Aging alters the epigenetic asymmetry of HSC division
peer-reviewed
Erstveröffentlichung
2018-09-20Authors
Florian, M. Carolina
Klose, Markus
Sacma, Mehmet
Jablanovic, Jelena
Knudson, Luke
Wissenschaftlicher Artikel
Published in
PLoS Biology ; 16 (2018), 9. - Art.-Nr. e2003389. - ISSN 1544-9173. - eISSN 1545-7885
Link to original publication
https://dx.doi.org/10.1371/journal.pbio.2003389Institutions
Zentralinstitut für Biomedizinische Technik (ZIBMT)UKU. Institut für Experimentelle Tumorforschung
Document version
published version (publisher's PDF)Abstract
Hematopoietic stem cells (HSCs) balance self-renewal and differentiation to maintain homeostasis. With aging, the frequency of polar HSCs decreases. Cell polarity in HSCs is controlled by the activity of the small RhoGTPase cell division control protein 42 (Cdc42). Here we demonstrate—using a comprehensive set of paired daughter cell analyses that include single-cell 3D confocal imaging, single-cell transplants, single-cell RNA-seq, and single-cell transposase-accessible chromatin sequencing (ATAC-seq)—that the outcome of HSC divisions is strongly linked to the polarity status before mitosis, which is in turn determined by the level of the activity Cdc42 in stem cells. Aged apolar HSCs undergo preferentially self-renewing symmetric divisions, resulting in daughter stem cells with reduced regenerative capacity and lymphoid potential, while young polar HSCs undergo preferentially asymmetric divisions. Mathematical modeling in combination with experimental data implies a mechanistic role of the asymmetric sorting of Cdc42 in determining the potential of daughter cells via epigenetic mechanisms. Therefore, molecules that control HSC polarity might serve as modulators of the mode of stem cell division regulating the potential of daughter cells.
DFG Project THU
SFB 1074 / Experimentelle Modelle und klinische Translation bei Leukämien / DFG / 217328187
SFB 1279 / Nutzung des menschlichen Peptidoms für die Entwicklung neuer antimikrobieller und anti-Krebs Therapeutika / DFG / 316249678
SFB 1149 / Gefahrenantwort, Störfaktoren und regeneratives Potential nach akutem Trauma / DFG / 251293561
Initiation und Propagation von alpha-Synuclein-Oligomeren --Relevanz für die Parkinson-Erkrankung / DFG / Emmy Noether-Nachwuchsgruppen / 282604822
FOR 2674 Teilprojekt / Genetische Landschaft der akuten myeloischen Leukämie (AML) bei älteren Patienten / DFG / 336840530
SFB 1279 / Nutzung des menschlichen Peptidoms für die Entwicklung neuer antimikrobieller und anti-Krebs Therapeutika / DFG / 316249678
SFB 1149 / Gefahrenantwort, Störfaktoren und regeneratives Potential nach akutem Trauma / DFG / 251293561
Initiation und Propagation von alpha-Synuclein-Oligomeren --Relevanz für die Parkinson-Erkrankung / DFG / Emmy Noether-Nachwuchsgruppen / 282604822
FOR 2674 Teilprojekt / Genetische Landschaft der akuten myeloischen Leukämie (AML) bei älteren Patienten / DFG / 336840530
Project uulm
Lineage Determination and Tissue HomeOstasis in the aged Hematopoietic System / NIH / AG040118
Is supplemented by
https://figshare.com/articles/dataset/Aging_alters_the_epigenetic_asymmetry_of_HSC_division/7111907Subject headings
[GND]: Blutstammzelle | Periphere Stammzellentransplantation | Zellzyklus | Zellteilung | Chromatin[MeSH]: Hematopoietic stem cells | Cell cycle | Cell division | Stem cells | Cell polarity | Stem cell transplantation | Chromatin | Cloning, Organism
[Free subject headings]: Cell division analysis
[DDC subject group]: DDC 610 / Medicine & health
Metadata
Show full item recordDOI & citation
Please use this identifier to cite or link to this item: http://dx.doi.org/10.18725/OPARU-49021
Florian, M. Carolina et al. (2023): Aging alters the epigenetic asymmetry of HSC division. Open Access Repositorium der Universität Ulm und Technischen Hochschule Ulm. http://dx.doi.org/10.18725/OPARU-49021
Citation formatter >