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Use of a fusion protein between GFP and an anti-binding domain tovisualize transient filamentous-actin structures

机译:GFP和抗结合结构域之间融合蛋白在可视化瞬时丝状肌动蛋白结构中的用途

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Many important processes in eukaryotic cells involve changes in the quantity, location and the organization of actin filaments [1-3], We have been able to visualize these changes in live cells using a fusion protein (GFP-ABD) comprising the green fluorescent protein (GFP) of Aequorea victoria and the 25 kDa highly conserved actin-binding domain (ABD) from the amino terminus of the actin cross-linking protein ABP-120 [4], In live cells of the soil amoeba Dictyostelium that were expressing GFP-ABD, the three-dimensional architecture of the actin cortex was clearly visualized. The pattern of GFP-ABD fluorescence in these cells coincided with that of rhodamine-phalloidin, indicating that GFP-ABD specifically binds filamentous (F) actin, On the ventral surface of non-polarized vegetative cells, a broad ring of F actin periodically assembled and contracted, whereas in polarized cells there were transient punctate F actin structures; cells cycled between the polarized and non-polarized morphologies, During the formation of pseudopods, an increase in fluorescence intensity coincided with the initial outward deformation of the membrane,This is consistent with the models of pseudopod extension that predict an increase in the local density of actin filaments, In conclusion, GFP-ABD specifically binds F actin and allows the visualization of F-actin dynamics and cellular behavior simultaneously.
机译:真核细胞中许多重要的过程涉及肌动蛋白丝的数量,位置和组织的变化[1-3],我们已经能够使用包含绿色荧光蛋白的融合蛋白(GFP-ABD)可视化活细胞中的这些变化。肌动蛋白交联蛋白ABP-120氨基末端的Aequorea victoria(GFP)和25 kDa高度保守的肌动蛋白结合域(ABD)[4],在表达GFP-的土壤变形虫双歧杆菌活细胞中肌动蛋白皮质的三维结构清晰可见。这些细胞中GFP-ABD荧光的模式与若丹明-鬼笔环肽的模式一致,表明GFP-ABD特异性结合丝状(F)肌动蛋白。在非极化营养细胞的腹面,F肌动蛋白的宽环周期性地组装并收缩,而在极化细胞中存在瞬时点状F肌动蛋白结构;细胞在极化和非极化形态之间循环,在假足形成过程中,荧光强度的增加与膜的初始向外变形相吻合,这与假足延伸的模型相一致,该模型预测了局部密度的增加。总之,GFP-ABD特异性结合F-肌动蛋白,并允许同时可视化F-肌动蛋白动力学和细胞行为。

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