Mittal B, Danowski B A, Sanger J M, Sanger J W
Department of Genetics, Sanjay Gandhi Institute of Medical Science, Lucknow, India.
Cell Motil Cytoskeleton. 1992;23(3):188-200. doi: 10.1002/cm.970230303.
The assembly of intermediate filaments into a cytoplasmic network was studied by microinjecting into the nuclei and cytoplasms of PtK2 cells, plasmids that contained a full length desmin cDNA and an RSV promoter. Immunofluorescence was used to monitor the expression of desmin and its integration into the cells' vimentin intermediate filament network. We found that the expressed desmin co-localized with filaments of vimentin just as it does with fluorescently labelled desmin is microinjected into the cytoplasm of PtK2 cells. As early as two hours after microinjection of the plasmids, small discrete dots and short fragments of desmin could be detected throughout the cytoplasm of the cells. This initial distribution of desmin was superimposed on the filamentous pattern of vimentin in the cells. At 8 hours after microinjection of the plasmids, some of the desmin was present in long filaments that were coincident with vimentin filaments. By 18 hours, most of the desmin was in a filamentous network co-localizing with vimentin. There was no indication that desmin assembly began in the perinuclear region and proceeded toward the cell periphery. In some cells, excessively high levels of desmin were expressed. In these cases, overexpression led to clumping of desmin filaments as well as to an accumulation of diffusely distributed desmin protein in the center of the cells. This effect was apparent at approximately 18 hours after introduction of the plasmid. The native vimentin filaments in such cells were also aggregated around the nucleus, co-localizing with desmin. The microtubule networks in all injected cells appeared normal; microtubules were extended in typical arrays out to the periphery of the cells.
通过将含有全长结蛋白cDNA和劳斯肉瘤病毒(RSV)启动子的质粒显微注射到PtK2细胞的细胞核和细胞质中,研究了中间丝组装成细胞质网络的过程。利用免疫荧光监测结蛋白的表达及其整合到细胞波形蛋白中间丝网络中的情况。我们发现,所表达的结蛋白与波形蛋白丝共定位,就如同将荧光标记的结蛋白显微注射到PtK2细胞的细胞质中时一样。早在质粒显微注射后两小时,就能在细胞的整个细胞质中检测到小的离散点和短片段的结蛋白。结蛋白的这种初始分布叠加在细胞中波形蛋白的丝状模式上。在质粒显微注射后8小时,一些结蛋白存在于与波形蛋白丝重合的长丝中。到18小时时,大多数结蛋白处于与波形蛋白共定位的丝状网络中。没有迹象表明结蛋白组装始于核周区域并向细胞周边进行。在一些细胞中,结蛋白表达水平过高。在这些情况下,过表达导致结蛋白丝聚集以及在细胞中心积累弥散分布的结蛋白。在引入质粒后约18小时,这种效应很明显。此类细胞中的天然波形蛋白丝也聚集在细胞核周围,与结蛋白共定位。所有注射细胞中的微管网络看起来正常;微管以典型的阵列延伸到细胞周边。