Bidart Gonzalo N, Putkaradze Natalia, Fredslund Folmer, Kjeldsen Christian, Ruiz Ander Garralda, Duus Jens Ø, Teze David, Welner Ditte H
The Novo Nordisk Foundation Center for Biosustainability, Technical University of Denmark, DK-2800 Kongens Lyngby, Denmark.
DTU Chemistry, Technical University of Denmark, DK-2800 Kongens Lyngby, Denmark.
ACS Sustain Chem Eng. 2022 Apr 25;10(16):5078-5083. doi: 10.1021/acssuschemeng.1c07593. Epub 2022 Apr 11.
Regioselective glycosylation is a chemical challenge, leading to multistep syntheses with protecting group manipulations, ultimately resulting in poor atom economy and compromised sustainability. Enzymes allow eco-friendly and regioselective bond formation with fully deprotected substrates in a single reaction. For the selective glucosylation of silibinin, a pharmaceutical challenged with low solubility, enzyme engineering has previously been employed, but the resulting yields and were limited, prohibiting the application of the engineered catalyst. Here, we identified a naturally regioselective silibinin glucosyltransferase, UGT706F8, a family 1 glycosyltransferase from . It selectively and efficiently ( = 2.1 ± 0.1 s; = 36.9 ± 5.2 μM; TTN = 768 ± 22) catalyzes the quantitative synthesis of silibinin 7--β-d-glucoside. We solved the crystal structure of UGT706F8 and investigated the molecular determinants of regioselective silibinin glucosylation. UGT706F8 was the only regioselective enzyme among 18 glycosyltransferases found to be active on silibinin. We found the temperature optimum of UGT706F8 to be 34 °C and the pH optimum to be 7-8. Our results indicate that UGT706F8 is an efficient silibinin glycosyltransferase that enables biocatalytic production of silbinin 7--β-d-glucoside.
区域选择性糖基化是一项化学挑战,会导致需要进行多步合成并涉及保护基操作,最终导致原子经济性差和可持续性受损。酶能够在单一反应中与完全脱保护的底物进行环境友好型的区域选择性键形成。对于水飞蓟宾这种存在低溶解度问题的药物的选择性糖基化,此前已采用酶工程方法,但所得产率有限,限制了工程化催化剂的应用。在此,我们鉴定出一种天然具有区域选择性的水飞蓟宾葡萄糖基转移酶UGT706F8,它是来自[具体来源未给出]的1家族糖基转移酶。它能选择性且高效地(kcat = 2.1 ± 0.1 s⁻¹;Km = 36.9 ± 5.2 μM;TTN = 768 ± 22)催化水飞蓟宾7 - β - D - 葡萄糖苷的定量合成。我们解析了UGT706F8的晶体结构,并研究了水飞蓟宾区域选择性糖基化的分子决定因素。UGT706F8是在发现对水飞蓟宾有活性的18种糖基转移酶中唯一具有区域选择性的酶。我们发现UGT706F8的最适温度为34℃,最适pH为7 - 8。我们的结果表明,UGT706F8是一种高效的水飞蓟宾葡萄糖基转移酶,能够实现水飞蓟宾7 - β - D - 葡萄糖苷的生物催化生产。