Continuous ATP regeneration process with stable acetate kinase.

Journal of applied biochemistry Pub Date : 1984-02-01
H Nakajima, K Nagata, H Kondo, K Imahori
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引用次数: 0

Abstract

Heat-stable acetate kinase (AK) from Bacillus stearothermophilus was successfully immobilized covalently to Sepharose resin by several conventional methods including carbodiimide, hydroxysuccinimide, cyanogen bromide, and glutaraldehyde and also by a new method which utilizes a bifunctional ADP derivative as a spacer. The latter method gave a higher yield in terms of enzyme activity than the conventional methods. The properties and kinetics of the immobilized AK were studied batchwise and in a column. The Michaelis-Menten equation could be applied to the immobilized AK column. The apparent Km values of ADP and acetyl phosphate for immobilized AK were not significantly different from those for free AK. The pH-activity profile of immobilized AK was similar to that of free AK. The heat stability of immobilized AK was markedly improved as compared with free AK. The immobilized AK retained more than 80% of the initial activity after continuous operation at 30 degrees C for 1 month. It was shown that the immobilized AK from B. stearothermophilus could be utilized as an ATP regeneration system in the bioreactor.

稳定醋酸激酶的连续ATP再生过程。
采用碳二亚胺、羟丁二亚胺、溴化氰和戊二醛等常规方法和双功能ADP衍生物作为间隔剂的新方法,成功地将嗜热脂肪芽孢杆菌热稳定型醋酸酯激酶(AK)共价固定在Sepharose树脂上。后一种方法在酶活性方面比常规方法有更高的产量。对固定化AK的性质和动力学进行了批量和柱上的研究。Michaelis-Menten方程适用于固定AK柱。ADP和乙酰磷酸对固定速效钾的表观Km值与游离速效钾无显著差异。固定化AK的ph -活性谱与游离AK相似。与游离AK相比,固定化AK的热稳定性明显提高。在30℃连续作用1个月后,固定化AK保留了80%以上的初始活性。结果表明,固定化的嗜热脂芽胞杆菌AK可以作为ATP再生系统在生物反应器中使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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