Novel Polymyxin-Inspired Peptidomimetics Targeting the SARS-CoV-2 Spike:hACE2 Interface

被引:4
|
作者
Bugatti, Kelly [1 ]
Sartori, Andrea [1 ]
Battistini, Lucia [1 ]
Coppa, Crescenzo [2 ]
Vanhulle, Emiel [3 ]
Noppen, Sam [3 ]
Provinciael, Becky [3 ]
Naesens, Lieve [3 ]
Stevaert, Annelies [3 ]
Contini, Alessandro [2 ]
Vermeire, Kurt [3 ]
Zanardi, Franca [1 ]
机构
[1] Univ Parma, Dept Food & Drug, Parco Area Sci 27, I-43124 Parma, Italy
[2] Univ Milan, Dept Pharmaceut Sci, Via Venezian 21, I-20133 Milan, Italy
[3] Katholieke Univ Leuven, Dept Microbiol Immunol & Transplantat, Rega Inst, Lab Virol & Chemotherapy, Herestr 49, B-3000 Leuven, Belgium
关键词
cyclic peptides; protein-peptide interactions; antiviral agents; drug design; receptor-binding domain (RBD); solid-phase peptide synthesis; polymyxin-like peptidomimetics; SOLID-PHASE SYNTHESIS; PROTEIN; IDENTIFICATION; INHIBITOR; PEPTIDES; POTENT; ENTRY;
D O I
10.3390/ijms24108765
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
Though the bulk of the COVID-19 pandemic is behind, the search for effective and safe anti-SARS-CoV-2 drugs continues to be relevant. A highly pursued approach for antiviral drug development involves targeting the viral spike (S) protein of SARS-CoV-2 to prevent its attachment to the cellular receptor ACE2. Here, we exploited the core structure of polymyxin B, a naturally occurring antibiotic, to design and synthesize unprecedented peptidomimetics (PMs), intended to target contemporarily two defined, non-overlapping regions of the S receptor-binding domain (RBD). Monomers 1, 2, and 8, and heterodimers 7 and 10 bound to the S-RBD with micromolar affinity in cell-free surface plasmon resonance assays (K-D ranging from 2.31 mu M to 2.78 mu M for dimers and 8.56 mu M to 10.12 mu M for monomers). Although the PMs were not able to fully protect cell cultures from infection with authentic live SARS-CoV-2, dimer 10 exerted a minimal but detectable inhibition of SARS-CoV-2 entry in U87.ACE2(+) and A549.ACE2.TMPRSS2(+) cells. These results validated a previous modeling study and provided the first proof-of-feasibility of using medium-sized heterodimeric PMs for targeting the S-RBD. Thus, heterodimers 7 and 10 may serve as a lead for the development of optimized compounds, which are structurally related to polymyxin, with improved S-RBD affinity and anti-SARS-CoV-2 potential.
引用
收藏
页数:21
相关论文
共 50 条
  • [31] Mice humanized for MHC and hACE2 with high permissiveness to SARS-CoV-2 omicron replication
    Le Chevalier, Fabien
    Authie, Pierre
    Chardenoux, Sebastien
    Bourgine, Maryline
    Vesin, Benjamin
    Cussigh, Delphine
    Sassier, Yohann
    Fert, Ingrid
    Noirat, Amandine
    Nemirov, Kirill
    Anna, Francois
    Berard, Marion
    Guinet, Francoise
    Hardy, David
    Charneau, Pierre
    Lemonnier, Francois
    Langa-Vives, Francina
    Majlessi, Laleh
    MICROBES AND INFECTION, 2023, 25 (07)
  • [32] Inhibition of a broad range of SARS-CoV-2 variants by antiviral phytochemicals in hACE2 mice
    Kim, Eun-Ha
    Lee, Ba Wool
    Ryu, Byeol
    Cho, Hyo Moon
    Kim, Se-Mi
    Jang, Seung-Gyu
    Casel, Mark Anthony B.
    Rollon, Rare
    Yoo, Ji-Seung
    Poo, Haryoung
    Oh, Won Keun
    Choi, Young Ki
    ANTIVIRAL RESEARCH, 2022, 204
  • [33] The Infection and Pathogenicity of SARS-CoV-2 Variant B.1.351 in hACE2 Mice
    Qi Chen
    XingYao Huang
    Ying Tian
    Changfa Fan
    Mengxu Sun
    Chao Zhou
    Ruiting Li
    RongRong Zhang
    Guizhen Wu
    ChengFeng Qin
    Virologica Sinica, 2021, 36 (05) : 1232 - 1235
  • [34] The Infection and Pathogenicity of SARS-CoV-2 Variant B.1.351 in hACE2 Mice
    Chen, Qi
    Huang, Xing-Yao
    Tian, Ying
    Fan, Changfa
    Sun, Mengxu
    Zhou, Chao
    Li, Ruiting
    Zhang, Rong-Rong
    Wu, Guizhen
    Qin, Cheng-Feng
    VIROLOGICA SINICA, 2021, 36 (05) : 1232 - 1235
  • [35] The Tissue Distribution of SARS-CoV-2 in Transgenic Mice With Inducible Ubiquitous Expression of hACE2
    Dolskiy, Alexander A.
    Gudymo, Andrey S.
    Taranov, Oleg S.
    Grishchenko, Irina V.
    Shitik, Ekaterina M.
    Prokopov, Dmitry Yu
    Soldatov, Vladislav O.
    Sobolevskaya, Elvira V.
    Bodnev, Sergey A.
    Danilchenko, Natalia V.
    Moiseeva, Anastasia A.
    Torzhkova, Polina Y.
    Bulanovich, Yulia A.
    Onhonova, Galina S.
    Ivleva, Elena K.
    Kubekina, Marina V.
    Belykh, Andrey E.
    Tregubchak, Tatiana V.
    Ryzhikov, Alexander B.
    Gavrilova, Elena V.
    Maksyutov, Rinat A.
    Deykin, Alexey V.
    Yudkin, Dmitry V.
    FRONTIERS IN MOLECULAR BIOSCIENCES, 2022, 8
  • [36] The Infection and Pathogenicity of SARS-CoV-2 Variant B.1.351 in hACE2 Mice
    Qi Chen
    Xing-Yao Huang
    Ying Tian
    Changfa Fan
    Mengxu Sun
    Chao Zhou
    Ruiting Li
    Rong-Rong Zhang
    Guizhen Wu
    Cheng-Feng Qin
    Virologica Sinica, 2021, (05) : 1232 - 1235
  • [37] De novo design of potent and resilient hACE2 decoys to neutralize SARS-CoV-2
    Linsky, Thomas W.
    Vergara, Renan
    Codina, Nuria
    Nelson, Jorgen W.
    Walker, Matthew J.
    Su, Wen
    Barnes, Christopher O.
    Hsiang, Tien-Ying
    Esser-Nobis, Katharina
    Yu, Kevin
    Reneer, Z. Beau
    Hou, Yixuan J.
    Priya, Tanu
    Mitsumoto, Masaya
    Pong, Avery
    Lau, Uland Y.
    Mason, Marsha L.
    Chen, Jerry
    Chen, Alex
    Berrocal, Tania
    Peng, Hong
    Clairmont, Nicole S.
    Castellanos, Javier
    Lin, Yu-Ru
    Josephson-Day, Anna
    Baric, Ralph S.
    Fuller, Deborah H.
    Walkey, Carl D.
    Ross, Ted M.
    Swanson, Ryan
    Bjorkman, Pamela J.
    Gale, Michael, Jr.
    Blancas-Mejia, Luis M.
    Yen, Hui-Ling
    Silva, Daniel-Adriano
    SCIENCE, 2020, 370 (6521) : 1208 - +
  • [38] SARS-CoV-2 Spike Protein Intensifies Cerebrovascular Complications in Diabetic hACE2 Mice through RAAS and TLR Signaling Activation
    Burnett, Faith N.
    Coucha, Maha
    Bolduc, Deanna R.
    Hermanns, Veronica C.
    Heath, Stan P.
    Abdelghani, Maryam
    Macias-Moriarity, Lilia Z.
    Abdelsaid, Mohammed
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2023, 24 (22)
  • [39] Missense mutations in spike protein of SARS-CoV-2 delta variant contribute to the alteration in viral structure and interaction with hACE2 receptor
    Bin Mahmood, Tousif
    Hossan, Mohammad Imran
    Mahmud, Shafi
    Shimu, Mst Sharmin Sultana
    Alam, Md Jahidul
    Bhuyan, Md Mahfuzur Rahman
    Bin Emran, Talha
    IMMUNITY INFLAMMATION AND DISEASE, 2022, 10 (09)
  • [40] DNA aptamers inhibit SARS-CoV-2 spike-protein binding to hACE2 by an RBD- independent or dependent approach
    Silwal, Achut Prasad
    Thennakoon, Siddhartha Kalpa Samadhi
    Arya, Satya Prakash
    Postema, Rick Mason
    Jahan, Raunak
    Chien Minh Tran Phuoc
    Tan, Xiaohong
    THERANOSTICS, 2022, 12 (12): : 5522 - 5536