| Literature DB >> 26370006 |
Marketa Vlckova1, Martina Simandlova2, Pavel Zimmermann3, Viktor Stranecky4, Hana Hartmannova4, Katerina Hodanova4, Marketa Havlovicova2, Miroslava Hancarova2, Stanislav Kmoch4, Zdenek Sedlacek2.
Abstract
Genitopatellar syndrome (GPS) and Say-Barber-Biesecker-Young-Simpson syndrome (SBBYSS) are two distinct clinically overlapping syndromes caused by de novo heterozygous truncating mutations in the KAT6B gene encoding lysine acetyltransferase 6B, a part of the histone H3 acetyltransferase complex. We describe an 8-year-old girl with a KAT6B mutation and a combined GPS/SBBYSS phenotype. The comparison of this patient with 61 previously published cases with KAT6B mutations and GPS, SBBYSS or combined GPS/SBBYSS phenotypes allowed us to separate the KAT6B mutations into four groups according to their position in the gene (reflecting nonsense mediated RNA decay and protein domains) and their clinical outcome. We suggest that mutations in mid-exon 18 corresponding to the C-terminal end of the acidic (Asp/Glu-rich) domain of KAT6B may have more variable expressivity leading to GPS, SBBYSS or combined phenotypes, in contrast to defects in other regions of the gene which contribute more specifically to either GPS or SBBYSS. Notwithstanding the clinical overlap, our cluster analysis of phenotypes of all known patients with KAT6B mutations supports the existence of two clinical entities, GPS and SBBYSS, as poles within the KAT6B-related disease spectrum. The awareness of these phenomena is important for qualified genetic counselling of patients with KAT6B mutations.Entities:
Keywords: Genitopatellar syndrome; Genotype-phenotype correlation; KAT6B; Say-Barber-Biesecker-Young-Simpson syndrome
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Year: 2015 PMID: 26370006 DOI: 10.1016/j.ejmg.2015.09.004
Source DB: PubMed Journal: Eur J Med Genet ISSN: 1769-7212 Impact factor: 2.708