...
首页> 外文期刊>Journal of Cell Science >Dose-dependent linkage, assembly inhibition and disassembly of vimentin and cytokeratin 5/14 filaments through plectin's intermediate filament-binding domain
【24h】

Dose-dependent linkage, assembly inhibition and disassembly of vimentin and cytokeratin 5/14 filaments through plectin's intermediate filament-binding domain

机译:剂量依赖的连接,波形蛋白和细胞角蛋白5/14细丝通过Plectin中间细丝结合域的组装,组装抑制和拆卸

获取原文
获取原文并翻译 | 示例
           

摘要

Plectin, the largest and most versatile member of the cytolinker/plakin family of proteins characterized to date, has a tripartite structure comprising a central 200 nm-long alpha-helical rod domain flanked by large globular domains. The C-terminal domain comprises a short tail region preceded by six highly conserved repeats (each 28-39 kDa), one of which (repeat 5) contains plectin's intermediate filament (IF)-binding site. We used recombinant and native proteins to assess the effects of plectin repeat 5-binding to IF proteins of different types. Quantitative Eu3+-based overlay assays showed that plectin's repeat 5 domain bound to type III IF proteins (vimentin) with preference over type I and II cytokeratins 5 and 14. The ability of both types of IF proteins to self-assemble into filaments in vitro was impaired by plectin's repeat 5 domain in a concentration-dependent manner, as revealed by negative staining and rotary shadowing electron microscopy. This effect was much more pronounced in the case of vimentin compared to cytokeratins 5/14. Preassembled filaments of both types became more and more crosslinked upon incubation with increasing concentrations of plectin repeat 5, However, at high proportions of plectin to IF proteins, disassembly of filaments occurred. Again, vimentin filaments proved considerably more sensitive towards disassembly than those composed of cytokeratins 5 and 14. In general, IFs formed from recombinant proteins were found to be slightly more responsive towards plectin influences than their native counterparts. A dose-dependent plectin-inflicted collapse and putative disruption of Ifs was also observed in vivo after ectopic expression of vimentin and repeat 5 domain in cotransfected deficient SW13 (vim(-)) cells. Our results suggest an involvement of plectin not only in crosslinking and plectin's deficient involvement stabilization of cytoskeletal regulation of their dynamics. [References: 43]
机译:Plectin是迄今已表征的细胞连接蛋白/普莱金家族蛋白质中最大,用途最广的成员,具有三方结构,该结构包括一个中央的200 nm长的α-螺旋杆结构域,两侧是大的球形结构域。 C末端结构域包含一个短尾区,后面是六个高度保守的重复序列(每个序列28-39 kDa),其中一个(重复序列5)包含凝集素的中间丝(IF)结合位点。我们使用重组蛋白和天然蛋白来评估凝集素重复序列5与不同类型IF蛋白结合的效果。基于定量Eu3 +的重叠分析表明,凝集素的重复序列5结构域与III型IF蛋白(波形蛋白)结合,优先于I和II型细胞角蛋白5和14。两种IF蛋白在体外自组装成细丝的能力是如阴性染色和旋转阴影电子显微镜观察到的那样,由lectin的重复5域以浓度依赖的方式受损。与波形角蛋白5/14相比,波形蛋白的作用更为明显。随着浓度增加的Plectin重复序列5的孵育,两种类型的预组装长丝变得越来越交联。但是,当Plectin与IF蛋白的比例很高时,就会发生长丝的分解。同样,波形蛋白细丝被证明比由细胞角蛋白5和14组成的细丝对分解的敏感性要高得多。通常,发现重组蛋白形成的IFs对凝集素的影响比其天然对应物稍敏感。在共转染的缺陷SW13(vim(-))细胞中异位表达波形蛋白和重复5结构域后,在体内也观察到剂量依赖性的凝集素引起的Ifs塌陷和推定破坏。我们的结果表明,Plectin不仅参与交联,而且Plectin缺乏参与稳定其动力学的细胞骨架调节。 [参考:43]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号