| Literature DB >> 30439532 |
Brent A Penque1, Leila Su2, Jianghai Wang2, Weizhen Ji1, Allen Bale3, Frank Luh2, Robert K Fulbright4, Uzair Sarmast4, Annalisa G Sega1, Monica Konstantino1, Michele Spencer-Manzon3, Richard Pierce1, Yun Yen5, Saquib A Lakhani6.
Abstract
RRM2B encodes the crucial p53-inducible ribonucleotide reductase small subunit 2 homolog (p53R2), which is required for DNA synthesis throughout the cell cycle. Mutations in this gene have been associated with a lethal mitochondrial depletion syndrome. Here we present the case of an infant with a novel homozygous p.Asn221Ser mutation in RRM2B who developed hypotonia, failure to thrive, sensorineural hearing loss, and severe metabolic lactic acidosis, ultimately progressing to death at 3 months of age. Through molecular modeling using the X-ray crystal structure of p53R2, we demonstrate that this mutation likely causes disruption of a highly conserved helix region of the protein by altering intramolecular interactions. This report expands our knowledge of potential pathogenic RRM2B mutations as well as our understanding of the molecular function of p53R2 and its role in the pathogenesis of mitochondrial DNA depletion.Entities:
Keywords: Lactic acidosis; Mitochondrial DNA depletion; RRM2B; Ribonucleotide reductase; p53R2
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Year: 2018 PMID: 30439532 DOI: 10.1016/j.ejmg.2018.11.008
Source DB: PubMed Journal: Eur J Med Genet ISSN: 1769-7212 Impact factor: 2.708