Combining pharmacophore fingerprints and PLS-discriminant analysis for virtual screening and SAR elucidation

Research output: Contribution to journalJournal articleResearchpeer-review

Standard

Combining pharmacophore fingerprints and PLS-discriminant analysis for virtual screening and SAR elucidation. / Askjær, Sune; Langgård, Morten.

In: Journal of Chemical Information and Modeling, Vol. 48, No. 3, 2008, p. 476-488.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Askjær, S & Langgård, M 2008, 'Combining pharmacophore fingerprints and PLS-discriminant analysis for virtual screening and SAR elucidation', Journal of Chemical Information and Modeling, vol. 48, no. 3, pp. 476-488. https://doi.org/10.1021/ci700356w

APA

Askjær, S., & Langgård, M. (2008). Combining pharmacophore fingerprints and PLS-discriminant analysis for virtual screening and SAR elucidation. Journal of Chemical Information and Modeling, 48(3), 476-488. https://doi.org/10.1021/ci700356w

Vancouver

Askjær S, Langgård M. Combining pharmacophore fingerprints and PLS-discriminant analysis for virtual screening and SAR elucidation. Journal of Chemical Information and Modeling. 2008;48(3):476-488. https://doi.org/10.1021/ci700356w

Author

Askjær, Sune ; Langgård, Morten. / Combining pharmacophore fingerprints and PLS-discriminant analysis for virtual screening and SAR elucidation. In: Journal of Chemical Information and Modeling. 2008 ; Vol. 48, No. 3. pp. 476-488.

Bibtex

@article{3c701ec0f41e11ddbf70000ea68e967b,
title = "Combining pharmacophore fingerprints and PLS-discriminant analysis for virtual screening and SAR elucidation",
abstract = "The criterion of success for the initial stages of a ligand-based drug-discovery project is dual. First, a set of suitable lead compounds has to be identified. Second, a level of a preliminary structure-activity relationship (SAR) of the identified ligands has to be established in order to guide the lead optimization toward a final drug candidate. This paper presents a combined approach to solving these two problems of ligand-based virtual screening and elucidation of SAR based on interplay between pharmacophore fingerprints and interpretation of PLS-discriminant analysis (PLS-DA) models. The virtual screening capability of the PLS-DA method is compared to group fusion maximum similarity searching in a test using four graph-based pharmacophore fingerprints over a range of 10 diverse targets. The PLS-DA method was generally found to do better than the Smax method. The GpiDAPH3 and PCH fingerprints proved superior to the TGT and TGD fingerprints. Examples of SAR elucidation based on PLS-DA model interpretation of model coefficients using a reversible pharmacophore fingerprint are given. In addition, we tested the hypothesis that feature combinations coming from the analysis of two-dimensional (2D) pharmacophore fingerprints could be used to elucidate a three-dimensional pharmacophore (Williams, C. Mol. Diversity 2006, 10 (3), 311-332). This test was performed by mapping of pharmacophore triplets found by the PLS-DA model to be important for activity onto relevant ligands aligned by the protein-binding site known from X-ray complexes. The result of this analysis assists in explaining the efficiency of 2D pharmacophore fingerprints as descriptors in virtual screening.",
keywords = "Former Faculty of Pharmaceutical Sciences",
author = "Sune Askj{\ae}r and Morten Langg{\aa}rd",
note = "Keywords: Discriminant Analysis; Models, Molecular; Pharmaceutical Preparations; Structure-Activity Relationship",
year = "2008",
doi = "10.1021/ci700356w",
language = "English",
volume = "48",
pages = "476--488",
journal = "Journal of Chemical Information and Modeling",
issn = "1549-9596",
publisher = "American Chemical Society",
number = "3",

}

RIS

TY - JOUR

T1 - Combining pharmacophore fingerprints and PLS-discriminant analysis for virtual screening and SAR elucidation

AU - Askjær, Sune

AU - Langgård, Morten

N1 - Keywords: Discriminant Analysis; Models, Molecular; Pharmaceutical Preparations; Structure-Activity Relationship

PY - 2008

Y1 - 2008

N2 - The criterion of success for the initial stages of a ligand-based drug-discovery project is dual. First, a set of suitable lead compounds has to be identified. Second, a level of a preliminary structure-activity relationship (SAR) of the identified ligands has to be established in order to guide the lead optimization toward a final drug candidate. This paper presents a combined approach to solving these two problems of ligand-based virtual screening and elucidation of SAR based on interplay between pharmacophore fingerprints and interpretation of PLS-discriminant analysis (PLS-DA) models. The virtual screening capability of the PLS-DA method is compared to group fusion maximum similarity searching in a test using four graph-based pharmacophore fingerprints over a range of 10 diverse targets. The PLS-DA method was generally found to do better than the Smax method. The GpiDAPH3 and PCH fingerprints proved superior to the TGT and TGD fingerprints. Examples of SAR elucidation based on PLS-DA model interpretation of model coefficients using a reversible pharmacophore fingerprint are given. In addition, we tested the hypothesis that feature combinations coming from the analysis of two-dimensional (2D) pharmacophore fingerprints could be used to elucidate a three-dimensional pharmacophore (Williams, C. Mol. Diversity 2006, 10 (3), 311-332). This test was performed by mapping of pharmacophore triplets found by the PLS-DA model to be important for activity onto relevant ligands aligned by the protein-binding site known from X-ray complexes. The result of this analysis assists in explaining the efficiency of 2D pharmacophore fingerprints as descriptors in virtual screening.

AB - The criterion of success for the initial stages of a ligand-based drug-discovery project is dual. First, a set of suitable lead compounds has to be identified. Second, a level of a preliminary structure-activity relationship (SAR) of the identified ligands has to be established in order to guide the lead optimization toward a final drug candidate. This paper presents a combined approach to solving these two problems of ligand-based virtual screening and elucidation of SAR based on interplay between pharmacophore fingerprints and interpretation of PLS-discriminant analysis (PLS-DA) models. The virtual screening capability of the PLS-DA method is compared to group fusion maximum similarity searching in a test using four graph-based pharmacophore fingerprints over a range of 10 diverse targets. The PLS-DA method was generally found to do better than the Smax method. The GpiDAPH3 and PCH fingerprints proved superior to the TGT and TGD fingerprints. Examples of SAR elucidation based on PLS-DA model interpretation of model coefficients using a reversible pharmacophore fingerprint are given. In addition, we tested the hypothesis that feature combinations coming from the analysis of two-dimensional (2D) pharmacophore fingerprints could be used to elucidate a three-dimensional pharmacophore (Williams, C. Mol. Diversity 2006, 10 (3), 311-332). This test was performed by mapping of pharmacophore triplets found by the PLS-DA model to be important for activity onto relevant ligands aligned by the protein-binding site known from X-ray complexes. The result of this analysis assists in explaining the efficiency of 2D pharmacophore fingerprints as descriptors in virtual screening.

KW - Former Faculty of Pharmaceutical Sciences

U2 - 10.1021/ci700356w

DO - 10.1021/ci700356w

M3 - Journal article

C2 - 18281962

VL - 48

SP - 476

EP - 488

JO - Journal of Chemical Information and Modeling

JF - Journal of Chemical Information and Modeling

SN - 1549-9596

IS - 3

ER -

ID: 10157677