The Synergistic Use of Computation, Chemistry and Biology to Discover Novel Peptide-Based Drugs: The Time is Right

被引:25
作者
Audie, J. [1 ]
Boyd, C.
机构
[1] Sacred Heart Univ, Fairfield, CT 06825 USA
关键词
Peptides; structure-based drug design; virtual screening; phage display; therapeutics; docking; combinatorial; protein-protein; PROTEIN-PROTEIN INTERACTIONS; CELL-PENETRATING PEPTIDES; STRUCTURE-BASED DESIGN; FREE-ENERGY FUNCTION; PHAGE DISPLAY; ORAL DELIVERY; FLEXIBLE DOCKING; ANTIMICROBIAL PEPTIDES; INHIBITORY PEPTIDES; NATURAL REGULATORS;
D O I
10.2174/138161210790361425
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
The case for peptide-based drugs is compelling. Due to their chemical, physical and conformational diversity, and relatively unproblematic toxicity and immunogenicity, peptides represent excellent starting material for drug discovery. Nature has solved many physiological and pharmacological problems through the use of peptides, polypeptides and proteins. If nature could solve such a diversity of challenging biological problems through the use of peptides, it seems reasonable to infer that human ingenuity will prove even more successful. And this, indeed, appears to be the case, as a number of scientific and methodological advances are making peptides and peptide-based compounds ever more promising pharmacological agents. Chief among these advances are powerful chemical and biological screening technologies for lead identification and optimization, methods for enhancing peptide in vivo stability, bioavailability and cell-permeability, and new delivery technologies. Other advances include the development and experimental validation of robust computational methods for peptide lead identification and optimization. Finally, scientific analysis, biology and chemistry indicate the prospect of designing relatively small peptides to therapeutically modulate so-called 'undruggable' protein-protein interactions. Taken together a clear picture is emerging: through the synergistic use of the scientific imagination and the computational, chemical and biological methods that are currently available, effective peptide therapeutics for novel targets can be designed that surpass even the proven peptidic designs of nature.
引用
收藏
页码:567 / 582
页数:16
相关论文
共 153 条
  • [1] Pharmacological profiles of peptide drug candidates for the treatment of Alzheimer's disease
    Adessi, C
    Frossard, MJ
    Boissard, C
    Fraga, S
    Bieler, S
    Ruckle, T
    Vilbois, F
    Robinson, SM
    Mutter, M
    Banks, WA
    Soto, C
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (16) : 13905 - 13911
  • [2] Peptide prodrugs: Improved oral absorption of lopinavir, a HIV protease inhibitor
    Agarwal, Sheetal
    Boddu, S. H. S.
    Jain, Ritesh
    Samanta, Swapan
    Pal, Dhananjay
    Mitra, Ashim K.
    [J]. INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2008, 359 (1-2) : 7 - 14
  • [3] Ahlborn H, 2005, CURR OPIN DRUG DISC, V8, P384
  • [4] The process of structure-based drug design
    Anderson, AC
    [J]. CHEMISTRY & BIOLOGY, 2003, 10 (09): : 787 - 797
  • [5] Small-molecule inhibitors of protein-protein interactions: Progressing towards the dream
    Arkin, MR
    Wells, JA
    [J]. NATURE REVIEWS DRUG DISCOVERY, 2004, 3 (04) : 301 - 317
  • [6] A novel empirical free energy function that explains and predicts protein-protein binding affinities
    Audie, Joseph
    Scarlata, Suzanne
    [J]. BIOPHYSICAL CHEMISTRY, 2007, 129 (2-3) : 198 - 211
  • [7] Continued development of an empirical function for predicting and rationalizing protein-protein binding affinities
    Audie, Joseph
    [J]. BIOPHYSICAL CHEMISTRY, 2009, 143 (03) : 139 - 144
  • [8] Development and validation of an empirical free energy function for calculating protein-protein binding free energy surfaces
    Audie, Joseph
    [J]. BIOPHYSICAL CHEMISTRY, 2009, 139 (2-3) : 84 - 91
  • [9] Integration of virtual and high-throughput screening
    Bajorath, F
    [J]. NATURE REVIEWS DRUG DISCOVERY, 2002, 1 (11) : 882 - 894
  • [10] Delivery of peptides to the brain: Emphasis on therapeutic development
    Banks, William A.
    [J]. BIOPOLYMERS, 2008, 90 (05) : 589 - 594