Bustamante J O
Department of Physiology, University of Ottawa Heart Institute, Ontario, Canada.
Pflugers Arch. 1992 Aug;421(5):473-85. doi: 10.1007/BF00370259.
The paradigm that nucleocytoplasmic transport of ions occurs without a diffusional barrier has been challenged by the recent demonstration with patch-clamp techniques of the existence of ion channels in the nuclear envelope of murine zygotes and hepatocytes. This report demonstrates the existence of nuclear ion channels (NIC) in murine ventricular cardiac myocytes. NIC conductance (gamma), calculated from current histogram peaks, was 106-532 pS at 22-36 degrees C. In nucleus-attached patches, replacement of cytoplasmic K+ with Na+ reduced NIC activity within 30 s, suggesting that intranuclear-delimited mechanisms mediate this phenomenon. In excised, inside-out patches K+ was as permeable as Na+ through NIC. NIC activity was observed in 0-4 mM Mg2+ and/or ATP2-, with or without 0-1 mM Ca2+, indicating a minor direct role of these ions. However, in non-responsive excised inside-out patches, NIC activity appeared when the catalytic subunit of the cAMP-dependent protein kinase was applied to the nucleoplasmic side of the patch, in the presence of Mg2+ and ATP2-, indicating an important role for phosphorylation-dependent process(es) in NIC function--an observation supported by the depressing effects of protein kinase inhibitor on responsive NIC. The concept that nucleopore complexes are solely responsible for nucleocytoplamic transport leads to the speculation that these structures are the physical substrate for NIC.
离子在核质间的运输无需扩散屏障这一范式,已受到近期研究的挑战,该研究运用膜片钳技术证实了小鼠受精卵和肝细胞的核膜中存在离子通道。本报告展示了小鼠心室心肌细胞中核离子通道(NIC)的存在。根据电流直方图峰值计算得出,在22 - 36摄氏度时,NIC的电导(γ)为106 - 532 pS。在细胞核贴附式膜片中,用Na⁺替代细胞质中的K⁺会在30秒内降低NIC活性,这表明核内限定机制介导了这一现象。在切除的内向外膜片中,K⁺通过NIC的通透性与Na⁺相同。在0 - 4 mM Mg²⁺和/或ATP²⁻存在或不存在0 - 1 mM Ca²⁺的情况下均可观察到NIC活性,这表明这些离子的直接作用较小。然而,在无反应的切除内向外膜片中,当在Mg²⁺和ATP²⁻存在的情况下,将cAMP依赖性蛋白激酶的催化亚基应用于膜片的核质侧时,会出现NIC活性,这表明磷酸化依赖性过程在NIC功能中起重要作用——这一观察结果得到了蛋白激酶抑制剂对有反应的NIC的抑制作用的支持。核孔复合体是核质运输唯一负责者的概念引发了这样的推测,即这些结构是NIC的物理底物。