Department of Physiology and Pharmacology, Hotchkiss Brain Institute, Cumming School of Medicine, University of Calgary, Calgary, Alberta, Canada.
Laboratories of Excellence in Ion Channel Science and Therapeutics, Institut de Génomique Fonctionnelle, CNRS UMR5203, INSERM U661, IFR3 Universités Montpellier I&II, Montpellier, France.
Neuron. 2014 Sep 3;83(5):1144-58. doi: 10.1016/j.neuron.2014.07.036.
T-type calcium channels are essential contributors to the transmission of nociceptive signals in the primary afferent pain pathway. Here, we show that T-type calcium channels are ubiquitinated by WWP1, a plasma-membrane-associated ubiquitin ligase that binds to the intracellular domain III-IV linker region of the Cav3.2 T-type channel and modifies specific lysine residues in this region. A proteomic screen identified the deubiquitinating enzyme USP5 as a Cav3.2 III-IV linker interacting partner. Knockdown of USP5 via shRNA increases Cav3.2 ubiquitination, decreases Cav3.2 protein levels, and reduces Cav3.2 whole-cell currents. In vivo knockdown of USP5 or uncoupling USP5 from native Cav3.2 channels via intrathecal delivery of Tat peptides mediates analgesia in both inflammatory and neuropathic mouse models of mechanical hypersensitivity. Altogether, our experiments reveal a cell signaling pathway that regulates T-type channel activity and their role in nociceptive signaling.
T 型钙通道是初级传入疼痛通路中伤害性信号传递的重要贡献者。在这里,我们表明 T 型钙通道被 WWP1 泛素化,WWP1 是一种质膜相关的泛素连接酶,它与 Cav3.2 T 型通道的细胞内域 III-IV 连接区结合,并修饰该区域的特定赖氨酸残基。蛋白质组学筛选鉴定出去泛素化酶 USP5 是 Cav3.2 III-IV 连接区的相互作用伙伴。通过 shRNA 敲低 USP5 会增加 Cav3.2 的泛素化,降低 Cav3.2 蛋白水平,并减少 Cav3.2 的全细胞电流。体内敲低 USP5 或通过鞘内给予 Tat 肽使 USP5 与天然 Cav3.2 通道解偶联,可在炎症和神经性机械性过敏小鼠模型中介导镇痛。总之,我们的实验揭示了一种调节 T 型通道活性及其在伤害性信号传递中的作用的细胞信号通路。