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The structural and functional analysis of hOAT1 in complex with the high-affinity antihypertensive drug olmesartan provides a detailed blueprint for substrate specificity and binding.
The structural and functional analysis of hOAT1 in complex with the high-affinity antihypertensive drug olmesartan provides a detailed blueprint for substrate specificity and binding.
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*'''Binding Location and Pose'''
+
'''Binding Location and Pose'''
:*Olmesartan binds within the central cavity of hOAT1 in an inward-facing conformation.
:*Olmesartan binds within the central cavity of hOAT1 in an inward-facing conformation.
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:*The drug adopts a diagonal orientation relative to the membrane plane, a pose that requires more space than the smaller inhibitor probenecid. This orientation is similar to its conformation when bound to the angiotensin receptor.
:*The drug adopts a diagonal orientation relative to the membrane plane, a pose that requires more space than the smaller inhibitor probenecid. This orientation is similar to its conformation when bound to the angiotensin receptor.
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*''' Key Interacting Residues'''
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''' 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:
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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.
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*''' Chloride Ion Coordination is Essential'''
+
''' 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.

Revision as of 06:52, 30 November 2025

Interactive 3D Complement in Proteopedia

About this image

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

PDB ID 9kkk

Drag the structure with the mouse to rotate




See Also

  • Malvankar: 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
  2. Cite error: Invalid <ref> tag; no text was provided for refs named strauss
  3. 3.0 3.1 3.2 3.3 3.4 Pace CN, Grimsley GR, Scholtz JM. Protein ionizable groups: pK values and their contribution to protein stability and solubility. J Biol Chem. 2009 May 15;284(20):13285-9. doi: 10.1074/jbc.R800080200. Epub 2009 , Jan 21. PMID:19164280 doi:http://dx.doi.org/10.1074/jbc.R800080200
  4. 4.0 4.1 Kajander T, Kahn PC, Passila SH, Cohen DC, Lehtio L, Adolfsen W, Warwicker J, Schell U, Goldman A. Buried charged surface in proteins. Structure. 2000 Nov 15;8(11):1203-14. PMID:11080642
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