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作为新的烯还原酶和酮还原酶活性来源的植物组织培养物。

Plant tissue cultures as sources of new ene- and ketoreductase activities.

作者信息

Magallanes-Noguera Cynthia, Cecati Francisco M, Mascotti María Laura, Reta Guillermo F, Agostini Elizabeth, Orden Alejandro A, Kurina-Sanz Marcela

机构信息

INTEQUI-CONICET, Facultad de Química, Bioquímica y Farmacia, Universidad Nacional de San Luis, Chacabuco y Pedernera, CP 5700 San Luis, Argentina.

IMIBIO-CONICET, Facultad de Química, Bioquímica y Farmacia, Universidad Nacional de San Luis, Chacabuco y Pedernera, Argentina.

出版信息

J Biotechnol. 2017 Jun 10;251:14-20. doi: 10.1016/j.jbiotec.2017.03.023. Epub 2017 Mar 28.

DOI:10.1016/j.jbiotec.2017.03.023
PMID:28359867
Abstract

While many redox enzymes are nowadays available for synthetic applications, the toolbox of ene-reductases is still limited. Consequently, the screening for these enzymes from diverse sources in the search of new biocatalyst suitable for green chemistry approaches is needed. Among 13 plant tissue cultures, Medicago sativa and Tessaria absinthioides calli, as well as Capsicum annuum hairy roots, were selected due to their ability to hydrogenate the CC double bond of the model substrate 2-cyclohexene-1-one. The three axenic plant cultures showed more preference toward highly activated molecules such as nitrostyrene and maleimide rather than the classical substrates of the well-known Old Yellow Enzymes, resembling the skills of the NAD(P)H-dependent flavin-independent enzymes. When the three biocatalytic systems were applied in the reduction of chalcones, T. absinthioides showed high chemoselectivity toward the CC double bond whereas the other two demonstrated abilities to biohydrogenate the CC double bounds and the carbonyl groups in a sequential fashion.

摘要

虽然如今许多氧化还原酶可用于合成应用,但烯还原酶的工具库仍然有限。因此,需要从不同来源筛选这些酶,以寻找适合绿色化学方法的新型生物催化剂。在13种植物组织培养物中,紫花苜蓿和苦艾叶特萨里亚愈伤组织以及辣椒毛状根因其能够氢化模型底物2-环己烯-1-酮的碳碳双键而被选中。这三种无菌植物培养物对硝基苯乙烯和马来酰亚胺等高活性分子的偏好高于著名的老黄色酶的经典底物,这类似于依赖NAD(P)H的非黄素依赖性酶的技能。当将这三种生物催化系统应用于查耳酮的还原时,苦艾叶特萨里亚对碳碳双键表现出高化学选择性,而其他两种则表现出依次对碳碳双键和羰基进行生物氢化的能力。

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