| Literature DB >> 28924545 |
M Donat1, A Louis2, K Kreskowski1, M Ziegler1, A Weise1, I Schreyer1,3, T Liehr1.
Abstract
Here we report one new case each of an X-autosome translocation (maternally derived), and an X-Y-chromosome translocation. Besides characterizing the involved breakpoints and/or imbalances in detail by molecular cyto-genetics, also skewed X-chromosome inactivation was determined on single cell level using 5-ethynyl-2-deoxyuridine (EdU). Thus, we confirmed that the recently suggested EdU approach can be simply adapted for routine diagnostic use. The latter is important, as only by knowing the real pattern of the skewed X-chromosome inactivation, correct interpretation of obtained results and subsequent reliable genetic counseling, can be done.Entities:
Keywords: 5-ethynyl-2-deoxyuridine (EdU); Genetic counseling; Molecular cytogenetics; X-Autosome translocation; X-Y-Chromosome translocation; skewed X-chromosome inactivation
Year: 2017 PMID: 28924545 PMCID: PMC5596826 DOI: 10.1515/bjmg-2017-0012
Source DB: PubMed Journal: Balkan J Med Genet ISSN: 1311-0160 Impact factor: 0.519
Figure 1Results of molecular cytogenetic analyses for the case with X-autosome translocation (female 1) (A) and X-Y-translocation (female 2) (B) in females. Multicolor banding using a probe for the X-chromosome (MCBX) confirmed the break in Xq22.3; probes for the short arm of chromosome 18 (pcp18) together with a cen-tromeric probe for chromosome 18 (D18Z1) and inverted DAPI-banding mapped the breakpoint into subband 18p11.2. The break in the derivative X-chromosome could be mapped between the probe KAL1 and the subtelomeric probe, and for the Y-chromosome-part in Yq11.22 proximal to probes RP11-943F15.
Figure 2The EdU-test results are depicted for a normal female (A), a normal male (B), female 1 (C) and female 2 (D). X-Chromosomes are labeled in red by the centromeric probe for the X-chromosome (DXZ1). the inactive X-chromosomes are most intensely stained in green.