Boschek Curt B, Jones Terry E, Squier Thomas C, Bigelow Diana J
Cell Biology and Biochemistry Group, Biological Sciences Division, Pacific Northwest National Laboratory, Richland, Washington 99352, USA.
Biochemistry. 2007 Sep 18;46(37):10621-8. doi: 10.1021/bi700655h. Epub 2007 Aug 22.
Calmodulin (CaM) regulates calcium release from intracellular stores in skeletal muscle through its association with the ryanodine receptor (RyR1) calcium release channel, where CaM association enhances channel opening at resting calcium levels and its closing at micromolar calcium levels associated with muscle contraction. A high-affinity CaM-binding sequence (RyRp) has been identified in RyR1, which corresponds to a 30-residue sequence (i.e., K3614-N3643) located within the central portion of the primary sequence. However, it is presently unclear whether the identified CaM-binding sequence in association with CaM (a) senses calcium over the physiological range of calcium concentrations associated with RyR1 regulation or alternatively, (b) plays a structural role unrelated to the calcium-dependent modulation of RyR1 function. Therefore, we have measured the calcium-dependent activation of the individual domains of CaM in association with RyRp and their relationship to the CaM-dependent regulation of RyR1. These measurements utilize an engineered CaM, permitting the site-specific incorporation of N-(1-pyrene)maleimide at either T34C (PyN-CaM) or T110C (PyC-CaM) in the N- and C-domains, respectively. Consistent with prior measurements, we observe a high-affinity association of both apo-CaM and calcium-activated CaM with RyRp. Upon association with RyRp, fluorescence changes in PyN-CaM or PyC-CaM permit the measurement of the calcium-dependent activation of these individual domains. Fluorescence changes upon calcium activation of PyC-CaM in association with RyRp are indicative of high-affinity calcium-dependent activation of the C-terminal domain of CaM at resting calcium levels; at calcium levels associated with muscle contraction, activation of the N-terminal domain occurs with concomitant increases in the fluorescence intensity of PyC-CaM that is associated with structural changes within the CaM-binding sequence of RyR1. Occupancy of calcium-binding sites in the N-domain of CaM mirrors the calcium dependence of RyR1 inhibition observed at activating calcium levels, where [Ca]1/2 = 4.3 +/- 0.4 microM, suggesting a direct regulation of RyR1 function upon the calcium-dependent activation of CaM. These results indicate that occupancy of the N-terminal domain calcium binding sites in CaM bound to the identified CaM-binding sequence K3614-N3643 induces conformational rearrangements within the complex between CaM and RyR1 responsible for the CaM-dependent modulation of the RyR1 calcium release channel.
钙调蛋白(CaM)通过与兰尼碱受体(RyR1)钙释放通道结合来调节骨骼肌细胞内钙库的钙释放。在静息钙水平时,CaM与通道结合可增强通道开放;而在与肌肉收缩相关的微摩尔钙水平时,则促使通道关闭。已在RyR1中鉴定出一个高亲和力的CaM结合序列(RyRp),它对应于位于一级序列中部的一个30个残基的序列(即K3614 - N3643)。然而,目前尚不清楚所鉴定的与CaM结合的序列是(a)在与RyR1调节相关的生理钙浓度范围内感知钙,还是(b)发挥与RyR1功能的钙依赖性调节无关的结构作用。因此,我们测量了与RyRp结合的CaM各个结构域的钙依赖性激活及其与RyR1的CaM依赖性调节的关系。这些测量使用了一种工程化的CaM,分别允许在N结构域的T34C(PyN - CaM)或C结构域的T110C(PyC - CaM)位点特异性掺入N - (1 - 芘)马来酰亚胺。与先前的测量结果一致,我们观察到脱钙CaM和钙激活的CaM与RyRp均有高亲和力结合。与RyRp结合后,PyN - CaM或PyC - CaM的荧光变化可用于测量这些单个结构域的钙依赖性激活。与RyRp结合的PyC - CaM在钙激活时的荧光变化表明,在静息钙水平时CaM的C末端结构域存在高亲和力的钙依赖性激活;在与肌肉收缩相关的钙水平时,N末端结构域被激活,同时PyC - CaM的荧光强度增加,这与RyR1的CaM结合序列内的结构变化有关。CaM的N结构域中钙结合位点的占有率反映了在激活钙水平([Ca]1/2 = 4.3±0.4 microM)时观察到的RyR1抑制的钙依赖性,这表明CaM的钙依赖性激活对RyR1功能有直接调节作用。这些结果表明,与已鉴定的CaM结合序列K3614 - N3643结合的CaM中N末端结构域钙结合位点的占有率会诱导CaM与RyR1之间复合物的构象重排,从而导致RyR1钙释放通道的CaM依赖性调节。