Goldberg M W, Allen T D
CRC Department of Structural Cell Biology, Paterson Institute for Cancer Research, Christie Hospital NHS Trust, Manchester, UK.
J Cell Sci. 1993 Sep;106 ( Pt 1):261-74. doi: 10.1242/jcs.106.1.261.
The structure of the nuclear pore complex (NPC) has been previously studied by many different electron microscopic techniques. Recently, scanning electron microscopes have been developed that can visualise biologically relevant structural detail at the same level of resolution as transmission electron microscopes and have been used to study NPC structure. We have used such an instrument to visualise directly the structure of both cytoplasmic and nucleoplasmic surfaces of the NPC of manually isolated amphibian oocyte nuclear envelopes that have been spread, fixed, critical point dried and coated with a thin fine-grained film of chromium or tantalum. We present images that directly show features of the NPC that are visible at each surface, including coaxial rings, cytoplasmic particles, plug/spoke complexes and the nucleoplasmic basket or fishtrap. Some cytoplasmic particles are rod-shaped or possibly "T"-shaped, can be quite long structures extending into the cytoplasm and may be joined to the coaxial ring at a position between each subunit. Both coaxial rings, which are proud of the membranes, can be exposed by light proteolytic digestion, revealing eight equal subunits each of which may be bipartite. We have determined that the nucleoplasmic filaments that make up the baskets are attached to the outer periphery of the coaxial ring at a position between each of its subunits. These filaments extend into the nucleoplasm and insert at the distal end to the smaller basket ring. The space left between adjacent basket filaments would exclude particles bigger than about 25 nm, which is consistent with the exclusion limit previously found for NPC-transported molecules.
核孔复合体(NPC)的结构此前已通过多种不同的电子显微镜技术进行过研究。最近,已开发出扫描电子显微镜,其能够以与透射电子显微镜相同的分辨率水平观察生物学相关的结构细节,并已用于研究NPC结构。我们使用了这样一台仪器,直接观察手动分离的两栖类卵母细胞核膜NPC的细胞质和核质表面的结构,这些核膜已被铺展、固定、临界点干燥,并涂上一层薄薄的细颗粒铬或钽膜。我们展示的图像直接显示了NPC在每个表面可见的特征,包括同轴环、细胞质颗粒、塞子/辐条复合体以及核质篮或鱼笼。一些细胞质颗粒呈杆状或可能呈“T”形,可能是延伸到细胞质中的相当长的结构,并且可能在每个亚基之间的位置与同轴环相连。突出于膜外的两个同轴环可通过轻度蛋白酶消化暴露出来,显示出八个相等的亚基,每个亚基可能是二分的。我们已经确定,构成篮状结构的核质细丝在同轴环每个亚基之间的位置附着于同轴环的外周。这些细丝延伸到核质中,并在远端插入较小的篮状环。相邻篮状细丝之间留出的空间将排除大于约25nm的颗粒,这与先前发现的NPC转运分子的排除极限一致。