Diaryl disulfides and thiosulfonates as combretastatin A-4 analogues: Synthesis, cytotoxicity and antitubulin activity. 2020

Rejane Gonçalves Diniz Khodyuk, and Ruoli Bai, and Ernest Hamel, and Estela Mariana Guimarães Lourenço, and Euzébio Guimarães Barbosa, and Adilson Beatriz, and Edson Dos Anjos Dos Santos, and Dênis Pires de Lima
Universidade Federal de Mato Grosso do Sul, Instituto de Química, Laboratório LP4, Av. Filinto Müller, 1555, 79074-460 Campo Grande (MS), Brazil.

Diaryl disulfides and diaryl thiosulfonates were synthesized with the two phenyl rings of all compounds bearing identical halide substituents. Because of structural similarity to the potent antimitotic natural product combretastatin A-4 (CA-4), the compounds were examined for inhibition of tubulin polymerization, and the thiosulfonates were more active than the disulfides. The nine thiosulfonates had IC50 values ranging from 1.2 to 9.1 µM, as compared with 1.3 µM obtained with CA-4. The compounds thus ranged from equipotent with CA-4 to 7-fold less active. The nine disulfides had IC50 values ranging from 1.2 to 5.1 µM, as compared with 0.54 µM obtained with CA-4. The compounds thus ranged from less than half as active as CA-4 to over 9-fold less active. The most active members of each group, 2 g and 3c, in the assembly assay were modeled into the colchicine site. Compound 3c had significant hydrophobic interactions with β-tubulin residues CYS 241 and ALA 250, and its thiosulfonate bridge made a hydrogen bond with β-tubulin residue ASN 258. Compound 2 g had hydrophobic interactions with β-tubulin residues ALA 250, CYS 241 and ALA 254, but there was no significant interaction of the disulfide bridge with tubulin.

UI MeSH Term Description Entries
D008958 Models, Molecular Models used experimentally or theoretically to study molecular shape, electronic properties, or interactions; includes analogous molecules, computer-generated graphics, and mechanical structures. Molecular Models,Model, Molecular,Molecular Model
D004220 Disulfides Chemical groups containing the covalent disulfide bonds -S-S-. The sulfur atoms can be bound to inorganic or organic moieties. Disulfide
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D001632 Bibenzyls Compounds that include 1,2-diphenylethane in their structure. Bisbenzyls
D013329 Structure-Activity Relationship The relationship between the chemical structure of a compound and its biological or pharmacological activity. Compounds are often classed together because they have structural characteristics in common including shape, size, stereochemical arrangement, and distribution of functional groups. Relationship, Structure-Activity,Relationships, Structure-Activity,Structure Activity Relationship,Structure-Activity Relationships
D013886 Thiosulfonic Acids Inorganic or organic oxy acids of sulfur which contain the general formula RS2O2H. Acids, Thiosulfonic
D045744 Cell Line, Tumor A cell line derived from cultured tumor cells. Tumor Cell Line,Cell Lines, Tumor,Line, Tumor Cell,Lines, Tumor Cell,Tumor Cell Lines
D049109 Cell Proliferation All of the processes involved in increasing CELL NUMBER including CELL DIVISION. Cell Growth in Number,Cellular Proliferation,Cell Multiplication,Cell Number Growth,Growth, Cell Number,Multiplication, Cell,Number Growth, Cell,Proliferation, Cell,Proliferation, Cellular
D050257 Tubulin Modulators Agents that interact with TUBULIN to inhibit or promote polymerization of MICROTUBULES. Microtubule Modulator,Tubulin Inhibitor,Tubulin Modulator,Tubulin Polymerization Inhibitor,Tubulin Polymerization Promoter,Tubulin Promoter,Microtubule Modulators,Tubulin Inhibitors,Tubulin Polymerization Inhibitors,Tubulin Polymerization Promoters,Tubulin Promoters,Inhibitor, Tubulin,Inhibitor, Tubulin Polymerization,Inhibitors, Tubulin,Inhibitors, Tubulin Polymerization,Modulator, Microtubule,Modulator, Tubulin,Modulators, Microtubule,Modulators, Tubulin,Polymerization Inhibitor, Tubulin,Polymerization Inhibitors, Tubulin,Polymerization Promoter, Tubulin,Polymerization Promoters, Tubulin,Promoter, Tubulin,Promoter, Tubulin Polymerization,Promoters, Tubulin,Promoters, Tubulin Polymerization

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