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本文引用的文献

1
Investigating the inhibitory property of DM hCT on hCT fibrillization via its relevant peptide fragments.通过其相关肽段研究 DM hCT 对 hCT 纤维化的抑制特性。
Protein Sci. 2023 Aug;32(8):e4711. doi: 10.1002/pro.4711.
2
Structural Perturbation of Monomers Determines the Amyloid Aggregation Propensity of Calcitonin Variants.单体结构的改变决定降钙素变体的淀粉样纤维形成倾向。
J Chem Inf Model. 2023 Jan 9;63(1):308-320. doi: 10.1021/acs.jcim.2c01202. Epub 2022 Dec 1.
3
Tyrosine 12 of human calcitonin modulates its amyloid formation, membrane binding, and bioactivity.人降钙素第 12 位酪氨酸残基调节其淀粉样形成、膜结合和生物活性。
Biochimie. 2022 Jun;197:121-129. doi: 10.1016/j.biochi.2022.02.007. Epub 2022 Feb 28.
4
Controlling the self-assembly of human calcitonin: a theoretical approach using molecular dynamics simulations.控制降钙素的自组装:使用分子动力学模拟的理论方法。
Phys Chem Chem Phys. 2021 Jul 7;23(26):14496-14510. doi: 10.1039/d1cp00825k.
5
Inhibiting Human Calcitonin Fibril Formation with Its Most Relevant Aggregation-Resistant Analog.用最相关的抗聚集模拟物抑制人降钙素纤维形成。
J Phys Chem B. 2019 Dec 5;123(48):10171-10180. doi: 10.1021/acs.jpcb.9b08514. Epub 2019 Nov 22.
6
WALTZ-DB 2.0: an updated database containing structural information of experimentally determined amyloid-forming peptides.WALTZ-DB 2.0:一个更新的数据库,包含实验确定的淀粉样肽形成的结构信息。
Nucleic Acids Res. 2020 Jan 8;48(D1):D389-D393. doi: 10.1093/nar/gkz758.
7
Structure-based inhibitors of tau aggregation.基于结构的tau 聚集抑制剂。
Nat Chem. 2018 Feb;10(2):170-176. doi: 10.1038/nchem.2889. Epub 2017 Nov 20.
8
Recent progress on understanding the mechanisms of amyloid nucleation.理解淀粉样蛋白成核机制的最新进展。
Biophys Rev. 2018 Apr;10(2):527-534. doi: 10.1007/s12551-017-0353-8. Epub 2017 Dec 6.
9
Crystal Structure of the DFNKF Segment of Human Calcitonin Unveils Aromatic Interactions between Phenylalanines.人降钙素DFNKF片段的晶体结构揭示了苯丙氨酸之间的芳香族相互作用。
Chemistry. 2017 Feb 10;23(9):2051-2058. doi: 10.1002/chem.201604639. Epub 2016 Dec 15.
10
Exploring the 'aggregation-prone' core of human Cystatin C: A structural study.探索人胱抑素C的“易聚集”核心:一项结构研究。
J Struct Biol. 2015 Sep;191(3):272-80. doi: 10.1016/j.jsb.2015.07.013. Epub 2015 Jul 31.

通过双重突变揭示人降钙素降低淀粉样变性特性的潜在机制。

Unraveling the underlying mechanisms of reduced amyloidogenic properties in human calcitonin via double mutations.

机构信息

Department of Chemistry, National Taiwan Normal University, Taipei, Taiwan.

出版信息

Protein Sci. 2024 Apr;33(4):e4952. doi: 10.1002/pro.4952.

DOI:10.1002/pro.4952
PMID:38501491
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10949316/
Abstract

The therapeutic efficacy of peptide-based drugs is commonly hampered by the intrinsic propensity to aggregation. A notable example is human calcitonin (hCT), a peptide hormone comprising 32 amino acids, which is synthesized and secreted by thyroid gland parafollicular cells (C cells). This hormone plays a vital role in regulating blood calcium levels and upholding bone integrity. Despite its physiological importance, utilizing hCT as a drug is hampered by its inclination to form amyloid. To address this limitation, an alternative is provided by salmon calcitonin (sCT), which possesses a lower aggregation propensity. Although sharing the same disulfide bond at the N terminus as hCT, sCT differs from hCT at a total of 16 amino acid positions. However, due to the dissimilarity in sequences, using sCT as a clinical replacement occasionally results in adverse side effects in patients. Earlier investigations have highlighted the significant roles of Tyr-12 and Asn-17 in inducing the formation of amyloid fibrils. By introducing double mutations at these sites, the ability to hinder aggregation can be significantly augmented. This study delves into the oligomerization and helical structure formation of the hCT double mutant (Y12LN17H hCT, noted as DM hCT), as well as two single mutants (Y12L and N17H), aiming to elucidate the mechanism behind hCT fibrillization. In addition, computational prediction tools were employed again to identify potential substitutes. Although the results yielded were not entirely satisfactory, a comparison between the newly examined and previously found hCT double mutants provides insights into the reduced aggregation propensity of the latter. This research endeavor holds the promise of informing the design of more effective therapeutic peptide drugs in the future.

摘要

肽类药物的治疗效果通常受到固有聚集倾向的阻碍。一个显著的例子是人类降钙素(hCT),它是一种由 32 个氨基酸组成的肽激素,由甲状腺滤泡旁细胞(C 细胞)合成和分泌。这种激素在调节血液钙水平和维持骨骼完整性方面起着至关重要的作用。尽管 hCT 具有重要的生理功能,但由于其易于形成淀粉样纤维,因此将其用作药物受到限制。为了解决这个问题,提供了鲑鱼降钙素(sCT)作为替代物,它具有较低的聚集倾向。尽管 sCT 在 N 末端与 hCT 具有相同的二硫键,但在总共 16 个氨基酸位置上与 hCT 不同。然而,由于序列的不同,使用 sCT 作为临床替代品偶尔会导致患者出现不良反应。早期的研究强调了 Tyr-12 和 Asn-17 在诱导淀粉样纤维形成中的重要作用。通过在这些位点引入双突变,可以显著增强抑制聚集的能力。本研究深入探讨了 hCT 双突变体(Y12LN17H hCT,称为 DM hCT)以及两个单突变体(Y12L 和 N17H)的寡聚化和螺旋结构形成,旨在阐明 hCT 纤维化的机制。此外,再次使用计算预测工具来识别潜在的替代品。尽管结果并不完全令人满意,但对新检查的和以前发现的 hCT 双突变体之间的比较提供了对后者聚集倾向降低的深入了解。这项研究工作有望为未来设计更有效的治疗性肽类药物提供信息。