Introducing the metacore concept for multi-target ligand design

被引:5
|
作者
Stumpfe, Dagmar [1 ]
Hoch, Alexander [1 ]
Bajorath, Juergen [1 ]
机构
[1] Rheinische Friedrich Wilhelm Univ, Dept Life Sci Informat, LIMES Program Unit Chem Biol & Med Chem, B IT, Friedrich Hirzebruch Allee 6, D-53115 Bonn, Germany
来源
RSC MEDICINAL CHEMISTRY | 2021年 / 12卷 / 04期
关键词
DRUG DISCOVERY; POLYPHARMACOLOGY; PREDICTION;
D O I
10.1039/d1md00056j
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
In this work, we introduce the concept of "metacores" (MCs) for the organization of analog series (ASs) and multi-target (MT) ligand design. Generating compounds that are active against distantly related or unrelated targets is a central task in polypharmacology-oriented drug discovery. MCs are obtained by two-stage extraction of structural cores from ASs. The methodology is chemically intuitive and generally applicable. Each MC represents a set of related ASs and a template for the generation of new structures. We have systematically identified ASs that exclusively consisted of analogs with MT activity and determined their target profiles. From these ASs, a large set of 317 structurally diverse MCs was extracted, 127 of which were associated with different target families. The newly generated MCs were characterized and further prioritized on the basis of AS, compound, and target coverage. The analysis indicated that 260 MCs were pharmaceutically relevant. These MCs and the compound and target information they capture are made freely available for medicinal chemistry applications.
引用
收藏
页码:628 / 635
页数:8
相关论文
共 50 条
  • [41] A design of space robot multi-target capture algorithm based on DSP
    MA XiaonaHU BingliangLIU XuebinLIU HuiLIU QianwenLaboratory of Spectral Imaging TechnologyXian Institute of Optics and Precision Mechanics of CASXian PRChinaGraduate Institute of Chinese Academy of SciencesBeijing PRChina
    重庆邮电大学学报(自然科学版), 2009, 21 (02) : 166 - 172
  • [42] Optimal Signal/Filter Design for Multi-Target Detection in Colored Noise
    Patton, Lee K.
    Rigling, Brian D.
    2011 IEEE RADAR CONFERENCE (RADAR), 2011, : 276 - 281
  • [43] Component-Based Design for Multi-tenant Multi-target Support in the Cloud
    Ortega, Antonio Rico
    Noguera, Manuel
    Garrido, Jose Luis
    Benghazi, Kawtar
    Chung, Lawrence
    ENTERPRISE AND ORGANIZATIONAL MODELING AND SIMULATION, EOMAS 2013, 2013, 153 : 146 - 160
  • [44] Mission design for multi-target and multi-mode rendezvous missions to small bodies
    Huang JiangChuan
    Li XiangYu
    Qiao Dong
    Jia FeiDa
    Meng LinZhi
    SCIENTIA SINICA-PHYSICA MECHANICA & ASTRONOMICA, 2019, 49 (08)
  • [45] Multi-Target Detection and Adaptive Waveform Design for Cognitive MIMO Radar
    Wang, Li
    Zhu, Wei
    Zhang, Yunlei
    Liao, Qingmin
    Tang, Jun
    IEEE SENSORS JOURNAL, 2018, 18 (24) : 9962 - 9970
  • [46] Process design and network shape evaluation of multi-target collaborative navigation
    Liu, Rui
    Greve, Klaus
    Jiang, Nan
    Cui, Pengyu
    JOURNAL OF NAVIGATION, 2021, 74 (05): : 968 - 984
  • [47] A Novel Waveform Design for Multi-target Detection in Automotive FMCW Radar
    Zhou, Huiyang
    Cao, Pengfei
    Chen, Shujing
    2016 IEEE RADAR CONFERENCE (RADARCONF), 2016, : 1305 - 1309
  • [48] Recent Advances in the Rational Drug Design Based on Multi-target Ligands
    Yang, Ting
    Sui, Xin
    Yu, Bing
    Shen, Youqing
    Cong, Hailin
    CURRENT MEDICINAL CHEMISTRY, 2020, 27 (28) : 4720 - 4740
  • [49] An Adaptive Multi-Target Radar Waveform Design Based on PWS Algorithm
    Wang, Bin
    Li, Shumin
    Wang, Xishi
    Li, Xin
    ENTROPY, 2020, 22 (01) : 31
  • [50] Rational Design and Development of Novel Multi-target Inhibitors for Influenza Virus
    Ishitsubo, Erika
    Hosozawa, Takumi
    Igarashi, Manabu
    Kirshner, Karl N.
    Sriwilaijaroen, Nongluk
    Yokoe, Hiromasa
    Tubuki, Masayoshi
    Suzuki, Yasuo
    Tokiwa, Hiroaki
    GLYCOBIOLOGY, 2014, 24 (11) : 1128 - 1128