首页> 美国卫生研究院文献>Nucleic Acids Research >Methylene blue photosensitised strand cleavage of DNA: effects of dye binding and oxygen.
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Methylene blue photosensitised strand cleavage of DNA: effects of dye binding and oxygen.

机译:DNA的亚甲蓝光敏链裂解:染料结合和氧的作用。

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摘要

It is shown that methylene blue (MB+) photosensitises DNA in either aerated or deaerated solutions, causing direct cleavage of phosphodiester bonds and rendering additional bonds labile to alkali. Evidence from unwinding and fluorimetric studies indicates that MB+ binds to DNA in at least 2 ways. Intercalation, which optimally induces helical unwinding of 24 degrees +/- 2 degrees per MB+, is markedly reduced upon neutralisation by Mg2+ of the DNA phosphates, while significant non-intercalative binding persists as shown by substantial fluorescence quenching at Mg2+ concentrations where there is little unwinding. MB+ induces photolysis at both low and high Mg2+ concentration - intercalation is apparently not required for photolysis. The quantum yield for strand breakage varies from 1-3 X 10(-7) under different conditions and is oxygen enhanced. The DNA cleavage is guanine specific. The 3' termini of the primary MB+-induced DNA photoproducts, unlike those generated by chemical sequencing retain an alkali labile adduct on the terminal phosphate.
机译:结果表明,亚甲基蓝(MB +)在充气或脱气的溶液中使DNA感光,导致磷酸二酯键的直接裂解,并使其他键对碱不稳定。展开和荧光分析的证据表明,MB +至少以两种方式与DNA结合。 Mg2 +对DNA磷酸盐进行中和后,嵌入可最佳地诱导24 MB +/- 2度/ MB +的螺旋解旋,显着减少了嵌入,而显着的非嵌入结合仍持续存在,如在Mg2 +浓度极低的情况下,大量的荧光猝灭表明放松。 MB +在低和高Mg2 +浓度下均可诱导光解-光解显然不需要插入。链断裂的量子产率在不同条件下从1-3 X 10(-7)变化,并且是氧增强的。 DNA切割是鸟嘌呤特异性的。与化学测序产生的产物不同,主要的MB +诱导的DNA光产物的3'末端在末端磷酸盐上保留了碱不稳定的加合物。

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