Department of Biochemistry, ‡Institute for Genomic Biology and §Center for Biophysics and Computational Biology, University of Illinois at Urbana-Champaign , 600 South Mathews Avenue, Urbana, Illinois 61801, United States and.
Departments of Chemical and Biological Engineering, ⊥Molecular Biology, and #Chemistry Princeton University , Princeton, New Jersey 08544, United States.
J Am Chem Soc. 2016 Dec 21;138(50):16452-16458. doi: 10.1021/jacs.6b10389. Epub 2016 Dec 7.
Lasso peptides are a class of bioactive ribosomally synthesized and post-translationally modified peptides (RiPPs), with a threaded knot structure that is formed by an isopeptide bond attaching the N-terminus of the peptide to a side chain carboxylate. Some lasso peptide biosynthetic clusters harbor an enzyme that specifically hydrolyzes the isopeptide bond to yield the linear peptide. We describe here the 2.4 Å resolution structure of a lasso peptide isopeptidase revealing a topologically novel didomain architecture consisting of an open β-propeller appended to an α/β hydrolase domain. The 2.2 Å resolution cocrystal structure of an inactive variant in complex with a lasso peptide reveals deformation of the substrate, and reorganization of the enzyme active site, which exposes and orients the isopeptide bond for hydrolysis. Structure-based mutational analysis reveals how this enzyme recognizes the lasso peptide substrate by shape complementarity rather than through sequence specificity. The isopeptidase gene can be used to facilitate genome mining, as a network-based mining strategy queried with this sequence identified 87 putative lasso peptide biosynthetic clusters, 65 of which have not been previously described. Lastly, we validate this mining approach by heterologous expression of two clusters encoded within the genome of Asticcaucalis benevestitus, and demonstrate that both clusters produce lasso peptides.
套索肽是一类生物活性的核糖体合成和翻译后修饰肽(RiPPs),具有由异肽键将肽的 N 端连接到侧链羧酸上形成的线状结结构。一些套索肽生物合成簇含有一种酶,该酶专门水解异肽键以生成线性肽。我们在这里描述了一种套索肽异肽酶的 2.4Å 分辨率结构,揭示了一种拓扑新颖的双结构域架构,由开放的β-推进器附加到α/β水解酶结构域组成。与套索肽复合物的 2.2Å 分辨率无活性变体的共晶结构揭示了底物的变形和酶活性位点的重排,这暴露并定向了异肽键进行水解。基于结构的突变分析揭示了该酶如何通过形状互补而不是通过序列特异性来识别套索肽底物。异肽酶基因可用于促进基因组挖掘,因为基于网络的挖掘策略使用该序列进行查询,鉴定了 87 个潜在的套索肽生物合成簇,其中 65 个以前没有描述过。最后,我们通过异源表达 Asticcaucalis benevestitus 基因组内编码的两个簇来验证这种挖掘方法,并证明这两个簇都产生了套索肽。