Serotonin Transporter: Difference between revisions

From Proteopedia
Jump to navigationJump to search
David Canner (talk | contribs)
No edit summary
David Canner (talk | contribs)
No edit summary
Line 6: Line 6:


====Structure of SERTs====
====Structure of SERTs====
      SERTs are members of the sodium-coupled transporter family. These proteins harness the pre-existing sodium gradients to catalyze the uptake of serotonin.  Unfortunately, no high-resolution structure of a SERT has been solved. Instead a prokaryotic homolog of SERT, i.e. LeuT has been solved. LeuT shares significant sequence homology, especially for areas of the protein critical for function. The **overall structure of SERT** is dominated by alpha helices. A pore similar to that seen in the [[Potassium Channel]] **passes directly through** the structure. Serotonin passes through this pore upon reuptake. **Sodium ions stabilize** the serotonin bound structure before releasing serotonin within the presynaptic neuron.  
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;SERTs are members of the sodium-coupled transporter family. These proteins harness the pre-existing sodium gradients to catalyze the uptake of serotonin.  Unfortunately, no high-resolution structure of a SERT has been solved. Instead a prokaryotic homolog of SERT, i.e. LeuT has been solved. LeuT shares significant sequence homology, especially for areas of the protein critical for function. The <scene name='Serotonin_Transporter/Helices/1'>overall structure of SERT</scene> is dominated by alpha helices. Serotonin passes through a <scene name='Serotonin_Transporter/Cavit/1'>central cavity</scene> upon reuptake. <scene name='Serotonin_Transporter/Sodium/1'>Sodium ions stabilize</scene> the serotonin bound structure before releasing serotonin within the presynaptic neuron.  


====Pharmaceutical Implications====
====Pharmaceutical Implications====

Revision as of 02:16, 24 April 2011

Structure of the SERT Homologue LeuT, (2q6h)

Drag the structure with the mouse to rotate

References

Proteopedia Page Contributors and Editors (what is this?)

David Canner, Michal Harel, Alexander Berchansky