Khang Yong-Ho, Kim In-Wook, Hah Young-Rhan, Hwangbo Jong-Hyun, Kang Ki-Kueon
Department of Applied Microbiology, Yeungnam University, Gyeongsan, 712-749, Republic of Korea.
Biotechnol Bioeng. 2003 May 20;82(4):480-8. doi: 10.1002/bit.10592.
In this study we constructed an artificial flavohemoprotein by fusing Vitreoscilla hemoglobin (VHb) with D-amino acid oxidase (DAO) of Rhodotorula gracilis to determine whether bacterial hemoglobin can be used as an oxygen donor to immobilized flavoenzyme. This chimeric enzyme significantly enhanced DAO activity and stability in the bioconversion process of cephalosporin C. In a 200-mL bioreactor, the catalytic efficiency of immobilized VHb-DAO against cephalosporin C was 12.5-fold higher than that of immobilized DAO, and the operational stability of the immobilized VHb-DAO was approximately threefold better than that of the immobilized DAO. In the scaled-up bioprocess with a 5-L bioreactor, immobilized VHb-DAO (2500 U/L) resulted in 99% bioconversion of 120 mM cephalosporin C within 60 min at an oxygen flow rate of 0.2 (v/v) x min. Ninety percent of the initial activity of immobilized VHb-DAO could be maintained at up to 50 cycles of the enzymatic reaction without exogenous addition of H(2)O(2) and flavin adenine dinucleotide (FAD). The purity of the final product, glutaryl-7-aminocephalosporanic acid, was confirmed to be 99.77% by high-performance liquid chromatography (HPLC) analysis. Relative specificity of immobilized VHb-DAO on D-alpha-aminoadipic acid, a precursor in cephalosporin C biosynthesis, increased twofold, compared with that of immobilized DAO, suggesting that conformational modification of the VHb-DAO fusion protein may be altered in favor of cephalosporin C.
在本研究中,我们通过将透明颤菌血红蛋白(VHb)与纤细红酵母的D-氨基酸氧化酶(DAO)融合,构建了一种人工黄素血红蛋白,以确定细菌血红蛋白是否可用作固定化黄素酶的氧供体。这种嵌合酶在头孢菌素C的生物转化过程中显著提高了DAO的活性和稳定性。在200 mL生物反应器中,固定化VHb-DAO对头孢菌素C的催化效率比固定化DAO高12.5倍,固定化VHb-DAO的操作稳定性比固定化DAO约好三倍。在5 L生物反应器的放大生物过程中,固定化VHb-DAO(2500 U/L)在氧气流速为0.2(v/v)×min的条件下,60分钟内可使120 mM头孢菌素C的生物转化率达到99%。在不额外添加H₂O₂和黄素腺嘌呤二核苷酸(FAD)的情况下,固定化VHb-DAO的初始活性在高达50个酶促反应循环中可保持90%。通过高效液相色谱(HPLC)分析确认,最终产物戊二酰-7-氨基头孢烷酸的纯度为99.77%。与固定化DAO相比,固定化VHb-DAO对头孢菌素C生物合成前体D-α-氨基己二酸的相对特异性提高了两倍,这表明VHb-DAO融合蛋白的构象修饰可能发生了改变,有利于头孢菌素C的合成。