Kim Y, Eom S H, Wang J, Lee D S, Suh S W, Steitz T A
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06520-8114, USA.
Nature. 1995 Aug 17;376(6541):612-6. doi: 10.1038/376612a0.
The DNA polymerase from Thermus aquaticus (Taq polymerase), famous for its use in the polymerase chain reaction, is homologous to Escherichia coli DNA polymerase I (pol I) Like pol I, Taq polymerase has a domain at its amino terminus (residues 1-290) that has 5' nuclease activity and a domain at its carboxy terminus that catalyses the polymerase reaction. Unlike pol I, the intervening domain in Taq polymerase has lost the editing 3'-5' exonuclease activity. Although the structure of the Klenow fragment of pol I has been known for ten years, that of the intact pol I has proved more elusive. The structure of Taq polymerase determined here at 2.4 A resolution shows that the structures of the polymerase domains of the thermostable enzyme and of the Klenow fragment are nearly identical, whereas the catalytically critical carboxylate residues that bind two metal ions are missing from the remnants of the 3'-5' exonuclease active site of Taq polymerase. The first view of the 5' nuclease domain, responsible for excising the Okazaki RNA in lagging-strand DNA replication, shows a cluster of conserved divalent metal-ion-binding carboxylates at the bottom of a cleft. The location of this 5'-nuclease active site some 70 A from the polymerase active site in this crystal form highlights the unanswered question of how this domain works in concert with the polymerase domain to produce a duplex DNA product that contains only a nick.
嗜热水生菌的DNA聚合酶(Taq聚合酶)因用于聚合酶链反应而闻名,它与大肠杆菌DNA聚合酶I(pol I)同源。与pol I一样,Taq聚合酶在其氨基末端(第1 - 290位氨基酸残基)有一个具有5'核酸酶活性的结构域,在其羧基末端有一个催化聚合反应的结构域。与pol I不同的是,Taq聚合酶中间的结构域失去了3'-5'外切核酸酶的编辑活性。尽管pol I的Klenow片段的结构已经知晓十年了,但完整pol I的结构却更难确定。此处以2.4埃分辨率测定的Taq聚合酶结构表明,这种耐热酶的聚合酶结构域与Klenow片段的结构几乎相同,而Taq聚合酶3'-5'外切核酸酶活性位点残余部分缺少结合两个金属离子的关键催化羧基残基。负责切除滞后链DNA复制中冈崎RNA的5'核酸酶结构域的首次观察显示,在一个裂隙底部有一簇保守的结合二价金属离子的羧基。在这种晶体形式中,这个5'-核酸酶活性位点距离聚合酶活性位点约70埃,这突出了一个尚未解决的问题,即该结构域如何与聚合酶结构域协同工作以产生仅含一个切口的双链DNA产物。