Berkner K L, Folk W R
J Biol Chem. 1979 Apr 10;254(7):2551-60.
The rates of cleavage of DNAs containing substituents at position 5 of thymine or cytosine have been measured for a variety of sequence-specific endonucleases, so as to determine which features in the DNA sequence are being probed. Phage phi e DNA fully substituted with 5-hydroxymethyluracil is cleaved more slowly by enzymes whose recognition sequences contain A-T base pairs than are DNAs containing thymine, but both types of DNA are cleaved at similar rates by enzymes recognizing sequences composed only of G-C base pairs. Phage PBS2 DNA with uracil completely substituted for thymine is cleaved slowly by several enzymes which recognize sequences containing A-T base pairs (endonucleases Hpa I, HindII, and HindIII), while the rates of cleavage by other enzymes (endonucleases EcoRI and BamHI) are not affected. Phage lambda- and P22 DNAs containing 5-bromouracil are cleaved more slowly by several enzymes (endonucleases HindIII, Hpa I, BamHI) than are thymine-containing DNAs. Enzymes that recognize sequence isomers with the composition G:C:2A:2T (endonucleases EcoRI, Hpa I, HindIII) are not equally affected by substitution at position 5 of thymine, suggesting that they differ in their contacts with A-T base pairs. DNA containing glucosylated 5-hydroxymethylcytosine in place of cytosine is resistant to cleavage by all the endonucleases examined.
对于多种序列特异性核酸内切酶,已测定了在胸腺嘧啶或胞嘧啶的5位含有取代基的DNA的切割速率,以确定DNA序列中的哪些特征正在被探测。被5-羟甲基尿嘧啶完全取代的噬菌体φe DNA,被识别序列含有A-T碱基对的酶切割的速度比含有胸腺嘧啶的DNA慢,但这两种类型的DNA被识别仅由G-C碱基对组成的序列的酶以相似的速率切割。尿嘧啶完全取代胸腺嘧啶的噬菌体PBS2 DNA,被几种识别含有A-T碱基对序列的酶(核酸内切酶Hpa I、HindII和HindIII)缓慢切割,而其他酶(核酸内切酶EcoRI和BamHI)的切割速率不受影响。含有5-溴尿嘧啶的噬菌体λ和P22 DNA,被几种酶(核酸内切酶HindIII、Hpa I、BamHI)切割的速度比含有胸腺嘧啶的DNA慢。识别组成G:C:2A:2T的序列异构体的酶(核酸内切酶EcoRI、Hpa I、HindIII),受胸腺嘧啶5位取代的影响并不相同,这表明它们与A-T碱基对的接触方式不同。含有糖基化5-羟甲基胞嘧啶代替胞嘧啶的DNA,对所有检测的核酸内切酶的切割具有抗性。