的严重降低,以及疏水蛋白编码基因cryparin的表达严重降低。在包含CPG-1突变激活拷贝的菌株中也观察到了cprgs-1基因缺失导致的表型,晶状体蛋白表达和CPGB-1积累的变化,但在另两个鉴定出的Gα包含组成激活突变等位基因的菌株中未观察到这种变化。亚基CPG-2和CPG-3。此外,cprgs-1转录水平在活化的CPG-1菌株中增加,但在活化的CPG-2和CPG-3菌株中不变。结果强烈表明,CPRGS-1参与了Gα亚基CPG-1介导的信号传导的调控,并为RGS蛋白在植物致病性真菌的毒力,分生和疏水蛋白合成的调控中发挥作用。

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