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新型DNA-琼脂糖法纯化FadR转录因子。

Novel DNA-Sepharose purification of the FadR transcription factor.

作者信息

DiRusso C, Rogers R P, Jarrett H W

机构信息

Department of Biochemistry, University of Tennessee, Memphis 38163.

出版信息

J Chromatogr A. 1994 Aug 12;677(1):45-52. doi: 10.1016/0021-9673(94)80543-1.

Abstract

A DNA sequence bound by the FadR transcription factor of Escherichia coli was covalently attached to Sepharose by two different approaches: by chemical coupling or by template-directed enzymatic synthesis using a DNA polymerase. The two kinds of DNA-Sepharose were packed into small columns and used for the purification of the FadR protein; chromatography was without using competitor DNA and the supports contained single-copy, non-repetitive DNA sequences. Comparison showed that the enzymatically prepared support, while having less bound DNA, bound more FadR protein than did the chemically prepared support. This probably results from the lack of detrimental DNA modification by the gentle enzymatic procedure. The chemically prepared support was of lower capacity but yielded purer FadR protein when compared under the same elution conditions. This may be explained by the simpler DNA sequence which could be coupled chemically; less contaminating proteins were bound by the simpler DNA sequence. However, the enzymatically prepared support could also yield comparable purity if the protocol was modified to include additional washes with salt containing buffers. In all cases, FadR was eluted from the DNA using high-salt (0.8 M) mobile phase; ligand-specific elution of FadR using a fatty acyl-coenzyme A thiol ester was ineffective. Affinity chromatography on DNA-Sepharose provided a more rapid, simple purification of FadR than conventional purification techniques and yielded biologically active protein.

摘要

通过两种不同方法将与大肠杆菌FadR转录因子结合的DNA序列共价连接到琼脂糖凝胶上:化学偶联法或使用DNA聚合酶的模板导向酶促合成法。将这两种DNA-琼脂糖凝胶装填到小柱中,用于纯化FadR蛋白;层析过程中不使用竞争DNA,且载体包含单拷贝、非重复的DNA序列。比较结果表明,酶促制备的载体虽然结合的DNA较少,但比化学制备的载体结合更多的FadR蛋白。这可能是由于温和的酶促过程不会对DNA造成有害修饰。在相同洗脱条件下比较时,化学制备的载体容量较低,但能产生更纯的FadR蛋白。这可能是因为化学偶联的DNA序列更简单,较少的污染蛋白会与该简单DNA序列结合。然而,如果修改方案,加入含盐缓冲液的额外洗涤步骤,酶促制备的载体也能产生相当的纯度。在所有情况下,均使用高盐(0.8 M)流动相从DNA上洗脱FadR;使用脂肪酰辅酶A硫醇酯对FadR进行配体特异性洗脱无效。与传统纯化技术相比,基于DNA-琼脂糖凝胶的亲和层析能更快速、简单地纯化FadR,并产生具有生物活性的蛋白。

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