Vanhoudt J, Abgar S, Aerts T, Clauwaert J
Biophysics Research Group, Department of Biochemistry, University of Antwerp, B-2610 Antwerp, Belgium.
Biochemistry. 2000 Apr 18;39(15):4483-92. doi: 10.1021/bi990386u.
Alpha-crystallin is the most important soluble protein in the eye lens. It is responsible for creating a high refractive index and is known to be a small heat-shock protein. We have used static and dynamic light scattering to study its quaternary structure as a function of isolation conditions, temperature, time, and concentration. We have used tryptophan fluorescence to study the temperature dependence of the tertiary structure and its reversibility. Gel filtration, analytical ultracentrifugation, polyacrylamide gel electrophoretic analysis, and absorption measurements were used to study the chaperone-like activity of alpha-crystallin in the presence of destabilized lysozyme. We have demonstrated that the molecular mass of the in vivo alpha-crystallin oligomer is about 700 kDa (alpha(native)) while the 550 kDa molecule (alpha(37 degrees C),diluted), which is often found in vitro, is a product of prolonged storage at 37 degrees C of low concentrated alpha-crystallin solutions. We have proven that the molecular mass of the alpha-crystallin oligomer is concentration dependent at 37 degrees C. We have found strong indications that, during chaperoning, the alpha-crystallin oligomer undergoes a drastic rearrangement of its peptides during the process of complex formation with destabilized lysozyme. We propose the hypothesis that all these processes are governed by the phenomenon of subunit exchange, which is well-known to be strongly temperature-dependent.
α-晶状体蛋白是眼晶状体中最重要的可溶性蛋白质。它负责产生高折射率,并且已知是一种小分子热休克蛋白。我们使用静态和动态光散射来研究其四级结构随分离条件、温度、时间和浓度的变化。我们使用色氨酸荧光来研究三级结构的温度依赖性及其可逆性。凝胶过滤、分析超速离心、聚丙烯酰胺凝胶电泳分析和吸收测量被用于研究在不稳定溶菌酶存在下α-晶状体蛋白的伴侣样活性。我们已经证明,体内α-晶状体蛋白寡聚体的分子量约为700 kDa(α(天然型)),而体外常见的550 kDa分子(α(37℃,稀释))是低浓度α-晶状体蛋白溶液在37℃长时间储存的产物。我们已经证明,α-晶状体蛋白寡聚体的分子量在37℃下与浓度有关。我们发现有强烈迹象表明,在伴侣作用过程中,α-晶状体蛋白寡聚体在与不稳定溶菌酶形成复合物的过程中其肽段会发生剧烈重排。我们提出一个假设,即所有这些过程都受亚基交换现象的控制,众所周知,亚基交换强烈依赖于温度。