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Epitranscriptomics & Cancer Adaptation : A.David

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Our research work focuses on the contribution of post-transcriptional mechanisms on cancer cell adaptation, in particular RNA epigenetic & translational control.

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Added by alainmange
Group name PlateformePP2I
Item Type Journal Article
Title HP1s modulate the S-Adenosyl Methionine synthesis pathway in liver cancer cells
Creator Mancini et al.
Author Maicol Mancini
Author Laura Papon
Author Alain Mangé
Author Florence Cammas
Author Eric Fabbrizio
Abstract Hepatocellular carcinoma (HCC) is the most frequent primary liver cancer in adults. Among the altered pathways leading to HCC, an increasing role is attributed to abnormal epigenetic regulation. Members of the Heterochromatin Protein (HP1) 1 family are key players in chromatin organisation, acting as docking sites for chromatin modifiers. Here, we inactivated HP1? in HepG2 human liver carcinoma cells and showed that HP1? participated in cell proliferation. HP1?-depleted cells have a global decrease in DNA methylation and consequently a perturbed chromatin organisation, as exemplified by the reactivation of transcription at centromeric and pericentromeric regions, eventhough the protein levels of chromatin writers depositing methylation marks, such as EZH2, SETDB1, SUV39H1, G9A and DNMT3A remained unaltered. This decrease was attributed mainly to a low S-Adenosyl Methionine (SAM) level, a cofactor involved in methylation processes. Furthermore, we showed that this decrease was due to a modification in the Methionine adenosyl transferase 2A RNA (MAT2A) level, which modifies the ratio of MAT1A/MAT2A, two enzymes that generate SAM. Importantly, HP1? reintroduction into HP1?-depleted cells restored the MAT2A protein to its initial level. Finally, we demonstrated that this transcriptional deregulation of MAT2A in HP1?-depleted cells relied on a lack of recruitment of HP1? and HP1? to MAT2A promoter where an improper non-CpG methylation site was promoted in the vicinity of the transcription start site where HP1? and HP1? bound. Altogether, these results highlight an unanticipated link between HP1 and the SAM synthesis pathway, and emphasise emerging functions of HP1s as sensors of some aspects of liver cell metabolism.
Publication The Biochemical Journal
Volume 477
Issue 5
Pages 1033-1047
Date Mar 13, 2020
Journal Abbr Biochem. J.
Language eng
DOI 10.1042/BCJ20190621
ISSN 1470-8728
Library Catalog PubMed
Extra PMID: 32091571
Tags author, HP1, original, pp2i
Date Added 2020/04/02 - 15:02:27
Date Modified 2020/04/02 - 15:05:33
Notes and Attachments PubMed entry (Attachment)


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