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首页> 外文期刊>Journal of Cell Science >Dimples, pores, star-rings, and thin rings on growing nuclear envelopes: evidence for structural intermediates in nuclear pore complex assembly.
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Dimples, pores, star-rings, and thin rings on growing nuclear envelopes: evidence for structural intermediates in nuclear pore complex assembly.

机译:不断增长的核被膜上的酒窝,孔,星形环和细环:核孔复合体组装中结构中间体的证据。

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We used field emission in-lens scanning electron microscopy to examine newly-assembled, growing nuclear envelopes in Xenopus egg extracts. Scattered among nuclear pore complexes were rare 'dimples' (outer membrane depressions, 5-35 nm diameter), more abundant holes (pores) with a variety of edge geometries (35-45 nm diameter; 3.3% of structures), pores containing one to eight triangular 'star-ring' subunits (2.1% of total), and more complicated structures. Neither mature complexes, nor these novel structures, formed when wheat germ agglutinin (which binds O-glycosylated nucleoporins) was added at high concentrations (>500 microg/ml) directly to the assembly reaction; low concentrations (10 microg/ml) had no effect. However at intermediate concentrations (50-100 microg/ml), wheat germ agglutinin caused a dramatic, sugar-reversible accumulation of 'empty' pores, and other structures; this effect correlated with the lectin-induced precipitation of a variable proportion of each major Xenopus wheat-germ-agglutinin-binding nucleoporin. Another inhibitor, dibromo-BAPTA (5,5'-dibromo-1,2-bis[o-aminophenoxylethane-N,N,N',N'-tetraacetic acid), had different effects depending on its time of addition to the assembly reaction. When 1 mM dibromo-BAPTA was added at time zero, no pore-related structures formed. However, when dibromo-BAPTA was added to growing nuclei 40-45 minutes after initiating assembly, star-rings and other structures accumulated, suggesting that dibromo-BAPTA can inhibit multiple stages in pore complex assembly. We propose that assembly begins with the formation and stabilization of a hole (pore) through the nuclear envelope, and that dimples, pores, star-rings, and thin rings are structural intermediates in nuclear pore complex assembly.
机译:我们使用场发射透镜扫描电子显微镜检查了非洲爪蟾卵提取物中新组装的,正在生长的核被膜。散布在核孔复合体中的是稀有的“凹痕”(外膜凹陷,直径为5-35 nm),具有多种边缘几何形状(直径为35-45 nm;结构的3.3%)的孔更加丰富(孔),其中包含一个孔到八个三角形“星形环”亚基(占总数的2.1%)和更复杂的结构。当小麦胚芽凝集素(结合O-糖基化的核孔蛋白)以高浓度(> 500 microg / ml)直接加入组装反应时,既不会形成成熟的复合物,也不会形成这些新结构。低浓度(10微克/毫升)无效。然而,在中等浓度(50-100微克/毫升)下,小麦胚芽凝集素导致“空”孔和其他结构的大量糖可逆积累。这种作用与凝集素诱导的不同主要非洲爪蟾小麦胚芽-凝集素结合核孔蛋白的不同比例的沉淀有关。另一种抑制剂二溴-BAPTA(5,5'-二溴-1,2,-双[邻氨基苯氧基乙烷-N,N,N',N'-四乙酸),根据其添加到组装物中的时间而具有不同的作用反应。在零时刻添加1 mM dibromo-BAPTA时,未形成任何与孔相关的结构。但是,当在开始组装后40-45分钟将dibromo-BAPTA添加到生长的核中时,星形环和其他结构会积累,这表明dibromo-BAPTA可以抑制孔复合体组装的多个阶段。我们建议组装始于穿过核被膜的孔(孔)的形成和稳定化,而酒窝,孔,星形环和细环是核孔复合体组装中的结构中间体。

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