Frontiers in Neuroscience (Feb 2019)

Multifaceted Regulations of the Serotonin Transporter: Impact on Antidepressant Response

  • Anne Baudry,
  • Anne Baudry,
  • Mathea Pietri,
  • Mathea Pietri,
  • Jean-Marie Launay,
  • Jean-Marie Launay,
  • Odile Kellermann,
  • Odile Kellermann,
  • Benoit Schneider,
  • Benoit Schneider

DOI
https://doi.org/10.3389/fnins.2019.00091
Journal volume & issue
Vol. 13

Abstract

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Serotonin transporter, SERT (SLC64A for solute carrier family 6, member A4), is a twelve transmembrane domain (TMDs) protein that assumes the uptake of serotonin (5-HT) through dissipation of the Na+ gradient established by the electrogenic pump Na/K ATPase. Abnormalities in 5-HT level and signaling have been associated with various disorders of the central nervous system (CNS) such as depression, obsessive-compulsive disorder, anxiety disorders, and autism spectrum disorder. Since the 50s, SERT has raised a lot of interest as being the target of a class of antidepressants, the Serotonin Selective Reuptake Inhibitors (SSRIs), used in clinics to combat depressive states. Because of the refractoriness of two-third of patients to SSRI treatment, a better understanding of the mechanisms regulating SERT functions is of priority. Here, we review how genetic and epigenetic regulations, post-translational modifications of SERT, and specific interactions between SERT and a set of diverse partners influence SERT expression, trafficking to and away from the plasma membrane and activity, in connection with the neuronal adaptive cell response to SSRI antidepressants.

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