Parker L T, Zakeri H, Deng Q, Spurgeon S, Kwok P Y, Nickerson D A
Division of Dermatology, Washington University School of Medicine, St. Louis, MO, USA.
Biotechniques. 1996 Oct;21(4):694-9. doi: 10.2144/96214rr02.
Taq DNA polymerases in which the phenylalanine is substituted by a tyrosine at position 667 (Taq F667Y) are members of a new class of DNA polymerases that incorporate chain-terminating dideoxyribonucleoside triphosphates (ddNTPs) much more efficiently than the wild-type Taq DNA polymerase. Improved incorporation of ddNTPs into DNA during cycle sequencing using AmpliTaq DNA polymerase, FS (Taq-FS, a member of the Taq F667Y family), and dye-labeled primers results in nearly uniform peak heights in the sequencing trace. This is not the case when dye-labeled ddNTPs are used in Taq-FS cycle sequencing reactions. While the rate of dye-terminator incorporation is more efficient with Taq-FS, the peak pattern is still highly variable and different from that produced by the wild-type enzyme. We have systematically examined pairs of sequence-tagged sites that vary at only a single nucleotide to determine how base changes influence the peak heights of neighboring bases in sequencing traces generated by the Taq-FS dye-terminator chemistry. In 31 of 64 possible 3-base windows (48%), we find that the peak height of a particular base can be predicted by knowing just one or two bases 5' to the base in question. We have also compared and contrasted the peak patterns produced by the Taq-FS enzyme with those previously identified for the wild-type enzyme. Establishing the patterns in peak heights within local sequence contexts can improve the accuracy of base-calling and the identification of polymorphisms/mutations when using the Taq-FS dye-terminator cycle-sequencing chemistry.
在667位苯丙氨酸被酪氨酸取代的Taq DNA聚合酶(Taq F667Y)是一类新型DNA聚合酶的成员,这类酶掺入链终止双脱氧核糖核苷三磷酸(ddNTPs)的效率比野生型Taq DNA聚合酶高得多。在使用AmpliTaq DNA聚合酶FS(Taq-FS,Taq F667Y家族的一员)和染料标记引物进行循环测序时,ddNTPs更好地掺入DNA中,使得测序图谱中的峰高几乎均匀。而在Taq-FS循环测序反应中使用染料标记的ddNTPs时则并非如此。虽然Taq-FS掺入染料终止剂的速率更高,但峰型仍然高度可变,且与野生型酶产生的峰型不同。我们系统地研究了仅在单个核苷酸处不同的成对序列标签位点,以确定碱基变化如何影响由Taq-FS染料终止剂化学方法产生的测序图谱中相邻碱基的峰高。在64个可能的3碱基窗口中的31个(48%)中,我们发现,只需知道所讨论碱基5'端的一两个碱基,就可以预测特定碱基的峰高。我们还比较了Taq-FS酶产生的峰型与之前为野生型酶确定的峰型。确定局部序列背景下的峰高模式可以提高使用Taq-FS染料终止剂循环测序化学方法时碱基识别的准确性以及多态性/突变的鉴定。