Given its pivotal role in the viral life cycle, blocking integrase (IN) through IN strand transfer inhibitors (INSTIs) represented a breakthrough in the treatment of HIV infection, establishing these antiretroviral regimens as first‐line options against AIDS. However, the onset of drug‐resistant strains has challenged the efficacy of INSTIs, demanding new efforts in the search for therapeutic tools that work through alternative modes of action. In this context, the discovery of allosteric IN inhibitors (ALLINIs) has highlighted new opportunities to target IN beyond its active site, enhancing antiviral efficacy and the genetic barrier to resistance. Extensive drug discovery campaigns have resulted in the development of effective ALLINIs with both in vitro and in vivo efficacy, two of which are advancing in clinical trials as next‐generation therapeutic tools. Nevertheless, advancements in structural biology have critically aided in elucidating the underlying effects of ALLINIs, highlighting a complex, multimodal mode of action that ultimately yields defects in virion maturation. This review focuses on ALLINIs, providing a comprehensive overview of major drug discovery efforts devoted to this field, with an emphasis on the medicinal chemistry and structural biology findings that have revealed unprecedented opportunities for developing innovative and effective anti‐HIV drugs.
Francesco Saccoliti, E. Patacchini, Emanuele Cara et al.· ChemMedChem· 0 citations
A series of 4-phenyl pyrrolyl DKAs and their structural analogs characterized by molecular simplification or DKA isosteric replacement showed potency against both nsp13-associated activities exhibiting measurable IC50s in the low micromolar/submicromolar range, highlighting a promising dual inhibitory profile accordingly.
E. Patacchini, Francesco Saccoliti, Roberta Emmolo et al.· Molecules· 0 citations
New SARS-CoV-2 Mpro small-molecule inhibitors endowed with a pyrimidine scaffold are designed and synthesized and the mechanism of action of the most promising compound was elucidated.
Salvatore Nieddu, Giuseppe Ruggieri, Riccardo De Santis et al.· ACS Infectious Diseases· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.