Application of cysteinyl prolyl ester for the synthesis of cyclic peptides containing an RGD sequence and their biological activity measurement

被引:0
作者
Yamada, Akina [1 ]
Takei, Toshiki [1 ]
Kawakami, Toru [1 ]
Taniguchi, Yukimasa [1 ]
Sekiguchi, Kiyotoshi [1 ]
Hojo, Hironobu [1 ]
机构
[1] Osaka Univ, Inst Prot Res, Suita, Osaka, Japan
来源
FRONTIERS IN CHEMISTRY | 2024年 / 12卷
关键词
cyclic peptide; cysteinyl prolyl ester; native chemical ligation; RGD; inhibitor; NATIVE CHEMICAL LIGATION;
D O I
10.3389/fchem.2024.1391678
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Cysteinyl RGD-peptidyl cysteinyl prolyl esters, which have different configurations at the cysteine and proline residues, were synthesized by the solid-phase method and cyclized by the native chemical ligation reaction. Cyclization efficiently proceeded to give cyclic peptides, regardless of the difference in the configuration. The peptides were further derivatized to the corresponding desulfurized or methylated cyclic peptides at the Cys residues. The inhibition activity to alpha v beta 6 integrin binding was then analyzed by ELISA. The results showed that the activity varied depending on the difference in the configuration and modification of the cysteinyl prolyl ester (CPC) moiety, demonstrating the usefulness of this method in the search for a good inhibitor of the protein-protein interaction.
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页数:11
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  • [11] Relative configuration of Cys-Pro ester peptides in thioester formation
    Kawakami, Toru
    Sasakura, Eri
    Miyanoiri, Yohei
    Hojo, Hironobu
    [J]. JOURNAL OF PEPTIDE SCIENCE, 2022, 28 (08)
  • [12] Integrins as biomechanical sensors of the microenvironment
    Kechagia, Jenny Z.
    Ivaska, Johanna
    Roca-Cusachs, Pere
    [J]. NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2019, 20 (08) : 457 - 473
  • [13] An improved method for the solution cyclization of peptides under pseudo-high dilution conditions
    Malesevic, M
    Strijowski, U
    Bächle, D
    Sewald, N
    [J]. JOURNAL OF BIOTECHNOLOGY, 2004, 112 (1-2) : 73 - 77
  • [14] Trends in peptide drug discovery
    Muttenthaler, Markus
    King, Glenn E.
    Adams, David J.
    Alewood, Paul E.
    [J]. NATURE REVIEWS DRUG DISCOVERY, 2021, 20 (04) : 309 - 325
  • [15] Multicomponent Reaction Toolbox for Peptide Macrocyclization and Stapling
    Reguera, Leslie
    Rivera, Daniel G.
    [J]. CHEMICAL REVIEWS, 2019, 119 (17) : 9836 - 9860
  • [16] Cyclic Tetrapeptides from Nature and Design: A Review of Synthetic Methodologies, Structure, and Function
    Sarojini, Vijayalekshmi
    Cameron, Alan J.
    Varnava, Kyriakos G.
    Denny, William A.
    Sanjayan, Gangadhar
    [J]. CHEMICAL REVIEWS, 2019, 119 (17) : 10318 - 10359
  • [17] On-resin synthesis of cyclic peptides via tandem N-to-S acyl migration and intramolecular thiol additive-free native chemical ligation
    Serra, Gloria
    Posada, Laura
    Hojo, Hironobu
    [J]. CHEMICAL COMMUNICATIONS, 2020, 56 (06) : 956 - 959
  • [18] Synthesis of selenocysteine-containing cyclic peptides via tandem N-to-S acyl migration and intramolecular selenocysteine-mediated native chemical ligation
    Shimodaira, Shingo
    Takei, Toshiki
    Hojo, Hironobu
    Iwaoka, Michio
    [J]. CHEMICAL COMMUNICATIONS, 2018, 54 (83) : 11737 - 11740
  • [19] Integrin inhibitors reaching the clinic
    Stupp, Roger
    Ruegg, Curzio
    [J]. JOURNAL OF CLINICAL ONCOLOGY, 2007, 25 (13) : 1637 - 1638
  • [20] Superfast desulfurization for protein chemical synthesis and modification
    Sun, Zhenquan
    Ma, Wenjie
    Cao, Yihui
    Wei, Tongyao
    Mo, Xiaoyong
    Chow, Hoi Yee
    Tan, Yi
    Cheung, Carina H. P.
    Liu, Jiamei
    Lee, Hung Kay
    Tse, Edmund C. M.
    Liu, Han
    Li, Xuechen
    [J]. CHEM, 2022, 8 (09): : 2542 - 2557