Department of Biology, University of Fribourg, Fribourg, Switzerland.
Elife. 2023 May 11;12:e85260. doi: 10.7554/eLife.85260.
Nociceptive habituation is a conserved process through which pain sensitivity threshold is adjusted based on past sensory experience and which may be dysregulated in human chronic pain conditions. Noxious heat habituation in involves the nuclear translocation of CaM kinase-1 (CMK-1) in the FLP thermo-nociceptors neurons, causing reduced animal heat sensitivity and avoidance responses. The phosphorylation of CMK-1 on T179 by CaM kinase kinase-1 (CKK-1) is required for nuclear entry. Recently, we identified a specific nuclear export sequence (NES) required to maintain CMK-1 in the cytoplasm at rest (20°C) and showed that Ca/CaM binding is sufficient to enhance CMK-1 affinity for IMA-3 via a specific nuclear localization signal (NLS) in order to promote nuclear entry after persistent heat stimulation (90 min at 28°C) (Ippolito et al., 2021). Here, we identified additional functional NES and NLS on CMK-1, whose activity can counteract previously identified elements. Furthermore, we clarify the relationship between the CaM-binding-dependent and T179-dependent effects. T179 phosphorylation can promote nuclear entry both downstream of CaM binding and as part of an independent/parallel pathway. Moreover, T179 phosphorylation can also produce the opposite effect by promoting nuclear export. Taken together, our studies suggest that multiple calcium-dependent regulatory mechanisms converge to bias the activity pattern across a network of NES/NLS elements, in order to control CMK-1 nucleo-cytoplasmic shuttling, and actuate stimulation-dependent nociceptive plasticity.
伤害性感受习惯化是一种保守的过程,通过该过程,根据过去的感觉经验调整疼痛敏感性阈值,而在人类慢性疼痛情况下可能会失调。涉及到 FLP 热敏伤害感受器神经元中钙调蛋白激酶-1(CMK-1)的核易位,导致动物对热的敏感性降低和回避反应减少。CMK-1 在 T179 上的磷酸化由钙调蛋白激酶激酶-1(CKK-1)引起,是核内进入所必需的。最近,我们确定了一个特定的核输出序列(NES),该序列需要在休息时(20°C)将 CMK-1 保持在细胞质中,并表明 Ca/CaM 结合足以通过特定的核定位信号(NLS)增强 CMK-1 与 IMA-3 的亲和力,以便在持续热刺激后促进核内进入(90 分钟在 28°C)(Ippolito 等人,2021 年)。在这里,我们确定了 CMK-1 上的其他功能 NES 和 NLS,其活性可以抵消先前确定的元件。此外,我们阐明了 CaM 结合依赖性和 T179 依赖性效应之间的关系。T179 磷酸化可以通过 CaM 结合的下游和独立/平行途径来促进核内进入。此外,T179 磷酸化还可以通过促进核输出产生相反的效果。总之,我们的研究表明,多种钙依赖性调节机制汇聚在一起,通过 NES/NLS 元件网络偏向活性模式,以控制 CMK-1 的核质穿梭,并启动刺激依赖性伤害性可塑性。