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In vivo analysis of functional domains from villin and gelsolin

机译:villin和凝溶胶蛋白功能域的体内分析

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摘要

Transfected CV1 cells were used to compare the in vivo effects of various domains of villin and gelsolin. These two homologous actin modulating proteins both contain a duplicated severin-like sequence. Villin has in addition a carboxy-terminal domain, the headpiece, which accounts for its bundling activity. The effects of the villin-deleted mutants were compared with those of native villin. Our results show that essential domains of villin required to induce the growth of microvilli and F-actin redistribution are present in the first half of the core and in the headpiece. We also show that the second half of the villin core cannot be exchanged by its homolog in gelsolin. When expressed at high levels of CV1 cells, full length gelsolin completely disrupted stress fibers without change of the cell shape. Addition of the villin headpiece to gelsolin had no effect on the phenotype induced by gelsolin alone. Expression of the first half of gelsolin induced similar modifications as capping proteins and rapid cell mortality; this deleterious effect on the cell structure was also observed when the headpiece was linked to the first half of gelsolin. In cells expressing the second half of gelsolin, a dotted F-actin staining was often seen. Moreover elongated dorsal F-actin structures were observed when the headpiece was linked to the second gelsolin domain. These studies illustrate the patent in vivo severing activity of gelsolin as well as the distinct functional properties of villin core in contrast to gelsolin.
机译:转染的CV1细胞用于比较villin和凝溶胶蛋白的各个结构域的体内作用。这两个同源肌动蛋白调节蛋白都含有重复的severin样序列。韦林还具有一个羧基末端结构域,即头部,这说明了其捆绑活性。将维尔林缺失的突变体的效果与天然维尔林的突变体的效果进行了比较。我们的结果表明,诱导微绒毛和F-肌动蛋白重新分布所需的villin必不可少的区域存在于核心的上半部分和头件中。我们还显示,villin核心的后半部分不能通过凝溶胶蛋白中的同系物交换。当在高水平的CV1细胞中表达时,全长凝溶胶蛋白会完全破坏应力纤维,而不会改变细胞形状。在凝溶胶蛋白中添加villin头饰对单独由凝溶胶蛋白诱导的表型没有影响。凝溶胶蛋白的前半部分的表达诱导了与封端蛋白相似的修饰,并且细胞死亡迅速。当头盔连接到凝溶胶蛋白的前半部分时,也观察到这种对细胞结构的有害作用。在表达凝溶胶蛋白后半部分的细胞中,经常会看到点缀的F-肌动蛋白染色。此外,当头盔连接到第二凝溶胶蛋白域时,观察到拉长的背F-肌动蛋白结构。这些研究说明了凝溶胶蛋白在体内的专利切断活性以及与凝溶胶蛋白相反的维林核心的独特功能特性。

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