Duus K, Larsen N, Tran T A T, Güven E, Skov L K, Jespersgaard C, Gajhede M, Houen G
Department of Clinical Biochemistry and Immunology, Statens Serum Institut, Artillerivej 5, DK-2300, Copenhagen, Denmark.
Protein Pept Lett. 2013 May;20(5):562-8. doi: 10.2174/0929866511320050009.
Calreticulin is a soluble endoplasmic reticulum chaperone, which has a relatively low melting point due to its remarkable structure with a relatively high content of flexible structural elements. Using far ultraviolet circular dichroism (CD) spectroscopy and a fluorescent dye binding thermal shift assay, we have investigated the chemical and thermal stability of calreticulin. When the chemical stability of calreticulin was assessed, a midpoint for calreticulin unfolding was calculated to 3.0M urea using CD data at 222 nm. Using the fluorescent dye binding thermal shift assay, calreticulin was found to obtain a molten structure in urea concentrations between 1-1.5 M urea, and to unfold/aggregate at high and low pH values. The results demonstrated that the fluorescent dye binding assay could measure the thermal stability of calreticulin in aqueous buffers with results comparable to melting points obtained by other techniques.
钙网蛋白是一种可溶性内质网伴侣蛋白,由于其具有相对较高含量的柔性结构元件的显著结构,其熔点相对较低。我们使用远紫外圆二色(CD)光谱和荧光染料结合热位移分析,研究了钙网蛋白的化学和热稳定性。在评估钙网蛋白的化学稳定性时,利用222nm处的CD数据计算出钙网蛋白展开的中点为3.0M尿素。通过荧光染料结合热位移分析发现,钙网蛋白在1-1.5M尿素浓度下会形成熔融结构,并在高pH值和低pH值下展开/聚集。结果表明,荧光染料结合分析可以测量钙网蛋白在水性缓冲液中的热稳定性,其结果与通过其他技术获得的熔点相当。