Department of Biochemistry and Centre de recherche en biologie structurale, McGill University, Montréal, QC, H3G 0B1, Canada.
Sci Rep. 2023 May 23;13(1):8314. doi: 10.1038/s41598-023-34587-w.
Cyanophycin is a bacterial biopolymer used for storage of fixed nitrogen. It is composed of a backbone of L-aspartate residues with L-arginines attached to each of their side chains. Cyanophycin is produced by cyanophycin synthetase 1 (CphA1) using Arg, Asp and ATP, and is degraded in two steps. First, cyanophycinase breaks down the backbone peptide bonds, releasing β-Asp-Arg dipeptides. Then, these dipeptides are broken down into free Asp and Arg by enzymes with isoaspartyl dipeptidase activity. Two bacterial enzymes are known to possess promiscuous isoaspartyl dipeptidase activity: isoaspartyl dipeptidase (IadA) and isoaspartyl aminopeptidase (IaaA). We performed a bioinformatic analysis to investigate whether genes for cyanophycin metabolism enzymes cluster together or are spread around the microbial genomes. Many genomes showed incomplete contingents of known cyanophycin metabolizing genes, with different patterns in various bacterial clades. Cyanophycin synthetase and cyanophycinase are usually clustered together when recognizable genes for each are found within a genome. Cyanophycinase and isoaspartyl dipeptidase genes typically cluster within genomes lacking cphA1. About one-third of genomes with genes for CphA1, cyanophycinase and IaaA show these genes clustered together, while the proportion is around one-sixth for CphA1, cyanophycinase and IadA. We used X-ray crystallography and biochemical studies to characterize an IadA and an IaaA from two such clusters, in Leucothrix mucor and Roseivivax halodurans, respectively. The enzymes retained their promiscuous nature, showing that being associated with cyanophycin-related genes did not make them specific for β-Asp-Arg dipeptides derived from cyanophycin degradation.
蓝藻素是一种用于储存固定氮的细菌生物聚合物。它由 L-天冬氨酸残基组成,其侧链上连接着 L-精氨酸。蓝藻素由蓝藻素合成酶 1(CphA1)使用 Arg、Asp 和 ATP 合成,并分两步降解。首先,蓝藻素酶分解骨干肽键,释放β-Asp-Arg 二肽。然后,这些二肽被具有异天冬氨酸二肽酶活性的酶分解成游离的 Asp 和 Arg。有两种细菌酶被认为具有混杂的异天冬氨酸二肽酶活性:异天冬氨酸二肽酶(IadA)和异天冬氨酸氨基肽酶(IaaA)。我们进行了生物信息学分析,以研究蓝藻素代谢酶的基因是否聚集在一起或分散在微生物基因组中。许多基因组显示出已知蓝藻素代谢基因的不完整成分,不同的细菌类群具有不同的模式。当在基因组中发现每个可识别基因时,蓝藻素合成酶和蓝藻素酶通常聚集在一起。蓝藻素酶和异天冬氨酸二肽酶基因通常聚集在缺乏 cphA1 的基因组中。大约三分之一具有 CphA1、蓝藻素酶和 IaaA 基因的基因组显示这些基因聚集在一起,而具有 CphA1、蓝藻素酶和 IadA 基因的基因组比例约为六分之一。我们使用 X 射线晶体学和生化研究来表征来自两个这样的簇的 IadA 和 IaaA,分别来自 Leucothrix mucor 和 Roseivivax halodurans。这些酶保留了它们混杂的性质,表明与蓝藻素相关基因相关联并没有使它们对来自蓝藻素降解的β-Asp-Arg 二肽具有特异性。