| Literature DB >> 27920058 |
Daniel Z Bar1, Martin F Arlt2, Joan F Brazier3, Wendy E Norris4, Susan E Campbell3, Peter Chines1, Delphine Larrieu5, Stephen P Jackson5, Francis S Collins1, Thomas W Glover2, Leslie B Gordon4,6.
Abstract
BACKGROUND: Hutchinson-Gilford progeria syndrome (HGPS) is a fatal sporadic autosomal dominant premature ageing disease caused by single base mutations that optimise a cryptic splice site within exon 11 of the LMNA gene. The resultant disease-causing protein, progerin, acts as a dominant negative. Disease severity relies partly on progerin levels. METHODS ANDEntities:
Keywords: Other cardiovascular medicine; aging; lamin; mosaicism; progeria
Mesh:
Substances:
Year: 2016 PMID: 27920058 PMCID: PMC5384422 DOI: 10.1136/jmedgenet-2016-104295
Source DB: PubMed Journal: J Med Genet ISSN: 0022-2593 Impact factor: 6.318
Figure 1(A) Normal sequence and three Hutchinson-Gilford progeria syndrome (HGPS) mutations in the LMNA gene that affect exon 11 and intron 11. In the normal version, splicing occurs primarily from the normal splice donor at the beginning of intron 11, which is an excellent match to the consensus sequence G/GTRAGT, where the GT at the beginning of the intron is most critical, and R=A or G. The classic HGPS mutation activates a cryptic splice site just upstream of position 1824 in exon 11; the C>T HGPS mutation makes that splice donor a better match to the consensus at the +6 position. The bottom two lines show the consequences of mutations in the +2 position of intron 11, the topic of this report. When the 1968+2 position is A instead of T, the normal splice donor is predicted to be completely inactivated. When that position is C, some residual function of the normal splice is likely, as GC can substitute for GT in certain normal splice donors.16 All three of the mutant versions are predicted to lead to production of varying amounts of an mRNA that lacks 150 nt of coding region, and thus codes for progerin, a toxic protein that is missing 50 amino acid residues. Mutations in the intron 11 splice donor have also been reported to produce an additional mRNA that completely deletes exon 11, but the protein product of that event has not thus far been detectable.5 (B) LMNA deep sequencing demonstrates genomic DNA base frequency at position1968+2, in white blood cells from patient DB386 (stripes), and cultured fibroblasts from father of DB386 1968+2 (checkers). Numbers of reads above each bar.
Figure 2Proband DB386 at ages (A) 1 day (B) 1 year (C) 19 months (D) and 5.4 years demonstrating progressive mandibular recession, severe but subtotal alopecia, and lipodystrophy. (E) DB423 at age 1.2 years demonstrating severe mandibular recession, early alopecia and severe lipodystrophy (F) female with classic Hutchinson-Gilford progeria syndrome at age 5.4 years demonstrating total alopecia severe lipodystrophy and moderate mandibular recession. (G) DB392 at age 11.5 years demonstrating no mandibular recession, moderate alopecia and moderate lipodystrophy.