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Inhibition of histone acetyltransferase GCN5 by a transcription factor FgPacC controls fungal adaption to host-derived iron stress

Nucleic Acids Res. 2022-06; 
Qin Gu, Yujie Wang, Xiaozhen Zhao, Bingqin Yuan, Mengxuan Zhang, Zheng Tan, Xinyue Zhang, Yun Chen, Huijun Wu, Yuming Luo, Nancy P Keller, Xuewen Gao, Zhonghua Ma
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Custom DNA/RNA Oligos … The biotin-labeled DNA probes were synthesized by GenScript (Nanjing, China). The EMSA assay was performed using a LightShift™ Chemiluminescent EMSA Kit (20148, … Get A Quote

摘要

Poaceae plants can locally accumulate iron to suppress pathogen infection. It remains unknown how pathogens overcome host-derived iron stress during their successful infections. Here, we report that Fusarium graminearum (Fg), a destructive fungal pathogen of cereal crops, is challenged by host-derived high-iron stress. Fg infection induces host alkalinization, and the pH-dependent transcription factor FgPacC undergoes a proteolytic cleavage into the functional isoform named FgPacC30 under alkaline host environment. Subsequently FgPacC30 binds to a GCCAR(R = A/G)G element at the promoters of the genes involved in iron uptake and inhibits their expression, leading to adaption of Fg to high-iron stress. Mechanis... More

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