O'Reilly Fiona M, Robert Mylène, Jona Istvan, Szegedi Csaba, Albrieux Mireille, Geib Sandrine, De Waard Michel, Villaz Michel, Ronjat Michel
Laboratoire Canaux Ioniques et Signalisation, Département de Biologie Moléculaire et Structurale, CEA-Grenoble, F-38054 Grenoble, France.
Biophys J. 2002 Jan;82(1 Pt 1):145-55. doi: 10.1016/S0006-3495(02)75381-2.
In skeletal muscle, excitation-contraction coupling involves a functional interaction between the ryanodine receptor (RyR) and the dihydropyridine receptor (DHPR). The domain corresponding to Thr(671)-Leu(690) of the II-III loop of the skeletal DHPR alpha(1)-subunit is able to regulate RyR properties and calcium release from sarcoplasmic reticulum, whereas the domain corresponding to Glu(724)-Pro(760) antagonizes this effect. Two peptides, covering these sequences (peptide A(Sk) and C(Sk), respectively) were immobilized on polystyrene beads. We demonstrate that peptide A(Sk) binds to the skeletal isoform of RyR (RyR1) whereas peptide C(Sk) does not. Using surface plasmon resonance detection, we show that 1) domain Thr(671)-Leu(690) is the only sequence of the II-III loop binding with RyR1 and 2) the interaction of peptide A(Sk) with RyR1 is not modulated by Ca(2+) (pCa 9-2) nor by Mg(2+) (up to 10 mM). In contrast, this interaction is strongly potentiated by the immunophilin FKBP12 (EC(50) = 10 nM) and inhibited by both rapamycin (IC(50) = 5 nM) and FK506. Peptide A(Sk) induces a 300% increase of the opening probability of the RyR1 incorporated in lipid bilayer. Removal of FKBP12 from RyR1 completely abolishes this effect of domain A(Sk) on RyR1 channel behavior. These results demonstrate a direct interaction of the RyR1 with the discrete domain of skeletal DHPR alpha(1)-subunit corresponding to Thr(671)-Leu(690) and show that the association of FKBP12 with RyR1 specifically modulates this interaction.
在骨骼肌中,兴奋 - 收缩偶联涉及兰尼碱受体(RyR)与二氢吡啶受体(DHPR)之间的功能性相互作用。骨骼肌DHPRα(1)亚基II - III环中对应于Thr(671)-Leu(690)的结构域能够调节RyR特性以及肌浆网中钙的释放,而对应于Glu(724)-Pro(760)的结构域则拮抗这种作用。分别覆盖这些序列的两种肽(肽A(Sk)和肽C(Sk))被固定在聚苯乙烯珠上。我们证明肽A(Sk)与RyR的骨骼肌同工型(RyR1)结合,而肽C(Sk)则不结合。使用表面等离子体共振检测,我们表明:1)结构域Thr(671)-Leu(690)是II - III环中与RyR1结合的唯一序列;2)肽A(Sk)与RyR1的相互作用不受Ca(2+)(pCa 9 - 2)或Mg(2+)(高达10 mM)的调节。相反,这种相互作用被亲免素FKBP12强烈增强(EC(50) = 10 nM),并被雷帕霉素(IC(50) = 5 nM)和FK506抑制。肽A(Sk)使掺入脂质双层的RyR1的开放概率增加300%。从RyR1中去除FKBP12完全消除了结构域A(Sk)对RyR1通道行为的这种影响。这些结果证明了RyR1与骨骼肌DHPRα(1)亚基对应于Thr(671)-Leu(690)的离散结构域之间的直接相互作用,并表明FKBP12与RyR1的结合特异性地调节了这种相互作用。