Yang B, Gathy K N, Coleman M S
Department of Biochemistry and Biophysics, School of Medicine, University of North Carolina, Chapel Hill 27599-7260.
J Biol Chem. 1994 Apr 22;269(16):11859-68.
Human terminal deoxynucleotidyl transferase (TdT) was overexpressed in a baculovirus system. The pure recombinant enzyme was identical in size, activity, kinetic constants, and metal effects to native enzyme. Three amino acids, within either the putative nucleotide binding domain and part of a DNA polymerase consensus sequence, YGDTDSLF, or a TdT consensus sequence, GGFRRGK, were altered by site-directed mutagenesis. The four mutant forms of terminal transferase were also overexpressed in the baculovirus expression system and purified from Trichoplusia ni larvae by a monoclonal antibody affinity column and compared with wild-type enzyme with respect to thermostabilities, secondary structure, metal effects, and kinetic parameters. Three of the four mutants retained 3-16% of wild-type activity under varying metal conditions, and one of the mutants, D343E, consistently exhibited less than 0.2% of wild-type TdT activity with dATP and no activity with dGTP. All mutants had alterations in the Km for dATP. Variations in Km for dGTP were not as consistent. The Km for the other substrate, DNA initiator (dA)50) in the presence of dATP remained essentially the same as that of wild-type TdT for all mutants except D343E. The enzyme activity of all mutants was stimulated by Zn2+ at low concentrations, and this effect was diminished and reversed at higher concentrations of ZnSO4. All mutants still retained significant amounts of the secondary structure as measured by circular dichroism. These results indicated that the aspartic acid residue at position 343 is located at or near the active site and is critical for the nucleotide binding and catalytic activity.
人末端脱氧核苷酸转移酶(TdT)在杆状病毒系统中过表达。纯化后的重组酶在大小、活性、动力学常数和金属效应方面与天然酶相同。通过定点诱变改变了假定的核苷酸结合结构域内以及DNA聚合酶共有序列YGDTDSLF或TdT共有序列GGFRRGK中的三个氨基酸。四种末端转移酶突变形式也在杆状病毒表达系统中过表达,并通过单克隆抗体亲和柱从粉纹夜蛾幼虫中纯化出来,然后在热稳定性、二级结构、金属效应和动力学参数方面与野生型酶进行比较。在不同的金属条件下,四种突变体中的三种保留了野生型活性的3%-16%,其中一种突变体D343E,与dATP反应时始终表现出不到野生型TdT活性的0.2%,与dGTP反应时无活性。所有突变体的dATP Km值均有改变。dGTP的Km值变化不太一致。除D343E外,所有突变体在dATP存在下另一种底物DNA引发剂(dA)50的Km值与野生型TdT基本相同。所有突变体的酶活性在低浓度Zn2+时受到刺激,而在较高浓度的ZnSO4时这种效应减弱并逆转。通过圆二色性测量,所有突变体仍保留大量的二级结构。这些结果表明,343位的天冬氨酸残基位于活性位点或其附近,对核苷酸结合和催化活性至关重要。