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Genomic integrity and mitochondrial metabolism defects in Warsaw syndrome cells: a comparison with Fanconi anemia.

Authors :
Bottega, Roberta
Ravera, Silvia
Napolitano, Luisa M. R.
Chiappetta, Viviana
Zini, Nicoletta
Crescenzi, Barbara
Arniani, Silvia
Faleschini, Michela
Cortone, Giuseppe
Faletra, Flavio
Medagli, Barbara
Sirchia, Fabio
Moretti, Martina
Lange, Job
Cappelli, Enrico
Mecucci, Cristina
Onesti, Silvia
Pisani, Francesca M.
Savoia, Anna
Source :
Journal of Cellular Physiology. Aug2021, Vol. 236 Issue 8, p5664-5675. 12p.
Publication Year :
2021

Abstract

Warsaw breakage syndrome (WABS), is caused by biallelic mutations of DDX11, a gene coding a DNA helicase. We have recently reported two affected sisters, compound heterozygous for a missense (p.Leu836Pro) and a frameshift (p.Lys303Glufs*22) variant. By investigating the pathogenic mechanism, we demonstrate the inability of the DDX11 p.Leu836Pro mutant to unwind forked DNA substrates, while retaining DNA binding activity. We observed the accumulation of patient‐derived cells at the G2/M phase and increased chromosomal fragmentation after mitomycin C treatment. The phenotype partially overlaps with features of the Fanconi anemia cells, which shows not only genomic instability but also defective mitochondria. This prompted us to examine mitochondrial functionality in WABS cells and revealed an altered aerobic metabolism. This opens the door to the further elucidation of the molecular and cellular basis of an impaired mitochondrial phenotype and sheds light on this fundamental process in cell physiology and the pathogenesis of these diseases. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00219541
Volume :
236
Issue :
8
Database :
Academic Search Index
Journal :
Journal of Cellular Physiology
Publication Type :
Academic Journal
Accession number :
150340446
Full Text :
https://doi.org/10.1002/jcp.30265