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Homogeneous rate of degradation of nuclear DNA during apoptosis.

机译:凋亡过程中核DNA的同质降解速率。

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摘要

DNA fragmentation during apoptosis is characterized by endonucleolytic cleavage of chromosomal DNA into an oligonucleosomal ladder. To determine if actively transcribed genes are more susceptible to cleavage during apoptosis than non-transcribed genes, the rate of fragmentation of differentially expressed genes was measured in B-lymphocyte hybridoma cells. Five genes were studied based on their transcriptional activity and/or nuclear localization, and mitochondrial DNA was assayed as a negative control for apoptotic fragmentation. Apoptosis was induced in the hybridoma cells by ultraviolet light, and DNA was prepared at multiple time points after ultraviolet irradiation. Degradation into an oligonucleosomal ladder appeared as early as 2 h after treatment, showing that fragmentation is rapidly activated in hybridoma cells. The DNA was then digested with restriction enzymes, separated by gel electrophoresis and hybridized with the gene-specific probes for Southern blot analyses. Loss of gene-specific signals was measured by quantitation of autoradiographs. The results show all of the nuclear genes were degraded at the same rate regardless of their transcriptional status or nuclear localization. The data suggest that once the cell activates its destruction program, nuclear DNA is rapidly degraded in a homogeneous manner.
机译:凋亡过程中的DNA片段化的特征是将染色体DNA进行核酸内切裂解为寡核小体阶梯。为了确定主动转录的基因是否比非转录的基因在凋亡过程中更易于裂解,在B淋巴细胞杂交瘤细胞中测量了差异表达基因的片段化率。根据五个基因的转录活性和/或核定位,研究了五个基因,并将线粒体DNA检测为凋亡片段的阴性对照。紫外线在杂交瘤细胞中诱导凋亡,并且在紫外线照射后的多个时间点制备DNA。最早在治疗后2小时就降解为寡核小体阶梯,表明该片段在杂交瘤细胞中迅速被激活。然后用限制酶消化DNA,通过凝胶电泳分离,并与用于Southern印迹分析的基因特异性探针杂交。通过放射自显影照片的定量来测量基因特异性信号的损失。结果表明,所有核基因均以相同的速率降解,而不管其转录状态或核定位如何。数据表明,一旦细胞激活其破坏程序,核DNA就会以同质方式迅速降解。

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