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Updated: Jan 30, 2026

Crystal Structure of the N-terminal Domain of Ryanodine Receptor from Plutella xylostella
Published on: November 30, 2018
The FKBP12 subunit modifies the long-range allosterism of the ryanodine receptor
Tyler W E Steele1, Montserrat Samsó1
1Department of Physiology and Biophysics, Virginia Commonwealth University, Richmond, VA 23298, United States.
Abstract:
Ryanodine receptors (RyRs) are large conductance intracellular channels controlling intracellular calcium homeostasis in myocytes, neurons, and other cell types. Loss of RyR's constitutive cytoplasmic partner FKBP results in channel sensitization, dominant subconductance states, and increased cytoplasmic Ca2+. FKBP12 binds to RyR1's cytoplasmic assembly 130 Å away from the ion gate at four equivalent sites in the RyR1 tetramer. To understand how FKBP12 binding alters RyR1's channel properties, we studied the 3D structure of RyR1 alone in the closed conformation in the context of the open and closed conformations of FKBP12-bound RyR1. We analyzed the metrics of conformational changes of existing structures, the structure of the ion gate, and carried out multivariate statistical analysis of thousands of individual cryoEM RyR1 particles. We find that under closed state conditions, in the presence of FKBP12, the cytoplasmic domain of RyR1 adopts an upward conformation, whereas absence of FKBP12 results in a relaxed conformation, while the ion gate remains closed. The relaxed conformation is intermediate between the RyR1-FKBP12 complex closed (upward) and open (downward) conformations. The closed-relaxed conformation of RyR1 appears to be consistent with a lower energy barrier separating the closed and open states of RyR1-FKBP12, and suggests that FKBP12 plays an important role by restricting conformations within RyR1's conformational landscape.
Insights
Loss of FKBP12 binding to ryanodine receptors (RyRs) alters channel conformation, potentially lowering the energy barrier for opening. This suggests FKBP12 restricts RyR1
Area of Science:
- Molecular and Cellular Biology
- Biophysics
- Structural Biology
Background:
- Ryanodine receptors (RyRs) are critical intracellular calcium channels.
- FKBP12 is a key cytoplasmic partner of RyRs, influencing channel gating.
- Loss of FKBP12 leads to RyR sensitization and altered calcium homeostasis.
Purpose of the Study:
- To elucidate the structural mechanisms by which FKBP12 binding affects RyR1 channel properties.
- To understand the conformational landscape of RyR1 in the presence and absence of FKBP12.
Main Methods:
- Analysis of cryo-electron microscopy (cryo-EM) structures of RyR1 alone and bound to FKBP12.
- Comparison of closed, open, and intermediate conformations.
- Multivariate statistical analysis of RyR1 particle conformations.
Main Results:
- In the closed state, FKBP12 binding induces an upward conformation of the RyR1 cytoplasmic domain.
- Absence of FKBP12 results in a relaxed, intermediate conformation while the ion gate remains closed.
- The relaxed conformation suggests a reduced energy barrier between closed and open RyR1 states.
Conclusions:
- FKBP12 binding plays a crucial role in restricting RyR1's conformational states.
- The interaction of FKBP12 with RyR1 stabilizes the channel, preventing premature opening.
- Understanding these structural dynamics is key to comprehending calcium channelopathies.
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