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'''2. Key Interacting Residues'''
'''2. Key Interacting Residues'''


:*Olmesartan is surrounded by residues from multiple transmembrane helices (TM1, TM4, TM5, TM7, TM10, TM11) within a 5 Å distance. The critical interactions involve:
Olmesartan is surrounded by residues from multiple transmembrane helices (TM1, TM4, TM5, TM7, TM10, TM11) within a 5 Å distance. The critical interactions involve:


*'''Aromatic and Hydrophobic Cage:'''
*'''Aromatic and Hydrophobic Cage:'''
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::*This suggests these residues not only form a gate but also directly interact with large, transportable substrates like olmesartan.
::*This suggests these residues not only form a gate but also directly interact with large, transportable substrates like olmesartan.


''' Chloride Ion Coordination is Essential'''
'''3. Chloride Ion Coordination is Essential'''


A key finding is the role of a chloride ion in stabilizing the olmesartan-bound state.
A key finding is the role of a chloride ion in stabilizing the olmesartan-bound state.
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:*'''Indirect Role of S203:''' While S203 does not directly contact olmesartan, it is critical for chloride coordination. This is a major species-specific difference, as rat OAT1 has an alanine at this position.
:*'''Indirect Role of S203:''' While S203 does not directly contact olmesartan, it is critical for chloride coordination. This is a major species-specific difference, as rat OAT1 has an alanine at this position.


*'''Functional Evidence of Chloride Dependence:'''
:*'''Functional Evidence of Chloride Dependence:'''


::*The IC₅₀ of olmesartan is 2.01 µM in chloride-rich conditions but improves to 0.91 µM in chloride-depleted conditions, suggesting a more complex relationship where chloride may facilitate transport.
::*The IC₅₀ of olmesartan is 2.01 µM in chloride-rich conditions but improves to 0.91 µM in chloride-depleted conditions, suggesting a more complex relationship where chloride may facilitate transport.

Revision as of 07:04, 30 November 2025

cryo-electron microscopy

Cryo-EM structures of human OAT1 reveal drug binding and inhibition mechanisms[1].

Hyung-Min Jeon, Jisung Eun, Kelly H. Kim, and Youngjin Kim.

Cell Volume 33, Issue 11, P1856-1866.E5, November 06, 2025

https://doi.org/10.1016/j.str.2025.07.019

Structure Tour

Cryo-EM structure of human SLC22A6 (OAT1) in the apo-state, resolution 3.85Å

Drag the structure with the mouse to rotate




See Also

  • 1ofw: A list of all interactive 3D complements for publications from the Malvankar group.

Notes & References

  1. Cite error: Invalid <ref> tag; no text was provided for refs named m3