Oliveira Cristiano L P, de la Hoz Lucia, Silva Julio C, Torriani Iris L, Netto Flavia M
Laboratório Nacional de Luz Síncrotron, Campinas, SP, Brazil.
Biopolymers. 2007 Feb 15;85(3):284-94. doi: 10.1002/bip.20610.
The conformational changes and aggregation process of beta-lactoglobulin (beta-LG) subjected to gamma irradiation are presented. Beta-LG in solutions of different protein concentrations (3 and 10 mg/ml) and in solid state with different water activities (a(w)) (0.22; 0.53; 0.74) was irradiated using a Cobalt-60 radiation source at dose level of 1-50 kGy. Small-angle X-ray scattering (SAXS) was used to study the conformational changes of beta-LG due to the irradiation treatment. The irradiated protein was also examined by high performance size exclusion chromatography (HPSEC) and sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) under nonreducing and reducing conditions and fluorescence. SAXS analysis showed that the structural conformation of irradiated beta-LG in solid state at different a(w) and dose level was essentially the same as the nonirradiated beta-LG. The scattering data also showed that the irradiation of beta-LG in solution promoted the formation of oligomers. Interestingly, from the data analysis and model building, it could be shown that the formed oligomers are linear molecules, built by linear combinations of beta-LG dimers (tetramers, hexamers, etc). The formation of oligomers was also evidenced by SDS-PAGE analysis and HPSEC chromatograms, in which products with higher molecular mass than that of the dimeric beta-LG were detected. Formation of intermolecular cross-linking between tyrosyl radicals are proposed to be at least partially responsible for this occurrence. From the results it could be shown that the samples irradiated in solution presented some conformational changes under gamma irradiation, resulting in well ordered oligomers and aggregates formed by cross-linking of beta-LG dimers subunits, while the samples irradiated in the solid state were not modified.
本文介绍了γ射线辐照下β-乳球蛋白(β-LG)的构象变化和聚集过程。使用钴-60辐射源,在1-50 kGy的剂量水平下,对不同蛋白质浓度(3和10 mg/ml)溶液中的β-LG以及具有不同水分活度(a(w))(0.22;0.53;0.74)的固态β-LG进行辐照。采用小角X射线散射(SAXS)研究辐照处理引起的β-LG构象变化。还通过高效尺寸排阻色谱(HPSEC)、非还原和还原条件下的十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)以及荧光对辐照后的蛋白质进行检测。SAXS分析表明,在不同a(w)和剂量水平下,固态辐照β-LG的结构构象与未辐照的β-LG基本相同。散射数据还表明,溶液中β-LG的辐照促进了寡聚体的形成。有趣的是,通过数据分析和模型构建发现,形成的寡聚体是线性分子,由β-LG二聚体(四聚体、六聚体等)的线性组合构成。SDS-PAGE分析和HPSEC色谱图也证实了寡聚体的形成,其中检测到分子量高于二聚体β-LG的产物。酪氨酸自由基之间分子间交联的形成被认为至少部分导致了这种情况的发生。结果表明,溶液中辐照的样品在γ射线辐照下呈现出一些构象变化,导致由β-LG二聚体亚基交联形成有序的寡聚体和聚集体,而固态辐照的样品未发生改变。