Dotsenko Anna, Sinelnikov Igor, Zorov Ivan, Denisenko Yury, Rozhkova Aleksandra, Shcherbakova Larisa
Federal Research Centre "Fundamentals of Biotechnology" of the Russian Academy of Sciences (RAS), 119071 Moscow, Russia.
All-Russian Research Institute of Phytopathology of RAS, Bolshie Vyazemy, 143050 Moscow, Russia.
Toxins (Basel). 2024 Dec 13;16(12):540. doi: 10.3390/toxins16120540.
An acidic shift in the pH profile of zearalenone hydrolase (ZHD), the most effective and well-studied zearalenone-specific lactone hydrolase, is required to extend the range of applications for the enzyme as a decontamination agent in the feed and food production industries. Amino acid substitutions were engineered in the active center of the enzyme to decrease the pKa values of the catalytic residues E126 and H242. The T216K substitution provided a shift in the pH optimum by one unit to the acidic region, accompanied by a notable expansion in the pH profile under acidic conditions. The engineered enzyme demonstrated enhanced activity within the pH range of 3-5 and improved the activity within the pH ranging from 6 to 10. The D31N and D31A substitutions also resulted in a two-unit shift in the pH optimum towards acidic conditions, although this was accompanied by a significant reduction in the enzyme activity. The D31S substitution resulted in a shift in the pH profile towards the alkaline region. The alterations in the enzyme properties observed following the T216K substitution were consistent with the conditions required for the ZHD application as decontamination enzymes at acidic pH values (from 3.0 to 6.0).
玉米赤霉烯酮水解酶(ZHD)是最有效且研究充分的玉米赤霉烯酮特异性内酯水解酶,为扩大其在饲料和食品生产行业作为去污剂的应用范围,需要使其pH曲线发生酸性偏移。在该酶的活性中心进行氨基酸替换,以降低催化残基E126和H242的pKa值。T216K替换使最适pH向酸性区域偏移一个单位,同时在酸性条件下pH曲线有显著扩展。改造后的酶在pH 3 - 5范围内活性增强,在pH 6至10范围内活性也有所提高。D31N和D31A替换也使最适pH向酸性条件偏移两个单位,不过这伴随着酶活性的显著降低。D31S替换导致pH曲线向碱性区域偏移。T216K替换后观察到的酶性质变化与ZHD作为酸性pH值(3.0至6.0)去污酶应用所需的条件一致。