Androgen receptor: Difference between revisions

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===N-terminal Domain (NTD)(residues 1-555)===
===N-terminal Domain (NTD)(residues 1-555)===
This region is required for full transcriptional activity <ref name="Structure">PMID: 24909511</ref>, because of its necessary presence for LBD activation <ref name="AR">PMID: 33076388</ref>. It is the most variable domain, the sequence and lengths of the polyglutamine (CAG) and polyglycine (GGC) repeats are highly variable in the human population. It has been shown that the length of the polyglutamine repeat region affects the folding and structure of this domain, shorter repeats generally impose a higher AR transactivation activity, whereas longer repeats cause reduced activity  <ref name="Structure" />. In healthy people, one region of the AR gene shows up to 36 repeats of the CAG sequence. Patients with abnormally high numbers of CAG repeats can develop spinal muscular atrophy.
This region is required for full transcriptional activity <ref name="Structure">PMID: 24909511</ref>, because of its necessary presence for Ligand-Binding Domain (LBD) activation <ref name="AR">PMID: 33076388</ref>. The sequence and lengths of the polyglutamine (CAG) and polyglycine (GGC) repeats are highly variable in the human population, making this the most variable domain. It has been shown that the length of the CAG repeat region affects the folding and structure of this domain. Shorter repeats generally impose a higher AR transactivation activity, whereas longer repeats cause reduced activity  <ref name="Structure" />. In healthy people, one region of the AR gene shows up to 36 repeats of the CAG sequence. Patients with abnormally high numbers of CAG repeats can develop spinal muscular atrophy.


===DNA-Binding Domain (DBD) (residues 555-623)===
===DNA-Binding Domain (DBD) (residues 555-623)===
DBD is a cysteine-rich region that is the most highly conserved one of the steroid hormone nuclear receptor family <ref name="Structure" />, but it has been shown that binding of selective androgen response elements (AREs) allow the specific activation functions of the AR. They facilitate direct DNA binding of the AR to the promoter and enhancer regions of AR-regulated genes, thereby allowing the activation functions of the N-terminal and ligand binding domains to stimulate or repress the transcription of these genes <ref name="Bench to Bedside" />.
DBD is a cysteine-rich region that is the most highly conserved in the steroid hormone nuclear receptor family <ref name="Structure" />, but it has been shown that binding of selective androgen response elements (AREs) allow the specific activation functions of the AR. They facilitate direct DNA binding of the AR to the promoter and enhancer regions of AR-regulated genes, thereby allowing the activation functions of the N-terminal and LBD to stimulate or repress the transcription of these genes <ref name="Bench to Bedside" />.
AR is a dimer, like other steroid receptors, that binds to promoter DNA response elements consisting of two equal, common hexameric half-sites, separated by a 3 base-pair spacer <ref name="Structure" />, and this domain is critical for AR function, because it plays a role in dimerization and binding of dimerized AR to select motifs on target DNA <ref name="AR" />.
 
Each DBD monomer has a core composed of two zinc finger motifs, which consists of four cysteine residues that coordinate a zinc ion <ref name="Structure" />. The first is closer to the NTD which has the P box, which is identical in all the family, and controls the DNA binding specificity at AREs, located in the regulatory regions of genes <ref name="AR" />.  
AR is a dimer, like other steroid receptors, consisting of two equal, common hexameric half-sites, separated by a 3 base-pair spacer <ref name="Structure" />. This domain is critical for AR function, due to its role in dimerization and binding of dimerized AR to select motifs on target DNA <ref name="AR" />.
The second zinc finger motif facilitates AR dimerization via the D box. Additionally, a nuclear localization signal (NLS) is localized at the junction between the DBD and the hinge region and it binds to importin-α and facilitates nuclear translocation <ref name="AR" />. This is because passive transport across the nuclear pore complex has been suggested ranging from 20–40 kDa, in contrast, the AR, which is 110 kDa in size, requires help to be actively transported upon ligand binding <ref name="Structure" />.
Each DBD monomer has a core composed of two zinc finger motifs, which consists of four cysteine residues that coordinate a zinc ion <ref name="Structure" />. The first one is closer to the NTD which has the P box, identical in all the family, that controls the DNA binding specificity at AREs <ref name="AR" />. The second zinc finger motif facilitates AR dimerization via the D box.
The DBD is linked to the ligand binding domain by a flexible hinge region (residues 623-665), which is a linker poorly conserved. Once in the nucleus, this region also interacts with the DBD to identify specific sequences for AR binding. It controls the AR activation and degradation. Consequently, mutations in the hinge region can lead to enhanced AR potency <ref name="AR" />.
 
Additionally, a nuclear localisation signal (NLS) is localised at the junction between the DBD and the hinge region, it binds to importin-α and facilitates nuclear translocation <ref name="AR" />. Passive transport across the nuclear pore complex has been suggested ranging from 20–40 kDa, in contrast, the AR, which is 110 kDa in size, requires help to be actively transported upon ligand binding <ref name="Structure" />.
The DBD is linked to the LBD by a flexible hinge region (residues 623-665), which is a linker poorly conserved. Once in the nucleus, this region also interacts with the DBD to identify specific sequences for AR binding. It controls the AR activation and degradation. Consequently, mutations in the hinge region can lead to enhanced AR potency <ref name="AR" />.


===Ligand-Binding Domain (LBD) (residues 665-919)===
===Ligand-Binding Domain (LBD) (residues 665-919)===

Revision as of 12:10, 28 November 2022

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

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References