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结构和功能相关的网蛋白表位的单克隆抗体图谱分析

Monoclonal antibody mapping of structural and functional plectin epitopes.

作者信息

Foisner R, Feldman B, Sander L, Wiche G

机构信息

Institute of Biochemistry, University of Vienna, Austria.

出版信息

J Cell Biol. 1991 Feb;112(3):397-405. doi: 10.1083/jcb.112.3.397.

Abstract

To map structural and functional epitopes of the cytomatrix protein plectin, a set of mAbs was prepared by immunization of mice. Using immunoblot analysis of plectin fragments obtained after limited digestion with various proteases, two groups of mAbs were distinguished. The epitopes of one group (1) were located on a 130-kD terminal segment of the plectin 300-kD polypeptide chain, whereas those of the other group (2) bound within a 40kD segment confined to a central domain of the polypeptide chain. Domains containing the epitopes of group 2 mAbs were shown to include in vitro phosphorylation sites for kinase A, whereas kinase C phosphorylation sites were found on the same terminal segment that contained group 1 mAb epitopes. Rotary shadowing EM of mAb (Fab fragment) -decorated plectin molecules at various states of aggregation, ranging from characteristic dumbbell-shaped single molecules to highly complex multimeric structures, revealed that the epitopes of group 1 as well as those of group 2 mAbs were located on plectin's roughly 200-nm long rod domain interlinking its two globular end domains. Epitopes of group 1 mAbs were localized within a region near the center of the rod, those of group 2 in more peripheral sections near the globular end domains. Solid-phase binding assays carried out in the presence of Fab fragments of mAbs demonstrated an interference of certain group 1 mAbs in the interactions of plectin with vimentin and lamin B. On the other hand, plectin's self-interaction was inhibited mainly by Fab fragments with epitopes in the peripheral rod domain (group 2 mAbs). Together, these results suggested that the molecular binding sites of plectin for vimentin and lamin B, as well as the phosphorylation sites for kinase C, were confined to a defined central section of plectin's rod domain. In addition, they suggest an involvement of peripheral rod sections in plectin self-association.

摘要

为了绘制细胞基质蛋白网蛋白的结构和功能表位图谱,通过免疫小鼠制备了一组单克隆抗体(mAb)。利用对各种蛋白酶有限消化后获得的网蛋白片段进行免疫印迹分析,区分出两组单克隆抗体。一组(1)的表位位于网蛋白300-kD多肽链的130-kD末端片段上,而另一组(2)的表位则结合在局限于多肽链中央结构域的40kD片段内。含有第2组单克隆抗体表位的结构域被证明包括蛋白激酶A的体外磷酸化位点,而蛋白激酶C的磷酸化位点则位于含有第1组单克隆抗体表位的同一末端片段上。对处于不同聚集状态的单克隆抗体(Fab片段)修饰的网蛋白分子进行旋转阴影电子显微镜观察,从特征性的哑铃形单分子到高度复杂的多聚体结构,结果显示第1组以及第2组单克隆抗体的表位都位于网蛋白大约200纳米长的杆状结构域上,该结构域连接着其两个球状末端结构域。第1组单克隆抗体的表位定位在杆状结构域中心附近的区域,第2组的表位则位于球状末端结构域附近的更外围区域。在单克隆抗体的Fab片段存在下进行的固相结合试验表明,某些第1组单克隆抗体干扰了网蛋白与波形蛋白和层粘连蛋白B的相互作用。另一方面,网蛋白的自身相互作用主要受到在外围杆状结构域具有表位的Fab片段(第2组单克隆抗体)的抑制。总之,这些结果表明,网蛋白与波形蛋白和层粘连蛋白B的分子结合位点以及蛋白激酶C的磷酸化位点都局限于网蛋白杆状结构域的特定中央部分。此外,它们还表明外围杆状部分参与了网蛋白的自我缔合。

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