Friedmann T, Brown D M
Nucleic Acids Res. 1978 Feb;5(2):615-22. doi: 10.1093/nar/5.2.615.
Exposure of DNA to methylene blue and visible or ultraviolet light causes guanine-specific modification, and subsequent treatment with piperidine leads to chain cleavage at each guanine residue. Treatment of DNA with osmium tetraoxide in dilute pyridine leads to thymidine-specific modification, and subsequent treatment with piperidine leads to chain cleavage at the modified thymidine residues. Both reactions can be used in conjunction with other base specific modifications described by Maxam and Gilbert (1) for the determination of the nucleotide sequence in DNA.
DNA暴露于亚甲蓝及可见光或紫外光下会导致鸟嘌呤特异性修饰,随后用哌啶处理会导致每个鸟嘌呤残基处的链断裂。在稀吡啶中用四氧化锇处理DNA会导致胸腺嘧啶特异性修饰,随后用哌啶处理会导致修饰的胸腺嘧啶残基处的链断裂。这两种反应都可与马克萨姆和吉尔伯特(1)描述的其他碱基特异性修饰结合使用,用于确定DNA中的核苷酸序列。