Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo, 113-8657, Japan.
Division of Integrated Life Science, Graduate School of Biostudies, Kyoto University, Kitashirakawa-oiwakecho, Sakyo-ku, Kyoto, 606-8502, Japan.
Nat Commun. 2022 Aug 30;13(1):5097. doi: 10.1038/s41467-022-32834-8.
Cyanophycin is a natural biopolymer consisting of equimolar amounts of aspartate and arginine as the backbone and branched sidechain, respectively. It is produced by a single enzyme, cyanophycin synthetase (CphA1), and accumulates as a nitrogen reservoir during N fixation by most cyanobacteria. A recent structural study showed that three constituent domains of CphA1 function as two distinct catalytic sites and an oligomerization interface in cyanophycin synthesis. However, it remains unclear how the ATP-dependent addition of aspartate to cyanophycin is initiated at the catalytic site of the glutathione synthetase-like domain. Here, we report the cryogenic electron microscopy structures of CphA1, including a complex with aspartate, cyanophycin primer peptide, and ATP analog. These structures reveal the aspartate binding mode and phosphate-binding loop movement to the active site required for the reaction. Furthermore, structural and mutational data show a potential role of protein dynamics in the catalytic efficiency of the arginine condensation reaction.
蓝藻素是一种天然生物聚合物,由等摩尔量的天冬氨酸和精氨酸分别作为主链和支链侧链组成。它是由一种单一的酶,蓝藻素合成酶(CphA1)产生的,并在大多数蓝细菌进行固氮时积累为氮源。最近的一项结构研究表明,CphA1 的三个组成域在蓝藻素合成中作为两个不同的催化位点和一个寡聚化界面发挥作用。然而,目前尚不清楚天冬氨酸如何在谷胱甘肽合成酶样结构域的催化位点上依赖于 ATP 的方式添加到蓝藻素中。在这里,我们报告了 CphA1 的低温电子显微镜结构,包括与天冬氨酸、蓝藻素引发肽和 ATP 类似物的复合物。这些结构揭示了反应所需的天冬氨酸结合模式和磷酸结合环向活性位点的移动。此外,结构和突变数据表明蛋白质动力学在精氨酸缩合反应的催化效率中可能发挥作用。