硒-松弛素类似物:内外二硒化键对子宫内膜异位症基质细胞可折叠性和一种纤维化相关因子的影响

IF 4.2 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Yuri Satoh, Yosuke Ono, Rikana Takahashi, Hidekazu Katayama, Michio Iwaoka, Osamu Yoshino and Kenta Arai
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引用次数: 0

摘要

人类松弛素-2(H2 relaxin)是一种约 6 kDa 的肽类激素,最早被确认为一种生殖激素,参与妊娠期间的血管调节。由于它具有抗炎、抗纤维化和扩张血管等多种功能,最近引起了人们的浓厚兴趣,并被认为是治疗多种疾病的潜在肽类候选药物。成熟的 H2 松弛素由 A 链和 B 链构成,A 链和 B 链通过两个链间二硫(SS)桥和一个链内 SS 连接稳定。在这项研究中,我们通过氧化链组装(折叠)的方法,以 A 链和 B 链为原料,一步合成了硒松弛素 SeRlx-α 和 SeRlx-β,它们分别是 H2 松弛素的 [C11UA,C11UB] 和 [C10UA,C15UA] 变体。用其类似物二硒化物(SeSe)键替代蛋白质中的 SS 键已被证明会改变蛋白质的物理、化学和生理特性。表面 SeSe 键(U11A-U11B)提高了链组装的产量,而内部 SeSe 键(U10A-U15A)提高了折叠的反应速率,这表明这些桥分别在控制折叠机制的热力学和动力学方面发挥了重要作用。此外,SeRlx-α 和 SeRlx-β 还能有效降低人子宫内膜异位基质细胞中一种组织纤维化相关因子的表达。因此,本研究的结果表明,S-to-Se置换策略不仅增强了松弛素的可折叠性,而且为开发治疗子宫内膜异位症的新型松弛素制剂提供了新的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Seleno-relaxin analogues: effect of internal and external diselenide bonds on the foldability and a fibrosis-related factor of endometriotic stromal cells†

Seleno-relaxin analogues: effect of internal and external diselenide bonds on the foldability and a fibrosis-related factor of endometriotic stromal cells†

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 [C11UA,C11UB] and [C10UA,C15UA] variants of H2 relaxin, respectively, were synthesized via 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 (U11A–U11B) enhanced the yield of chain assembly while the internal SeSe bond (U10A–U15A) 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.

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