Department of Biochemistry, University of Illinois at Urbana─Champaign, 600 S. Mathews Avenue, Urbana, Illinois 61801, United States.
Fundación MEDINA Centro de Excelencia en Investigación de Medicamentos Innovadores en Andalucía, Avenida del Conocimiento, 34 Parque Tecnológico de Ciencias de la Salud, Armilla, 18016 Granada, Spain.
ACS Chem Biol. 2022 Sep 16;17(9):2519-2527. doi: 10.1021/acschembio.2c00458. Epub 2022 Aug 31.
Lanthipeptides are ribosomally synthesized and post-translationally modified peptides characterized by lanthionine (Lan) and/or methyllanthionine (MeLan) residues. Four classes of enzymes have been identified to install these structures in a substrate peptide. Recently, a novel class of lanthipeptides was discovered that lack genes for known class I-IV lanthionine synthases in their biosynthetic gene cluster (BGC). In this study, the dehydration of Ser/Thr during the biosynthesis of the class V lanthipeptide cacaoidin was reconstituted . The aminoglycoside phosphotransferase-like enzyme CaoK iteratively phosphorylates Ser/Thr residues on the precursor peptide CaoA, followed by phosphate elimination catalyzed by the HopA1 effector-like protein CaoY to achieve eight successive dehydrations. CaoY shows sequence similarity to the OspF family proteins and the lyase domains of class III/IV lanthionine synthetases, and mutagenesis studies identified residues that are critical for catalysis. An AlphaFold prediction of the structure of the dehydration enzyme complex engaged with its substrate suggests the importance of hydrophobic interactions between the CaoA leader peptide and CaoK in enzyme-substrate recognition. This model is supported by site-directed mutagenesis studies.
类硫堇环肽是一类核糖体合成后经翻译修饰的肽类,其特征为含有硫醚键(Lan)和/或甲硫醚键(MeLan)。目前已鉴定出四类酶来在底物肽中引入这些结构。最近,人们在生物合成基因簇(BGC)中发现了一类新型的类硫堇环肽,它们缺乏已知的 I-IV 类硫堇环肽合酶基因。在本研究中,类 V 类硫堇环肽 cacaoidin 的生物合成过程中的 Ser/Thr 脱水反应被重新构建。氨基糖苷磷酸转移酶样酶 CaoK 对前体肽 CaoA 上的 Ser/Thr 残基进行反复磷酸化,然后由 HopA1 效应蛋白样蛋白 CaoY 催化磷酸消除,从而实现 8 次连续脱水。CaoY 与 OspF 家族蛋白和 III/IV 类硫堇环肽合酶的裂解酶结构域具有序列相似性,突变研究确定了对催化至关重要的残基。与底物结合的脱水酶复合物的 AlphaFold 预测结构表明,CaoA 前导肽与 CaoK 之间的疏水相互作用在酶-底物识别中具有重要意义。该模型得到了定点突变研究的支持。