| Literature DB >> 25774219 |
Ruiyu Ma1, Ying Peng1, Yanghui Zhang1, Yan Xia1, Guizhi Tang1, Jiazhen Chang1, Ruolan Guo1, Baoheng Gui1, Yanru Huang1, Chen Chen2, Desheng Liang1, Lingqian Wu1.
Abstract
BACKGROUND: Increasing number of cases with small supernumerary marker chromosomes (sSMCs) without centromeric DNA and dozens of cases with trisomy 2q3 have been reported in recent years. However, cases of simultaneous sSMC and partial trisomy of chromosome 2q have been rarely described.Entities:
Keywords: Growth retardation; Neocentromere; Partial trisomy 2q3; SNP array; sSMC
Year: 2015 PMID: 25774219 PMCID: PMC4359772 DOI: 10.1186/s13039-015-0111-1
Source DB: PubMed Journal: Mol Cytogenet ISSN: 1755-8166 Impact factor: 2.009
Figure 1Cytogenetic and molecular results. (a) G-banding partial karyotypes of the patient, indicating a terminal deletion of 2q, accompanying with a marker chromosome. (b) C-banding showing no centromeric heterochromatin. (c) Copy number variation analysis for individual SNP loci along chromosome 2 using Illumina Human OmniZhongHua-8 Beadchip. B Allele Frequency and Log R show a gain of 34,268,291 bp (nt. 208775856–243044147) in terminal end of 2q (Red arrow ). (d) FISH results of the patient. FISH using RP11-526 L8 (orange) at 2q37.3 as a test probe and RP11-119B15 (green) at 2p22.3 as a control probe, showing an orange signal and a green signal on each of the two copies of only one chromosome 2, while the other one lacking the orange signal. Two orange hybridization signals for test probe on the SMC corresponding to an inverted duplication marker. (e, f) FISH results of the parents showing one hybridization signal for each probe on the two normal chromosomes 2.
Reported cases with pure distal trisomy 2q overlapping 2q33-2qter
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| Dennis et al., [ | 2q33-2q37 | Ins 12q23 | Pat. | + | +/+ | + |
| Yu and Chen, [ | 2q34-2q37 | Inv dup | De novo | + | +/− | + |
| Kyllerman et al., [ | 2q34-2qter | Inv dup | Pat. | + | +/+ | + |
| Dahoun-Hadorn and Bretton-Chappuis, [ | 2q35-2qter | Inv dup | De novo | +* | +/+ | + |
| Romain et al., [ | 2q33.1-2q35 | Dir dup | De novo | + | +/− | + |
| Fritz et al., [ | 2q35-2q37.1 | Ins 17q25 | De novo | + | +/+ | + |
| Seidahmed et al., [ | 2q32-2q37 | Inv dup | De novo | + | +/+ | + |
| Angle et al., [ | 2q34-2qter | Inv dup | Mat. | + | +/+ | + |
| Bonaglia et al., [ | 2q33-2q37 | Inv dup | De novo | + | +/+ | + |
| Bird and Mascarello, [ | 2q33.1-2q37.1 | Dir dup | De novo | + | +/+ | + |
| Slavotinek et al., [ | 2q33-2q37.3 | Inv dup | De novo | + | +/− | + |
| Hermsen et al., [ | 2q35-q37.3 | Trans dir dup | De novo | + | +/− | + |
| Pietrzak et al., [ | 2q35-q36 | Sup r | De novo | + | +/− | + |
Ins, insertion; Inv dup, inverted duplication; Dir dup, direct duplication; Trans dir dup, translocation direct duplication; Sup r, supernumerary ring; Mat., maternal; Pat., paternal.
*The mentally retarded child presented with comparable facial anomalies, hypospadias and bilateral cryptorchidism, but without growth retardation.
Comparison of similar cases with inverted duplicated neocentric sSMC
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| 1 | 47,XX,del(1)(q32),+der(1)(qter → q32::q32 → qter)[100%] | Terminal deletion + Inv dup(possibly) | NOR | 01-N-q32/1-1 |
| 2 | 47,XX,del(9)(p12),+der(9)(pter → p12::p12 → pter)[100%] | Terminal deletion + Inv dup | NOR | 09-N-pt12/1-1 |
| 3 | 47,XY,del(11)(q22),+der(11)(qter → q22::q22 → qter)[100%] | Terminal deletion + Inv dup | NOR | 11-N-qt22/1-1 |
| 4 | 47,XX,del(13)(q32.3),+der(13)(qter → q32.3::q32.3 → qter)[100%] | Terminal deletion + Inv dup | NA | 13-N-qt32.3/2-1 |
| 5 | 47,XX,del(14)(q32.1),+der(14)(qter → q32.1::q32.1 → qter)[100%] | Terminal deletion + Inv dup | NOR | 14-N-qt32.1/1-1 |
| 6 | 47,XY,i(16)(q10), +der(16)(p13.3p11.2)[100%] | Deletion + Iso | NOR | 16-N-p11.2/1-1 |
| 7 | 47,XY,del(17)(q22q23),+der(17)(:q22 → q23::q23 → q22:)[100%] | Interstitial deletion + Inv dup | NOR | 17-N-qt22/1-1 |
| 8 | 47,XX,del(20)(p11.2),+der(20)(pter → p11.2::p11.2 → pter)[100%] | Terminal deletion + Inv dup | NOR | 20-N-pt11.2/1-1 |
| 9 | 47,XX,del(2)(q33.3),+der(2)(qter → q33.3::q33.3 → qter)[100%] | Terminal deletion + Inv dup | NOR | the present case |
Inv dup, inverted duplication; Iso, isochromosomes; NA, not available for testing; NOR, normal.
Figure 2Possible mechanisms for the formation of neocentric marker chromosome in the patient. Chromatids breakage (red scissors) and a distal U-type exchange happened before sister chromatid separation during the meiosis II. Neocentromerization occurred once breakage happened. Deep color ovals are the centromeres, and the same one on the acentric fragment is neocentromere. The broken ends (red wave) of the centric fragment could be stabilized by telomere restitution. After zygogenesis and subsequent replication the result would be partial trisomy for the duplicated fragment.
Figure 3Microsatellite analysis of markers D2S1279 and D2S1338 on ABI 3100 genetic analyser. The 2:1 ratio between two fluorescent peaks areas in the proband indicated that she inherited a double dosage of one of the paternal alleles.