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非消化条件下各种核酸酶与DNA-琼脂糖的亲和力:高效亲和色谱法研究

Affinities of various nucleases to DNA-Sepharose under non-digestive conditions: survey for productive affinity chromatography.

作者信息

Tanaka H, Sasaki I, Yamashita K, Matuo Y, Yamashita J, Horio T

出版信息

J Biochem. 1982 Apr;91(4):1411-7. doi: 10.1093/oxfordjournals.jbchem.a133829.

Abstract
  1. It has been reported that DNase I can be highly purified from pancreas extract by affinity chromatography on a dDNA-Sepharose column under non-digestive conditions. In the present study, the adsorption-elution of other nucleases on the column under non-digestive conditions was studied. 2. All the seven kinds of nucleases tested were adsorbed when applied on a dDNA-Sepharose column under conditions which did not allow the enzymes to hydrolyze the DNA. The non-digestive conditions were as follows. i) For DNase II (pI=10.2), pH 3.0 in the presence of 50 mM sodium sulfate (inhibitor), ii) for micrococcal nuclease (pI=9.6), pH 4.0 in the absence of Ca2+ (activator), iii) for restriction endonucleases Eco RI (pI=5+1), Hind III (pI=5+1), and Bam HI (pI=5+1), pH 4.0 in the presence of 20% glycerol and 0.1% Neopeptone (stabilizers), and iv) for nucleases S1 (pI=5+1) and nuclease P1 (pI=4.5), pH 7.0. At the respective pH's, the enzymes other than nucleases S1 and P1 were cationic so as to exhibit electrostatic attraction to the anionic dDNA-Sepharose. Although S1 and P1 were anionic, they still adsorbed to the column. 3. All the adsorbed nucleases described above were eluted by a concentration gradient of KCl without changing pH. The ionic strengths required for elution were 0.19 for DNase II, 0.53 for micrococcal nuclease, 0.73 for Eco RI, 0.72 for Hind III, 0.37 for Bam HI, 0.17 for P1, and 0.13 for S1. The fact that the ionic strength required for the elution of DNase I (pI=5.0) was 0.39 at pH 4.0 indicates that the former five enzymes except DNase II can be chromatographed with almost the same or higher efficiency than DNase I, because the proteins adsorbed with no-specific affinity could be mostly eluted at lower ionic strength. On the other hand, the fact that nucleases P1 and S1 were adsorbed in spite of electrostatic repulsion suggests that these two enzymes can also be effectively chromatographed, especially when other cationic proteins are previously removed by an appropriate method such as adsorption to a typical cation exchanger.
摘要
  1. 据报道,在非消化条件下,通过在dDNA - 琼脂糖柱上进行亲和层析,可从胰腺提取物中高度纯化脱氧核糖核酸酶I(DNase I)。在本研究中,对非消化条件下其他核酸酶在该柱上的吸附 - 洗脱情况进行了研究。2. 所测试的七种核酸酶在不允许酶水解DNA的条件下应用于dDNA - 琼脂糖柱时均被吸附。非消化条件如下:i)对于脱氧核糖核酸酶II(pI = 10.2),在50 mM硫酸钠(抑制剂)存在下,pH为3.0;ii)对于微球菌核酸酶(pI = 9.6),在不存在Ca2 +(激活剂)的情况下,pH为4.0;iii)对于限制性内切酶Eco RI(pI = 5 + 1)、Hind III(pI = 5 + 1)和Bam HI(pI = 5 + 1),在20%甘油和0.1%新胨(稳定剂)存在下,pH为4.0;iv)对于核酸酶S1(pI = 5 + 1)和核酸酶P1(pI = 4.5),pH为7.0。在各自的pH值下,除核酸酶S1和P1外的酶呈阳离子状态,从而对阴离子dDNA - 琼脂糖表现出静电吸引。尽管S1和P1呈阴离子状态,但它们仍吸附到柱上。3. 上述所有吸附的核酸酶均通过KCl浓度梯度洗脱,且pH不变。洗脱所需的离子强度分别为:脱氧核糖核酸酶II为0.19,微球菌核酸酶为0.53,Eco RI为0.73,Hind III为0.72,Bam HI为0.37,P1为0.17,S1为0.13。在pH 4.0时,脱氧核糖核酸酶I(pI = 5.0)洗脱所需的离子强度为0.39,这一事实表明,除脱氧核糖核酸酶II外的前五种酶能够以与脱氧核糖核酸酶I几乎相同或更高的效率进行层析,因为非特异性吸附的蛋白质大多能在较低离子强度下被洗脱。另一方面,核酸酶P1和S1尽管存在静电排斥仍被吸附,这表明这两种酶也能被有效地层析,特别是当其他阳离子蛋白质预先通过适当方法(如吸附到典型的阳离子交换剂上)去除时。

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