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Electron microscopic visualization of sites of nascent DNA synthesis by streptavidin-gold binding to biotinylated nucleotides incorporated in vivo

机译:通过链霉亲和素金结合到体内结合的生物素化核苷酸的电子显微观察新生DNA合成位点

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摘要

Biotinylated nucleotides (bio-11-dCTP, bio-11-dUTP, and bio-7-dATP) were microinjected into unfertilized and fertilized Xenopus laevis eggs. The amounts introduced were comparable to in vivo deoxy- nucleoside triphosphate pools. At various times after microinjection, DNA was extracted from eggs or embryos and subjected to electrophoresis on agarose gels. Newly synthesized biotinylated DNA was analyzed by Southern transfer and visualized using either the BluGENE or Detek-hrp streptavidin-based nucleic acid detection systems. Quantitation of the amount of biotinylated DNA observed at various times showed that the microinjected biotinylated nucleotides were efficiently incorporated in vivo, both into replicating endogenous chromosomal DNA and into replicating microinjected exogenous plasmid DNA. At least one biotinylated nucleotide could be incorporated in vivo for every eight nucleotides of DNA synthesized. Control experiments also showed that heavily biotinylated DNA was not subjected to detectable DNA repair during early embryogenesis (for at least 5 h after activation of the eggs). The incorporated biotinylated nucleotides were visualized by electron microscopy by using streptavidin-colloidal gold or streptavidin-ferritin conjugates to bind specifically to the biotin groups projecting from the newly replicated DNA. The incorporated biotinylated nucleotides were thus made visible as electron-dense spots on the underlying DNA molecules. Biotinylated nucleotides separated by 20-50 bases could be resolved. We conclude that nascent DNA synthesized in vivo in Xenopus laevis eggs can be visualized efficiently and specifically using the techniques described.
机译:将生物素化的核苷酸(bio-11-dCTP,bio-11-dUTP和bio-7-dATP)显微注射到未受精和受精的非洲爪蟾卵中。引入的量与体内脱氧核苷三磷酸库相当。显微注射后的不同时间,从卵或胚胎中提取DNA,并在琼脂糖凝胶上进行电泳。通过Southern转移对新合成的生物素化DNA进行分析,并使用基于BluGENE或Detek-hrp链霉亲和素的核酸检测系统进行可视化。在不同时间观察到的生物素化DNA的量的定量显示,微注射的生物素化的核苷酸被有效地体内整合到复制的内源染色体DNA和复制的微注射的外源质粒DNA中。对于合成的DNA的每八个核苷酸,可以在体内掺入至少一个生物素化的核苷酸。对照实验还显示,在早期胚胎发生过程中(卵活化后至少5小时)未对生物素化程度高的DNA进行过可检测的DNA修复。通过使用抗生蛋白链菌素-胶体金或抗生蛋白链菌素-铁蛋白缀合物特异性结合从新复制的DNA突出的生物素基团,通过电子显微镜观察掺入的生物素化核苷酸。因此,使掺入的生物素化核苷酸在下面的DNA分子上显示为电子致密点。可以解析被20-50个碱基分隔的生物素化核苷酸。我们得出的结论是,在非洲爪蟾卵中体内合成的新生DNA可以有效地可视化,特别是使用所述技术。

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