AbstractThymidylate synthase (TS) is a well-recognized target for anticancer chemotherapy. Due to its key role in the sole de novo pathway for thymidylate synthesis and, hence, DNA synthesis, it is an essential enzyme in all life forms. As such, it has been recently recognized as a valuable new target against infectious diseases. There is also a pressing need for new antimicrobial agents that are able to target strains that are drug resistant toward currently used drugs. In this context, species specificity is of crucial importance to distinguish between the invading microorganism and the human host, yet thymidylate synthase is among the most highly conserved enzymes. We combine structure-based drug design with rapid synthetic techniques an...
International audienceNature has established two mechanistically and structurally unrelated families...
International audienceNature has established two mechanistically and structurally unrelated families...
Background: The substrate sites of enzymes are attractive targets for structure-based inhibitor desi...
Thymidylate synthase (TS) is a well-recognized target for anticancer chemotherapy. Due to its key ro...
Thymidylate synthase (TS) is a well-recognized target for anticancer chemotherapy. Due to its key ro...
AbstractThymidylate synthase (TS) is a well-recognized target for anticancer chemotherapy. Due to it...
ABSTRACT: Thymidylate synthase is an attractive target for antiproliferative drug design because of ...
Thymidylate synthase is an attractive target for antiproliferative drug design because of its key ro...
Thymidylate synthase is an attractive target for antiproliferative drug design because of its key ro...
Thymidylate synthase (TS) is a very interesting target in antiproliferative diseases. Its inhibition...
Recent methodologies applied to the drug discovery process, such as genomics and proteomics, have gr...
Thymidylate synthase (TS) is a very interesting target in antiproliferative diseases. Its inhibition...
Recent methodologies applied to the drug discovery process, such as genomics and proteomics, have gr...
International audienceNature has established two mechanistically and structurally unrelated families...
International audienceNature has established two mechanistically and structurally unrelated families...
International audienceNature has established two mechanistically and structurally unrelated families...
International audienceNature has established two mechanistically and structurally unrelated families...
Background: The substrate sites of enzymes are attractive targets for structure-based inhibitor desi...
Thymidylate synthase (TS) is a well-recognized target for anticancer chemotherapy. Due to its key ro...
Thymidylate synthase (TS) is a well-recognized target for anticancer chemotherapy. Due to its key ro...
AbstractThymidylate synthase (TS) is a well-recognized target for anticancer chemotherapy. Due to it...
ABSTRACT: Thymidylate synthase is an attractive target for antiproliferative drug design because of ...
Thymidylate synthase is an attractive target for antiproliferative drug design because of its key ro...
Thymidylate synthase is an attractive target for antiproliferative drug design because of its key ro...
Thymidylate synthase (TS) is a very interesting target in antiproliferative diseases. Its inhibition...
Recent methodologies applied to the drug discovery process, such as genomics and proteomics, have gr...
Thymidylate synthase (TS) is a very interesting target in antiproliferative diseases. Its inhibition...
Recent methodologies applied to the drug discovery process, such as genomics and proteomics, have gr...
International audienceNature has established two mechanistically and structurally unrelated families...
International audienceNature has established two mechanistically and structurally unrelated families...
International audienceNature has established two mechanistically and structurally unrelated families...
International audienceNature has established two mechanistically and structurally unrelated families...
Background: The substrate sites of enzymes are attractive targets for structure-based inhibitor desi...