Biotechnology Research Center and Department of Biotechnology, Toyama Prefectural University, 5180 Kurokawa, Imizu, Toyama, 939-0398, Japan.
Faculty of Life and Environmental Sciences, Prefectural University of Hiroshima, 5562 Nanatsukacho, Shobara, Hiroshima, 727-0023, Japan.
Appl Biochem Biotechnol. 2019 May;188(1):12-28. doi: 10.1007/s12010-018-2903-3. Epub 2018 Oct 4.
6-Tuliposides A (6-PosA) and B (6-PosB) are major secondary metabolites in tulip (Tulipa gesneriana), having an acyl group at the C-6 position of D-glucose. They serve as precursors of the antimicrobial α-methylene-γ-butyrolactones tulipalins A (PaA) and B (PaB). The conversions of 6-PosA/6-PosB to PaA/PaB are catalyzed by tuliposide-converting enzymes A and B (TCEA and TCEB), respectively. A minor Pos, 1-PosA, which has the acyl group at the C-1 position of D-glucose, has been identified in some wild tulip species, but availability of this compound is limited. Here, by using the TCEs, we established a facile enzymatic process for 1-PosA synthesis from the naturally occurring 1,6-diacyl-glucose type of Pos (PosD and PosF). We first discovered that TCEA and TCEB react preferentially with PosD and PosF, respectively, to form 1-PosA and the corresponding Pa derived from the 6-acyl group, demonstrating that the TCEs specifically acted on the 6-acyl group, but not the 1-acyl group, of the substrates. Using TCEB, 300 mg of PosF was completely converted to 1-PosA and PaB in 10 min at room temperature. Then, 160 mg of 1-PosA (75% molar yield) was purified by column chromatography. This one-step enzymatic process dramatically improves accessibility to 1-PosA.
6-郁金香糖甙 A(6-PosA)和 B(6-PosB)是郁金香(Tulipa gesneriana)中的主要次生代谢产物,在 D-葡萄糖的 C-6 位具有酰基。它们是抗菌α-亚甲基-γ-丁内酯郁金香素 A(PaA)和 B(PaB)的前体。6-PosA/6-PosB 向 PaA/PaB 的转化分别由郁金香糖甙转化酶 A 和 B(TCEA 和 TCEB)催化。在一些野生郁金香物种中已经鉴定出 1-位 Pos,即 1-PosA,其在 D-葡萄糖的 C-1 位具有酰基,但这种化合物的可用性有限。在这里,我们使用 TCEs 从天然存在的 1,6-二酰基葡萄糖型 Pos(PosD 和 PosF)建立了一种从 1-PosA 合成的简便酶促方法。我们首先发现 TCEA 和 TCEB 分别优先与 PosD 和 PosF 反应,形成 1-PosA 和来自 6-酰基的相应 Pa,表明 TCEs 特异性地作用于底物的 6-酰基,而不是 1-酰基。使用 TCEB,在室温下 10 分钟内可以将 300mg PosF 完全转化为 1-PosA 和 PaB。然后,通过柱层析纯化了 160mg 1-PosA(75%摩尔收率)。这种一步酶促过程极大地提高了 1-PosA 的可及性。