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冷冻电子断层扫描为核孔结构提供了新见解:对核质运输的影响。

Cryo-electron tomography provides novel insights into nuclear pore architecture: implications for nucleocytoplasmic transport.

作者信息

Stoffler Daniel, Feja Bernhard, Fahrenkrog Birthe, Walz Jochen, Typke Dieter, Aebi Ueli

机构信息

Biozentrum, ME Müller Institute for Structural Biology, University of Basel CH-4056, Basel, Switzerland.

出版信息

J Mol Biol. 2003 Apr 18;328(1):119-30. doi: 10.1016/s0022-2836(03)00266-3.

Abstract

To go beyond the current structural consensus model of the nuclear pore complex (NPC), we performed cryo-electron tomography of fully native NPCs from Xenopus oocyte nuclear envelopes (NEs). The cytoplasmic face of the NPC revealed distinct anchoring sites for the cytoplasmic filaments, whereas the nuclear face was topped with a massive distal ring positioned above the central pore with indications of the anchoring sites for the nuclear basket filaments and putative intranuclear filaments. The rather "spongy" central framework of the NPC was perforated by an elaborate channel and void system, and at the membrane pore interface it exhibited distinct "handles" protruding into the lumen of the NE. The most variable structural moiety of the NPC was a rather tenuous central plug partially obstructing the central pore. Its mobile character was documented by time-lapse atomic force microscopy. Taken together, the new insights we gained into NPC structure support the notion that the NPC acts as a constrained diffusion pore for molecules and particles without retention signal and as an affinity gate for signal-bearing cargoes.

摘要

为了超越目前核孔复合体(NPC)的结构共识模型,我们对非洲爪蟾卵母细胞核膜(NE)中完全天然的NPC进行了冷冻电子断层扫描。NPC的细胞质面显示出细胞质细丝的独特锚定位点,而核面顶部则有一个位于中央孔上方的巨大远端环,有核篮细丝和假定的核内细丝的锚定位点迹象。NPC相当“海绵状”的中央框架被一个复杂的通道和空隙系统贯穿,并且在膜孔界面处,它呈现出伸入NE腔的独特“柄”。NPC最可变的结构部分是一个相当纤细的中央栓,部分阻塞中央孔。其移动特性通过延时原子力显微镜得以记录。综上所述,我们对NPC结构获得的新见解支持了这样一种观点,即NPC作为没有保留信号的分子和颗粒的受限扩散孔,以及作为携带信号货物的亲和门。

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