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Mol. Cells 2005; 19(3): 303-309

Published online January 1, 1970

© The Korean Society for Molecular and Cellular Biology

The Pleiotropy of Telomerase against Cell Death

Young Hoon Sung, Yoon Sik Choi, Cheolho Cheong, Han-Woong Lee

Abstract

The end of eukaryotic genomic DNA is capped by a specialized structure called as “telomere”, which consists of the repetitive array of nucleotide sequence, TTAGGG, in humans and mice, and a variety of binding proteins. Telomerase is a ribonucleoprotein (RNP) complex responsible for the elongation of telomeres to maintain the genomic integrity, and is composed of telomerase reverse transcriptase (TERT), telomerase RNA component (TERC), and their associated factors regulating the catalytic activity of telomerase. Although it is now apparent that telomerase protects cells from apoptosis via the maintenance of genomic integrity by stabilizing telomeres, our understanding for the physiological role of telomerase is yet far from completion, and emerging evidence suggests that telomerase has additional extratelomeric roles in mediating cell survival and anti-apoptotic functions against various cytotoxic stresses. Here we summarize and discuss how telomerase and telomeres are involved in mediating cellular protection against apoptosis.

Keywords Anti-apoptotic; Apoptosis; Cell Death; Extratelomeric; Survival; Telomerase; Telomere; TERT; TERC

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Mol. Cells 2005; 19(3): 303-309

Published online June 30, 2005

Copyright © The Korean Society for Molecular and Cellular Biology.

The Pleiotropy of Telomerase against Cell Death

Young Hoon Sung, Yoon Sik Choi, Cheolho Cheong, Han-Woong Lee

Abstract

The end of eukaryotic genomic DNA is capped by a specialized structure called as “telomere”, which consists of the repetitive array of nucleotide sequence, TTAGGG, in humans and mice, and a variety of binding proteins. Telomerase is a ribonucleoprotein (RNP) complex responsible for the elongation of telomeres to maintain the genomic integrity, and is composed of telomerase reverse transcriptase (TERT), telomerase RNA component (TERC), and their associated factors regulating the catalytic activity of telomerase. Although it is now apparent that telomerase protects cells from apoptosis via the maintenance of genomic integrity by stabilizing telomeres, our understanding for the physiological role of telomerase is yet far from completion, and emerging evidence suggests that telomerase has additional extratelomeric roles in mediating cell survival and anti-apoptotic functions against various cytotoxic stresses. Here we summarize and discuss how telomerase and telomeres are involved in mediating cellular protection against apoptosis.

Keywords: Anti-apoptotic, Apoptosis, Cell Death, Extratelomeric, Survival, Telomerase, Telomere, TERT, TERC

Mol. Cells
Sep 30, 2023 Vol.46 No.9, pp. 527~572
COVER PICTURE
Chronic obstructive pulmonary disease (COPD) is marked by airspace enlargement (emphysema) and small airway fibrosis, leading to airflow obstruction and eventual respiratory failure. Shown is a microphotograph of hematoxylin and eosin (H&E)-stained histological sections of the enlarged alveoli as an indicator of emphysema. Piao et al. (pp. 558-572) demonstrate that recombinant human hyaluronan and proteoglycan link protein 1 (rhHAPLN1) significantly reduces the extended airspaces of the emphysematous alveoli by increasing the levels of TGF-β receptor I and SIRT1/6, as a previously unrecognized mechanism in human alveolar epithelial cells, and consequently mitigates COPD.

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Molecules and Cells

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