4.7 Article

Spatio-temporal correlates of gene expression and cortical morphology across lifespan and aging

期刊

NEUROIMAGE
卷 224, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.neuroimage.2020.117426

关键词

Cortical morphology; Transcriptome; Phenotypic traits; Astrocyte; Senescence

资金

  1. National Research Foundation, Singapore under its AI Singapore Programme (AISG) [AISG-GC-2019-002]
  2. Singapore Ministry of Education [NUHSRO/2017/052/T1-SRP-Partnership/01]
  3. Singapore National Research Foundation under its Translational and Clinical Research (TCR) Flagship Programme
  4. NUS Institute of Data Science
  5. Singapore Ministry of Health's National Medical Research Council (NMRC) [NMRC/TCR/004-NUS/2008, NMRC/TCR/012NUHS/2014]
  6. A* STAR Computational Resource Centre

向作者/读者索取更多资源

Evidence from neuroimaging and genetic studies suggests that brain aging mirrors development, but it is unclear whether mechanisms connecting brain development and aging can delay or reverse aging. This study identified genes associated with cortical volumes across the lifespan, mainly in astrocytes, with up-regulation during development and down-regulation during aging. These genes are involved in fundamental astrocytic functions and signaling pathways related to aging.
Evidence from neuroimaging and genetic studies supports the concept that brain aging mirrors development. However, it is unclear whether mechanisms linking brain development and aging provide new insights to delay aging and potentially reverse it. This study determined biological mechanisms and phenotypic traits underpinning brain alterations across the lifespan and in aging by examining spatio-temporal correlations between gene expression and cortical volumes using datasets d with the age range from 2 to 82 years. We revealed that a large proportion of genes whose expression was associated with cortical volumes across the lifespan were in astrocytes. These genes, which showed up-regulation during development and down-regulation during aging, contributed to fundamental homeostatic functions of astrocytes. Included among these genes were those encoding components of cAMP, Ras, and retrograde endocannabinoid signaling pathways. Genes associated with cortical volumes in the same data aged above 55 years were also enriched for the sphingolipid, renin-angiotensin system (RAS), proteasome, and TGF-beta signaling pathway, which is linked to senescence-associated secretory phenotypes. Neuroticism, drinking, and smoking were the common phenotypic traits in the lifespan and aging, while memory was the unique phenotype associated with aging. These findings provide biological mechanisms mirroring development and aging as well as unique to aging.

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