Biotechnology Research Center and Department of Biotechnology, Toyama Prefectural University, Imizu, Toyama, Japan.
Asano Active Enzyme Molecule Project, ERATO, JST, Imizu, Toyama, 939-0398, Japan.
FEBS J. 2021 Mar;288(5):1679-1695. doi: 10.1111/febs.15490. Epub 2020 Aug 13.
Hydroxynitrile lyases (HNLs) catalyze the cleavage of cyanohydrin into cyanide and the corresponding aldehyde or ketone. Moreover, they catalyze the synthesis of cyanohydrin in the reverse reaction, utilized in industry for preparation of enantiomeric pure pharmaceutical ingredients and fine chemicals. We discovered a new HNL from the cyanogenic millipede, Chamberlinius hualienensis. The enzyme displays several features including a new primary structure, high stability, and the highest specific activity in (R)-mandelonitrile ((R)-MAN) synthesis (7420 U·mg ) among the reported HNLs. In this study, we elucidated the crystal structure and reaction mechanism of natural ChuaHNL in ligand-free form and its complexes with acetate, cyanide ion, and inhibitors (thiocyanate or iodoacetate) at 1.6, 1.5, 2.1, 1.55, and 1.55 Å resolutions, respectively. The structure of ChuaHNL revealed that it belongs to the lipocalin superfamily, despite low amino acid sequence identity. The docking model of (R)-MAN with ChuaHNL suggested that the hydroxyl group forms hydrogen bonds with R38 and K117, and the nitrile group forms hydrogen bonds with R38 and Y103. The mutational analysis showed the importance of these residues in the enzymatic reaction. From these results, we propose that K117 acts as a base to abstract a proton from the hydroxyl group of cyanohydrins and R38 acts as an acid to donate a proton to the cyanide ion during the cleavage reaction of cyanohydrins. The reverse mechanism would occur during the cyanohydrin synthesis. (Photo: Dr. Yuko Ishida) DATABASES: Structural data are available in PDB database under the accession numbers 6JHC, 6KFA, 6KFB, 6KFC, and 6KFD.
羟腈裂解酶(HNLs)催化氰醇裂解为氰化物和相应的醛或酮。此外,它们还可以在逆反应中催化氰醇的合成,这在工业上用于制备对映体纯的药物成分和精细化学品。我们从产氰千足虫,Chamberlinius hualienensis 中发现了一种新的 HNL。该酶具有一些特征,包括新的一级结构、高稳定性和在(R)-扁桃腈((R)-MAN)合成中的最高比活性(7420 U·mg ),这在报道的 HNL 中是最高的。在这项研究中,我们解析了天然 ChuaHNL 在无配体形式及其与乙酸盐、氰离子和抑制剂(硫氰酸盐或碘乙酸盐)的复合物的晶体结构和反应机制,分辨率分别为 1.6、1.5、2.1、1.55 和 1.55 Å。ChuaHNL 的结构表明,尽管氨基酸序列同一性较低,但它属于脂联素超家族。(R)-MAN 与 ChuaHNL 的对接模型表明,羟基与 R38 和 K117 形成氢键,腈基与 R38 和 Y103 形成氢键。突变分析表明这些残基在酶反应中的重要性。根据这些结果,我们提出 K117 作为碱从氰醇的羟基中提取质子,而 R38 作为酸向氰化物离子提供质子,在氰醇的裂解反应中。在氰醇合成过程中会发生相反的机制。(照片:Yuko Ishida 博士)数据库:结构数据可在 PDB 数据库中以 6JHC、6KFA、6KFB、6KFC 和 6KFD 的条目号获得。