Goldberg M W, Allen T D
Cancer Research Campaign (CRC) Department of Structural Cell Biology, Paterson Institute for Cancer Research, Christie Hospital National Health Service (NHS) Trust, Manchester, United Kingdom.
J Cell Biol. 1992 Dec;119(6):1429-40. doi: 10.1083/jcb.119.6.1429.
The nuclear envelope (NE) of amphibian oocytes can be readily isolated in relatively structurally intact and pure form and has been used extensively for structural studies. Using high resolution scanning electron microscopy (HRSEM), both surfaces of the NE can be visualized in detail. Here, we demonstrate the use of HRSEM to obtain high resolution information of NE structure, confirming previous data and providing some new information. NEs, manually isolated from Triturus cristatus oocytes, have been mounted on conductive silicon chips, fixed, critical point dried and coated with a thin, continuous film of chromium or tantalum and viewed at relatively high accelerating voltage in a field emission scanning electron microscope with the sample within the objective lens. Both nucleoplasmic and cytoplasmic surfaces of the nuclear pore complexes (NPC) have been visualized, revealing the cytoplasmic coaxial ring, associated particles, central plug/transporter and spokes. The nucleoplasmic face is dominated by the previously described basketlike structure attached to the nucleoplasmic coaxial ring. In Triturus, a novel, highly regular flat sheet of fibers, termed the NE lattice (NEL) has been observed attached to the distal ring of the NPC basket. The NEL appears to be distinct from the nuclear lamina. Evidence for the NEL is also presented in thin TEM sections from Triturus oocytes and GVs and in spread NEs from Xenopus. A model is presented for NEL structure and its interaction with the NPCs is discussed.
两栖类卵母细胞的核膜能够以相对结构完整且纯净的形式轻易分离出来,并已广泛用于结构研究。利用高分辨率扫描电子显微镜(HRSEM),可以详细观察核膜的两个表面。在此,我们展示了使用HRSEM获取核膜结构的高分辨率信息,证实了先前的数据并提供了一些新信息。从有冠蝾螈卵母细胞中手动分离出的核膜,已被安装在导电硅芯片上,固定、临界点干燥并涂上一层薄而连续的铬或钽膜,然后在物镜内放置样品的场发射扫描电子显微镜中以相对较高的加速电压进行观察。核孔复合体(NPC)的核质面和细胞质面均已可视化,揭示了细胞质同轴环、相关颗粒、中央栓/转运体和辐条。核质面主要由先前描述的附着在核质同轴环上的篮状结构主导。在有冠蝾螈中,观察到一种新颖的、高度规则的纤维平板,称为核膜晶格(NEL),附着在NPC篮状结构的远端环上。NEL似乎与核纤层不同。在有冠蝾螈卵母细胞和生发泡的超薄透射电镜切片以及非洲爪蟾伸展的核膜中也呈现了NEL的证据。本文提出了一个NEL结构模型,并讨论了其与NPC的相互作用。