Kouklis P D, Hatzfeld M, Brunkener M, Weber K, Georgatos S D
Programme of Cell Biology, European Molecular Biology Laboratory, Heidelberg, FRG.
J Cell Sci. 1993 Nov;106 ( Pt 3):919-28. doi: 10.1242/jcs.106.3.919.
The intermediate filament (IF) proteins vimentin, desmin and peripherin share a 9-residue sequence motif (beta-site) located near the end of their COOH-terminal tail domain. Peptide inhibition experiments have previously suggested that the beta-site is involved in interactions that limit the lateral growth of IFs and prevent inappropriate filament-filament associations. To investigate this question further, we have constructed and expressed, in Escherichia coli, hamster vimentin bearing different mutations in the beta-site. We show here that a single exchange of glycine 450 with a valine residue, or an internal deletion of amino acids 444-452, strongly interferes with the normal assembly of IFs under in vitro conditions. These mutants polymerize into irregular fibrils that have a strong tendency to anastomose and laterally aggregate under isotonic conditions. In contrast, a non-conservative substitution of arginine 448 for glutamic acid does not significantly interfere with filament structure and yields subunits that polymerize into long, smooth filaments that show a slight aberration in thickness. All mutant proteins are soluble in low salt and form oligomers similar to the ones formed by wild-type vimentin. On the basis of these findings and on related observations, we propose that the tail domain of type III IF proteins contains important structural elements involved in lateral protofilament-protofilament interactions.
中间丝(IF)蛋白波形蛋白、结蛋白和外周蛋白在其COOH末端尾部结构域末端附近共享一个9个残基的序列基序(β位点)。肽抑制实验先前表明,β位点参与限制中间丝横向生长并防止不适当的丝-丝缔合的相互作用。为了进一步研究这个问题,我们在大肠杆菌中构建并表达了在β位点带有不同突变的仓鼠波形蛋白。我们在此表明,将甘氨酸450与缬氨酸残基进行单一交换,或内部缺失氨基酸444-452,在体外条件下会强烈干扰中间丝的正常组装。这些突变体聚合成不规则的纤维,在等渗条件下有强烈的吻合和横向聚集倾向。相比之下,将精氨酸448替换为谷氨酸的非保守取代不会显著干扰丝结构,产生的亚基聚合成厚度略有异常的长而光滑的丝。所有突变蛋白都可溶于低盐,并形成与野生型波形蛋白形成的寡聚体相似的寡聚体。基于这些发现和相关观察结果