Shil Sumit, Tsuruta Mitsuki, Kawauchi Keiko, Miyoshi Daisuke
Frontiers of Innovative Research in Science and Technology, FIRST), Konan University, 7-1-20 Minatojima-minamimachi, Chuo-ku, Hyogo, Kobe, 650-0047, Japan.
ChemMedChem. 2025 Jan 14;20(2):e202400460. doi: 10.1002/cmdc.202400460. Epub 2024 Nov 4.
Liquid-liquid phase separation (LLPS), mediated by G-quadruplexes (G4 s) and intrinsically disordered proteins, particularly those containing RGG domains, plays a critical role in cellular processes and diseases. However, the molecular mechanism and the role of individual amino acid residues of the protein in LLPS with G4 (G4-LLPS) are still unknown. Here, we systematically designed peptides and investigated the roles of arginine residues in G4-LLPS. It was found that the FMRP-derived RGG peptide induced LLPS with G4-forming Myc-DNA, whereas a point-mutated peptide, in which all arginine residues were replaced with lysine, was unable to undergo LLPS, indicating the importance of arginine residues. Moreover, systematically truncated peptides showed that at least five positive net charges of peptide are required to induce G4-LLPS. Furthermore, quantitative investigation demonstrated that the higher binding affinity of peptides with G4 led to a higher LLPS ability, whereas threshold of the binding affinity for undergoing LLPS was identified. These insights elucidate the pivotal role of arginine in G4-LLPS and the specific requirement for multiple arginine residues, contributing to a deeper understanding of the complex interplay between intrinsically disordered proteins and nucleic acids.
由G-四链体(G4)和内在无序蛋白(特别是那些含有RGG结构域的蛋白)介导的液-液相分离(LLPS)在细胞过程和疾病中起着关键作用。然而,蛋白质中单个氨基酸残基在与G4的液-液相分离(G4-LLPS)中的分子机制和作用仍然未知。在这里,我们系统地设计了肽段,并研究了精氨酸残基在G4-LLPS中的作用。发现源自脆性X智力低下蛋白(FMRP)的RGG肽可诱导与形成G4的Myc-DNA发生LLPS,而所有精氨酸残基都被赖氨酸取代的点突变肽则无法发生LLPS,这表明了精氨酸残基的重要性。此外,系统截短的肽段表明,肽段至少需要五个正净电荷才能诱导G4-LLPS。此外,定量研究表明,肽段与G4的结合亲和力越高,其LLPS能力越强,同时还确定了发生LLPS的结合亲和力阈值。这些见解阐明了精氨酸在G4-LLPS中的关键作用以及对多个精氨酸残基的特定要求,有助于更深入地理解内在无序蛋白与核酸之间的复杂相互作用。