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Selective adsorption of large proteins on highly activated IMAC supports in the presence of high imidazole concentrations: Purification, reversible immobilization and stabilization of thermophilic alpha- and beta-galactosidases

机译:在高咪唑浓度下,大蛋白在高活化IMAC上的选择性吸附支持:嗜热性α-和β-半乳糖苷酶的纯化,可逆固定和稳定

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摘要

Natural proteins mainly adsorb on immobilized metal ion affinity chromatography (IMAC) supports via multipoint interactions between several His residues placed on the protein surface and different chelate moieties located on the support surface. The adsorption of large proteins on highly activated IMAC supports may involve many multi-interactions yielding a very strong adsorption. In fact, multimeric alpha- and beta-galactosidases from Thermus sp. T2 hardly may be desorbed from highly activated IMAC supports, even in the presence of 1M imidazole. In the presence of 50 mM of imidazole, these very large proteins can be adsorbed on these supports while the medium-small proteins hardly adsorb even on highly activated supports. In this way a very simple purification and reversible immobilization of these large proteins cloned on Escherichia coli can be performed by first heating of the crude preparation which leaves as the only large protein the thermophilic one. Interestingly, beta-galactosidase from Thermus sp. T2 is 10-fold more stable than the native enzyme when incubated at 70 deg C and pH 7.0. The involvement of large areas of these multimeric enzymes in the adsorption process may promote a multi-subunit adsorption with stabilizing effects. These immobilized-stabilized enzymes may be desorbed away from the support/the reactor after inactivation and a fresh solution of enzyme can be purified, immobilized and stabilized again.
机译:天然蛋白质主要通过放置在蛋白质表面的多个His残基与位于支撑表面的不同螯合部分之间的多点相互作用,吸附在固定的金属离子亲和色谱(IMAC)支撑上。大蛋白在高度活化的IMAC载体上的吸附可能涉及许多多重相互作用,从而产生非常强的吸附。实际上,来自Thermus sp。的多聚α-和β-半乳糖苷酶。即使存在1M咪唑,也很难从高度活化的IMAC载体上解吸T2。在50 mM咪唑的存在下,这些非常大的蛋白质可以吸附在这些载体上,而中小蛋白质甚至在高度活化的载体上也几乎不吸附。以这种方式,可以通过首先加热粗制品而对所述克隆在大肠杆菌上的这些大蛋白进行非常简单的纯化和可逆的固定,所述粗制品留下唯一的大蛋白即嗜热蛋白。有趣的是,来自Thermus sp。的β-半乳糖苷酶。在70摄氏度和pH 7.0下温育时,T2的稳定性比天然酶高10倍。这些多聚体酶的大面积参与吸附过程可以促进具有稳定作用的多亚基吸附。灭活后,可以将这些固定化的稳定化酶从载体/反应器中解吸出来,并且可以纯化,固定化和稳定化新鲜的酶溶液。

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