Open access · CC-BY
via OpenAlex
Divergence of sperm and leukocyte age-dependent telomere dynamics: implications for male-driven evolution of telomere length in humans
Kenneth I. Aston, S C Hunt, Ezra Susser, Minoru Kimura, Pam Factor‐Litvak, D. T. Carrell, Ariel Aviv
Molecular Human Reproduction · 2012 · ▲ 109 citations
Abstract
Telomere(definition) length (TL) dynamics in vivo are defined by TL and its age-dependent change, brought about by cell replication. Leukocyte TL (LTL), which reflects TL in hematopoietic stem cells (HSCs), becomes shorter with age. In contrast, sperm TL, which reflects TL in the male germ cells, becomes longer with age. Moreover, offspring of older fathers display longer LTL. Thus far, no study has examined LTL and sperm TL relations with age in the same individuals, nor considered their implications for the paternal age at conception (PAC) effect on offspring LTL. We report that in 135 men (mean age: 34.4 years; range: 18-68 years) on average, LTL became shorter by 19 bp/year (r = -0.3; P = 0.0004), while sperm TL became longer by 57 bp/year (r = 0.32; P = 0.0002). Based on previously reported replication rates of HSCs and male germ cells, we estimate that HSCs lose 26 bp per replication. However, male germ cells gain only 2.48 bp per replication. As TL is inherited in an allele-specific manner, the magnitude of the PAC effect on the offspring's LTL should be approximately half of age-dependent sperm-TL elongation. When we compared the PAC effect data from previous studies with sperm-TL data from this study, the result was consistent with this prediction. As older paternal age is largely a feature of contemporary humans, we suggest that there may be progressive elongation of TL in future generations. In this sense, germ cell TL dynamics could be driving the evolution of TL in modern humans and perhaps telomere-related diseases in the general population.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1093/molehr/gas028
- Canonical
- link ↗
- Fetched
- 2026-09-12 MST
Cite this
APA
Aston, K.I., Hunt, S.C., Susser, E., Kimura, M., Factor‐Litvak, P., Carrell, D.T., & Aviv, A. (2012). Divergence of sperm and leukocyte age-dependent telomere dynamics: implications for male-driven evolution of telomere length in humans. <em>Molecular Human Reproduction</em>. https://doi.org/10.1093/molehr/gas028
Vancouver
Aston KI, Hunt SC, Susser E, Kimura M, Factor‐Litvak P, Carrell DT, et al. Divergence of sperm and leukocyte age-dependent telomere dynamics: implications for male-driven evolution of telomere length in humans. Molecular Human Reproduction. 2012. doi:10.1093/molehr/gas028.
BibTeX
@article{kenneth2012Diverg,
title = {Divergence of sperm and leukocyte age-dependent telomere dynamics: implications for male-driven evolution of telomere length in humans},
author = {Kenneth I. Aston and S C Hunt and Ezra Susser and Minoru Kimura and Pam Factor‐Litvak and D. T. Carrell and Ariel Aviv},
journal = {Molecular Human Reproduction},
year = {2012},
doi = {10.1093/molehr/gas028},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
Blood Cancer Journal 2014
Open access · CC-BY
Induced pluripotent stem cells in hematology: current and future applications
Mechanisms of Ageing and Development 2020
Preprint · CC-BY
Is metformin a geroprotector? A peek into the current clinical and experimental data
PLoS Genetics 2008
Open access · CC-BY
Offspring's Leukocyte Telomere Length, Paternal Age, and Telomere Elongation in Sperm
Epidemiology 2015
Open access · CC-BY
Telomeres, Atherosclerosis, and Human Longevity
Cell Research 2011
Open access · OA
Molecular insights into the heterogeneity of telomere reprogramming in induced pluripotent stem cells
Proceedings of the National Academy of Sciences 2013
Open access · OA