Shubenok D V, Tsybovsky Y I, Stremovskiy O A, Deyev S M, Martsev S P
Research and Production Center for Hematology and Transfusiology, Ministry of Health, Minsk, 220053, Belarus.
Biochemistry (Mosc). 2009 Jun;74(6):672-80. doi: 10.1134/s0006297909060121.
A chimeric protein, VH-barnase, was obtained by fusing the VH domain of anti-human ferritin monoclonal antibody F11 to barnase, a bacterial RNase from Bacillus amyloliquefaciens. After refolding from inclusion bodies, the fusion protein formed insoluble aggregates. Off-pathway aggregation was significantly reduced by adding either purified GroEL/GroES chaperones or arginine, with 10-12-fold increase in the yield of the soluble protein. The final protein conformation was identical by calorimetric criteria and CD and fluorescence spectroscopy to that obtained without additives, thus suggesting that VH-barnase structure does not depend on folding conditions. Folding of VH-barnase resulted in a single calorimetrically revealed folding unit, the so-called "calorimetric domain", with conformation consistent with a molten globule that possessed well-defined secondary structure and compact tertiary conformation with partial exposure of hydrophobic patches and low thermodynamic stability. The unique feature of VH-barnase is that, despite the partially unfolded conformation and coupling into a single "calorimetric domain", this immunofusion retained both the antigen-binding and RNase activities that belong to the two heterologous domains.
通过将抗人铁蛋白单克隆抗体F11的VH结构域与来自解淀粉芽孢杆菌的细菌核糖核酸酶barnase融合,获得了一种嵌合蛋白VH-barnase。从包涵体复性后,融合蛋白形成不溶性聚集体。添加纯化的GroEL/GroES伴侣蛋白或精氨酸可显著减少错误折叠聚集,可溶性蛋白产量提高10至12倍。通过量热法、圆二色光谱和荧光光谱测定,最终蛋白构象与未添加添加剂时获得的构象相同,这表明VH-barnase的结构不依赖于折叠条件。VH-barnase的折叠产生了一个单一的量热揭示折叠单元,即所谓的“量热结构域”,其构象与熔球态一致,具有明确的二级结构和紧凑的三级结构,疏水区域部分暴露且热力学稳定性较低。VH-barnase的独特之处在于,尽管其构象部分未折叠且耦合到一个单一的“量热结构域”中,但这种免疫融合蛋白保留了属于两个异源结构域的抗原结合活性和核糖核酸酶活性。