Gerendasy D D, Herron S R, Watson J B, Sutcliffe J G
Department of Molecular Biology, Scripps Research Institute, La Jolla, California 92037.
J Biol Chem. 1994 Sep 2;269(35):22420-6.
RC3/neurogranin is a forebrain-enriched, postnatal-onset, thyroid hormone-dependent, protein kinase C substrate of dendritic spines that interacts with calmodulin. These characteristics suggest a prominent role within the Ca(2+)-mediated second messenger cascades associated with neonatal synaptogenesis and adult neural plasticity. To understand the molecular interactions between RC3 and calmodulin, we characterized recombinant RC3 and four sequence variants: Ser-36-->Ala, Ser-36-->Asp, Ser-36-->Lys, and Phe-37-->Trp. Interactions between CaM and variant Phe-37-->Trp can be monitored by fluorescence spectroscopy, allowing us to determine, by competitive assays, the relative affinities of the wild-type and variant proteins for calmodulin. The effects of salt and Ca2+ on the rank order of these affinities permit partial dissection of hydrophobic, ionic, and structural components of the RC3-CaM interaction and suggest that it is bimodal. We demonstrate that RC3 binds preferentially to CaM when Ca2+ is absent and that the addition of a negative charge to residue 36 is sufficient to disrupt all detectable RC3-CaM interactions. We propose a model wherein a Ca(2+)-"sensitive," bimodal interaction between RC3 and CaM regulates the transduction of postsynaptic Ca2+ fluxes into physiological responses through the modulation of Ca2+/CaM availability.
RC3/神经颗粒素是一种在前脑富集、出生后开始表达、依赖甲状腺激素、作为树突棘的蛋白激酶C底物且与钙调蛋白相互作用的物质。这些特性表明其在与新生儿突触形成和成人神经可塑性相关的钙介导的第二信使级联反应中发挥重要作用。为了理解RC3与钙调蛋白之间的分子相互作用,我们对重组RC3及其四个序列变体进行了表征:Ser-36→Ala、Ser-36→Asp、Ser-36→Lys和Phe-37→Trp。钙调蛋白(CaM)与变体Phe-37→Trp之间的相互作用可通过荧光光谱法监测,这使我们能够通过竞争性测定法确定野生型和变体蛋白对钙调蛋白的相对亲和力。盐和钙离子对这些亲和力排序的影响使得能够部分剖析RC3-CaM相互作用的疏水、离子和结构成分,并表明其具有双峰性。我们证明,在没有钙离子的情况下,RC3优先与钙调蛋白结合,并且在残基36上添加负电荷足以破坏所有可检测到的RC3-CaM相互作用。我们提出了一个模型,其中RC3与钙调蛋白之间的钙敏感双峰相互作用通过调节钙离子/钙调蛋白的可用性来调节突触后钙离子通量向生理反应的转导。