Hollenbeck P J, Bershadsky A D, Pletjushkina O Y, Tint I S, Vasiliev J M
Medical Research Council Cell Biophysics Unit, London, England.
J Cell Sci. 1989 Apr;92 ( Pt 4):621-31. doi: 10.1242/jcs.92.4.621.
In this study, we have investigated the properties of intermediate filament rearrangements using experimentally induced collapse of vimentin intermediate filaments in mouse fibroblasts. In these cells, depolymerizing microtubules by colchicine or vinblastine treatment at 37 degrees C results in a two-stage collapse of intermediate filaments. First, the vimentin filaments aggregate into large cables; then, the cables coil into a dense mass surrounding the nucleus. By using inhibitors of oxidative phosphorylation along with glucose deprivation to lower intracellular ATP levels by 95%, we have found that both stages of intermediate filament collapse require ATP. However, once collapse has occurred, only the second stage can be reversed in the absence of microtubules by lowering ATP levels. An additional difference between the two stages of collapse was revealed by treating cells with cytochalasin D: the formation of intermediate filament cables still occurs after disruption of the actin filament system by cytochalasin, but the subsequent coiling of cables to form a perinuclear mass is strongly inhibited by these conditions, and can be reversed by applying cytochalasin to cells in which intermediate filaments have already undergone complete collapse. We propose that the formation of vimentin cables involves a phosphorylation event, while the coiling of cables into a perinuclear mass relies on interaction of intermediate filaments with a component of the actin cortex.
在本研究中,我们利用实验诱导小鼠成纤维细胞中波形蛋白中间丝塌陷,研究了中间丝重排的特性。在这些细胞中,于37℃用秋水仙碱或长春花碱处理使微管解聚,会导致中间丝发生两阶段塌陷。首先,波形蛋白丝聚集成大的束状结构;然后,这些束状结构盘绕成围绕细胞核的致密团块。通过使用氧化磷酸化抑制剂并结合葡萄糖剥夺,使细胞内ATP水平降低95%,我们发现中间丝塌陷的两个阶段都需要ATP。然而,一旦塌陷发生,在没有微管的情况下,只有通过降低ATP水平才能使第二阶段逆转。用细胞松弛素D处理细胞揭示了塌陷两个阶段的另一个差异:在用细胞松弛素破坏肌动蛋白丝系统后,中间丝束状结构的形成仍会发生,但随后束状结构盘绕形成核周团块的过程会受到这些条件的强烈抑制,并且在中间丝已经完全塌陷的细胞中应用细胞松弛素可以使其逆转。我们提出波形蛋白束状结构的形成涉及磷酸化事件,而束状结构盘绕形成核周团块依赖于中间丝与肌动蛋白皮质成分的相互作用。