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Revealing the Complexity of a Monogenic Disease: Rett Syndrome Exome Sequencing

Overview of attention for article published in PLOS ONE, February 2013
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Title
Revealing the Complexity of a Monogenic Disease: Rett Syndrome Exome Sequencing
Published in
PLOS ONE, February 2013
DOI 10.1371/journal.pone.0056599
Pubmed ID
Authors

Elisa Grillo, Caterina Lo Rizzo, Laura Bianciardi, Veronica Bizzarri, Margherita Baldassarri, Ottavia Spiga, Simone Furini, Claudio De Felice, Cinzia Signorini, Silvia Leoncini, Alessandra Pecorelli, Lucia Ciccoli, Maria Antonietta Mencarelli, Joussef Hayek, Ilaria Meloni, Francesca Ariani, Francesca Mari, Alessandra Renieri

Abstract

Rett syndrome (OMIM#312750) is a monogenic disorder that may manifest as a large variety of phenotypes ranging from very severe to mild disease. Since there is a weak correlation between the mutation type in the Xq28 disease-gene MECP2/X-inactivation status and phenotypic variability, we used this disease as a model to unveil the complex nature of a monogenic disorder. Whole exome sequencing was used to analyze the functional portion of the genome of two pairs of sisters with Rett syndrome. Although each pair of sisters had the same MECP2 (OMIM*300005) mutation and balanced X-inactivation, one individual from each pair could not speak or walk, and had a profound intellectual deficit (classical Rett syndrome), while the other individual could speak and walk, and had a moderate intellectual disability (Zappella variant). In addition to the MECP2 mutation, each patient has a group of variants predicted to impair protein function. The classical Rett girls, but not their milder affected sisters, have an enrichment of variants in genes related to oxidative stress, muscle impairment and intellectual disability and/or autism. On the other hand, a subgroup of variants related to modulation of immune system, exclusive to the Zappella Rett patients are driving toward a milder phenotype. We demonstrate that genome analysis has the potential to identify genetic modifiers of Rett syndrome, providing insight into disease pathophysiology. Combinations of mutations that affect speaking, walking and intellectual capabilities may represent targets for new therapeutic approaches. Most importantly, we demonstrated that monogenic diseases may be more complex than previously thought.

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Geographical breakdown

Country Count As %
United States 2 2%
China 1 <1%
Brazil 1 <1%
Unknown 116 97%

Demographic breakdown

Readers by professional status Count As %
Researcher 25 21%
Student > Master 15 13%
Student > Ph. D. Student 14 12%
Student > Bachelor 11 9%
Other 10 8%
Other 29 24%
Unknown 16 13%
Readers by discipline Count As %
Agricultural and Biological Sciences 29 24%
Medicine and Dentistry 21 18%
Biochemistry, Genetics and Molecular Biology 19 16%
Psychology 10 8%
Neuroscience 7 6%
Other 15 13%
Unknown 19 16%