Department of Biochemistry, McGill University, Montréal, Quebec, Canada.
Centre de recherche en biologie structurale, McGill University, Montréal, Quebec, Canada.
Protein Sci. 2023 Jul;32(7):e4685. doi: 10.1002/pro.4685.
Cyanophycin is a natural polymer composed of a poly-aspartate backbone with arginine attached to each of the aspartate sidechains. Produced by a wide range of bacteria, which mainly use it as a store of fixed nitrogen, it has many promising industrial applications. Cyanophycin can be synthesized from the amino acids Asp and Arg by the widespread cyanophycin synthetase 1 (CphA1), or from the dipeptide β-Asp-Arg by the cyanobacterial enzyme cyanophycin synthetase 2 (CphA2). CphA2 enzymes display a range of oligomeric states, from dimers to dodecamers. Recently, the crystal structure of a CphA2 dimer was solved but could not be obtained in complex with substrate. Here, we report cryo-EM structures of the hexameric CphA2 from Stanieria sp. at ~2.8 Å resolution, both with and without ATP analog and cyanophycin. The structures show a two-fold symmetrical, trimer-of-dimers hexameric architecture, and substrate-binding interactions that are similar to those of CphA1. Mutagenesis experiments demonstrate the importance of several conserved substrate-binding residues. We also find that a Q416A/R528G double mutation prevents hexamer formation and use this double mutant to show that hexamerization augments the rate of cyanophycin synthesis. Together, these results increase our mechanistic understanding of how an interesting green polymer is biosynthesized.
蓝藻素是一种由聚天冬氨酸主链与每个天冬氨酸侧链上的精氨酸组成的天然聚合物。它由广泛的细菌产生,这些细菌主要将其用作固定氮的储存库,具有许多有前途的工业应用。蓝藻素可以由氨基酸天冬氨酸和精氨酸通过广泛存在的蓝藻素合成酶 1(CphA1)合成,也可以由蓝细菌酶蓝藻素合成酶 2(CphA2)从二肽β-Asp-Arg 合成。CphA2 酶显示出一系列的寡聚态,从二聚体到十二聚体。最近,解决了 CphA2 二聚体的晶体结构,但不能与底物复合物获得。在这里,我们报道了 Stanieria sp. 的六聚体 CphA2 的 cryo-EM 结构,分辨率约为 2.8Å,分别与 ATP 类似物和蓝藻素结合和不结合。结构显示出具有两倍对称的三聚体二聚体六聚体结构,以及与 CphA1 相似的底物结合相互作用。突变实验证明了几个保守的底物结合残基的重要性。我们还发现 Q416A/R528G 双突变阻止了六聚体的形成,并利用该双突变体表明六聚体化提高了蓝藻素合成的速率。总之,这些结果增加了我们对如何生物合成有趣的绿色聚合物的机制理解。