Yarotskyy Viktor, Dirksen Robert T
Department of Pharmacology and Physiology, University of Rochester Medical Center, Rochester, New York.
Department of Pharmacology and Physiology, University of Rochester Medical Center, Rochester, New York.
Biophys J. 2014 Nov 4;107(9):2027-36. doi: 10.1016/j.bpj.2014.09.030.
Nuclear ion channels remain among the least studied and biophysically characterized channels. Although considerable progress has been made in characterizing calcium release channels in the nuclear membrane, very little is known regarding the properties of nuclear monovalent cationic channels. Here, we describe a method to isolate nuclei from adult skeletal muscle fibers that are suitable for electrophysiological experiments. Using this approach, we show for the first time, to our knowledge, that a nuclear monovalent cationic channel (NMCC) is prominently expressed in the inner membrane of nuclei isolated from flexor digitorum brevis skeletal muscle fibers of adult mice. In isotonic 140 mM KCl, the skeletal muscle NMCC exhibits a unitary conductance of ?160 pS and high, voltage-independent open probability. Based on single-channel reversal potential measurements, NMCCs are slightly more permeable to potassium ions over sodium (PK/PNa = 2.68 ± 0.21) and cesium (PK/PCs = 1.39 ± 0.03) ions. In addition, NMCCs do not permeate divalent cations, are inhibited by calcium ions, and demonstrate weak rectification in asymmetric Ca(2+)-containing solutions. Together, these studies characterize a voltage-independent NMCC in skeletal muscle, the properties of which are ideally suited to serve as a countercurrent mechanism during calcium release from the nuclear envelope.
核离子通道仍然是研究最少且生物物理特性表征最少的通道之一。尽管在表征核膜中的钙释放通道方面已经取得了相当大的进展,但对于核单价阳离子通道的特性却知之甚少。在这里,我们描述了一种从成年骨骼肌纤维中分离细胞核的方法,该方法适用于电生理实验。据我们所知,使用这种方法,我们首次表明核单价阳离子通道(NMCC)在从成年小鼠屈趾短肌骨骼肌纤维分离的细胞核内膜中显著表达。在等渗的140 mM KCl中,骨骼肌NMCC表现出约160 pS的单位电导和高的、电压不依赖的开放概率。基于单通道反转电位测量,NMCC对钾离子的通透性略高于钠离子(PK/PNa = 2.68 ± 0.21)和铯离子(PK/PCs = 1.39 ± 0.03)。此外,NMCC不允许二价阳离子通过,受钙离子抑制,并且在含不对称Ca(2+)的溶液中表现出弱整流。总之,这些研究表征了骨骼肌中一种电压不依赖的NMCC,其特性非常适合作为从核膜释放钙期间的逆流机制。