【2h】

The dynamic nature of the Golgi complex

机译:高尔基情结的动态本质

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摘要

The intracellular transport of newly synthesized G protein of vesicular stomatitis virus is blocked at 20 degrees C and this spanning membrane glycoprotein accumulates in the last Golgi compartment, the trans Golgi- network (TGN). Previous morphological evidence suggested that the TGN enlarged significantly under this condition. In the present study we have used stereological procedures to estimate the volume and surface area of the Golgi stack and the TGN of baby hamster kidney cells under different conditions. The results indicate that the increase in the size of the TGN at 20 degrees C is accompanied by a significant decrease in the surface area and volume of the preceding Golgi compartments. A similar effect is also seen in uninfected cells at 20 degrees C, as well as during normal (37 degrees C) infection with Semliki Forest virus. In the latter case, however, the decrease in the size of the Golgi stack and the increase in that of the TGN is not accompanied by inhibition of transport from the Golgi complex to the cell surface. The results indicate that the Golgi stack and the TGN are dynamic and interrelated structures that are capable of rapid alteration in total surface area in response to changes in the rates of membrane transport.
机译:新合成的水泡性口炎病毒G蛋白在细胞内的运输在20摄氏度时被阻止,这种跨膜糖蛋白积聚在最后的高尔基体,即反Golgi-network(TGN)中。先前的形态学证据表明,在这种情况下,TGN明显增大。在本研究中,我们已使用立体学方法估算了在不同条件下高尔基体的体积和表面积以及婴儿仓鼠肾细胞的TGN。结果表明,在20摄氏度下TGN尺寸的增加伴随着先前高尔基体的表面积和体积的显着减少。在未感染细胞中,在20摄氏度以及正常(37摄氏度)感染塞姆利基森林病毒的过程中,也可以看到类似的效果。然而,在后一种情况下,高尔基体堆栈的大小减小和TGN的增大并不伴随抑制从高尔基体到细胞表面的转运。结果表明,高尔基体堆和TGN是动态且相互关联的结构,能够响应于膜运输速率的变化而快速改变总表面积。

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