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Expression of soluble and functional full-length human matrix metalloproteinase-2 in Escherichia coli

机译:可溶性和功能性全长人基质金属蛋白酶2在大肠杆菌中的表达

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Characterization of the matrix metalloproteinase-2 (MMP-2) substrates and understanding of its function remain difficult because up to date preparations containing minor amounts of other eukaryotic proteins that are co-purified with MMP-2 are still used. In this work, the expression of a soluble and functional full-length recombinant human MMP-2 (rhMMP-2) in the cytoplasm of Escherichia coli is reported, and the purification of this metalloproteinase is described. Culture of this bacterium at 18 degrees C culminated in maintenance of the soluble and functional rhMMP-2 in the soluble fraction of the E. coli lysate and its purification by affinity with gelatin-sepharose yielded approximately 0.12 mg/L of medium. Western Blotting and zymographic analysis revealed that the most abundant form was the 72-kDa MMP-2, but some gelatinolytic bands corresponding to proteins with lower molecular weight were also detected. The obtained rhMMP-2 was demonstrated to be functional in a gelatinolytic fluorimetric assay, suggesting that the purified rhMMP-2 was correctly folded. The method described here involves fewer steps, is less expensive, and is less prone to contamination with other proteinases and MMP inhibitors as compared to expression of rhMMP-2 in eukaryotic tissue culture. This protocol will facilitate the use of the full-length rhMMP-2 expressed in bacteria and will certainly help researchers to acquire new knowledge about the substrates and biological activities of this important proteinase. (C) 2011 Elsevier B.V. All rights reserved.
机译:基质金属蛋白酶2(MMP-2)底物的表征和对其功能的了解仍然很困难,因为至今仍使用含有少量与MMP-2共同纯化的其他真核蛋白的制剂。在这项工作中,报道了在大肠杆菌的细胞质中可溶性和功能性全长重组人MMP-2(rhMMP-2)的表达,并描述了该金属蛋白酶的纯化。该细菌在18℃下的培养最终导致维持了大肠杆菌裂解物的可溶级分中的可溶性和功能性rhMMP-2,并且通过与明胶-琼脂糖的亲和力进行纯化产生了约0.12mg / L的培养基。 Western Blotting和酶谱分析表明,最丰富的形式是72 kDa MMP-2,但也检测到了一些与较低分子量蛋白质相对应的明胶分解带。所获得的rhMMP-2在明胶荧光分析法中具有功能,表明纯化的rhMMP-2已正确折叠。与在真核组织培养物中表达rhMMP-2相比,此处描述的方法涉及的步骤更少,价格更低廉并且不易被其他蛋白酶和MMP抑制剂污染。该方案将促进细菌中表达的全长rhMMP-2的使用,并且无疑将帮助研究人员获得有关这种重要蛋白酶的底物和生物学活性的新知识。 (C)2011 Elsevier B.V.保留所有权利。

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