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HIV-1逆转录酶与核酸底物的两步结合

Two step binding of HIV-1 reverse transcriptase to nucleic acid substrates.

作者信息

Kruhøffer M, Urbanke C, Grosse F

机构信息

Heinrich-Pette-Institut, Hamburg, Germany.

出版信息

Nucleic Acids Res. 1993 Aug 25;21(17):3943-9. doi: 10.1093/nar/21.17.3943.

Abstract

The interactions of HIV-1 reverse transcriptase (HIV-1 RT) with a synthetic 53/19-mer DNA substrate was investigated. For this template-primer HIV-1 RT displayed a Km value of 20 nM. The 53/19-mer competitively inhibited DNA synthesis performed on poly (rC).oligo(dG) with Ki value of 260 nM. This corresponded well to an equilibrium dissociation constant (Kd) of 300 nM, as determined by analytical ultracentrifugation. Since the Kd value is considerably higher than the corresponding Km value it is concluded that the enzyme--DNA complex is further stabilized by the binding of a cognate deoxynucleoside triphosphate and/or catalytic turnover. The association kinetics of HIV-1 RT with the 53/19-mer was measured by the fluorescence stopped-flow technique. RT bound the 53/19-mer with a rate constant of 2 +/- 1 x 10(8) M-1 s-1. The DNA binding step was succeeded by a concentration-independent step with a rate constant of 1.0 +/- 0.5 s-1 suggesting a conformational change of the enzyme. Template-primer binding of RT was influenced by the concentration of MgCl2, displaying a 17-fold increase in the Kd value when Mg2+ was increased from 1 mM to 30 mM. Since neither the association rate constant nor the conformational change was notably affected by changes of the Mg2+ concentration, it is concluded that the dissociation constant is increased by higher concentrations of Mg2+.

摘要

研究了HIV-1逆转录酶(HIV-1 RT)与合成的53/19-mer DNA底物的相互作用。对于该模板引物,HIV-1 RT的Km值为20 nM。53/19-mer竞争性抑制在聚(rC)·寡聚(dG)上进行的DNA合成,Ki值为260 nM。这与通过分析超速离心测定的300 nM的平衡解离常数(Kd)非常吻合。由于Kd值远高于相应的Km值,因此得出结论,同源脱氧核苷三磷酸的结合和/或催化周转进一步稳定了酶-DNA复合物。通过荧光停流技术测量HIV-1 RT与53/19-mer的缔合动力学。RT以2 +/- 1 x 10(8)M-1 s-1的速率常数结合53/19-mer。DNA结合步骤之后是一个浓度无关的步骤,速率常数为1.0 +/- 0.5 s-1,表明酶发生了构象变化。RT的模板引物结合受MgCl2浓度的影响,当Mg2+从1 mM增加到30 mM时,Kd值增加17倍。由于缔合速率常数和构象变化均未受到Mg2+浓度变化的显著影响,因此得出结论,较高浓度的Mg2+会增加解离常数。

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