H4K20me1 plays a dual role in transcriptional regulation of regeneration and axis patterning inHydra

Author:

Gungi Akhila1ORCID,Saha Shagnik2ORCID,Pal Mrinmoy1ORCID,Galande Sanjeev12ORCID

Affiliation:

1. Laboratory of Chromatin Biology and Epigenetics, Department of Biology, Indian Institute of Science Education and Research, Pune, India

2. Centre of Excellence in Epigenetics, Department of Life Sciences, Shiv Nadar University

Abstract

The evolution of the first body axis in the animal kingdom and its extensive ability to regenerate makesHydra, a Cnidarian, an excellent model system for understanding the underlying epigenetic mechanisms. We identify that monomethyltransferase SETD8 is critical for regeneration inHydrabecause of its conserved interaction with β-catenin to fine-tune the associated gene regulatory network. Inhibition of SETD8 activity abolishes head and foot regeneration inHydra. Furthermore, we show that H4K20me1, the histone mark imparted by SETD8, colocalizes with the transcriptional activation machinery locally at the β-catenin-bound TCF/LEF-binding sites on the promoters of head-associated genes, marking an epigenetic activation mode. In contrast, genome-wide analysis of the H4K20me1 occupancy revealed a negative correlation with transcriptional activation. We propose that H4K20me1 acts as a general repressive histone mark in Cnidaria and describe its dichotomous role in transcriptional regulation inHydra.

Funder

Indian Institute of Science Education

Shiv Nadar University

Government of India

Publisher

Life Science Alliance, LLC

Subject

Health, Toxicology and Mutagenesis,Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Ecology

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