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Combined 4D-QSAR and target-based approaches for the determination of bioactive Isatin derivatives

Sahin, K.; Saripinar, E.; Durdagi, S.


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  <identifier identifierType="URL">https://aperta.ulakbim.gov.tr/record/230752</identifier>
  <creators>
    <creator>
      <creatorName>Sahin, K.</creatorName>
      <givenName>K.</givenName>
      <familyName>Sahin</familyName>
      <affiliation>Bahcesehir Univ, Sch Med, Dept Biophys, Computat Biol &amp; Mol Simulat Lab, Istanbul, Turkey</affiliation>
    </creator>
    <creator>
      <creatorName>Saripinar, E.</creatorName>
      <givenName>E.</givenName>
      <familyName>Saripinar</familyName>
      <affiliation>Erciyes Univ, Dept Chem, Fac Sci, Kayseri, Turkey</affiliation>
    </creator>
    <creator>
      <creatorName>Durdagi, S.</creatorName>
      <givenName>S.</givenName>
      <familyName>Durdagi</familyName>
      <affiliation>Bahcesehir Univ, Sch Med, Dept Biophys, Computat Biol &amp; Mol Simulat Lab, Istanbul, Turkey</affiliation>
    </creator>
  </creators>
  <titles>
    <title>Combined 4D-Qsar And Target-Based Approaches For The Determination Of Bioactive Isatin Derivatives</title>
  </titles>
  <publisher>Aperta</publisher>
  <publicationYear>2021</publicationYear>
  <dates>
    <date dateType="Issued">2021-01-01</date>
  </dates>
  <resourceType resourceTypeGeneral="Text">Journal article</resourceType>
  <alternateIdentifiers>
    <alternateIdentifier alternateIdentifierType="url">https://aperta.ulakbim.gov.tr/record/230752</alternateIdentifier>
  </alternateIdentifiers>
  <relatedIdentifiers>
    <relatedIdentifier relatedIdentifierType="DOI" relationType="IsIdenticalTo">10.1080/1062936X.2021.1971760</relatedIdentifier>
  </relatedIdentifiers>
  <rightsList>
    <rights rightsURI="http://www.opendefinition.org/licenses/cc-by">Creative Commons Attribution</rights>
    <rights rightsURI="info:eu-repo/semantics/openAccess">Open Access</rights>
  </rightsList>
  <descriptions>
    <description descriptionType="Abstract">The hybrid method of the Electron-Conformational Genetic Algorithm (EC-GA) was used to determine the pharmacophore groups and to estimate anticancer activity in isatin derivatives using a robust 4D-QSAR software (EMRE). To build the model, each compound is represented by a set of conformers rather than a single conformation. The Electron Conformational Matrix of Congruity (ECMC) is composed via EMRE software. Electron Conformational Submatrix of Activity (ECSA) was calculated by the comparison of these matrices. Genetic algorithm was used to select important variables to predict theoretical activity. The model with the best seven parameters produced satisfactory results. The E statistics technique was applied to the generated EC-GA model to evaluate the individual contribution of each of the descriptors on biological activity. The r(2) and q(2) values of the training set compounds were found to be 0.95 and 0.93, respectively. Because no previous 4D-QSAR studies on isatin derivatives have been conducted, this study is important in the development of new isatin derivatives. In this study, 27 isatin derivatives whose activities were estimated using the hybrid EC-GA method were also investigated through molecular docking and molecular dynamics simulations for their BCL-2 inhibitory activity.</description>
  </descriptions>
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