首页> 外文期刊>Eukaryotic cell >The pkaB Gene Encoding the Secondary Protein Kinase A Catalytic Subunit Has a Synthetic Lethal Interaction with pkaA and Plays Overlapping and Opposite Roles in Aspergillus nidulans
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The pkaB Gene Encoding the Secondary Protein Kinase A Catalytic Subunit Has a Synthetic Lethal Interaction with pkaA and Plays Overlapping and Opposite Roles in Aspergillus nidulans

机译:编码次级蛋白激酶A催化亚基的pkaB基因与pkaA具有致命的合成相互作用,并在构巢曲霉中具有重叠和相反的作用

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Filamentous fungal genomes contain two distantly related cyclic AMP-dependent protein kinase A catalytic subunits (PKAs), but only one PKA is found to play a principal role. In Aspergillus nidulans, PkaA is the primary PKA that positively functions in vegetative growth and spore germination but negatively controls asexual sporulation and production of the mycotoxin sterigmatocystin. In this report, we present the identification and characterization of pkaB, encoding the secondary PKA in A. nidulans. Although deletion of pkaB alone does not cause any apparent phenotypic changes, the absence of both pkaB and pkaA is lethal, indicating that PkaB and PkaA are essential for viability of A. nidulans. Overexpression of pkaB enhances hyphal proliferation and rescues the growth defects caused by ΔpkaA, indicating that PkaB plays a role in vegetative growth signaling. However, unlike ΔpkaA, deletion of pkaB does not suppress the fluffy-autolytic phenotype resulting from ΔflbA. While upregulation of pkaB rescues the defects of spore germination resulting from ΔpkaA in the presence of glucose, overexpression of pkaB delays spore germination. Furthermore, upregulation of pkaB completely abolishes spore germination on medium lacking a carbon source. In addition, upregulation of pkaB enhances the level of submerged sporulation caused by ΔpkaA and reduces hyphal tolerance to oxidative stress. In conclusion, PkaB is the secondary PKA that has a synthetic lethal interaction with PkaA, and it plays an overlapping role in vegetative growth and spore germination in the presence of glucose but an opposite role in regulating asexual sporulation, germination in the absence of a carbon source, and oxidative stress responses in A. nidulans.
机译:丝状真菌基因组包含两个远距离相关的环状AMP依赖性蛋白激酶A催化亚基(PKA),但仅发现一个PKA起主要作用。在黑曲霉中,PkaA是主要的PKA,在营养生长和孢子萌发中发挥积极作用,但对无性孢子形成和霉菌毒素葡萄球菌毒素的产生负控制作用。在此报告中,我们介绍了 pkaB 的鉴定和表征,并在 A中编码了次级PKA。尼杜兰人。尽管单独删除 pkaB 不会引起任何明显的表型变化,但同时缺少 pkaB pkaA 都是致命的,这表明PkaB和PkaA是对 A的生存至关重要。尼杜兰人 pkaB 的过度表达增强了菌丝的增殖,并挽救了由Δ pkaA 引起的生长缺陷,表明PkaB在营养生长信号中发挥了作用。但是,与Δ pkaA 不同,删除 pkaB 不会抑制由Δ flbA 引起的蓬松自溶表型。 pkaB 的上调可以挽救在葡萄糖存在下由Δ pkaA 引起的孢子萌发的缺陷,而 pkaB 的过表达则延迟了孢子的萌发。此外, pkaB 的上调完全消除了在缺乏碳源的培养基上的孢子萌发。此外, pkaB 的上调会增强由Δ pkaA 引起的水下孢子形成水平,并降低菌丝对氧化应激的耐受性。总之,PkaB是与PkaA合成致死相互作用的次要PKA,在葡萄糖存在下,它在营养生长和孢子萌发中起重叠作用,而在无碳条件下在调节无性孢子形成,发芽中起相反的作用。源和 A中的氧化应激反应。尼杜兰人

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