Department of Physics, Chemistry and Pharmacy, University of Southern Denmark, Campusvej 55, 5230, Odense, Denmark.
Department of Molecular Plant Physiology, Faculty of Biology, University of Warsaw, Miecznikowa 1, 02-096, Warsaw, Poland.
Sci Rep. 2024 Nov 2;14(1):26439. doi: 10.1038/s41598-024-76562-z.
The N-His73 methylation of β-actin by histidine methyltransferase SETD3 is required for the integrity of the cellular cytoskeleton. Modulation of SETD3 activity in human cells facilitates cancer-like changes to the cell phenotype. SETD3 binds β-actin in an extended conformation, with a conserved bend-like motif surrounding His73. Here, we report on the catalytic specificity of SETD3 towards i, i + 3 stapled β-actin peptides possessing a limited conformational freedom surrounding the His73 substrate residue via positions Glu72 and Ile75. Stapled β-actin peptides were observed to be methylated less efficiently than the linear β-actin peptide. None of the stapled β-actin peptides efficiently inhibited the SETD3-catalyzed N-His73 methylation reaction. Molecular dynamics simulations demonstrated that the unbound and SETD3-bound β-actin peptides display different backbone flexibility and bend-like conformations, highlighting their important role in substrate binding and catalysis. Overall, these findings suggest that reduced backbone flexibility of β-actin prevents the formation of optimal protein-peptide interactions between the enzyme and substrate, highlighting that the backbone flexibility needs to be considered when designing β-actin-based probes and inhibitors of biomedically important SETD3.
组蛋白甲基转移酶 SETD3 对 β-肌动蛋白 N-His73 的甲基化对于细胞细胞骨架的完整性是必需的。人细胞中 SETD3 活性的调节促进了细胞表型的类似癌症的变化。SETD3 以伸展构象与 β-肌动蛋白结合,具有围绕 His73 的保守弯曲样模体。在这里,我们报告了 SETD3 对 i、i+3 订书肽的催化特异性,这些肽在围绕 His73 底物残基的位置 Glu72 和 Ile75 处具有有限的构象自由度。订书肽β-肌动蛋白的甲基化效率比线性 β-肌动蛋白肽低。没有一个订书肽β-肌动蛋白有效地抑制 SETD3 催化的 N-His73 甲基化反应。分子动力学模拟表明,未结合和 SETD3 结合的 β-肌动蛋白肽显示出不同的骨架灵活性和弯曲样构象,突出了它们在底物结合和催化中的重要作用。总的来说,这些发现表明,β-肌动蛋白的骨架灵活性降低会阻止酶和底物之间形成最佳的蛋白-肽相互作用,这突出表明在设计基于β-肌动蛋白的探针和生物医学重要 SETD3 的抑制剂时需要考虑骨架灵活性。