Xu Le, Wang Ying, Gillespie Dirk, Meissner Gerhard
Department of Biochemistry and Biophysics, University of North Carolina, Chapel Hill, North Carolina 27599, USA.
Biophys J. 2006 Jan 15;90(2):443-53. doi: 10.1529/biophysj.105.072538. Epub 2005 Oct 20.
The tetrameric ryanodine receptor calcium release channels (RyRs) are cation-selective channels that have pore architecture similar to that of K+ channels. We recently identified, in close proximity to the selectivity filter motif GGGIG, a conserved lumenal DE motif that has a critical role in RyR ion permeation and selectivity. Here, we substituted three aspartate residues (D4938, D4945, D4953) with asparagine and four glutamate residues (E4942, E4948, E4952, E4955) with glutamine hypothesized to line the cytosolic vestibule of the skeletal muscle RyR (RyR1). Mutant single channel properties were determined using the planar lipid bilayer method. Two mutants (D4938N, D4945N) showed a reduced K+ ion conductance, with D4938N also exhibiting a reduced selectivity for Ca2+ compared to K+. The cytosolic location of D4938 and D4945 was confirmed using the polycation neomycin. Both D4938N and D4945N exhibited an attenuated block by neomycin to a greater extent from the cytosolic than lumenal side. By comparison, charge neutralization of lumenal loop residues (D4899Q, E4900N) eliminated the block from the lumenal but not the cytosolic side. The results suggest that, in addition to negatively charged residues on the lumenal side, rings of four negative charges formed by D4938 and D4945 in the cytosolic vestibule determine RyR ion fluxes.
四聚体兰尼碱受体钙释放通道(RyRs)是阳离子选择性通道,其孔结构与钾离子通道相似。我们最近在靠近选择性过滤器基序GGGIG的位置发现了一个保守的腔内DE基序,该基序在RyR离子通透和选择性方面起关键作用。在此,我们将三个天冬氨酸残基(D4938、D4945、D4953)替换为天冬酰胺,将四个谷氨酸残基(E4942、E4948、E4952、E4955)替换为谷氨酰胺,推测这些残基位于骨骼肌RyR(RyR1)的胞质前庭。使用平面脂质双层法测定突变体单通道特性。两个突变体(D4938N、D4945N)的钾离子电导降低,与钾离子相比,D4938N对钙离子的选择性也降低。使用聚阳离子新霉素证实了D4938和D4945的胞质位置。D4938N和D4945N均表现出从胞质侧比腔侧受到新霉素的阻断作用减弱。相比之下,腔内环残基(D4899Q、E4900N)的电荷中和消除了来自腔侧而非胞质侧的阻断。结果表明,除了腔内带负电荷的残基外,由D4938和D4945在胞质前庭形成的四个负电荷环决定了RyR离子通量。