| Literature DB >> 19133158 |
Jeffrey Rhyne1, Myrna M Mantaring, David F Gardner, Michael Miller.
Abstract
BACKGROUND: Mutations at splice junctions causing exon skipping are uncommon compared to exonic mutations, and two intronic mutations causing an aberrant phenotype have rarely been reported. Despite the high number of functional ABCA1 mutations reported to date, splice variants have been reported infrequently. We screened DNA from a 41 year-old male with low HDL-C (12 mg/dL [0.31 mmol/L]) and a family history of premature coronary heart disease (CHD) using polymerase chain reaction single-strand conformation polymorphism (SSCP) analysis.Entities:
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Year: 2009 PMID: 19133158 PMCID: PMC2642808 DOI: 10.1186/1471-2350-10-1
Source DB: PubMed Journal: BMC Med Genet ISSN: 1471-2350 Impact factor: 2.103
Figure 1Pedigree structure of kindred with 2 novel .
Tabular representation of the information content for all acceptor intron/exon junctions of ABCA1.
| 1 | 12.7 | 26 | 10.5 |
| 2 | 8.2 | 27 | 8.5 |
| 3 | 8.1 | 28 | |
| 4 | 10.7 | 29 | 6.1 |
| 5 | 30 | 14.4 | |
| 6 | 5.8 | 31 | |
| 7 | 12.0 | 32 | 13.6 |
| 8 | 5.9 | 33 | 6.5 |
| 9 | 12.4 | 34 | 7.9 |
| 10 | 8.7 | 35 | 11.7 |
| 11 | 36 | 14.0 | |
| 12 | 6.0 | 37 | 9.1 |
| 13 | 5.8 | 38 | 11.7 |
| 14 | 8.5 | 39 | 17.1 |
| 15 | 11.9 | 40 | 5.3 |
| 16 | 9.6 | 41 | 11.9 |
| 17 | 9.7 | 42 | 9.6 |
| 18 | 11.7 | 43 | 11.4 |
| 19 | 10.9 | 44 | 11.5 |
| 20 | 9.2 | 45 | 8.6 |
| 21 | 13.0 | 46 | 9.5 |
| 22 | 8.2 | 47 | 10.2 |
| 23 | 12.2 | 48 | 12.7 |
| 24 | 11.2 | 49 | 7.3 |
| 25 | 13.7 |
The four junctions (in bold) were further examined for aberrant splicing events.
Primers to ABCA1 in regions predicting constitutive splicing defects
| ABC-A1Ex4FcDNA | 5'-GCCATTTTCCAAATAAAGCCATGCC-3' |
| ABC-A1Ex8RcDNA | 5'-CTCCTGGGCGAGAGTCCCAAG-3' |
| ABC-A1Ex10FcDNA | 5'-CTCCTTACTGCAATGATTTGATGAA-3' |
| ABC-A1Ex14RcDNA | 5'-CCGCATGTCCTCAAAGGGGTCAGC-3' |
| ABC-A1Ex27FcDNA | 5'-ATGGTACCTTGCCAGCAAGACGAA-3' |
| ABC-A1Ex30RcDNA | 5'-GGGATTGGGTTTCCTTCCATACAG-3' |
| ABC-A1Ex30FcDNA | 5'-GCTCCTGAGGACACGGGAACC-3' |
| ABC-A1Ex33RcDNA | 5'-CTCATTCACCCAGATCTTGTTC-3' |
Primers used for construct amplification of the IVS7 variant
| IVS 5-3' | 5'-GATGGGGATCCCAGCACCATCACACTGTTTGAG-3' |
| IVS6-5' | 5'-CGGCGCTCGAGGAAATCATCACAAATGCCAAG-3' |
| IVS 6-3' | 5'-CGCTCGAGGATGTTGTTCATGTAATAAA-3' |
| IVS 7-5' | 5'-CGAAGCTTCCAACTGTGACAGCCCACAA-3' |
| IVS 7-3' | 5'-GCAAGCTTGTGAGGCGTCATTAACTTGT-3' |
| IVS 8-5' | 5'-GCCGATCGTTATTCCTGTTAGTTAGCAA-3' |
| IVS 8-3' | 5'-GCCGATCGGCAGAGGGGTCTCAGAATCC-3' |
| IVS 9-5' | 5'-CCTTCTGCCATTATCTCATTCTTG-3' |
Selected baseline characteristics including age (years), body mass index (kg/m2), lipids, lipoproteins (mg/dL and mmol/L) apolipoproteins (mg/dL) and presence or absence of ABCA1 splice variants of the low HDL pedigree
| Father (D1) | 65 | 38.3 | 189 | 245 | 35 | 105 | 149 | 110 | Yes | No |
| Mother (D2) | 63 | 30.9 | 155 | 293 | 31 | 65 | 139 | 87 | No | Yes |
| Sister (D4) | 37 | 29.3 | 149 | 70 | 22 | 113 | 73 | 90 | Yes | Yes |
| Brother (D5) | 43 | 34.6 | 159 | 176 | 24 | 100 | 109 | 94 | No | Yes |
| Daughter (D6) | 16 | 74 | 42 | 35 | 31 | 100 | 25 | No | Yes | |
Figure 2Normal splicing of exon 7 is illustrated in the top portion of the figure. Schematic representation of exon 7 skipping is shown at the lower portion. A 16% acrylamide gel run of the PCR products from cDNA shows the normal splice product of 389 base-pairs and a splice variant band of 212 base-pairs that results in the elimination of 59 amino acids. Lane 1 (control), Lane 2 (proband). The referent 50 base-pair ladder is shown in lane 3. Sequence of aberrant splicing shown at bottom of figure.
Figure 3Normal splicing of exon 32 is illustrated in the top portion of the figure. Schematic representation of exon 32 skipping is shown at the lower portion. A 16% acrylamide gel run of the PCR products from cDNA shows the normal splice product of 405 base-pairs and a splice variant band of 310 base-pairs that results in the addition of 8 amino acids followed by a stop codon. The predicted protein size is 1496 amino acids compared to normal (2261 amino acids). Lane 1 (control), Lane 2 (proband). Note the constitutive splicing in control lane as well as affected. Referent 50 base-pair ladder is shown in lane 3. Sequence of aberrant splicing shown at bottom of figure.
Figure 4. Lanes 1 and 2 = IVS31-1g>c (mutant); Lane 3 = IVS31-1g (wildtype); Lane 4 = untransfected control; Lane 5 = 50 bp ladder. Bottom: Sequence of aberrant product B containing Exon 31, activation of a cryptic splice site with inclusion of a potion of intron 31 (31 base-pairs), and retention of Exon 32.