Characterization of Mycobacterium tuberculosis dihydrofolate reductase immobilized on magnetic nanoparticles
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National Natural Science Foundation of China (Nos. 31570862, 81773625).

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    Abstract:

    To explore the immobilization of target proteins for screening libraries of ligand mixtures, magnetic submicron particles (MSP) functionalized with Ni2+-NTA and carboxyl were compared for the immobilization of Mycobacterium tuberculosis dihydrofolate reductase (MtDHFR). MtDHFR fused with 6×His was expressed, purified and characterized for kinetics. MtDHFR was immobilized on Ni2+-NTA-functionalized MSP directly and carboxyl-functionalized MSP upon activation. The immobilization capacity, residual activity, thermostability and affinities for putative inhibitors were characterized. MtDHFR immobilized on Ni2+-NTA-functionalized MSP retained about 32% activity of the free one with the immobilization capacity of (93±12) mg/g of MSP (n=3). Ni2+ and EDTA synergistically inhibited MtDHFR activity, while Fe3+ had no obvious interference. MtDHFR immobilized on carboxyl-functionalized MSP retained (87±4)% activity of the free one with the immobilization capacity of (8.6±0.6) mg/g MSP (n=3). In 100 mmol/L HEPES (pH 7.0) containing 50 mmol/L KCl, there was no significant loss of the activities of the free and immobilized MtDHFR after storage at 0 °C for 16 h, but nearly 60% and 35% loss of their activities after storage at 25 °C for 16 h, respectively. The inhibition effects of methotrexate on the immobilized and free MtDHFR were consistent (P>0.05). The immobilization of MtDHFR on carboxyl-functionalized MSP was thus favorable for higher retained activity and better thermostability, with promise for rapid screening of its ligand mixtures.

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周伟,卢进鹏,李亚平,杨林玉,胡小蕾,廖飞,杨晓兰. 磁珠固定化结核分枝杆菌二氢叶酸还原酶及其表征[J]. Chinese Journal of Biotechnology, 2019, 35(3): 513-521

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History
  • Received:July 31,2018
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  • Online: March 22,2019
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