White W M, Willard H F, Van Dyke D L, Wolff D J
Department of Genetics, Case Western Reserve University School of Medicine, Cleveland, Ohio, USA.
Am J Hum Genet. 1998 Jul;63(1):20-8. doi: 10.1086/301922.
X inactivation involves initiation, propagation, and maintenance of genetic inactivation. Studies of replication timing in X;autosome translocations have suggested that X inactivation may spread into adjacent autosomal DNA. To examine the inactivation of autosomal material at the molecular level, we assessed the transcriptional activity of X-linked and autosomal loci spanning an inactive translocation in a phenotypically normal female with a karyotype of 46,X,der(X)t(X;4)(q22;q24). Since 4q duplications usually manifest dysmorphic features and severe growth and mental retardation, the normal phenotype of this individual suggested the spreading of X inactivation throughout the autosomal material. Consistent with this model, reverse transcription-PCR analysis of 20 transcribed sequences spanning 4q24-qter revealed that three known genes and 11 expressed sequence tags (ESTs) were not expressed in a somatic-cell hybrid that carries the translocation chromosome. However, three ESTs and three known genes were expressed from the t(X;4) chromosome and thus "escaped" X inactivation. This direct assay of expression demonstrated that the spreading of inactivation from the adjoining X chromosome was incomplete and noncontiguous. These findings are broadly consistent with the existence of genes known to escape inactivation on normal inactive X chromosomes. However, the fact that a high proportion (30%) of tested autosomal genes escaped inactivation may indicate that autosomal material lacks X chromosome-specific features that are associated with the spreading and/or maintenance of inactivation.
X染色体失活涉及基因失活的起始、传播和维持。对X染色体与常染色体易位中复制时间的研究表明,X染色体失活可能会扩散到相邻的常染色体DNA中。为了在分子水平上研究常染色体物质的失活情况,我们评估了一位核型为46,X,der(X)t(X;4)(q22;q24)的表型正常女性中,跨越一个失活易位的X连锁和常染色体基因座的转录活性。由于4号染色体长臂重复通常表现出畸形特征以及严重的生长和智力发育迟缓,该个体的正常表型表明X染色体失活扩散到了整个常染色体物质中。与该模型一致,对跨越4q24 - qter的20个转录序列进行的逆转录 - PCR分析显示,在携带易位染色体的体细胞杂种中,三个已知基因和11个表达序列标签(EST)未表达。然而,三个EST和三个已知基因从t(X;4)染色体表达,因此“逃脱”了X染色体失活。这种直接的表达分析表明,来自相邻X染色体的失活扩散是不完全且不连续的。这些发现与已知在正常失活X染色体上逃脱失活的基因的存在大致一致。然而,高比例(30%)的测试常染色体基因逃脱失活这一事实可能表明,常染色体物质缺乏与失活的传播和/或维持相关的X染色体特异性特征。