Cho Hawon, Shin Jieun, Shin Chan Young, Lee Soon-Youl, Oh Uhtaek
The Sensory Research Center, Creative Research Initiatives, College of Pharmacy, Seoul National University, Seoul 151-742, Korea.
J Neurosci. 2002 Feb 15;22(4):1238-47. doi: 10.1523/JNEUROSCI.22-04-01238.2002.
Mechanosensitive (MS) ion channels are present in a variety of cells. However, very little is known about the ion channels that account for mechanical sensitivity in sensory neurons. We identified the two most frequently encountered but distinct types of MS channels in 1390 of 2962 membrane patches tested in cultured dorsal root ganglion neurons. The two MS channels exhibited different thresholds, thus named as low-threshold (LT) and high-threshold (HT) MS channels, and sensitivity to pressure. The two channels retained different single-channel conductances and current-voltage relationships: LT and HT channels elicited large- and small-channel conductance with outwardly rectifying and linear I-V relationships, respectively. Both LT and HT MS channels were permeable to monovalent cations and Ca2+ and were blocked by gadolinium, a blocker of MS channels. Colchicine and cytochalasin D markedly reduced the activities of the two MS channels, indicating that cytoskeletal elements support the mechanosensitivity. Both types of MS channels were found primarily in small sensory neurons with diameters of <30 microm. Furthermore, HT MS channels were sensitized by a well known inducer of mechanical hyperalgesia, prostaglandin E2, via the protein kinase A pathway. We identified two distinct types of MS channels in sensory neurons that probably give rise to the observed MS whole-cell currents and transduce mechanical stimuli to neural signals involved in somatosensation, including pain.
机械敏感(MS)离子通道存在于多种细胞中。然而,对于感觉神经元中负责机械敏感性的离子通道,我们所知甚少。在培养的背根神经节神经元中测试的2962个膜片中有1390个膜片中,我们鉴定出了两种最常见但不同类型的MS通道。这两种MS通道表现出不同的阈值,因此分别命名为低阈值(LT)和高阈值(HT)MS通道,以及对压力的敏感性。这两种通道保持着不同的单通道电导和电流-电压关系:LT通道和HT通道分别产生大通道电导和小通道电导,其电流-电压关系分别为外向整流和线性。LT和HT MS通道都对单价阳离子和Ca2+通透,并被MS通道阻滞剂钆阻断。秋水仙碱和细胞松弛素D显著降低了这两种MS通道的活性,表明细胞骨架成分支持机械敏感性。这两种类型的MS通道主要存在于直径<30微米的小感觉神经元中。此外,HT MS通道通过蛋白激酶A途径被一种众所周知的机械性痛觉过敏诱导剂前列腺素E2致敏。我们在感觉神经元中鉴定出两种不同类型的MS通道,它们可能产生观察到的MS全细胞电流,并将机械刺激转化为参与躯体感觉(包括疼痛)的神经信号。