Epigenetic control of adaptive or homeostatic splicing during interval-training activities

Author:

Liu Ling1,Nguyen Hai1,Das Urmi1,Ogunsola Samuel1,Yu Jiankun1,Lei Lei1,Kung Matthew1,Pejhan Shervin2,Rastegar Mojgan2,Xie Jiuyong1ORCID

Affiliation:

1. Department of Physiology & Pathophysiology, Max Rady College of Medicine, Rady Faculty of Health Sciences, University of Manitoba, Winnipeg, MB , Canada

2. Biochemistry & Medical Genetics, Max Rady College of Medicine, Rady Faculty of Health Sciences, University of Manitoba , Winnipeg , MB , Canada

Abstract

Abstract Interval-training activities induce adaptive cellular changes without altering their fundamental identity, but the precise underlying molecular mechanisms are not fully understood. In this study, we demonstrate that interval-training depolarization (ITD) of pituitary cells triggers distinct adaptive or homeostatic splicing responses of alternative exons. This occurs while preserving the steady-state expression of the Prolactin and other hormone genes. The nature of these splicing responses depends on the exon's DNA methylation status, the methyl-C-binding protein MeCP2 and its associated CA-rich motif-binding hnRNP L. Interestingly, the steady expression of the Prolactin gene is also reliant on MeCP2, whose disruption leads to exacerbated multi-exon aberrant splicing and overexpression of the hormone gene transcripts upon ITD, similar to the observed hyperprolactinemia or activity-dependent aberrant splicing in Rett Syndrome. Therefore, epigenetic control is crucial for both adaptive and homeostatic splicing and particularly the steady expression of the Prolactin hormone gene during ITD. Disruption in this regulation may have significant implications for the development of progressive diseases.

Funder

CIHR

University of Manitoba Rady Innovation Funds

NSERC

Manitoba Research Chair

Publisher

Oxford University Press (OUP)

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