Publication: Mcl-1 deficiency in murine livers leads to nuclear polyploidisation and mitotic errors: Implications for hepatocellular carcinoma
Mcl-1 deficiency in murine livers leads to nuclear polyploidisation and mitotic errors: Implications for hepatocellular carcinoma
Date
Date
Date
| cris.lastimport.scopus | 2025-06-22T03:37:44Z | |
| cris.lastimport.wos | 2025-07-28T01:35:05Z | |
| dc.contributor.institution | University of Zurich | |
| dc.date.accessioned | 2023-11-23T07:21:07Z | |
| dc.date.available | 2023-11-23T07:21:07Z | |
| dc.date.issued | 2023-10 | |
| dc.description.abstract | BACKGROUND & AIMS Mcl-1, an antiapoptotic protein overexpressed in many tumours, including hepatocellular carcinoma (HCC), represents a promising target for cancer treatment. Although Mcl-1 non-apoptotic roles might critically influence the therapeutic potential of Mcl-1 inhibitors, these functions remain poorly understood. We aimed to investigate the effects of hepatic Mcl-1 deficiency (Mcl-1$^{Δhep}$) on hepatocyte ploidy and cell cycle in murine liver in vivo and the possible implications on HCC. METHODS Livers of young Mcl-1$^{Δhep}$ and wild-type (WT) mice were analysed for ploidy profile, mitotic figures, in situ chromosome segregation, gene set enrichment analysis and were subjected to two-thirds partial hepatectomy to assess Mcl-1 deficiency effect on cell cycle progression in vivo. Mcl-1$^{Δhep}$ tumours in older mice were analysed for ploidy profile, chromosomal instability, and mutational signatures via whole exome sequencing. RESULTS In young mice, Mcl-1 deficiency leads to nuclear polyploidy and to high rates of mitotic errors with abnormal spindle figures and chromosome mis-segregation along with a prolonged spindle assembly checkpoint activation signature. Chromosomal instability and altered ploidy profile are observed in Mcl-1$^{Δhep}$ tumours of old mice as well as a characteristic mutational signature of currently unknown aetiology. CONCLUSIONS Our study suggests novel non-apoptotic effects of Mcl-1 deficiency on nuclear ploidy, mitotic regulation, and chromosomal segregation in hepatocytes in vivo. In addition, the Mcl-1 deficiency characteristic mutational signature might reflect mitotic issues. These results are of importance to consider when developing anti-Mcl-1 therapies to treat cancer. IMPACT AND IMPLICATIONS Although Mcl-1 inhibitors represent promising hepatocellular carcinoma treatment, the still poorly understood non-apoptotic roles of Mcl-1 might compromise their successful clinical application. Our study shows that Mcl-1 deficiency leads to nuclear polyploidy, mitotic errors, and aberrant chromosomal segregation in hepatocytes in vivo, whereas hepatocellular tumours spontaneously induced by Mcl-1 deficiency exhibit chromosomal instability and a mutational signature potentially reflecting mitotic issues. These results have potential implications for the development of anti-Mcl-1 therapies to treat hepatocellular carcinoma, especially as hyperproliferative liver is a clinically relevant situation. | |
| dc.identifier.doi | 10.1016/j.jhepr.2023.100838 | |
| dc.identifier.issn | 2589-5559 | |
| dc.identifier.other | PMCID: PMC10472239 | |
| dc.identifier.scopus | 2-s2.0-85168739325 | |
| dc.identifier.uri | https://www.zora.uzh.ch/handle/20.500.14742/211166 | |
| dc.identifier.wos | 001066150900001 | |
| dc.language.iso | eng | |
| dc.subject.ddc | 610 Medicine & health | |
| dc.subject.ddc | 570 Life sciences; biology | |
| dc.title | Mcl-1 deficiency in murine livers leads to nuclear polyploidisation and mitotic errors: Implications for hepatocellular carcinoma | |
| dc.type | article | |
| dcterms.accessRights | info:eu-repo/semantics/openAccess | |
| dcterms.bibliographicCitation.journaltitle | JHEP Reports | |
| dcterms.bibliographicCitation.number | 10 | |
| dcterms.bibliographicCitation.originalpublishername | Elsevier | |
| dcterms.bibliographicCitation.pagestart | 100838 | |
| dcterms.bibliographicCitation.pmid | 37663116 | |
| dcterms.bibliographicCitation.volume | 5 | |
| dspace.entity.type | Publication | en |
| uzh.contributor.affiliation | UniversitatsSpital Zurich, University of Zurich | |
| uzh.contributor.affiliation | Sorbonne Universite, Immunity and Liver Tumorigenesis Laboratory | |
| uzh.contributor.affiliation | UniversitatsSpital Zurich, University of Zurich | |
| uzh.contributor.affiliation | Research Unit Radiation Cytogenetics, Klinikum der Universität München, Bavarian Cancer Research Center (BZKF) | |
| uzh.contributor.affiliation | University of Zurich | |
| uzh.contributor.affiliation | UniversitatsSpital Zurich | |
| uzh.contributor.affiliation | UniversitatsSpital Zurich | |
| uzh.contributor.affiliation | UniversitatsSpital Zurich | |
| uzh.contributor.affiliation | Sorbonne Universite, Immunity and Liver Tumorigenesis Laboratory | |
| uzh.contributor.affiliation | University of Zurich | |
| uzh.contributor.affiliation | UniversitatsSpital Zurich, University of Zurich | |
| uzh.contributor.author | Clerbaux, Laure-Alix | |
| uzh.contributor.author | Cordier, Pierre | |
| uzh.contributor.author | Desboeufs, Nina | |
| uzh.contributor.author | Unger, Kristian | |
| uzh.contributor.author | Leary, Peter | |
| uzh.contributor.author | Semere, Gabriel | |
| uzh.contributor.author | Boege, Yannick | |
| uzh.contributor.author | Chan, Lap Kwan | |
| uzh.contributor.author | Desdouets, Chantal | |
| uzh.contributor.author | Lopes, Massimo | |
| uzh.contributor.author | Weber, Achim | |
| uzh.contributor.correspondence | Yes | |
| uzh.contributor.correspondence | No | |
| uzh.contributor.correspondence | No | |
| uzh.contributor.correspondence | No | |
| uzh.contributor.correspondence | No | |
| uzh.contributor.correspondence | No | |
| uzh.contributor.correspondence | No | |
| uzh.contributor.correspondence | No | |
| uzh.contributor.correspondence | No | |
| uzh.contributor.correspondence | No | |
| uzh.contributor.correspondence | No | |
| uzh.document.availability | published_version | |
| uzh.eprint.datestamp | 2023-11-23 07:21:07 | |
| uzh.eprint.lastmod | 2025-07-28 01:41:36 | |
| uzh.eprint.statusChange | 2023-11-23 07:21:07 | |
| uzh.harvester.eth | Yes | |
| uzh.harvester.nb | No | |
| uzh.identifier.doi | 10.5167/uzh-238389 | |
| uzh.jdb.eprintsId | 47331 | |
| uzh.oastatus.unpaywall | gold | |
| uzh.oastatus.zora | Gold | |
| uzh.oatransformation.contract | TRUE | |
| uzh.oatransformation.contractDate | 01.01.2023-31.12.2023 | |
| uzh.oatransformation.contractID | Elsevier2023 | |
| uzh.oatransformation.contractName | Elsevier Journals | |
| uzh.oatransformation.contractURL | ||
| uzh.publication.citation | Clerbaux, Laure-Alix; Cordier, Pierre; Desboeufs, Nina; Unger, Kristian; Leary, Peter; Semere, Gabriel; Boege, Yannick; Chan, Lap Kwan; Desdouets, Chantal; Lopes, Massimo; Weber, Achim (2023). Mcl-1 deficiency in murine livers leads to nuclear polyploidisation and mitotic errors: Implications for hepatocellular carcinoma. JHEP Reports, 5(10):100838. | |
| uzh.publication.freeAccessAt | doi | |
| uzh.publication.originalwork | original | |
| uzh.publication.publishedStatus | final | |
| uzh.scopus.impact | 2 | |
| uzh.scopus.subjects | Internal Medicine | |
| uzh.scopus.subjects | Immunology and Allergy | |
| uzh.scopus.subjects | Hepatology | |
| uzh.scopus.subjects | Gastroenterology | |
| uzh.workflow.doaj | uzh.workflow.doaj.true | |
| uzh.workflow.eprintid | 238389 | |
| uzh.workflow.fulltextStatus | public | |
| uzh.workflow.revisions | 46 | |
| uzh.workflow.rightsCheck | keininfo | |
| uzh.workflow.source | PubMed:PMID:37663116 | |
| uzh.workflow.status | archive | |
| uzh.wos.impact | 3 | |
| Files | Original bundle
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