Department of Chemistry, McGill University, 801 Sherbrooke St., Montreal, Quebec H3A0B8, Canada.
Biochemistry. 2022 Oct 4;61(19):2118-2130. doi: 10.1021/acs.biochem.2c00360. Epub 2022 Sep 12.
Class II lanthipeptide synthetases (LanM enzymes) catalyze the installation of multiple thioether bridges into genetically encoded peptides to produce macrocyclic lanthipeptides, a class of biologically active natural products. Collectively, LanM enzymes install thioether rings of different sizes, topologies, and stereochemistry into a vast array of different LanA precursor peptide sequences. The factors that govern the outcome of the LanM-catalyzed reaction cascade are not fully characterized but are thought to involve both intermolecular interactions and intramolecular conformational changes in the [LanM:LanA] Michaelis complex. To test this hypothesis, we have combined AlphaFold modeling with hydrogen-deuterium exchange mass spectrometry (HDX-MS) analysis of a small collection of divergent LanM/LanA systems to investigate the similarities and differences in their conformational dynamic properties. Our data indicate that LanA precursor peptide binding triggers relatively conserved changes in the structural dynamics of the LanM dehydratase domain, supporting the existence of a similar leader peptide binding mode across the LanM family. In contrast, changes induced in the dynamics of the LanM cyclase domain were more highly variable between enzymes, perhaps reflecting different peptide-cyclase interactions and/or different modes of allosteric activation in class II lanthipeptide biosynthesis. Our analysis highlights the ability of the emerging AlphaFold platform to predict protein-peptide interactions that are supported by other lines of experimental evidence. The combination of AlphaFold modeling with HDX-MS analysis should emerge as a useful approach for investigating other conformationally dynamic enzymes involved in peptide natural product biosynthesis.
II 类兰尼肽合成酶(LanM 酶)催化在基因编码肽中安装多个硫醚键,从而产生大环兰尼肽,这是一类具有生物活性的天然产物。总的来说,LanM 酶在各种不同的 LanA 前体肽序列中安装不同大小、拓扑和立体化学的硫醚环。尽管 LanM 催化反应级联的结果受多种因素影响,但尚未完全阐明这些因素,据推测这些因素既涉及 [LanM:LanA]米氏复合物中的分子间相互作用,也涉及分子内构象变化。为了验证这一假设,我们结合 AlphaFold 建模和一系列不同 LanM/LanA 系统的氘氢交换质谱(HDX-MS)分析,研究它们构象动态特性的相似性和差异性。我们的数据表明,LanA 前体肽结合触发 LanM 脱水酶结构域结构动力学的相对保守变化,支持 LanM 家族中存在类似的前导肽结合模式。相比之下,酶之间 LanM 环化酶结构域动力学诱导的变化更加多样化,这可能反映了不同的肽-环化酶相互作用和/或 II 类兰尼肽生物合成中的不同别构激活模式。我们的分析强调了新兴的 AlphaFold 平台预测蛋白质-肽相互作用的能力,这些相互作用得到了其他实验证据的支持。将 AlphaFold 建模与 HDX-MS 分析相结合,应该成为研究参与肽天然产物生物合成的其他构象动态酶的有用方法。