首页> 美国卫生研究院文献>Eukaryotic Cell >G-Protein Signaling Mediates Asexual Development at 25°C but Has No Effect on Yeast-Like Growth at 37°C in the Dimorphic Fungus Penicillium marneffei
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G-Protein Signaling Mediates Asexual Development at 25°C but Has No Effect on Yeast-Like Growth at 37°C in the Dimorphic Fungus Penicillium marneffei

机译:G蛋白信号介导25°C下无性发育但对二形真菌马尔尼菲青霉菌中37%的酵母样生长没有影响

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摘要

The ascomycete Penicillium marneffei is an opportunistic human pathogen exhibiting a temperature-dependent dimorphic switch. At 25°C, P. marneffei grows as filamentous multinucleate hyphae and undergoes asexual development, producing uninucleate spores. At 37°C, it forms uninucleate yeast cells which divide by fission. We have cloned a gene encoding a Gα subunit of a heterotrimeric G protein from P. marneffei named gasA with high similarity to fadA in Aspergillus nidulans. Through the characterization of a ΔgasA strain and mutants carrying a dominant activating or a dominant interfering gasA allele, we show that GasA is a key regulator of asexual development but seems to play no role in the regulation of growth. A dominant activating gasA mutant whose mutation results in a G42-to-R change (gasAG42R) does not express brlA, the conidiation-specific regulatory gene, and is locked in vegetative growth, while a dominant interfering gasAG203R mutant shows inappropriate brlA expression and conidiation. Interestingly, the gasA mutants have no apparent defect in dimorphic switching or yeast-like growth at 37°C. Growth tests on dibutyryl cyclic AMP (dbcAMP) and theophylline suggest that a cAMP-protein kinase A cascade may be involved in the GasA signaling pathway.
机译:子囊菌马尔尼菲青霉菌是机会性人类病原体,表现出温度依赖性二态性开关。在25°C时,马尔尼菲假单胞菌以丝状多核菌丝的形式生长并经历无性繁殖,产生单核孢子。在37°C时,它会形成单核酵母细胞,并通过裂变分裂。我们已经从马尔尼菲假单胞菌克隆了一个编码异源三聚体G蛋白的Gα亚基的基因,命名为gasA,它与构巢曲霉中的fadA具有高度相似性。通过表征ΔgasA菌株和携带显性激活或显性干扰gasA等位基因的突变体,我们表明GasA是无性发育的关键调节因子,但似乎在生长调节中不起作用。一个显性激活的gasA突变体,其突变导致G42到R的改变(gasA G42R )不表达briA,该成对特定的调控基因,并被锁定在营养生长中,而显性干扰gasA G203R 突变体显示不适当的brlA表达和构象。有趣的是,gasA突变体在37°C的双态转换或酵母样生长中没有明显的缺陷。对二丁酰环AMP(dbcAMP)和茶碱的生长测试表明,cAMP-蛋白激酶A级联可能参与GasA信号通路。

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