RIKEN Center for Biosystems Dynamics Research, 1-7-22 Suehiro-cho, Tsurumi-ku, Yokohama 230-0045, Japan.
Center for Life Sciences, Skolkovo Institute of Science and Technology, Skolkovo 143025, Russia.
ACS Synth Biol. 2022 Jun 17;11(6):2022-2028. doi: 10.1021/acssynbio.2c00176. Epub 2022 Jun 8.
Biochemical and structural analyses of purified proteins are essential for the understanding of their properties. However, many proteins are unstable and difficult to purify, hindering their characterization. The B2 proteins of the lasso peptide biosynthetic pathways are cysteine proteases that cleave precursor peptides during the maturation process. The B2 proteins are poorly soluble, and no experimentally solved structures are available. Here, we performed a rapid semicomprehensive mutational analysis of the B2 protein from the thermophilic actinobacterium, (FusB2), using a cell-free transcription/translation system, and compared the results with the structure prediction by AlphaFold2. Analysis of 34 FusB2 mutants with substitutions of hydrophobic residues confirmed the accuracy of the predicted structure, and revealed a hydrophobic patch on the protein surface, which likely serves as the binding site of the partner protein, FusB1. Our results suggest that the combination of rapid cell-free mutant analyses with precise structure predictions can greatly accelerate structure-function research of proteins for which no structures are available.
对纯化蛋白质进行生化和结构分析对于理解其性质至关重要。然而,许多蛋白质不稳定且难以纯化,这阻碍了它们的表征。套索肽生物合成途径的 B2 蛋白是半胱氨酸蛋白酶,在成熟过程中切割前体肽。B2 蛋白的溶解性很差,目前没有实验解决的结构。在这里,我们使用无细胞转录/翻译系统对嗜热放线菌 (FusB2) 的 B2 蛋白进行了快速半综合突变分析,并将结果与 AlphaFold2 的结构预测进行了比较。对 34 个突变体的分析表明,疏水性残基的取代证实了预测结构的准确性,并揭示了蛋白质表面上的一个疏水性斑块,该斑块可能作为伴侣蛋白 FusB1 的结合位点。我们的结果表明,快速无细胞突变分析与精确结构预测相结合,可以极大地加速对尚无结构的蛋白质的结构-功能研究。