Androgen receptor: Difference between revisions

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Nonetheless, the AR has some structural singularities that may not let this change of conformation, being the most important the additional C-terminal region in H12 anchored to the receptor by the formation of a ß-sheet, limiting its movement <ref name="ARA prostate" /><ref name="MoA" />. Due to this structural difference, in silico approaches have suggested that the antiandrogen effect of bicalutamide may be produced by the instability of the homodimer <ref name="MoA" />. That may lend to the homodimer dissociation preventing the transcriptional activity of the AR explaining the mechanism of action of this drug <ref name="MoA" />. Also, in silico analysis have shown that the W741L mutation leads to a bicalutamide-AR homodimer more stable, which may make some insight into the withdrawal syndrome observed in bicalutamide treatment <ref name="MoA" />.
Nonetheless, the AR has some structural singularities that may not let this change of conformation, being the most important the additional C-terminal region in H12 anchored to the receptor by the formation of a ß-sheet, limiting its movement <ref name="ARA prostate" /><ref name="MoA" />. Due to this structural difference, in silico approaches have suggested that the antiandrogen effect of bicalutamide may be produced by the instability of the homodimer <ref name="MoA" />. That may lend to the homodimer dissociation preventing the transcriptional activity of the AR explaining the mechanism of action of this drug <ref name="MoA" />. Also, in silico analysis have shown that the W741L mutation leads to a bicalutamide-AR homodimer more stable, which may make some insight into the withdrawal syndrome observed in bicalutamide treatment <ref name="MoA" />.
It is mandatory to understand by future research the whole mechanism of action of the current antiandrogens clinically used, with the objective of developing new drugs which can escape to the antagonist-agonist switch seen by bicalutamide, or other antiandrogens like flutamide.  
It is mandatory to understand by future research the whole mechanism of action of the current antiandrogens clinically used, with the objective of developing new drugs which can escape to the antagonist-agonist switch seen by bicalutamide, or other antiandrogens like flutamide.  
One example of this is apalutamide, a non-steroidal second generation antiandrogen <ref name="ARA prostate" /><ref name="Role of AR" /> approved for use in non metastatic castration resistant prostate cancer patients by the FDA in 2018 <ref name="Role of AR" />. See also the SPARTAN study <ref>PMID: 29420164</ref>: [https://clinicaltrials.gov/ct2/show/NCT01946204]. This new drug has promising uses but it is still associated with side effects like an increased level of falls in patients with the treatment vs placebo <ref>PMID: 36209239</ref>.
One example of this is apalutamide, a non-steroidal second generation antiandrogen <ref name="ARA prostate" /><ref name="Role of AR" /> approved for use in non metastatic castration resistant prostate cancer patients by the FDA in 2018 <ref name="Role of AR" />. See also the [https://clinicaltrials.gov/ct2/show/NCT01946204 SPARTAN study]<ref>PMID: 29420164</ref>. This new drug has promising uses but it is still associated with side effects like an increased level of falls in patients with the treatment vs placebo <ref>PMID: 36209239</ref>.





Revision as of 18:03, 27 November 2022

Human androgen receptor ligand-binding domain complex with modulator (PDB code 3b5r)

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References