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Poly(A)-specific ribonuclease deficiency impacts telomere biology and causes dyskeratosis congenita

Hemanth Tummala, Amanda J. Walne, Laura C. Collopy, Shirleny Romualdo Cardoso, Josu de la Fuente, Sarah E. Lawson, James Powell, Nicola S. Cooper, Alison C. Foster, Shehla N. Mohammed, Vincent Plagnol, Thomas J. Vulliamy, Inderjeet S Dokal

Journal of Clinical Investigation · 2015 · ▲ 205 citations

Abstract

Dyskeratosis congenita (DC) and related syndromes are inherited, life-threatening bone marrow (BM) failure disorders, and approximately 40% of cases are currently uncharacterized at the genetic level. Here, using whole exome sequencing (WES), we have identified biallelic mutations in the gene encoding poly(A)-specific ribonuclease (PARN) in 3 families with individuals exhibiting severe DC. PARN is an extensively characterized exonuclease with deadenylation activity that controls mRNA stability in part and therefore regulates expression of a large number of genes. The DC-associated mutations identified affect key domains within the protein, and evaluation of patient cells revealed reduced deadenylation activity. This deadenylation deficiency caused an early DNA damage response in terms of nuclear p53 regulation, cell-cycle arrest, and reduced cell viability upon UV treatment. Individuals with biallelic PARN mutations and PARN-depleted cells exhibited reduced RNA levels for several key genes that are associated with telomere(definition) biology, specifically TERC, DKC1, RTEL1, and TERF1. Moreover, PARN-deficient cells also possessed critically short telomeres. Collectively, these results identify a role for PARN in telomere maintenance and demonstrate that it is a disease-causing gene in a subset of patients with severe DC.

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OpenAlex
DOI
10.1172/jci78963
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2026-09-26 MST

Cite this

APA
Tummala, H., Walne, A.J., Collopy, L.C., Cardoso, S.R., Fuente, J.D.L., Lawson, S.E., Powell, J., Cooper, N.S., Foster, A.C., Mohammed, S.N., Plagnol, V., Vulliamy, T.J., &amp; Dokal, I.S. (2015). Poly(A)-specific ribonuclease deficiency impacts telomere biology and causes dyskeratosis congenita. <em>Journal of Clinical Investigation</em>. https://doi.org/10.1172/jci78963
Vancouver
Tummala H, Walne AJ, Collopy LC, Cardoso SR, Fuente JDL, Lawson SE, et al. Poly(A)-specific ribonuclease deficiency impacts telomere biology and causes dyskeratosis congenita. Journal of Clinical Investigation. 2015. doi:10.1172/jci78963.
BibTeX
@article{hemanth2015PolyAs, title = {Poly(A)-specific ribonuclease deficiency impacts telomere biology and causes dyskeratosis congenita}, author = {Hemanth Tummala and Amanda J. Walne and Laura C. Collopy and Shirleny Romualdo Cardoso and Josu de la Fuente and Sarah E. Lawson and James Powell and Nicola S. Cooper and Alison C. Foster and Shehla N. Mohammed and Vincent Plagnol and Thomas J. Vulliamy and Inderjeet S Dokal}, journal = {Journal of Clinical Investigation}, year = {2015}, doi = {10.1172/jci78963}, }

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