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Enzymatic transformation of vina-ginsenoside R-7 to rare notoginsenoside ST-4 using a new recombinant glycoside hydrolase from Herpetosiphon aurantiacus

机译:使用新的重组紫杉菊糖苷水解酶,将人参皂苷R-7酶转化为稀有的三七皂苷ST-4

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摘要

An eco-friendly and convenient preparation method for notoginsenoside ST-4 has been established by completely transforming vina-ginsenoside R-7 using a recombinant glycosidase hydrolyzing enzyme (HaGH03) from Herpetosiphon aurantiacus. This enzyme specifically hydrolyzed the glucose at the C-20 position but not the external xylose or two inner glucoses at position C-3. Protein sequence BLAST revealed that HaGH03, composed of 749 amino acids and presumptively listed as a member of the family 3 glycoside hydrolases, has highest identity (48 %) identity with a thermostable beta-glucosidase B, which was not known of any functions for ginsenoside transformation. The steady state kinetic parameters for purified HaGH03 measured against p-nitrophenyl beta-D-glucopyranoside and vina-ginsenoside R-7 were K (M) = 5.67 +/- 0.24 mu M and 0.59 +/- 0.23 mM, and k (cat) = 69.2 +/- 0.31/s and 2.15 +/- 0.46/min, respectively. HaGH03 converted 2.5 mg/mL of vina-ginsenoside R-7 to ST-4 with a molar yield of 100 % and a space-time yield of 104 mg/L/h in optimized conditions. These results underscore that HaGH03 has much potential for the effective preparation of target ginsenosides possessing valuable pharmacological activities. This is the first report identifying an enzyme that has the ability to transform vina-ginsenoside R-7 and provides an approach to preparing rare notoginsenoside ST-4.
机译:通过使用来自桔梗疱疹的重组糖苷酶水解酶(HaGH03)完全转化人参皂苷R-7,建立了一种三七皂苷ST-4的环保,便捷的制备方法。该酶特异性水解C-20位的葡萄糖,但不水解外部木糖或C-3位的两个内部葡萄糖。蛋白质序列BLAST显示,由749个氨基酸组成的HaGH03与3型糖苷水解酶具有最高的同一性(48%),后者由人参皂苷具有任何功能,HaGH03被推定为3类糖苷水解酶的成员。转型。针对对硝基苯基β-D-吡喃葡萄糖苷和人参皂苷R-7测得的纯化HaGH03的稳态动力学参数为K(M)= 5.67 +/- 0.24μM和0.59 +/- 0.23 mM,以及k(cat )= 69.2 +/- 0.31 / s和2.15 +/- 0.46 / min。在最佳条件下,HaGH03将2.5 mg / mL的人参皂甙R-7转化为ST-4,摩尔产率为100%,时空产率为104 mg / L / h。这些结果表明,HaGH03具有有效制备具有有价值药理活性的目标人参皂苷的巨大潜力。这是第一个鉴定具有转化人参皂苷R-7能力的酶的报告,并提供了一种制备稀有三七皂苷ST-4的方法。

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