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Aspects of nuclear envelope dynamics in mitotic cells

机译:有丝分裂细胞核包络动态的方面

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Major features of the nuclear envelope (NE) are a pair of inner and outer nuclear membranes (INM, ONM) spanned by nuclear pore complexes. While the composition of the ONM resembles that of the endoplasmic reticulum, the INM contains a unique spectrum of proteins. Localization of INM proteins involves a mechanism of selective retention whereby integral proteins are immobilized and concentrated by virtue of interactions with nuclear components. In the case of emerin, INM localization involves interaction with A-type lamins. Interactions between membrane proteins may also play a significant role in INM localization. This conclusion stems from studies on nesprins, a family of membrane proteins that feature a large cytoplasmic domain, a single C-terminal membrane-spanning domain and a small lumenal domain. The nesprin membrane anchor and lumenal (KASH) domains are related to the Drosophila Klarsicht protein. Evidence is emerging that this KASH region interacts with other NE proteins and may influence their distributions. Overexpression of GFP-KASH causes loss of emerin and LAP2 from the NE. This is not due to global reorganization of the NE since LAP1 as well as lamins and NPCs remain unaffected. Our results suggest that interactions between NE membrane components are far more extensive and complex than current models suggest.
机译:核封(NE)的主要特征是核心络合物跨越的一对内外核膜(INM,ONM)。虽然ONM的组成类似于内质网的组成,但INM含有独特的蛋白质光谱。 INM蛋白的定位涉及选择性保留机制,由此通过与核组分的相互作用固定并浓缩整体蛋白质。在Emerin的情况下,InM定位涉及与型层状的相互作用。膜蛋白之间的相互作用也可能在Inm本地化中发挥重要作用。该结论源于Nesprins的研究,一种具有大细胞质结构域,单个C末端膜跨域和小腔结构域的膜蛋白质的研究。 Nesprin膜锚和腔(kash)结构域与果蝇klarsicht蛋白质有关。证据是出现这种克什地区与其他网状蛋白相互作用,可能影响其分布。 GFP-KASH的过度表达导致NE中的Emerin和LAP2的丧失。这不是由于LAP1的全球重组,因为LAP1以及LAPINS和NPC保持不受影响。我们的研究结果表明,NE膜组分之间的相互作用比当前模型所表达的更广泛和复杂。

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