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bZIP transcription factors affecting secondary metabolism, sexual development and stress responses in Aspergillus nidulans

机译:bZIP转录因子影响构巢曲霉的次级代谢,性发育和应激反应

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The eukaryotic basic leucine zipper (bZIP) transcription factors play critical roles in the organismal response to the environment. Recently, a novel YAP-like bZIP, restorer of secondary metabolism A (RsmA), was found in a suppressor screen of an Aspergillus nidulans secondary metabolism (SM) mutant in which overexpression of rsmA was found to partially remediate loss of SM in Velvet Complex mutants. The Velvet Complex is a conserved fungal transcriptional heteromer that couples SM with sexual development in fungi. Here we characterized and contrasted SM in mutants of RsmA and four other A. nidulans bZIP proteins (NapA, ZipA, ZipB and ZipC) with predicted DNA binding motifs similar to RsmA. Only two overexpression mutants exhibited both SM and sexual abnormalities that were noteworthy: OE?:?:?rsmA resulted in a 100-fold increase in sterigmatocystin and a near loss of meiotic spore production. OE?:?:?napA displayed decreased production of sterigmatocystin, emericellin, asperthecin, shamixanthone and epishamixanthone, coupled with a shift from sexual to asexual development. Quantification of bZIP homodimer and heterodimer formation using fluorescence resonance energy transfer (FRET) suggested that these proteins preferentially self-associate.
机译:真核基本亮氨酸拉链(bZIP)转录因子在机体对环境的反应中起关键作用。最近,在构巢曲霉次生代谢(SM)突变体的抑制物筛选中发现了一种新型的YAP样bZIP,其为次生代谢A(RsmA)的恢复子,其中发现rsmA的过表达部分修复了天鹅绒复合物中SM的损失。突变体。天鹅绒复合物是一种保守的真菌转录异聚体,可将SM与真菌中的性发育结合在一起。在这里,我们表征和对比了RsmA和其他四个构巢曲霉bZIP蛋白(NapA,ZipA,ZipB和ZipC)突变体中的SM,并预测了与RsmA类似的DNA结合基序。只有两个过表达的突变体同时表现出值得注意的SM和性异常:OEα:?:?rsmA导致葡萄球菌毒素增加100倍,减数分裂孢子的产生几乎消失。 OEn :::: napA显示出减少的葡萄球菌毒素,大黄素,曲霉霉素,沙蜜蒽酮和表沙蜜蒽酮的产生,同时从性发育向无性发育转变。使用荧光共振能量转移(FRET)定量bZIP同二聚体和异二聚体的形成表明,这些蛋白质优先自缔合。

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