Main methods and tools for peptide development based on protein-protein interactions (PPIs)

被引:0
作者
Baeza, Javiera [1 ,2 ]
Bedoya, Mauricio [3 ,4 ]
Cruz, Pablo [2 ,5 ]
Ojeda, Paola [6 ]
Adasme-Carreno, Francisco [3 ,4 ]
Cerda, Oscar [2 ,5 ]
Gonzalez, Wendy [1 ,2 ]
机构
[1] Univ Talca, Fac Ingn, Ctr Bioinformat Simulac & Modelado CBSM, Talca, Chile
[2] Millennium Nucleus Ion Channel Associated Dis MiNI, Santiago, Chile
[3] Univ Catolica Maule, Ctr Invest Estudios Avanzados Maule CIEAM, Vicerrectoria Invest & Postgrad, Talca, Chile
[4] Univ Catolica Maule, Fac Med, Dept Med Traslac, Lab Bioinformat & Quim Computac LBQC, Talca, Chile
[5] Univ Chile, Fac Med, Programa Biol Celular & Mol, Inst Ciencias Biomed ICBM, Santiago, Chile
[6] Univ San Sebastian, Fac Med & Ciencia, Carrera Quim & Farm, Gen Lagos 1163, Valdivia 5090000, Chile
关键词
Competitive peptides; Protein-protein interactions; In silico peptide design; In vitro peptide evaluation; CELL-PENETRATING PEPTIDES; NOVO STRUCTURE PREDICTION; WEB SERVER; CYCLIC PEPTIDE; FLUORESCENCE COMPLEMENTATION; ANTITUMOR-ACTIVITY; AUTOMATED DOCKING; MASS-SPECTROMETRY; FAMILY PROTEINS; IN-VITRO;
D O I
10.1016/j.bbrc.2025.151623
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Protein-protein interactions (PPIs) regulate essential physiological and pathological processes. Due to their large and shallow binding surfaces, PPIs are often considered challenging drug targets for small molecules. Peptides offer a viable alternative, as they can bind these targets, acting as regulators or mimicking interaction partners. This review focuses on competitive peptides, a class of orthosteric modulators that disrupt PPI formation. We provide a concise yet comprehensive overview of recent advancements in in-silico peptide design, highlighting computational strategies that have improved the efficiency and accuracy of PPI-targeting peptides. Additionally, we examine cutting-edge experimental methods for evaluating PPI-based peptides. By exploring the interplay between computational design and experimental validation, this review presents a structured framework for developing effective peptide therapeutics targeting PPIs in various diseases.
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页数:19
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共 291 条
  • [1] Structure-Based Rational Design of Constrained Peptides as TIM-3 Inhibitors
    Abdel-Rahman, Somaya A.
    Ovchinnikov, Victor
    Gabr, Moustafa T.
    [J]. ACS MEDICINAL CHEMISTRY LETTERS, 2024, 15 (06): : 806 - 813
  • [2] Accurate structure prediction of biomolecular interactions with AlphaFold 3
    Abramson, Josh
    Adler, Jonas
    Dunger, Jack
    Evans, Richard
    Green, Tim
    Pritzel, Alexander
    Ronneberger, Olaf
    Willmore, Lindsay
    Ballard, Andrew J.
    Bambrick, Joshua
    Bodenstein, Sebastian W.
    Evans, David A.
    Hung, Chia-Chun
    O'Neill, Michael
    Reiman, David
    Tunyasuvunakool, Kathryn
    Wu, Zachary
    Zemgulyte, Akvile
    Arvaniti, Eirini
    Beattie, Charles
    Bertolli, Ottavia
    Bridgland, Alex
    Cherepanov, Alexey
    Congreve, Miles
    Cowen-Rivers, Alexander I.
    Cowie, Andrew
    Figurnov, Michael
    Fuchs, Fabian B.
    Gladman, Hannah
    Jain, Rishub
    Khan, Yousuf A.
    Low, Caroline M. R.
    Perlin, Kuba
    Potapenko, Anna
    Savy, Pascal
    Singh, Sukhdeep
    Stecula, Adrian
    Thillaisundaram, Ashok
    Tong, Catherine
    Yakneen, Sergei
    Zhong, Ellen D.
    Zielinski, Michal
    Zidek, Augustin
    Bapst, Victor
    Kohli, Pushmeet
    Jaderberg, Max
    Hassabis, Demis
    Jumper, John M.
    [J]. NATURE, 2024, 630 (8016) : 493 - 500
  • [3] Converting a peptide into a drug: Strategies to improve stability and bioavailability
    Adessi, C
    Soto, C
    [J]. CURRENT MEDICINAL CHEMISTRY, 2002, 9 (09) : 963 - 978
  • [4] Native Chemical Ligation and Extended Methods: Mechanisms, Catalysis, Scope, and Limitations
    Agouridas, Vangelis
    El Mahdi, Ouafaa
    Diemer, Vincent
    Cargoet, Marine
    Monbaliu, Jean-Christophe M.
    Melnyk, Oleg
    [J]. CHEMICAL REVIEWS, 2019, 119 (12) : 7328 - 7443
  • [5] CPPsite 2.0: a repository of experimentally validated cell-penetrating peptides
    Agrawal, Piyush
    Bhalla, Sherry
    Usmani, Salman Sadullah
    Singh, Sandeep
    Chaudhary, Kumardeep
    Raghava, Gajendra P. S.
    Gautam, Ankur
    [J]. NUCLEIC ACIDS RESEARCH, 2016, 44 (D1) : D1098 - D1103
  • [6] A Practical Peptide Synthesis Workflow Using Amino-Li-Resin
    Akintayo, Damilola Caleb
    Manne, Srinivasa Rao
    de la Torre, Beatriz G.
    Li, Yongfu
    Albericio, Fernando
    [J]. METHODS AND PROTOCOLS, 2022, 5 (05)
  • [7] High-resolution global peptide-protein docking using fragments-based PIPER-FlexPepDock
    Alam, Nawsad
    Goldstein, Oriel
    Xia, Bing
    Porter, Kathryn A.
    Kozakov, Dima
    Schueler-Furman, Ora
    [J]. PLOS COMPUTATIONAL BIOLOGY, 2017, 13 (12)
  • [8] De Novo Design of a Tumor-Penetrating Peptide
    Alberici, Luca
    Roth, Lise
    Sugahara, Kazuki N.
    Agemy, Lilach
    Kotamraju, Venkata R.
    Teesalu, Tambet
    Bordignon, Claudio
    Traversari, Catia
    Rizzardi, Gian-Paolo
    Ruoslahti, Erkki
    [J]. CANCER RESEARCH, 2013, 73 (02) : 804 - 812
  • [9] Series of Novel and Highly Potent Cyclic Peptide PCSK9 Inhibitors Derived from an mRNA Display Screen and Optimized via Structure-Based Design
    Alleyne, Candice
    Amin, Rupesh P.
    Bhatt, Bhavana
    Bianchi, Elisabetta
    Blain, J. Craig
    Boyer, Nicolas
    Branca, Danila
    Embrey, Mark W.
    Ha, Sookhee N.
    Jette, Kelli
    Johns, Douglas G.
    Kerekes, Angela D.
    Koeplinger, Kenneth A.
    LaPlaca, Derek
    Li, Nianyu
    Murphy, Beth
    Orth, Peter
    Ricardo, Alonso
    Salowe, Scott
    Seyb, Kathleen
    Shahripour, Aurash
    Stringer, Joseph R.
    Sun, Yili
    Tracy, Rodger
    Wu, Chengwei
    Xiong, Yusheng
    Youm, Hyewon
    Zokian, Hratch J.
    Tucker, Thomas J.
    [J]. JOURNAL OF MEDICINAL CHEMISTRY, 2020, 63 (22) : 13796 - 13824
  • [10] Parallel β-Sheet Secondary Structure Is Stabilized and Terminated by Interstrand Disulfide Cross-Linking
    Almeida, Aaron M.
    Li, Rebecca
    Gellman, Samuel H.
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2012, 134 (01) : 75 - 78