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首页> 外文期刊>Scientific reports. >Identification of a major IP5 kinase in Cryptococcus neoformans confirms that PP-IP5/IP7, not IP6, is essential for virulence
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Identification of a major IP5 kinase in Cryptococcus neoformans confirms that PP-IP5/IP7, not IP6, is essential for virulence

机译:新型隐球菌中主要IP5激酶的鉴定证实PP-IP5 / IP7(而非IP6)对于毒力至关重要

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Fungal inositol polyphosphate (IP) kinases catalyse phosphorylation of IP3 to inositol pyrophosphate, PP-IP5/IP7, which is essential for virulence of Cryptococcus neoformans. Cryptococcal Kcs1 converts IP6 to PP-IP5/IP7, but the kinase converting IP5 to IP6 is unknown. Deletion of a putative IP5 kinase-encoding gene (IPK1) alone (ipk1Δ), and in combination with KCS1 (ipk1Δkcs1Δ), profoundly reduced virulence in mice. However, deletion of KCS1 and IPK1 had a greater impact on virulence attenuation than that of IPK1 alone. ipk1Δkcs1Δ and kcs1Δ lung burdens were also lower than those of ipk1Δ. Unlike ipk1Δ, ipk1Δkcs1Δ and kcs1Δ failed to disseminate to the brain. IP profiling confirmed Ipk1 as the major IP5 kinase in C. neoformans: ipk1Δ produced no IP6 or PP-IP5/IP7 and, in contrast to ipk1Δkcs1Δ, accumulated IP5 and its pyrophosphorylated PP-IP4 derivative. Kcs1 is therefore a dual specificity (IP5 and IP6) kinase producing PP-IP4 and PP-IP5/IP7. All mutants were similarly attenuated in virulence phenotypes including laccase, urease and growth under oxidativeitrosative stress. Alternative carbon source utilisation was also reduced significantly in all mutants except ipk1Δ, suggesting that PP-IP4 partially compensates for absent PP-IP5/IP7 in ipk1Δ grown under this condition. In conclusion, PP-IP5/IP7, not IP6, is essential for fungal virulence.
机译:真菌肌醇多磷酸(IP)激酶催化IP3磷酸化为肌醇焦磷酸PP-IP5 / IP7,这对于新隐球菌的毒性至关重要。隐球菌Kcs1将IP6转换为PP-IP5 / IP7,但是将IP5转换为IP6的激酶尚不清楚。单独删除推定的IP5激酶编码基因(IPK1Δ)(ipk1Δ),并与KCS1(ipk1Δkcs1Δ)组合删除,可大大降低小鼠的毒力。但是,删除KCS1和IPK1对毒力衰减的影响要比单独使用IPK1更大。 ipk1Δkcs1Δ和kcs1Δ的肺负担也低于ipk1Δ。与ipk1Δ不同,ipk1Δkcs1Δ和kcs1Δ无法传播到大脑。 IP谱分析证实了Ipk1是新孢梭菌的主要IP5激酶:ipk1Δ不产生IP6或PP-IP5 / IP7,并且与ipk1Δkcs1Δ相反,其积累了IP5及其焦磷酸化的PP-IP4衍生物。因此,Kcs1是产生PP-IP4和PP-IP5 / IP7的双重特异性(IP5和IP6)激酶。所有突变体的毒性表型(包括漆酶,脲酶和在氧化/亚硝化胁迫下的生长)都相似地减弱。除ipk1Δ外,所有其他突变体的替代碳源利用率也显着降低,表明PP-IP4部分补偿了在此条件下生长的ipk1Δ中不存在的PP-IP5 / IP7。总之,PP-IP5 / IP7(而非IP6)对于真菌毒性至关重要。

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