Department of Pharmacology, University of Cambridge, Cambridge CB2 1PD, U.K.
Biochem J. 2013 Jan 1;449(1):39-49. doi: 10.1042/BJ20121034.
Binding of IP3 (inositol 1,4,5-trisphosphate) to the IP3-binding core (residues 224-604) of IP3Rs (IP3 receptors) initiates opening of these ubiquitous intracellular Ca2+ channels. The mechanisms are unresolved, but require conformational changes to pass through the suppressor domain (residues 1-223). A calmodulin-binding peptide derived from myosin light chain kinase uncouples these events. We identified a similar conserved 1-8-14 calmodulin-binding motif within the suppressor domain of IP3R1 and, using peptides and mutagenesis, we demonstrate that it is essential for IP3R activation, whether assessed by IP3-evoked Ca2+ release or patch-clamp recoding of nuclear IP3R. Mimetic peptides specifically inhibit activation of IP3R by uncoupling the IP3-binding core from the suppressor domain. Mutations of key hydrophobic residues within the endogenous 1-8-14 motif mimic the peptides. Our results show that an endogenous 1-8-14 motif mediates conformational changes that are essential for IP3R activation. The inhibitory effects of calmodulin and related proteins may result from disruption of this essential interaction.
IP3(三磷酸肌醇)与 IP3R(三磷酸肌醇受体)的 IP3 结合核心(残基 224-604)的结合启动了这些普遍存在的细胞内 Ca2+通道的开放。其机制尚不清楚,但需要构象变化才能通过抑制域(残基 1-223)。来自肌球蛋白轻链激酶的钙调蛋白结合肽使这些事件解耦。我们在 IP3R1 的抑制域内鉴定出一个类似的保守的 1-8-14 钙调蛋白结合基序,并使用肽和突变来证明它对于 IP3R 的激活是必需的,无论是通过 IP3 诱发的 Ca2+释放还是核 IP3R 的膜片钳记录来评估。模拟肽特异性地通过将 IP3 结合核心与抑制域解耦来抑制 IP3R 的激活。内源性 1-8-14 基序中的关键疏水性残基的突变模拟了这些肽。我们的结果表明,内源性的 1-8-14 基序介导了对于 IP3R 激活至关重要的构象变化。钙调蛋白和相关蛋白的抑制作用可能是由于破坏了这种必需的相互作用。