scholarly journals Increased Re-Entry into Cell Cycle Mitigates Age-Related Neurogenic Decline in the Murine Subventricular Zone

Stem Cells ◽  
2011 ◽  
Vol 29 (12) ◽  
pp. 2005-2017 ◽  
Author(s):  
Elizabeth A. Stoll ◽  
Behnum A. Habibi ◽  
Andrei M. Mikheev ◽  
Jurate Lasiene ◽  
Susan C. Massey ◽  
...  
BMC Biology ◽  
2021 ◽  
Vol 19 (1) ◽  
Author(s):  
Léonard Hérault ◽  
Mathilde Poplineau ◽  
Adrien Mazuel ◽  
Nadine Platet ◽  
Élisabeth Remy ◽  
...  

Abstract Background Hematopoietic stem cells (HSCs) are the guarantor of the proper functioning of hematopoiesis due to their incredible diversity of potential. During aging, heterogeneity of HSCs changes, contributing to the deterioration of the immune system. In this study, we revisited mouse HSC compartment and its transcriptional plasticity during aging at unicellular scale. Results Through the analysis of 15,000 young and aged transcriptomes, we identified 15 groups of HSCs revealing rare and new specific HSC abilities that change with age. The implantation of new trajectories complemented with the analysis of transcription factor activities pointed consecutive states of HSC differentiation that were delayed by aging and explained the bias in differentiation of older HSCs. Moreover, reassigning cell cycle phases for each HSC clearly highlighted an imbalance of the cell cycle regulators of very immature aged HSCs that may contribute to their accumulation in an undifferentiated state. Conclusions Our results establish a new reference map of HSC differentiation in young and aged mice and reveal a potential mechanism that delays the differentiation of aged HSCs and could promote the emergence of age-related hematologic diseases.


2020 ◽  
Vol 21 (5) ◽  
pp. 1841
Author(s):  
Laura Gil ◽  
Sandra A. Niño ◽  
Erika Chi-Ahumada ◽  
Ildelfonso Rodríguez-Leyva ◽  
Carmen Guerrero ◽  
...  

Background. Recent reports point to a nuclear origin of Alzheimer’s disease (AD). Aged postmitotic neurons try to repair their damaged DNA by entering the cell cycle. This aberrant cell cycle re-entry involves chromatin modifications where nuclear Tau and the nuclear lamin are involved. The purpose of this work was to elucidate their participation in the nuclear pathological transformation of neurons at early AD. Methodology. The study was performed in hippocampal paraffin embedded sections of adult, senile, and AD brains at I-VI Braak stages. We analyzed phospho-Tau, lamins A, B1, B2, and C, nucleophosmin (B23) and the epigenetic marker H4K20me3 by immunohistochemistry. Results. Two neuronal populations were found across AD stages, one is characterized by a significant increase of Lamin A expression, reinforced perinuclear Lamin B2, elevated expression of H4K20me3 and nuclear Tau loss, while neurons with nucleoplasmic Lamin B2 constitute a second population. Conclusions. The abnormal cell cycle reentry in early AD implies a fundamental neuronal transformation. This implies the reorganization of the nucleo-cytoskeleton through the expression of the highly regulated Lamin A, heterochromatin repression and building of toxic neuronal tangles. This work demonstrates that nuclear Tau and lamin modifications in hippocampal neurons are crucial events in age-related neurodegeneration.


Aging Cell ◽  
2016 ◽  
Vol 16 (1) ◽  
pp. 17-26 ◽  
Author(s):  
Lisa A. Lesniewski ◽  
Douglas R. Seals ◽  
Ashley E. Walker ◽  
Grant D. Henson ◽  
Mark W. Blimline ◽  
...  

Blood ◽  
2005 ◽  
Vol 106 (11) ◽  
pp. 2757-2757
Author(s):  
Priscila S. Scheucher ◽  
Barbara A.A. Santana ◽  
Rodrigo S. Abreu e Lima ◽  
Guilherme A.S. Santos ◽  
Aglair B. Garcia ◽  
...  

Abstract Acute promyelocytic leukemia (APL) is associated with the t(15;17) which generates the PML-RARa fusion gene. The encoded PML-RARα oncoprotein physically interacts with native PML impairing its function. PML is a potent inhibitor of proliferation and apoptosis. In addition, mouse embryonic fibroblasts in which PML was inactivated (PML−/− MEFs) exhibit a significant increase in the percentage (%) of cells in S phase accompanied by the decrease in the G0/G1 subpopulation. Transgenic mice (TM) hCG-PML-RARα develop a form of leukemia similar to human APL after a long period of latency, suggesting that PML-RARα expression is necessary but not sufficient to leukemogenesis. Leukemic cells of the TM model present increased proliferation associated with resistance of apoptosis. Nevertheless, it is not known whether these changes are present from birth and thus related to exclusively to PML/RARα expression, or appear late in life and are associated with additional mutagenic events. To address this issue, we have analyzed TM of different ages without hematological abnormalities. We characterized the distribution of cells in the phases of cell cycle, cell proliferation and resistance to apoptosis in vivo. Cell cycle was analyzed in bone marrow (BM) cells stained with propidium iodate (PI) and analyzed by flow cytometry (FC). In TM younger than 9m (n=12), there was no significant difference in cell cycle distribution compared to wild-type (WT) controls. In contrast, in TM older than 9m (n=15) the % of BM cells in S phase was significantly lower (TM=14,84 ± 3,39%; WT=18,26 ± 3,55%; p=0,005) and was associated with increase in the % of cells in G0/G1 (TM=81,69 ± 3,79%; WT=78,14 ± 3,70%; p=0,001). The proliferation was tested in vivo by injecting bromodeoxyuridine i.p. and assessing its incorporation by BM cells after 2h. Compared to WT controls, there was a significantly lower % of proliferating cells in TM older than 9m (19,48 ± 7,81 versus 23,20 ± 10,80% in WT; p=0,06). Apoptosis was induced by γ irradiation, and after 24h BM cells were obtained and stained with PI. The % of apoptotic cells was determined by quantifying sub-G0 peak by FC. BM cells from TM older than 9m, but not from younger mice, were resistant to apoptosis. In this age group, γ-irradiation induced a 2,24 ± 0,81-fold increase in the % of apoptotic cells, whereas in WT controls this increase was of 4,06 ± 3,01-fold (p=0,018). Finally, in order to analyze the transcriptional mechanisms subjacent to the resistance, we measured the expression of two candidate genes involved in cell cycle and apoptosis regulation: p21Waf1/Cip1 and CDKN2A. The analysis was restricted to myeloid precursors by isolating CD117+ cells through an immunomagnetic technique. We found that both p21Waf1/Cip1 and CDKN2A are up-regulated in TM older than 9m. Moreover, this up-regulation was detected in both irradiated and unirradiated TM. Our results showed that resistance to apoptosis is associated with a block of the transition G1/S in the pre-leukemic phase of hCG-PML-RARα TM model, in contrast with the previously demonstrated increase in proliferation and resistance to apoptosis in the leukemic phase. Therefore deregulation of cell cycle is a late event during APL genesis and may be associated with additional mutagenic events.


1990 ◽  
Vol 51 (1) ◽  
pp. 73-80
Author(s):  
Vivane De Maertelaer ◽  
Michéle Authelet ◽  
Pierre Néve

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