Scheuerle A, Zenger-Hain J L, Van Dyke D L, Ledbetter D H, Greenberg F, Shaffer L G
Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, Texas 77030, USA.
Am J Med Genet. 1995 May 8;56(4):403-8. doi: 10.1002/ajmg.1320560411.
We present a patient with a chromosomal mosaicism involving the X chromosome. One cell line is 45,X and the other has a de novo paternally derived dicentric X;15 translocation. Her karyotype is therefore 45,X/45,X,dic(X;15)(Xpter-->Xq26.1::15p11-->15 qter) based on G-banding. The presence of 2 centromeres on the derivative X was confirmed by fluorescence in situ hybridization (FISH) and a deletion of Xq26.1-->qter was confirmed by polymerase chain reaction (PCR) using DXS52 and DXYS154. Replication banding studies indicate that the derivative X is late replicating. Based on these studies, it is unclear whether inactivation has spread to proximal 15q. The patient has a unique phenotype distinct from Ullrich-Turner or Prader-Willi syndromes, but includes ataxia and language delay which are commonly seen in Angelman syndrome. These findings are contrary to those anticipated since deficiency of paternal genes at 15q12 typically leads to Prader-Willi syndrome. Molecular analysis of PCR-based polymorphisms of chromosome 15 and X indicates that uniparental disomy is not present for the X chromosome or chromosome 15 in either cell line. It is hypothesized that her phenotype results from the interaction of the 2 abnormal genotypes. Each abnormality may be diluted by the mosaicism and, in the derivative X line, by the possible variation among cells of inactivation spreading to chromosome 15.
我们报告一名患有涉及X染色体的染色体镶嵌现象的患者。一种细胞系为45,X,另一种具有源自父亲的新发双着丝粒X;15易位。因此,根据G显带,她的核型为45,X/45,X,dic(X;15)(Xpter→Xq26.1::15p11→15 qter)。通过荧光原位杂交(FISH)证实了衍生X染色体上存在2个着丝粒,并使用DXS52和DXYS154通过聚合酶链反应(PCR)证实了Xq26.1→qter的缺失。复制带研究表明衍生X染色体复制较晚。基于这些研究,尚不清楚失活是否已扩散至近端15q。该患者具有独特的表型,不同于乌尔里希-特纳综合征或普拉德-威利综合征,但包括共济失调和语言发育迟缓,这在安吉尔曼综合征中很常见。这些发现与预期相反,因为15q12处父源基因的缺失通常会导致普拉德-威利综合征。对15号染色体和X染色体基于PCR的多态性进行分子分析表明,任一细胞系中X染色体或15号染色体均不存在单亲二体性。据推测,她的表型是由两种异常基因型的相互作用导致的。每种异常可能因镶嵌现象而被稀释,在衍生X细胞系中,因失活扩散至15号染色体的细胞间可能存在的变异而被稀释。