| Literature DB >> 23342975 |
Aleksander Jamsheer1, Anna Sowińska, Dorota Simon, Małgorzata Jamsheer-Bratkowska, Tomasz Trzeciak, Anna Latos-Bieleńska.
Abstract
BACKGROUND: A partial duplication of the distal long arm of chromosome 5 (5q35-->qter) is known to be associated with a distinct phenotype referred to as Hunter-McAlpine syndrome. Clinical spectrum of this disorder mainly consists of mental retardation, microcephaly, short stature, skeletal anomalies, and craniofacial dysmorphism featuring flat facies, micrognathia, large, low-set dysplastic ears, hypertelorism, almond-shaped, down-slanted palpebral fissures, epicanthal folds, small nose, long philtrum, small mouth, and thin upper lip. Less frequent remarkable findings include craniosynostosis, heart defect, hypoplastic phalanges, preaxial polydactyly, hypospadias, cryptorchidism, and inguinal hernia. In most patients with a partial duplication of 5q the aberration occurred due to an inherited unbalanced translocation, therefore the phenotype was not reflective of pure trisomy 5q. CASEEntities:
Mesh:
Year: 2013 PMID: 23342975 PMCID: PMC3576294 DOI: 10.1186/1471-2350-14-13
Source DB: PubMed Journal: BMC Med Genet ISSN: 1471-2350 Impact factor: 2.103
Figure 1The proband at the age of 8 years and 4 months: a) Bilateral upper limb defect comprised of absent thumbs and radial bone agenesis resulting in significant forearm shortening b) X-ray scan of the proband’s left forearm showing absent radius along with Ist digital ray c) right forearm of the proband with prominent contraction of the zeugopod d) Facial dysmorphic features seen in the proband e) Lateral view of the proband’s face.
Sequences of the primers used for gene (MIM ID*601620; GenBank NM_000192) amplification and sequencing
| TBX5_e2 | CAAGAGAAGCCGAGCAGG | 310 | |
| TBX5_e3 | GGGAAGGAATGCCCACTAC | TTCCaagccaccttttcttc | 231 |
| TBX5_e4 | TTAAAATGGATGGAGGCTGC | TTTTGGGAGAAGGTTCCAC | 256 |
| TBX5_e5 | GTGCAGTGCGCTACCTCC | GAAACCCagtgagaagaaggg | 279 |
| TBX5_e6 | GGTTTTATCTGGAGACAAAGGG | CAGGAAAACCTTGCAGATTC | 293 |
| TBX5_e7 | CATGTCCTGAGGTGGTCTTG | GTTGCTGCTGGCTTACCTG | 232 |
| TBX5_e8 | TCAGCCACTCAGGAAATCTG | CCCCAACCCAAGGAAAGG | 356 |
| TBX5_e9 | CTCCACTTTTAGCTGCCTGG | TAGATCAGCATCCAGCGACC | 797 |
Sequences of the primers used for gene (MIM ID*607343; GenBank NM_020436) amplification and sequencing
| SALL4_e1 | GGGGTAAATTTCCCAACTCC | GCGTACGTCCGGGAAGC | 263 |
| SALL4_e2(a) | atagatgtgagcgacggtgc | AAGGTCTTCAGAGTGTCGGC | 729 |
| SALL4_e2(b) | TGGTGCCAACAGCATCC | CACTTTGTCCTGGAACTCGG | 730 |
| SALL4_e2(c) | CTGTCTGTGGTCATCGCTTC | GCATCACGGCATTAGTGAAC | 684 |
| SALL4_e2(d) | AGACACACCTTGGGGTTCAC | TAAAGTTCAACCCAGGCTCC | 708 |
| SALL4_e3 | AAAGATCTCTTTTGCTTTGAAGAG | TGCCAATAAGAAGACACCTGG | 420 |
| SALL4_e4 | ATTCTTGGCTTGCCAGTGAG | TCGTGATTGTAGCACTTGCC | 652 |
Figure 2Results of molecular and cytogenetic laboratory tests. A) Array CGH profile of chromosome 5 showing an excess of material deriving from 5q35.2-5q35.3 in the proband B) Partial karyotype showing proband’s chromosomes 5; possible excess of material on 5q was indicated by red arrow C) FISH analysis with subtelomeric probes (Vysis) for 5q (red signal) and 5p (green signal) showing the location of the extra material on 5q (red signal was indicated by white arrows) D) qPCR results for 5q35.2-q35.3 segment performed in the proband and both parents: three highly specific primer pairs confirmed the presence of three copies in the proband (indicated by black arrow) and showed two copies in both parents.
Sequences of the primers used for quantifying the number of copies of 5q35.2-5q35.3, along with coordinates for each amplified genomic region (HG18), its relative position with regard to the start point of the duplication, and the number of copies detected in the proband
| 5q35.2_A1_F | AACAGGCTCACGCCTTCTTA | 5q35.2 | 175182611 - 175182696 | 2 | - 61 kb |
| 5q35.2_ A1_R | GAAGCACCCAACACATCCTT | ||||
| 5q35.2_ A2_F | CCTTACCAGCAGGGACACAT | 5q35.2 | 175201237 - 175201316 | 2 | - 42 kb |
| 5q35.2_ A2_R | CATGGCCCTCCTACACATCT | ||||
| 5q35.3_B1_F | GTGGAATGATCACGATGCTG | 5q35.3 | 175286270 - 175286357 | + 43 kb | |
| 5q35.3_ B1_R | TGCACAGTCCAACAGACACA | ||||
| 5q35.3_ B2_F | CTGCTCAGCGGGATCTATGT | 5q35.3 | 176356609 - 176356696 | + 1,12 Mb | |
| 5q35.3_ B2_R | TCAAGTCTGCCCCAACTCTT | ||||
| 5q35.3_ B3_F | CCAATCCTGGCATGAGACTT | 5q35.3 | 179355063 - 179355146 | + 4,12 Mb | |
| 5q35.3_ B3_R | GCAAACTGTGTGGGAATCCT |
Figure 3An ideogram of the chromosome 5 with schematic representation of the duplication identified in our proband. All 13 disease-associated genes are listed above the sketch representing 5q terminus.