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使用一种新型解旋酶测定法对大肠杆菌RecBCD酶的解旋酶活性进行表征。

Characterization of the helicase activity of the Escherichia coli RecBCD enzyme using a novel helicase assay.

作者信息

Roman L J, Kowalczykowski S C

机构信息

Department of Molecular Biology, Northwestern University Medical School, Chicago, Illinois 60611.

出版信息

Biochemistry. 1989 Apr 4;28(7):2863-73. doi: 10.1021/bi00433a018.

Abstract

We describe an assay to measure the extent of enzymatic unwinding of DNA by a DNA helicase. This assay takes advantage of the quenching of the intrinsic protein fluorescence of Escherichia coli SSB protein upon binding to ssDNA and is used to characterize the DNA unwinding activity of recBCD enzyme. Unwinding in this assay is dependent on the presence of recBCD enzyme and linear dsDNA, is consistent with the known properties of recBCD enzyme, and closely parallels other methods for measuring recBCD enzyme helicase activity. The effects of varying temperature, substrate concentrations, enzyme concentration, and mono- and divalent salt concentrations on the helicase activity of recBCD enzyme were characterized. The apparent Km values for recBCD enzyme helicase activity on linear M13 dsDNA molecules at 25 degrees C are 0.6 nM dsDNA molecules and 130 microM ATP, respectively. The apparent turnover number for unwinding is approximately 15 microM base pairs s-1 (microM recBCD enzyme)-1. When this rate is corrected for the observed stoichiometry of recBCD enzyme binding to dsDNA, kcat for helicase activity corresponds to an unwinding rate of approximately 250 base pairs of DNA s-1 (functional recBCD complex)-1 at 25 degrees C. At 37 degrees C, the apparent Km value for dsDNA molecules was the same as that at 25 degrees C, but the apparent turnover number became 56 microM base pairs s-1 (microM recBCD enzyme)-1 [or 930 base pairs s-1 (functional recBCD complex)-1 when corrected for observed stoichiometry]. With increasing NaCl concentration, kcat peaks at 100 mM, and the apparent Km value for dsDNA increases by 3-fold at 200 mM NaCl. In the presence of 5 mM calcium acetate, the apparent Km value is increased by 3-fold, and kcat decreased by 20-30%. We have also shown that recBCD enzyme molecules are able to catalytically unwind additional dsDNA substrates subsequent to initiation, unwinding, and dissociation from a previous dsDNA molecule.

摘要

我们描述了一种用于测量DNA解旋酶对DNA进行酶促解旋程度的测定方法。该测定方法利用了大肠杆菌单链结合蛋白(SSB蛋白)与单链DNA结合时其内在蛋白质荧光的淬灭现象,并用于表征recBCD酶的DNA解旋活性。此测定中的解旋依赖于recBCD酶和线性双链DNA的存在,与recBCD酶的已知特性一致,并且与其他测量recBCD酶解旋酶活性的方法密切相似。研究了温度、底物浓度、酶浓度以及单价和二价盐浓度变化对recBCD酶解旋酶活性的影响。在25℃下,recBCD酶对线性M13双链DNA分子的解旋酶活性的表观Km值分别为0.6 nM双链DNA分子和130 μM ATP。解旋的表观周转数约为15 μM碱基对·秒⁻¹(μM recBCD酶)⁻¹。当根据观察到的recBCD酶与双链DNA结合的化学计量进行校正时,解旋酶活性的kcat对应于25℃下约250个DNA碱基对·秒⁻¹(功能性recBCD复合物)⁻¹的解旋速率。在37℃时,双链DNA分子的表观Km值与25℃时相同,但表观周转数变为56 μM碱基对·秒⁻¹(μM recBCD酶)⁻¹[校正观察到的化学计量后为930个碱基对·秒⁻¹(功能性recBCD复合物)⁻¹]。随着NaCl浓度的增加,kcat在100 mM时达到峰值,在200 mM NaCl时双链DNA的表观Km值增加3倍。在存在5 mM醋酸钙的情况下,表观Km值增加3倍,kcat降低20 - 30%。我们还表明,recBCD酶分子在起始、解旋并从先前的双链DNA分子解离后,能够催化解旋额外的双链DNA底物。

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