Röhrig Julian, Yu Zhenzhong, Chae Keon-Sang, Kim Jong-Hwa, Han Kap-Hoon, Fischer Reinhard
Institute for Applied Biosciences, Dept. of Microbiology, Karlsruhe Institute of Technology (KIT) - South Campus, Fritz-Haber-Weg 4, Karlsruhe, D-76131, Germany.
Department of Molecular Biology, Chonbuk National University, Jeonju, South Korea.
Mol Microbiol. 2017 Sep;105(6):825-838. doi: 10.1111/mmi.13739. Epub 2017 Jul 10.
Filamentous fungi are able to differentiate morphologically and adapt the metabolism to internal and external cues. One major regulator is the so-called velvet protein, VeA, best studied in Aspergillus nidulans. The protein interacts with several other proteins to regulate light sensing, the balance between asexual and sexual development, penicillin biosynthesis or mycotoxin production. Here, we characterized a novel VeA-interacting protein, VipA. The 334 amino acid long protein comprises a FAR1-like DNA-binding domain, known from plant transcription factors like FHY3 (Far-red elongated hypocotyl 3). VipA interacted not only with VeA, but also with the WC orthologue LreA in the nuclei and with the phytochrome FphA in the cytoplasm. Conidia and cleistothecia formation was similarly affected in a vipA-deletion strain as in an fphA mutant. However, the effect was less pronounced, suggesting a modulating and not an essential role in light sensing. In addition, VipA modulated heme biosynthesis in response to light through association with the hemB promoter, the gene encoding 5-aminolevulinic acid dehydratase. After illumination of A. nidulans mycelia with white light the intracellular heme concentration increased by 30% in comparison to a vipA-deletion mutant. Hence, VipA couples heme biosynthesis to the illumination conditions.
丝状真菌能够在形态上发生分化,并根据内部和外部信号调整新陈代谢。一个主要的调节因子是所谓的天鹅绒蛋白VeA,在构巢曲霉中研究得最为深入。该蛋白与其他几种蛋白相互作用,以调节光感知、无性和有性发育之间的平衡、青霉素生物合成或霉菌毒素产生。在此,我们鉴定了一种新的与VeA相互作用的蛋白VipA。这种由334个氨基酸组成的蛋白包含一个类似于FAR1的DNA结合结构域,在植物转录因子如FHY3(远红光伸长下胚轴3)中也有发现。VipA不仅与VeA相互作用,还与细胞核中的WC同源物LreA以及细胞质中的光敏色素FphA相互作用。在vipA缺失菌株中,分生孢子和闭囊壳的形成受到的影响与fphA突变体相似。然而,这种影响不太明显,表明其在光感知中起调节作用而非关键作用。此外,VipA通过与hemB启动子(编码5-氨基乙酰丙酸脱水酶的基因)结合,响应光照调节血红素生物合成。用白光照射构巢曲霉菌丝体后,与vipA缺失突变体相比,细胞内血红素浓度增加了30%。因此,VipA将血红素生物合成与光照条件联系起来。