Onischenko Evgeny A, Gubanova Natalia V, Kieselbach Thomas, Kiseleva Elena V, Hallberg Einar
Section for Natural Sciences, Södertörns University College, SE-14189. Huddinge, Sweden.
Traffic. 2004 Mar;5(3):152-64. doi: 10.1111/j.1600-0854.2004.0166.x.
The nuclear pore complexes (NPCs), multiprotein assemblies embedded in the nuclear envelope, conduct nucleo-cytoplasmic traffic of macromolecules. Mimics of NPCs, called annulate lamellae pore complexes (ALPCs), are usually found in cytoplasmic membranous stacks in oocytes and early embryonic cells. They are believed to constitute storage compartments for excess premade nucleoporins. To evaluate the extent to which ALPCs store nucleoporins in early embryonic cells we took advantage of syncytial Drosophila embryos, containing both AL and rapidly proliferating nuclei in the common cytoplasm. Electron microscopic morphometric analysis showed that the number of ALPCs did not decrease to compensate for the growing number of NPCs during syncytial development. We performed Western blot analysis to quantify seven different nucleoporins and analyzed their intraembryonal distribution by confocal microscopy and subcellular fractionation. Syncytial embryos contained a large maternally contributed stockpile of nucleoporins. However, even during interphases, only a small fraction of the excess nucleoporins was assembled into ALPCs, whereas the major fraction was soluble and contained at least one phosphorylated nucleoporin. We conclude that in Drosophila embryos ALPCs play only a minor role in storing the excess maternally contributed nucleoporins. Factors that may prevent nucleoporins from assembly into ALPCs are discussed.
核孔复合体(NPCs)是嵌入核膜的多蛋白组装体,负责大分子的核质运输。核孔复合体的类似物,称为环状片层孔复合体(ALPCs),通常存在于卵母细胞和早期胚胎细胞的细胞质膜堆叠中。它们被认为构成了多余预制核孔蛋白的储存区室。为了评估ALPCs在早期胚胎细胞中储存核孔蛋白的程度,我们利用了合胞体果蝇胚胎,其在共同的细胞质中同时含有环状片层(AL)和快速增殖的细胞核。电子显微镜形态计量分析表明,在合胞体发育过程中,ALPCs的数量并未减少以补偿不断增加的NPCs数量。我们进行了蛋白质免疫印迹分析以定量七种不同的核孔蛋白,并通过共聚焦显微镜和亚细胞分级分离分析它们在胚胎内的分布。合胞体胚胎含有大量母源提供的核孔蛋白储备。然而即使在间期,只有一小部分多余的核孔蛋白组装成ALPCs,而大部分是可溶的,并且包含至少一种磷酸化的核孔蛋白。我们得出结论,在果蝇胚胎中,ALPCs在储存母源提供的多余核孔蛋白方面仅起次要作用。文中还讨论了可能阻止核孔蛋白组装成ALPCs的因素。