THE ELECTROTOPOLOGICAL STATE - AN ATOM INDEX FOR QSAR

被引:146
作者
HALL, LH [1 ]
MOHNEY, B [1 ]
KIER, LB [1 ]
机构
[1] VIRGINIA COMMONWEALTH UNIV,DEPT MED CHEM,RICHMOND,VA 23298
来源
QUANTITATIVE STRUCTURE-ACTIVITY RELATIONSHIPS | 1991年 / 10卷 / 01期
关键词
ELECTROTOPOLOGICAL MAO INHIBITION; BETA-CARBOLINE BINDING; CHEMICAL GRAPH THEORY;
D O I
10.1002/qsar.19910100108
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
A new characterization of atoms in molecules is introduced as the electrotopological state index, which combines both the electronic character and the topological environment of each skeletal atom in a molecule. The electrotopological state (E-state) of a skeletal atom is formulated as an intrinsic value I(i) plus a perturbation term DELTA-I(i), arising from the electronic interaction within the molecular topological environment of each atom in the molecule. The atom intrinsic value, for first row atoms, is expressed at I = (delta-v + 1)delta-v and delta are the counts of valence and sigma electrons, respectively, for the atom in the molecular skeleton. The E-state, S(i), for atom i is defined as S(i) = I(j) + DELTA-I(j), where the influence of other atoms on atom i, DELTA-I(i), is given as SIGMA(I(j) - I(j))/r(ij)2; r(ij) is the graph separation between atoms i and j, counted as number of atoms, including i and j. Information in the electrotopological state is revealed by examples of various types of organic structures, including skeletal branching and heteroatom variation. The relation of the E-state value to NMR chemical shift is demonstrated for a series of carbonyl compounds. QSAR examples are given for hydrazide inhibition of MAO and for receptor binding of beta-carbolines. These examples reveal the power of this approach to QSAR using atom level indexes, computed directly from molecule connection tables, in which it is possible to identify atoms and regions in the molecule which are important for activity.
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页码:43 / 51
页数:9
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