LaminA/C regulates epigenetic and chromatin architecture changes upon aging of hematopoietic stem cells

peer-reviewed
Erstveröffentlichung
2018-11-07Autoren
Grigoryan, Ani
Guidi, Novella
Senger, Katharina
Liehr, Thomas
Soller, Karin
Wissenschaftlicher Artikel
Erschienen in
Genome Biology ; 19 (2018). - Art.-Nr. 189. - ISSN 1474-760X. - eISSN 1465-6906
Link zur Originalveröffentlichung
https://dx.doi.org/10.1186/s13059-018-1557-3Institutionen
Zentralinstitut für Biomedizinische Technik (ZIBMT)UKU. Institut für Experimentelle Tumorforschung
Dokumentversion
Veröffentlichte Version (Verlags-PDF)Zusammenfassung
Background
The decline of hematopoietic stem cell (HSC) function upon aging contributes to aging-associated immune remodeling and leukemia pathogenesis. Aged HSCs show changes to their epigenome, such as alterations in DNA methylation and histone methylation and acetylation landscapes. We previously showed a correlation between high Cdc42 activity in aged HSCs and the loss of intranuclear epigenetic polarity, or epipolarity, as indicated by the specific distribution of H4K16ac.
Results
Here, we show that not all histone modifications display a polar localization and that a reduction in H4K16ac amount and loss of epipolarity are specific to aged HSCs. Increasing the levels of H4K16ac is not sufficient to restore polarity in aged HSCs and the restoration of HSC function. The changes in H4K16ac upon aging and rejuvenation of HSCs are correlated with a change in chromosome 11 architecture and alterations in nuclear volume and shape. Surprisingly, by taking advantage of knockout mouse models, we demonstrate that increased Cdc42 activity levels correlate with the repression of the nuclear envelope protein LaminA/C, which controls chromosome 11 distribution, H4K16ac polarity, and nuclear volume and shape in aged HSCs.
Conclusions
Collectively, our data show that chromatin architecture changes in aged stem cells are reversible by decreasing the levels of Cdc42 activity, revealing an unanticipated way to pharmacologically target LaminA/C expression and revert alterations of the epigenetic architecture in aged HSCs.
DFG-Projekt uulm
SFB 1149 / Gefahrenantwort, Störfaktoren und regeneratives Potential nach akutem Trauma / DFG / 251293561
SFB 1074 / Experimentelle Modelle und klinische Translation bei Leukämien / DFG / 217328187
KFO 142 / Molekulare und zelluläre Alterung - Von den Wirkmechanismen zur klinischen Perspektive / DFG / 17771695
Initiation und Propagation von alpha-Synuclein-Oligomeren --Relevanz für die Parkinson-Erkrankung / DFG / Emmy Noether-Nachwuchsgruppen / 282604822
GRK 1789 / CEMMA / Zelluläre und molekulare Mechanismen der Alterung / DFG / 194266605
SFB 1074 / Experimentelle Modelle und klinische Translation bei Leukämien / DFG / 217328187
KFO 142 / Molekulare und zelluläre Alterung - Von den Wirkmechanismen zur klinischen Perspektive / DFG / 17771695
Initiation und Propagation von alpha-Synuclein-Oligomeren --Relevanz für die Parkinson-Erkrankung / DFG / Emmy Noether-Nachwuchsgruppen / 282604822
GRK 1789 / CEMMA / Zelluläre und molekulare Mechanismen der Alterung / DFG / 194266605
Projekt uulm
GERONTOSYS / GERONTOSYS - Forschungskern: SyStaR - Molekuale System Biologie der verminderten Stammzellfunktion und Regeneration im Rahmen der Alterung - Teilprojekt A / BMBF / 0315894A
Lineage Determination and Tissue HomeOstasis in the aged Hematopoietic System / NIH / AG040118
Lineage Determination and Tissue HomeOstasis in the aged Hematopoietic System / NIH / AG040118
Wird ergänzt durch
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Schlagwörter
[GND]: Altern | Chromosom 11[LCSH]: Aging
[Freie Schlagwörter]: Hematopoietic stem cell (HSC) | Chromatin architecture | LaminA/C | Chromosome 11
[DDC Sachgruppe]: DDC 570 / Life sciences | DDC 610 / Medicine & health
Metadata
Zur LanganzeigeDOI & Zitiervorlage
Nutzen Sie bitte diesen Identifier für Zitate & Links: http://dx.doi.org/10.18725/OPARU-48928
Grigoryan, Ani et al. (2023): LaminA/C regulates epigenetic and chromatin architecture changes upon aging of hematopoietic stem cells. Open Access Repositorium der Universität Ulm und Technischen Hochschule Ulm. http://dx.doi.org/10.18725/OPARU-48928
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