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首页> 外文期刊>Science China Life Sciences >pyrG is required for maintaining stable cellular uracil level and normal sporulation pattern under excess uracil stress in Aspergillus nidulans
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pyrG is required for maintaining stable cellular uracil level and normal sporulation pattern under excess uracil stress in Aspergillus nidulans

机译:在构巢曲霉中过量尿嘧啶胁迫下,pyrG是维持稳定的细胞尿嘧啶水平和正常孢子形成模式所必需的

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摘要

Tight control of the intracellular uracil level is believed to be important to reduce the occurrence of uracil incorporation into DNA. The pyrG gene of Aspergillus nidulans encodes orotidine 5′-phosphate decarboxylase, which catalyzes the conversion of orotidine monophosphate (OMP) to uridine monophosphate (UMP). In this study, we found that pyrG is critical for maintaining uracil at a low concentration in A. nidulans cells in the presence of exogenous uracil. Excess uracil and its derivatives had a stronger inhibitory effect on the growth of the pyrG89 mutant with defective OMP decarboxylase activity than on the growth of wild type, and induced sexual development in the pyrG89 mutant but not in wild type. Analysis of transcriptomic responses to excess uracil by digital gene expression profiling (DGE) revealed that genes related to sexual development were transcriptionally activated in the pyrG89 mutant but not in wild type. Quantitative analysis by HPLC showed that the cellular uracil level was 6.5 times higher in the pyrG89 mutant than in wild type in the presence of exogenous uracil. This study not only provides new information on uracil recycling and adaptation to excess uracil but also reveals the potential effects of OMP decarboxylase on fungal growth and development.
机译:据信严格控制细胞内尿嘧啶水平对于减少尿嘧啶掺入DNA的发生是重要的。构巢曲霉的pyrG基因编码牛尿苷5'-磷酸脱羧酶,其催化牛尿苷单磷酸酯(OMP)转化为尿苷单磷酸酯(UMP)。在这项研究中,我们发现在存在外源性尿嘧啶的情况下,pyrG对维持构巢曲霉细胞中低浓度的尿嘧啶至关重要。过量的尿嘧啶及其衍生物对具有缺陷OMP脱羧酶活性的pyrG89突变体的生长具有比对野生型的生长更强的抑制作用,并在pyrG89突变体中诱导了有性发育,但对野生型没有诱导作用。通过数字基因表达谱(DGE)分析对过量尿嘧啶的转录反应,发现与性发育相关的基因在pyrG89突变体中被转录激活,而在野生型中未被激活。通过HPLC的定量分析显示,在存在外源尿嘧啶的情况下,pyrG89突变体中的细胞尿嘧啶水平是野生型的6.5倍。这项研究不仅提供了有关尿嘧啶再循环和对过量尿嘧啶的适应性的新信息,而且还揭示了OMP脱羧酶对真菌生长和发育的潜在影响。

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