Satoh Yuri, Ono Yosuke, Takahashi Rikana, Katayama Hidekazu, Iwaoka Michio, Yoshino Osamu, Arai Kenta
Department of Chemistry, School of Science, Tokai University Kitakaname Hiratsuka-shi Kanagawa 259-1292 Japan
Department of Obstetrics and Gynecology, University of Yamanashi 1110 Shimokato Chuo-shi Yamanashi 409-3898 Japan.
RSC Chem Biol. 2024 May 31;5(8):729-737. doi: 10.1039/d4cb00095a. eCollection 2024 Jul 31.
Human relaxin-2 (H2 relaxin) is a peptide hormone of about 6 kDa, first identified as a reproductive hormone involved in vasoregulation during pregnancy. It has recently attracted strong interest because of its diverse functions, including anti-inflammatory, anti-fibrotic, and vasodilatory, and has been suggested as a potential peptide-based drug candidate for a variety of diseases. Mature H2 relaxin is constituted by the A- and B-chains stabilized by two interchain disulfide (SS) bridges and one intrachain SS linkage. In this study, seleno-relaxins, SeRlx-α and SeRlx-β, which are [C11U,C11U] and [C10U,C15U] variants of H2 relaxin, respectively, were synthesized a one-pot oxidative chain assembly (folding) from the component A- and B-chains. The substitution of SS bonds in a protein with their analogue, diselenide (SeSe) bonds, has been shown to alter the physical, chemical, and physiological properties of the protein. The surface SeSe bond (U11-U11) enhanced the yield of chain assembly while the internal SeSe bond (U10-U15) improved the reaction rate of the folding, indicating that these bridges play a major role in controlling the thermodynamics and kinetics, respectively, of the folding mechanism. Furthermore, SeRlx-α and SeRlx-β effectively reduced the expression of a tissue fibrosis-related factor in human endometriotic stromal cells. Thus, the findings of this study indicate that the S-to-Se substitution strategy not only enhances the foldability of relaxin, but also provides new guidance for the development of novel relaxin formulations for endometriosis treatment.
人松弛素-2(H2松弛素)是一种约6 kDa的肽类激素,最初被鉴定为一种在妊娠期间参与血管调节的生殖激素。由于其具有多种功能,包括抗炎、抗纤维化和血管舒张作用,最近它引起了人们的强烈关注,并被认为是治疗多种疾病的潜在肽类药物候选物。成熟的H2松弛素由A链和B链组成,通过两个链间二硫键(SS)桥和一个链内SS连接稳定。在本研究中,分别作为H2松弛素的[C11U,C11U]和[C10U,C15U]变体的硒代松弛素SeRlx-α和SeRlx-β,由A链和B链组分通过一锅法氧化链组装(折叠)合成。用其类似物二硒键(SeSe)取代蛋白质中的SS键已被证明会改变蛋白质的物理、化学和生理性质。表面SeSe键(U11-U11)提高了链组装产率,而内部SeSe键(U10-U15)提高了折叠反应速率,表明这些桥分别在控制折叠机制的热力学和动力学中起主要作用。此外,SeRlx-α和SeRlx-β有效地降低了人子宫内膜异位症基质细胞中组织纤维化相关因子的表达。因此,本研究结果表明,S-to-Se取代策略不仅提高了松弛素的可折叠性,而且为开发用于治疗子宫内膜异位症的新型松弛素制剂提供了新的指导。