The KdmB-EcoA-RpdA-SntB chromatin complex binds regulatory genes and coordinates fungal development with mycotoxin synthesis

Author:

Karahoda Betim1,Pardeshi Lakhansing23ORCID,Ulas Mevlut12ORCID,Dong Zhiqiang2ORCID,Shirgaonkar Niranjan23ORCID,Guo Shuhui2ORCID,Wang Fang2ORCID,Tan Kaeling23ORCID,Sarikaya-Bayram Özlem1ORCID,Bauer Ingo4ORCID,Dowling Paul1,Fleming Alastair B5,Pfannenstiel Brandon T6,Luciano-Rosario Dianiris6,Berger Harald7,Graessle Stefan4ORCID,Alhussain Mohamed M5,Strauss Joseph7,Keller Nancy P6,Wong Koon Ho289ORCID,Bayram Özgür1ORCID

Affiliation:

1. Biology Department, Maynooth University , Maynooth , Co. Kildare, Ireland

2. Faculty of Health Sciences, University of Macau , Macau, China

3. Genomics, Bioinformatics and Single Cell Analysis Core, Faculty of Health Sciences, University of Macau , Macau, China

4. Institute of Molecular Biology, Biocenter, Medical University of Innsbruck , Innsbruck , Austria

5. Department of Microbiology, School of Genetics and Microbiology, Moyne Institute of Preventive Medicine, Trinity College Dublin , Dublin , Ireland

6. Department of Medical Microbiology and Immunology, University of Wisconsin , Madison , USA

7. Department of Applied Genetics and Cell Biology, University of Natural Resources and Life Sciences , Tulln , Austria

8. Institute of Translational Medicine, Faculty of Health Sciences, University of Macau , Macau, China

9. Ministry of Education Frontiers Science Center for Precision Oncology, University of Macau , Macau, China

Abstract

Abstract Chromatin complexes control a vast number of epigenetic developmental processes. Filamentous fungi present an important clade of microbes with poor understanding of underlying epigenetic mechanisms. Here, we describe a chromatin binding complex in the fungus Aspergillus nidulans composing of a H3K4 histone demethylase KdmB, a cohesin acetyltransferase (EcoA), a histone deacetylase (RpdA) and a histone reader/E3 ligase protein (SntB). In vitro and in vivo evidence demonstrate that this KERS complex is assembled from the EcoA-KdmB and SntB-RpdA heterodimers. KdmB and SntB play opposing roles in regulating the cellular levels and stability of EcoA, as KdmB prevents SntB-mediated degradation of EcoA. The KERS complex is recruited to transcription initiation start sites at active core promoters exerting promoter-specific transcriptional effects. Interestingly, deletion of any one of the KERS subunits results in a common negative effect on morphogenesis and production of secondary metabolites, molecules important for niche securement in filamentous fungi. Consequently, the entire mycotoxin sterigmatocystin gene cluster is downregulated and asexual development is reduced in the four KERS mutants. The elucidation of the recruitment of epigenetic regulators to chromatin via the KERS complex provides the first mechanistic, chromatin-based understanding of how development is connected with small molecule synthesis in fungi.

Funder

Science Foundation Ireland

Science and Technology Development Fund

Austrian Science Fund

NIH

Faculty of Health Sciences of the University of Macau

SFI

Information and Communication Technology Office (ICTO) of the University of Macau

Research Grant Council, Hong Kong Government

Irish Research eLibrary

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference83 articles.

1. Histone variants–the structure behind the function;Ausio;Brief. Funct. Genomic Proteomic,2006

2. Histone hyperacetylation. Its effects on nucleosome core particle transitions;Libertini;Biophys. J.,1988

3. Chromatin accessibility and the regulatory epigenome;Klemm;Nat. Rev. Genet.,2019

4. Chromatin and DNA replication;MacAlpine;Cold Spring Harb. Perspect. Biol.,2013

5. Histone exchange, chromatin structure and the regulation of transcription;Venkatesh;Nat. Rev. Mol. Cell Biol.,2015

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