Suzuki M, Baskin D, Hood L, Loeb L A
Joseph Gottstein Memorial Cancer Research Laboratory, Department of Pathology, Seattle, WA, USA.
Proc Natl Acad Sci U S A. 1996 Sep 3;93(18):9670-5. doi: 10.1073/pnas.93.18.9670.
Expression of Thermus aquaticus (Taq) DNA polymerase I (pol I) in Escherichia, coli complements the growth defect caused by a temperature-sensitive mutation in the host pol I. We replaced the nucleotide sequence encoding amino acids 659-671 of the O-helix of Taq DNA pol I, corresponding to the substrate binding site, with an oligonucleotide containing random nucleotides. Functional Taq pol I mutants were selected based on colony formation at the nonpermissive temperature. By using a library with 9% random substitutions at each of 39 positions, we identified 61 active Taq pol I mutants, each of which contained from one to four amino acid substitutions. Some amino acids, such as alanine-661 and threonine-664, were tolerant of several or even many diverse replacements. In contrast, no replacements or only conservative replacements were identified at arginine-659, lysine-663, and tyrosine-671. By using a library with totally random nucleotides at five different codons (arginine-659, arginine-660, lysine-663, phenylalanine-667, and glycine-668), we confirmed that arginine-659 and lysine-663 were immutable, and observed that only tyrosine substituted for phenylalanine-667. The two immutable residues and the two residues that tolerate only highly conservative replacements lie on the side of O-helix facing the incoming deoxynucleoside triphosphate, as determined by x-ray analysis. Thus, we offer a new approach to assess concordance of the active conformation of an enzyme, as interpreted from the crystal structure, with the active conformation inferred from in vivo function.
嗜热水生菌(Taq)DNA聚合酶I(pol I)在大肠杆菌中的表达弥补了宿主pol I温度敏感突变导致的生长缺陷。我们用一个含有随机核苷酸的寡核苷酸替换了Taq DNA pol I O螺旋中对应于底物结合位点的编码氨基酸659 - 671的核苷酸序列。基于在非允许温度下的菌落形成筛选出了功能性Taq pol I突变体。通过使用在39个位置每个位置都有9%随机替换的文库,我们鉴定出了61个活性Taq pol I突变体,每个突变体含有一到四个氨基酸替换。一些氨基酸,如丙氨酸 - 661和苏氨酸 - 664,能耐受多种甚至许多不同的替换。相比之下,在精氨酸 - 659、赖氨酸 - 663和酪氨酸 - 671处未发现替换或仅发现保守替换。通过使用在五个不同密码子(精氨酸 - 659、精氨酸 - 660、赖氨酸 - 663、苯丙氨酸 - 667和甘氨酸 - 668)处完全随机核苷酸的文库,我们证实精氨酸 - 659和赖氨酸 - 663是不可变的,并观察到只有酪氨酸能取代苯丙氨酸 - 667。如通过x射线分析所确定的,这两个不可变残基以及仅耐受高度保守替换的两个残基位于O螺旋面向进入的脱氧核苷三磷酸的一侧。因此,我们提供了一种新方法来评估从晶体结构解释的酶的活性构象与从体内功能推断的活性构象的一致性。