6.2
Internal receptors are soluble proteins found in either the cytoplasm or the nucleus. They bind signaling molecules called ligands inside the cell and trigger cellular responses, such as changes in gene expression.
Typically, ligands that bind to internal receptors are hydrophobic, nonpolar molecules that can diffuse through the plasma membrane without needing a membrane receptor. Some signaling molecules can also be synthesized inside the target cell.
Once a ligand binds, the receptor changes shape and interacts with other regulatory elements in the cell.
For example, the hormone testosterone, or its converted form dihydrotestosterone, also called DHT, binds to androgen receptors located in the cytoplasm.
After binding, the receptor-ligand complex changes structure and exposes its DNA-binding region. This change also allows the receptors to form dimers and move into the nucleus.
Inside the nucleus, the activated receptor binds to specific DNA sequences called hormone-response elements. In androgen signaling, these sequences are called androgen-response elements.
By binding to these DNA sequences, the receptor recruits other cellular machinery that helps regulate gene activity by increasing or decreasing the expression of specific target genes.
These changes in gene expression lead to androgen-related effects in target tissues, such as muscles, the prostate, and hair follicles.
Many cellular signals are hydrophilic and therefore cannot pass through the plasma membrane. However, small or hydrophobic signaling molecules can cro…
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