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Crosslinking of proteins to DNA in human nuclei using a 60 femtosecond 266 nm laser.

机译:使用60飞秒266 nm激光将蛋白质与人核中的DNA交联。

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We developed appropriate conditions to use a laser with 60 femtosecond pulses, a frequency of 1 KHz and a wavelength of 266 nm to efficiently crosslink proteins to DNA in human nuclei for the purpose of using immunoprecipitation to study the binding of specific proteins to specific sequences of DNA under native conditions. Irradiation of nuclei for 30 min with 1-3 GW/cm(2)pulses crosslinked 10-12% of total protein to DNA. The efficiency of crosslinking was dose and protein specific. Histones H1 and H3 were crosslinked by 15 min of irradiation with 20-25% efficiency, at least 10 times more strongly than the other histones, consistent with experiments using conventional UV light. Irradiation for 15 min did not damage proteins, as assayed by SDS-PAGE of Ku-70 and histones. Although the same level of irradiation did not cause double-strand breaks, it did make the DNA partially insensitive to Eco RI restriction enzyme, probably through formation of thymidine dimers. Immuno-analysis of crosslinked nucleoprotein showed that Ku crosslinking to nuclear DNA is detectable only in the presence of breaks in the DNA, and that nucleosomes are bound to a significant fraction of the telomeric repeat (TTAGGG) (n).
机译:我们开发了适当的条件,以使用60飞秒脉冲,频率为1 KHz,波长为266 nm的激光有效地将蛋白质与人核中的DNA交联,从而利用免疫沉淀法研究特定蛋白质与特定蛋白质序列的结合。天然条件下的DNA。用1-3 GW / cm(2)脉冲辐照细胞核30分钟,将总蛋白的10-12%交联到DNA。交联的效率是剂量和蛋白质特异性的。组蛋白H1和H3在15分钟的照射下以20%至25%的效率交联,比其他组蛋白的强度至少强10倍,这与使用常规紫外线的实验一致。通过Ku-70和组蛋白的SDS-PAGE分析,辐照15分钟不会破坏蛋白质。尽管相同水平的辐射不会引起双链断裂,但确实会使DNA对Eco RI限制酶部分不敏感,这可能是由于胸苷二聚体的形成。交联核蛋白的免疫分析表明,只有在DNA断裂的情况下,才能检测到Ku交联到核DNA的过程,并且核小体与端粒重复序列(TTAGGG)的大部分结合(n)。

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