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Purification and very strong reversible immobilization of large proteins on anionic exchangers by controlling the support and the immobilization conditions

机译:通过控制载体和固定条件,纯化和将大蛋白非常强地可逆固定在阴离子交换剂上

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The interaction of two large beta-galactosidases (from Escherichia coli and from Thermus sp.) with tailor-made anion exchangers was studied.Using lowly activated supports (e.g.,containing 2-3 mu mol of ionised groups per wet gram of support),large proteins selectively adsorbed and easily desorbed (e.g.,using 200 mM of NaCl),giving highly purified proteins.However,these supports cannot be used to immobilize the enzymes for industrial use,because the weak adsorption.On the other hand,these large proteins strongly adsorb on very highly activated supports (e.g.,containing 40 |xmol of ionic groups per wet gram of 4 BCL agarose).Thus,these supports may be not valid for large protein purification,but may be very suitable for immobilization of these proteins.Using high ionic strength (e.g.,300 mM NaCl),large proteins still may be adsorbed on these supports,while only around 20% of total proteins adsorb,permitting some purification of the large proteins but not a total one.Moreover,adsorption under these conditions increase the adsorption strength (now there are not desorption even using 800 mM NaCl).Thus,the purification and the strong reversible immobilization of both beta-galactosidases were performed in a very simple two-step process.The large proteins can be directly adsorbed on these supports after desorption (at 200 mM of NaCl) from poorly activated supports.Furthermore,adsorption on very highly activated supports promotes a significant thermal stabilization of both enzymes,mainly in dissociations conditions.
机译:研究了两种大的β-半乳糖苷酶(来自大肠杆菌和Thermus sp。)与量身定制的阴离子交换剂的相互作用。使用低活化的载体(例如每湿克载体含2-3μmol离子化基团),大型蛋白质被选择性地吸附并易于解吸(例如,使用200 mM的NaCl),从而得到高度纯化的蛋白质。但是,由于吸附力较弱,因此这些载体不能用于固定化工业用酶。另一方面,这些大型蛋白质强烈吸附在高度活化的载体上(例如,每湿克4 BCL琼脂糖含40μmol离子基团)。因此,这些载体可能不适用于大蛋白纯化,但可能非常适合固定这些蛋白。使用高离子强度(例如300 mM NaCl),仍然可以将大蛋白吸附在这些载体上,而仅约20%的总蛋白被吸附,从而允许对大蛋白进行一些纯化,但不能对全部蛋白进行纯化。在这些条件下可提高吸附强度(即使使用800 mM NaCl也不会解吸)。因此,两种β-半乳糖苷酶的纯化和强可逆固定化都通过非常简单的两步过程进行。从活化较差的载体上解吸后(直接在200 mM NaCl中)直接吸附在这些载体上。此外,在高度活化的载体上的吸附促进了这两种酶的显着热稳定性,主要是在解离条件下。

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