Hinzmann Michael, Yavuzer Hilmi, Hinzmann Alessa, Gröger Harald
Chair of Industrial Organic Chemistry and Biotechnology, Faculty of Chemistry, Bielefeld University, Universitätsstr. 25, 33615 Bielefeld, Germany.
Chair of Industrial Organic Chemistry and Biotechnology, Faculty of Chemistry, Bielefeld University, Universitätsstr. 25, 33615 Bielefeld, Germany.
J Biotechnol. 2023 Apr 10;367:81-88. doi: 10.1016/j.jbiotec.2023.02.007. Epub 2023 Mar 11.
Aldoxime dehydratases (Oxds) are a unique class of enzymes, which catalyzes the dehydration of aldoximes to nitriles in an aqueous environment. Recently, they gained attention as a catalyst for a green and cyanide-free alternative to established nitrile syntheses, which often require the use of toxic cyanides and harsh reaction conditions. Up to now only thirteen aldoxime dehydratases have been discovered and biochemically characterized. This raised the interest for identifying further Oxds with, e.g., complementary properties in terms of substrate scope. In this study, 16 novel genes, presumably encoding aldoxime dehydratases, were selected by using a commercially available 3DM database based on OxdB, an Oxd from Bacillus sp. OxB-1. Out of 16 proteins, six enzymes with aldoxime dehydratases activity were identified, which differ in their substrate scope and activity. While some novel Oxds showed better performance for aliphatic substrate such as n-octanaloxime compared to the well characterized OxdRE from Rhodococcus sp. N-771, some showed activity for aromatic aldoximes, leading to an overall high usability of these enzymes in organic chemistry. The applicability for organic synthesis was underlined by converting 100 mM n-octanaloxime at a 10 mL scale within 5 h with the novel aldoxime dehydratase OxdHR as whole-cell catalyst (33 mg/mL).
醛肟脱水酶(Oxds)是一类独特的酶,它能在水性环境中将醛肟催化脱水生成腈。最近,作为一种绿色且无氰的替代催化剂,它们在已有的腈合成方法中备受关注,传统腈合成方法通常需要使用有毒的氰化物和苛刻的反应条件。到目前为止,仅发现了13种醛肟脱水酶并对其进行了生化特性表征。这引发了人们对鉴定更多具有例如底物范围互补特性等醛肟脱水酶的兴趣。在本研究中,基于芽孢杆菌属OxB - 1的OxdB,利用市售的3DM数据库选择了16个可能编码醛肟脱水酶的新基因。在这16种蛋白质中,鉴定出了6种具有醛肟脱水酶活性的酶,它们在底物范围和活性方面存在差异。与红球菌属N - 771中已得到充分表征的OxdRE相比,一些新型的Oxd对脂肪族底物如正辛醛肟表现出更好的性能,而另一些则对芳香醛肟具有活性,这使得这些酶在有机化学中具有很高的整体实用性。以新型醛肟脱水酶OxdHR作为全细胞催化剂(33 mg/mL),在5小时内以10 mL规模转化100 mM正辛醛肟,突出了其在有机合成中的适用性。