Department of Biochemistry and Molecular Biology and Structural Biology Imaging Center, University of Texas Medical School, Houston, Texas 77030, USA.
J Biol Chem. 2013 Jan 18;288(3):2040-8. doi: 10.1074/jbc.M112.411314. Epub 2012 Nov 30.
PEP-19 is a small, intrinsically disordered protein that binds to the C-domain of calmodulin (CaM) via an IQ motif and tunes its Ca(2+) binding properties via an acidic sequence. We show here that the acidic sequence of PEP-19 has intrinsic Ca(2+) binding activity, which may modulate Ca(2+) binding to CaM by stabilizing an initial Ca(2+)-CaM complex or by electrostatically steering Ca(2+) to and from CaM. Because PEP-19 is expressed in cells that exhibit highly active Ca(2+) dynamics, we tested the hypothesis that it influences ligand-dependent Ca(2+) release. We show that PEP-19 increases the sensitivity of HeLa cells to ATP-induced Ca(2+) release to greatly increase the percentage of cells responding to sub-saturating doses of ATP and increases the frequency of Ca(2+) oscillations. Mutations in the acidic sequence of PEP-19 that inhibit or prevent it from modulating Ca(2+) binding to CaM greatly inhibit its effect on ATP-induced Ca(2+) release. Thus, this cellular effect of PEP-19 does not depend simply on binding to CaM via the IQ motif but requires its acidic metal binding domain. Tuning the activities of Ca(2+) mobilization pathways places PEP-19 at the top of CaM signaling cascades, with great potential to exert broad effects on downstream CaM targets, thus expanding the biological significance of this small regulator of CaM signaling.
PEP-19 是一种小的、无规卷曲的蛋白质,通过 IQ 基序与钙调蛋白 (CaM) 的 C 结构域结合,并通过酸性序列调节其 Ca(2+)结合特性。我们在这里表明,PEP-19 的酸性序列具有内在的 Ca(2+)结合活性,这可能通过稳定初始 Ca(2+)-CaM 复合物或通过静电引导 Ca(2+)进出 CaM 来调节 Ca(2+)与 CaM 的结合。由于 PEP-19 在表现出高度活跃的 Ca(2+)动力学的细胞中表达,我们测试了它是否影响配体依赖性 Ca(2+)释放的假设。我们表明,PEP-19 增加了 HeLa 细胞对 ATP 诱导的 Ca(2+)释放的敏感性,大大增加了对亚饱和剂量 ATP 有反应的细胞百分比,并增加了 Ca(2+)振荡的频率。PEP-19 酸性序列中的突变,抑制或阻止其调节 Ca(2+)与 CaM 的结合,极大地抑制了其对 ATP 诱导的 Ca(2+)释放的影响。因此,PEP-19 的这种细胞效应不仅仅依赖于通过 IQ 基序与 CaM 结合,而是需要其酸性金属结合结构域。调节 Ca(2+)动员途径的活性使 PEP-19 处于 CaM 信号级联的顶端,具有对下游 CaM 靶标产生广泛影响的巨大潜力,从而扩大了这种 CaM 信号小调节剂的生物学意义。