HOAT1

From Proteopedia

(Difference between revisions)
Jump to: navigation, search
Line 118: Line 118:
*Its binding site overlaps with both Site 1 (partially) and Site 3.
*Its binding site overlaps with both Site 1 (partially) and Site 3.
 +
 +
*In the binding pocket of Site 1, surrounded by 16 residues located within a 5 A ˚ (M31, N35, M142, V145, G227, Y230, W346, Y353, Y354, K382, D378, F438, S462, A465, R466, and S469).
*It engages in specific, high-affinity interactions with key residues:
*It engages in specific, high-affinity interactions with key residues:
Line 137: Line 139:
:*'''Path A''' (between TM2 and TM11) is narrowed from ~5 Å to ~4 Å.
:*'''Path A''' (between TM2 and TM11) is narrowed from ~5 Å to ~4 Å.
-
:*'''Path B''' (between TM5 and TM8) is completely blocked.
+
:*'''Path B''' (between TM5 and TM8) is completely blocked. Restriction of the access route to path B likely limits the entry of substrates to Site 1 and the exit of substrates from the binding pocket.
This structural rearrangement is caused by a slight inward movement of the cytoplasmic ends of TM5, TM8, TM10, and TM11 toward the binding pocket.
This structural rearrangement is caused by a slight inward movement of the cytoplasmic ends of TM5, TM8, TM10, and TM11 toward the binding pocket.
'''3. Locked Conformation'''
'''3. Locked Conformation'''
 +
 +
By constricting the cytoplasmic access routes, probenecid does not just compete for the substrate-binding site; it stabilizes the transporter in an apo-like, inward-facing conformation that is inaccessible to cytosolic substrates. This prevents the entry of new substrates and likely traps the transporter in this non-functional state, effectively "locking" it and preventing the conformational changes necessary for the transport cycle.

Revision as of 12:04, 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

Proteopedia Page Contributors and Editors (what is this?)

Kaushki Sharma

Personal tools