Willard H F, Breg W R
Somatic Cell Genet. 1980 Mar;6(2):187-98. doi: 10.1007/BF01538795.
We have analyzed patterns of DNA replication in X chromosomes from diploid cultured human fibroblasts and from three triploid 69,XXY fibroblast strains, using BrdU--33258 Hoechst--Giemsa techniques. Both X chromosomes in each of these Barr body-negative triploid strains were early-replicating. The results of gene dosage studies using (1) a histochemical stain to measure X-linked glucose-6-phosphate dehydrogenase (G6PD) activity in single cells and (2) cellulose acetate electrophoresis of G6PD activity in cell extracts also indicated that both Xs in these strains were genetically active. When we compared the synchrony of X chromosome DNA replication kinetics both between cells and within cells containing multiple inactive Xs, a marked variability and asynchrony was observed for late-replicating X chromosomes. In a culture of 47,XXX fibroblasts administered an 8-h terminal pulse of dT after growth in BrdU-containing medium, asynchrony was detected between the two late-replicating Xs in approximately 70% of cells examined. No such asynchrony was observed between the two early-replicating Xs in similarly cultured 69,XXY cells; in the triploid strains, the two Xs were distinguished by asynchronous replication in only approximately 15% of cells. The striking variability in late X chromosome replication kinetics appears, then, to be a property unique to inactive Xs and is not inherent to all X chromosomes.
我们使用溴脱氧尿苷-33258 Hoechst-吉姆萨技术,分析了来自二倍体培养的人成纤维细胞以及三个三倍体69,XXY成纤维细胞系的X染色体的DNA复制模式。在这些无巴氏小体的三倍体细胞系中,两条X染色体均为早期复制。利用(1)一种组织化学染色法来测定单细胞中X连锁的葡萄糖-6-磷酸脱氢酶(G6PD)活性,以及(2)对细胞提取物中的G6PD活性进行醋酸纤维素电泳的基因剂量研究结果也表明,这些细胞系中的两条X染色体均具有遗传活性。当我们比较细胞间以及含有多个失活X染色体的细胞内X染色体DNA复制动力学的同步性时,观察到晚期复制的X染色体存在明显的变异性和不同步性。在含有溴脱氧尿苷的培养基中生长后,对47,XXX成纤维细胞培养物给予8小时的dT终末脉冲,在大约70%检测的细胞中,两条晚期复制的X染色体之间检测到不同步性。在类似培养的69,XXY细胞中,两条早期复制的X染色体之间未观察到这种不同步性;在三倍体细胞系中,两条X染色体仅在大约15%的细胞中通过异步复制得以区分。因此,晚期X染色体复制动力学中显著的变异性似乎是失活X染色体所特有的性质,而非所有X染色体所固有。