Structure-based virtual screening identifies a small-molecule inhibitor of the profilin 1-actin interaction

被引:14
|
作者
Gau, David [1 ]
Lewis, Taber [2 ]
McDermott, Lee [3 ]
Wipf, Peter [1 ,2 ]
Koes, David [3 ]
Roy, Partha [1 ,4 ,5 ]
机构
[1] Univ Pittsburgh, Dept Bioengn, 306 CNBIO,300 Technol Dr, Pittsburgh, PA 15219 USA
[2] Univ Pittsburgh, Dept Chem, Pittsburgh, PA 15219 USA
[3] Univ Pittsburgh, Dept Computat & Syst Biol, Pittsburgh, PA 15219 USA
[4] Univ Pittsburgh, Dept Cell Biol, Pittsburgh, PA 15219 USA
[5] Univ Pittsburgh, Dept Pathol, Pittsburgh, PA 15219 USA
基金
美国国家卫生研究院; 美国国家科学基金会;
关键词
CELL-MIGRATION; ANGIOGENESIS; ACTIN; PHOSPHORYLATION; CYTOKINESIS; EFFICIENT; ACCURACY; INSIGHTS; DOCKING;
D O I
10.1074/jbc.M117.809137
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
Profilin 1 (Pfn1) is an important regulator of the actin cytoskeleton and plays a vital role in many actin-based cellular processes. Therefore, identification of a small-molecule intervention strategy targeted against the Pfn1-actin interaction could have broad utility in cytoskeletal research and further our understanding of the role of Pfn1 in actin-mediated biological processes. Based on an already resolved Pfn1-actin complex crystal structure, we performed structure-based virtual screening of small-molecule libraries to seek inhibitors of the Pfn1-actin interaction. We identified compounds that match the pharmacophore of the key actin residues of Pfn1-actin interaction and therefore have the potential to act as competitive inhibitors of this interaction. Subsequent biochemical assays identified two candidate compounds with nearly identical structures that can mitigate the effect of Pfn1 on actin polymerization in vitro. As a further proof-of-concept test for cellular effects of these compounds, we performed proximity ligation assays in endothelial cells (ECs) to demonstrate compound-induced inhibition of Pfn1-actin interaction. Consistent with the important role of Pfn1 in regulating actin polymerization and various fundamental actin-based cellular activities (migration and proliferation), treatment of these compounds reduced the overall level of cellular filamentous (F) actin, slowed EC migration and proliferation, and inhibited the angiogenic ability of ECs both in vitro and ex vivo. In summary, this study provides the first proof of principle of small-molecule-mediated interference with the Pfn1-actin interaction. Our findings may have potential general utility for perturbing actin-mediated cellular activities and biological processes.
引用
收藏
页码:2606 / 2616
页数:11
相关论文
共 50 条
  • [11] Discovery of a selective small molecule inhibitor of Tankyrase by structure-based screening
    Ryu, Hwani
    Kim, Ah-young
    Song, Jie-Young
    Hwang, Sang-Gu
    Ahn, Jiyeon
    CANCER RESEARCH, 2017, 77
  • [12] A novel small-molecule screening strategy identifies mitoxantrone as a RhoGTPase inhibitor
    Bidaud-Meynard, Aurelien
    Arma, Daniela
    Taouji, Said
    Laguerre, Michel
    Dessolin, Jean
    Rosenbaum, Jean
    Chevet, Eric
    Moreau, Violaine
    BIOCHEMICAL JOURNAL, 2013, 450 : 55 - 62
  • [13] Structure-based discovery of a novel small-molecule inhibitor of TEAD palmitoylation with anticancer activity
    Gridnev, Artem
    Maity, Subhajit
    Misra, Jyoti R. R.
    FRONTIERS IN ONCOLOGY, 2022, 12
  • [14] Gypsum-DL: an open-source program for preparing small-molecule libraries for structure-based virtual screening
    Patrick J. Ropp
    Jacob O. Spiegel
    Jennifer L. Walker
    Harrison Green
    Guillermo A. Morales
    Katherine A. Milliken
    John J. Ringe
    Jacob D. Durrant
    Journal of Cheminformatics, 11
  • [15] Gypsum-DL: an open-source program for preparing small-molecule libraries for structure-based virtual screening
    Ropp, Patrick J.
    Spiegel, Jacob O.
    Walker, Jennifer L.
    Green, Harrison
    Morales, Guillermo A.
    Milliken, Katherine A.
    Ringe, John J.
    Durrant, Jacob D.
    JOURNAL OF CHEMINFORMATICS, 2019, 11 (1)
  • [16] Structure-Based Approach To Improve a Small-Molecule Inhibitor by the Use of a Competitive Peptide Ligand
    Ono, Katsuki
    Takeuchi, Koh
    Ueda, Hiroshi
    Morita, Yasuhiro
    Tanimura, Ryuji
    Shimada, Ichio
    Takahashi, Hideo
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2014, 53 (10) : 2597 - 2601
  • [17] Identification of small-molecule glucokinase activator for type-2-diabetes treatment: a structure-based virtual screening approach
    Malini, Manokaran
    Thilagavathi, Ramasamy
    Vennila, Jannet
    Malgija, Beutline
    Praveena, Gandhi
    Selvam, Chelliah
    MOLECULAR SIMULATION, 2023, 49 (17) : 1596 - 1613
  • [18] Structure-Based Target-Specific Screening Leads to Small-Molecule CaMKII Inhibitors
    Xu, David
    Li, Liwei
    Zhou, Donghui
    Liu, Degang
    Hudmon, Andy
    Meroueh, Samy O.
    CHEMMEDCHEM, 2017, 12 (09) : 660 - 677
  • [19] Virtual Pharmacophore Screening Identifies Small-Molecule Inhibitors of the Rev1-CT/RIR Protein-Protein Interaction
    Dash, Radha C.
    Ozen, Zuleyha
    McCarthy, Kaitlyn R.
    Chatterjee, Nimrat
    Harris, Cynthia A.
    Rizzo, Alessandro A.
    Walker, Graham C.
    Korzhnev, Dmitry M.
    Hadden, M. Kyle
    CHEMMEDCHEM, 2019, 14 (17) : 1610 - 1617
  • [20] Discovery of potent small molecule inhibitors of DYRK1A by structure-based virtual screening and bioassay
    Wang, Di
    Wang, Fei
    Tan, Yexiong
    Dong, Liwei
    Chen, Lei
    Zhu, Weiliang
    Wang, Hongyang
    BIOORGANIC & MEDICINAL CHEMISTRY LETTERS, 2012, 22 (01) : 168 - 171