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Nuclear surface complex as observed with the high resolution scanning electron microscope. Visualization of the membrane surfaces of the neclear envelope and the nuclear cortex from Xenopus laevis oocytes

机译:高分辨率扫描电子显微镜观察到的核表面复合物。爪蟾卵母细胞的神经包膜和核皮层的膜表面的可视化

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摘要

The nuclear envelope and associated structures from Xenopus laevis oocytes (stage VI) have been examined with the high resolution scanning electron microscope (SEM). The features of the inner and outer surfaces of the nuclear surface complex were revealed by manual isolation , whereas the membranes facing the perinuclear space (the space between the inner and outer nuclear membranes) were observed by fracturing the nuclear envelope in this plane and splaying the corresponding regions apart. Pore complexes were observed on all four membrane surfaces of this double-membraned structure. The densely packed pore complexes (55/micron2) are often clustered into triplets with shared walls (outer diameter = 90 nm; inner diameter = 25 nm; wall thickness = aproximately 30 nm), and project aproximately 20 nm above each membrane except where they are flush with the innermost surface. The pore complex appears to be an aggregate of four 30-nm subunits. The nuclear cortex, a fibrous layer (300 nm thickness) associated with the inner surface of the nuclear envelope, has been revealed by rapid fixation. This cortical layer is interrupted by funnel-shaped intranuclear channels (120-640 nm diam) which narrow towards the pore complexes. Chains of particles, arranged in spirals, are inserted into these intranuclear channels. The fibers associated with the innermost face of the nuclear envelope can be extraced with 0.6 MKI to reveal the pore complexes. A model of the nuclear surface complex, compiled from the visualization of all the membrane faces and the nuclear cortex, demonstrates relations between the intranuclear channels (3.2/micron2) and the numerous pore complexes, and the possibility of their role in nucleocytoplasmic interactions.
机译:非洲爪蟾卵母细胞(VI期)的核被膜和相关结构已用高分辨率扫描电子显微镜(SEM)进行了检查。用手隔离可以揭示核表面复合体的内表面和外表面的特征,而面对核周空间(内核膜和外核膜之间的空间)的膜是通过在该平面上破裂核包膜并展开来观察的。对应区域分开。在该双膜结构的所有四个膜表面上观察到孔复合体。密集堆积的孔复合物(55 / micron2)通常聚集成具有共同壁的三胞胎(外径= 90 nm;内径= 25 nm;壁厚=大约30 nm),并且在每个膜上方投射大约20 nm,除非它们在哪里与最里面的表面齐平。孔复合物似乎是四个30 nm亚基的聚集体。快速固定已揭示出与皮质包膜内表面相关的纤维层(厚度为300 nm)的核皮质。该皮质层被漏斗形的核内通道(直径为120-640 nm)打断,该通道向孔复合体方向变窄。呈螺旋状排列的颗粒链插入这些核内通道中。与核包膜最里面的表面相关的纤维可用0.6 MKI浸提以显示孔复合体。根据所有膜表面和核皮层的可视化建立的核表面复合物模型显示了核内通道(3.2 / micron2)与众多孔复合物之间的关系,以及它们在核质相互作用中的作用的可能性。

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