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经葡萄糖基转移酶生物转化为 11α-羟孕酮葡萄糖苷。

Biotransformation into 11α-hydroxyprogesterone glucosides by glucosyltransferase.

机构信息

Department of Pharmaceutical Engineering and Biotechnology, Sun Moon University, 70 Sunmoon-ro 221, Tangjeong-myeon, Asan-si, Chungnam 31460, Republic of Korea; Genome-based BioIT Convergence Institute, 70 Sunmoon-ro 221, Tangjeong-myeon, Asan-si, Chungnam 31460, Republic of Korea; Department of Life Science and Biochemical Engineering, Sun Moon University, 70 Sunmoon-ro 221, Tangjeong-myeon, Asan-si, Chungnam 31460, Republic of Korea.

Genome-based BioIT Convergence Institute, 70 Sunmoon-ro 221, Tangjeong-myeon, Asan-si, Chungnam 31460, Republic of Korea.

出版信息

Steroids. 2019 May;145:32-38. doi: 10.1016/j.steroids.2019.02.008. Epub 2019 Feb 10.

Abstract

Recently, studies on the steroidal hormone activity in the brain have attracted attention, and the influences of the varied glucosides and their artificial derivatives have been discussed; additionally, it has been suggested that glucosides are the synthetic precursors of glucuronide as a label molecule. However, glucosides are formed with 11α-hydroxyprogesterone (1), which is important as a blood pressure regulator, but anti-androgen activity remains unknown. Using UDP-glucosyltransferase, glucoside synthesis was successful in linking β-d-glucopyranose and β-d-laminaribiose to 11α oxygen of 1 at a high conversion ratio, and full assignment structure was analyzed for the two glucosides by high-resolution quadrupole-time flight electrospray ionization-mass spectrometry, 1D (H and C) NMR and 2D (COSY, ROESY, HSQC-DEPT and HMQC) NMR. Furthermore, the bioactivity of 1 and two 11α-hydroxyprogesterone glucosides [11α-(β-d-glucopyranosyl)oxyprogesterone, 2, and 11α-(β-d-laminaribiosyl)oxyprogesterone, 3] was tested in vitro. On rotenone-induced PC12 cells, the two 11α-hydroxyprogesterone glucosides (2 and 3) showed superior neuroprotective effects and increased cellular ATP levels compared with those of 1.

摘要

最近,人们对大脑中甾体激素活性的研究引起了关注,讨论了各种糖苷及其人工衍生物的影响;此外,有人提出糖苷是作为标记分子的葡萄糖醛酸苷的合成前体。然而,糖苷是与 11α-羟孕酮(1)形成的,1 作为一种血压调节剂很重要,但抗雄激素活性仍不清楚。使用 UDP-葡萄糖基转移酶,糖苷合成成功地将β-d-吡喃葡萄糖和β-d-岩藻糖连接到 1 的 11α-氧,通过高分辨率四极杆飞行时间电喷雾电离质谱、1D(H 和 C)NMR 和 2D(COSY、ROESY、HSQC-DEPT 和 HMQC)NMR 对两种糖苷进行了全归属结构分析。此外,还测试了 1 和两种 11α-羟孕酮糖苷[11α-(β-d-吡喃葡萄糖基)氧基孕酮,2 和 11α-(β-d-岩藻糖基)氧基孕酮,3]的体外生物活性。在鱼藤酮诱导的 PC12 细胞中,与 1 相比,两种 11α-羟孕酮糖苷(2 和 3)表现出更好的神经保护作用,并增加了细胞内 ATP 水平。

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