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India’s syndemic of tuberculosis and COVID-19
Rukmini Shrinivasan, Saurabh Rane, Madhukar Pai
BMJ Global Health · 2020 · ▲ 72 citations
Abstract
Summary Chromatin instability and loss of protein homeostasis (proteostasis(definition)) are two well-established telomere(definition) attrition, cellular senescence(definition))." style="text-decoration:underline dotted; text-underline-offset:2px; cursor:help;">hallmarks of aging(definition), which have been considered largely independent of each other. Using microfluidics and single-cell imaging approaches, we observed that, during the replicative aging of S.cerevisiae, proteostasis decline occurred specifically in the fraction of cells with decreased stability at the ribosomal DNA (rDNA) region. A screen of 170 yeast RNA-binding proteins identified ribosomal RNA (rRNA)- binding proteins as the most enriched group that aggregate upon a decrease in rDNA stability. We further found that loss of rDNA stability contributes to age-dependent aggregation of rRNA-binding proteins through aberrant overproduction of rRNAs. These aggregates negatively impact nucleolar integrity and global proteostasis and hence limit cellular lifespan. Our findings reveal a mechanism underlying the interconnection between chromatin instability and proteostasis decline and highlight the importance of cell-to-cell variability in aging processes.
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- 10.1136/bmjgh-2020-003979
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- 2026-08-20 MST
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APA
Shrinivasan, R., Rane, S., & Pai, M. (2020). India’s syndemic of tuberculosis and COVID-19. <em>BMJ Global Health</em>. https://doi.org/10.1136/bmjgh-2020-003979
Vancouver
Shrinivasan R, Rane S, Pai M. India’s syndemic of tuberculosis and COVID-19. BMJ Global Health. 2020. doi:10.1136/bmjgh-2020-003979.
BibTeX
@article{rukmini2020Indias,
title = {India’s syndemic of tuberculosis and COVID-19},
author = {Rukmini Shrinivasan and Saurabh Rane and Madhukar Pai},
journal = {BMJ Global Health},
year = {2020},
doi = {10.1136/bmjgh-2020-003979},
}
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