Quality Assessment of Selected Protein Structures Derived from Homology Modeling and AlphaFold

被引:10
|
作者
Binbay, Furkan Ayberk [1 ]
Rathod, Dhruv Chetanbhai [1 ]
George, Ajay Abisheck Paul [2 ]
Imhof, Diana [1 ]
机构
[1] Univ Bonn, Pharmaceut Inst, Pharmaceut Biochem & Bioanalyt, Immenburg 4, D-53121 Bonn, Germany
[2] BioSolveIT GmbH, Ziegelei 79, D-53757 St Augustin, Germany
关键词
homology modeling; AlphaFold; G alpha i1; G alpha s; hemopexin; APC; protein model; quality assessment; CRYSTAL-STRUCTURE; STRUCTURE VALIDATION; MOLPROBITY; PREDICTION; GDP; CHALLENGES; REGULATORS; DISCOVERY; DOCKING; COMPLEX;
D O I
10.3390/ph16121662
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
With technology advancing, many prediction algorithms have been developed to facilitate the modeling of inherently dynamic and flexible macromolecules such as proteins. Improvements in the prediction of protein structures have attracted a great deal of attention due to the advantages they offer, e.g., in drug design. While trusted experimental methods, such as X-ray crystallography, NMR spectroscopy, and electron microscopy, are preferred structure analysis techniques, in silico approaches are also being widely used. Two computational methods, which are on opposite ends of the spectrum with respect to their modus operandi, i.e., homology modeling and AlphaFold, have been established to provide high-quality structures. Here, a comparative study of the quality of structures either predicted by homology modeling or by AlphaFold is presented based on the characteristics determined by experimental studies using structure validation servers to fulfill the purpose. Although AlphaFold is able to predict high-quality structures, high-confidence parts are sometimes observed to be in disagreement with experimental data. On the other hand, while the structures obtained from homology modeling are successful in incorporating all aspects of the experimental structure used as a template, this method may struggle to accurately model a structure in the absence of a suitable template. In general, although both methods produce high-quality models, the criteria by which they are superior to each other are different and thus discussed in detail.
引用
收藏
页数:22
相关论文
共 50 条
  • [31] FAMSD: A Powerful Protein Modeling Platform that Combines Alignment Methods, Homology Modeling, 3D Structure Quality Estimation and Molecular Dynamics
    Kanou, Kazuhiko
    Iwadate, Masuo
    Hirata, Tomoko
    Terashi, Genki
    Umeyama, Hideaki
    Takeda-Shitaka, Mayuko
    CHEMICAL & PHARMACEUTICAL BULLETIN, 2009, 57 (12) : 1335 - 1342
  • [32] Biochemical characterization and homology modeling of a purine-specific ribonucleoside hydrolase from the archaeon Sulfolobus solfataricus: Insights into mechanisms of protein stabilization
    Porcelli, Marina
    Peiluso, Iolanda
    Marabotti, Anna
    Facchiano, Angelo
    Cacciapuoti, Giovanna
    ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 2009, 483 (01) : 55 - 65
  • [33] A METHOD TO CONFIGURE PROTEIN SIDE-CHAINS FROM THE MAIN-CHAIN TRACE IN HOMOLOGY MODELING
    EISENMENGER, F
    ARGOS, P
    ABAGYAN, R
    JOURNAL OF MOLECULAR BIOLOGY, 1993, 231 (03) : 849 - 860
  • [34] A protein-RNA docking benchmark (II): Extended set from experimental and homology modeling data
    Perez-Cano, Laura
    Jimenez-Garcia, Brian
    Fernandez-Recio, Juan
    PROTEINS-STRUCTURE FUNCTION AND BIOINFORMATICS, 2012, 80 (07) : 1872 - 1882
  • [35] The Challenge to the Rule of Homology Modeling: Folding Mechanism Study of Protein GA and GB with High Sequence Identity but Different Native Structures
    Wu, Xue
    Jin, Zhong
    Xiu, Zhilong
    Li, Guohui
    CURRENT PHARMACEUTICAL DESIGN, 2013, 19 (12) : 2282 - 2292
  • [36] Deep learning in modeling protein complex structures: From contact prediction to end-to-end approaches
    Lin, Peicong
    Li, Hao
    Huang, Sheng-You
    CURRENT OPINION IN STRUCTURAL BIOLOGY, 2024, 85
  • [37] Structures and homology modeling of chicken major histocompatibility complex protein class I (BF2 and β2m)
    Yan, RQ
    Li, XS
    Yang, TY
    Xia, C
    MOLECULAR IMMUNOLOGY, 2006, 43 (07) : 1040 - 1046
  • [38] Quality assessment of DEM derived from topographic maps for geomorphometric purposes
    Szypula, Bartlomiej
    OPEN GEOSCIENCES, 2019, 11 (01) : 843 - 865
  • [39] Homology Modeling and Molecular Dynamics Simulation Combined with X-ray Solution Scattering Defining Protein Structures of Thromboxane and Prostacyclin Synthases
    Yang, Hsiao-Ching
    Yang, Cheng-Han
    Huang, Ming-Yi
    Lu, Jyh-Feng
    Wang, Jinn-Shyan
    Yeh, Yi-Qi
    Jeng, U-Ser
    JOURNAL OF PHYSICAL CHEMISTRY B, 2017, 121 (50) : 11229 - 11240
  • [40] Homology modeling, molecular dynamics, and docking studies of pattern-recognition transmembrane protein-lipopolysaccharide and β-1,3 glucan-binding protein from Fenneropenaeus indicus
    Sivakamavalli, Jeyachandran
    Tripathi, Sunil Kumar
    Singh, Sanjeev Kumar
    Vaseeharan, Baskaralingam
    JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS, 2015, 33 (06) : 1269 - 1280