Sárközi Sándor, Szegedi Csaba, Lukács Balázs, Ronjat Michel, Jóna István
Department of Physiology, Research Center for Molecular Medicine, Medical and Health Science Center, University of Debrecen, Debrecen, H-4012, Hungary.
FEBS J. 2005 Jan;272(2):464-71. doi: 10.1111/j.1742-4658.2004.04486.x.
The effect of gadolinium ions on the sarcoplasmic reticulum (SR) calcium release channel/ryanodine receptor (RyR1) was studied using heavy SR (HSR) vesicles and RyR1 isolated from rabbit fast twitch muscle. In the [(3)H]ryanodine binding assay, 5 microM Gd(3+) increased the K(d) of the [(3)H]ryanodine binding of the vesicles from 33.8 nM to 45.6 nM while B(max), referring to the binding capacity, was not affected significantly. In the presence of 18 nM[(3)H]ryanodine and 100 microM free Ca(2+), Gd(3+) inhibited the binding of the radiolabeled ryanodine with an apparent K(d) value of 14.7 microM and a Hill coefficient of 3.17. In (45)Ca(2+) experiments the time constant of (45)Ca(2+) efflux from HSR vesicles increased from 90.9 (+/- 11.1) ms to 187.7 (+/- 24.9) ms in the presence of 20 microM gadolinium. In single channel experiments gadolinium inhibited the channel activity from both the cytoplasmic (cis) (IC(50) = 5.65 +/- 0.33 microM, n(Hill) = 4.71) and the luminal (trans) side (IC(50) = 5.47 +/- 0.24 microM, n(Hill) = 4.31). The degree of inhibition on the cis side didn't show calcium dependency in the 100 microM to 1 mM Ca(2+) concentration range which indicates no competition with calcium on its regulatory binding sites. When Gd(3+) was applied at the trans side, EGTA was present at the cis side to prevent the binding of Gd(+3) to the cytoplasmic calcium binding regulatory sites of the RyR1 if Gd(3+) accidentally passed through the channel. The inhibition of the channel did not show any voltage dependence, which would be the case if Gd(3+) exerted its effect after getting to the cis side. Our results suggest the presence of inhibitory binding sites for Gd(3+) on both sides of the RyR1 with similar Hill coefficients and IC(50) values.
利用重肌浆网(HSR)囊泡和从兔快肌中分离出的兰尼碱受体1(RyR1),研究了钆离子对肌浆网(SR)钙释放通道/兰尼碱受体1(RyR1)的影响。在[³H]兰尼碱结合试验中,5 μM钆离子(Gd³⁺)使囊泡的[³H]兰尼碱结合解离常数(Kd)从33.8 nM增加到45.6 nM,而代表结合能力的最大结合量(Bmax)未受到显著影响。在含有18 nM [³H]兰尼碱和100 μM游离钙离子(Ca²⁺)的情况下,Gd³⁺抑制放射性标记兰尼碱的结合,其表观Kd值为14.7 μM,希尔系数为3.17。在⁴⁵Ca²⁺实验中,在20 μM钆存在的情况下,HSR囊泡中⁴⁵Ca²⁺外流的时间常数从90.9(±11.1)毫秒增加到187.7(±24.9)毫秒。在单通道实验中,钆从胞质侧(顺式,IC50 = 5.65 ± 0.33 μM,希尔系数n(Hill) = 4.71)和腔侧(反式,IC50 = 5.47 ± 0.24 μM,希尔系数n(Hill) = 4.31)均抑制通道活性。在100 μM至1 mM Ca²⁺浓度范围内,顺式侧的抑制程度未显示出钙依赖性,这表明在其调节结合位点上与钙无竞争。当在反式侧施加Gd³⁺时,在顺式侧存在乙二醇双乙醚四乙酸(EGTA),以防止如果Gd³⁺意外通过通道而与RyR1的胞质钙结合调节位点结合。通道的抑制未显示出任何电压依赖性,而如果Gd³⁺在到达顺式侧后发挥作用则会出现这种情况。我们的结果表明,在RyR1两侧存在Gd³⁺的抑制性结合位点,其希尔系数和IC50值相似。