Van Dijk A A, De Boef E, Bekkers A, Van Wijk L L, Van Swieten E, Hamer R J, Robillard G T
Department of Biochemistry and Biophysical Chemistry, University of Groningen, The Netherlands.
Protein Sci. 1997 Mar;6(3):649-56. doi: 10.1002/pro.5560060314.
The structure of the central repetitive domain of high molecular weight HMW) wheat gluten proteins was characterized in solution and in the dry state using HMW proteins Bx6 and Bx7 and a subcloned, bacterially expressed part of the repetitive domain of HMW Dx5. Model studies of the HMW consensus peptides PGQGQQ and GYYPTSPQQ formed the basis for the data analysis (van Dijk AA et al., 1997, Protein Sci 6:637-648). In solution, the repetitive domain contained a continuous nonoverlapping series of both type I and type II II beta-turns at positions predicted from the model studies; type II beta-turns occurred at QPGQ and QQGY sequences and type I beta-turns at YPTS and SPQQ. The subcloned part of the HMW Dx5 repetitive domain sometimes migrated as two bands on SDS-PAGE; we present evidence that this may be caused by a single amino acid insertion that disturbs the regular structure of beta-turns. The type I beta-turns are lost when the protein is dried on a solid surface, probably by conversion to type II beta-turns. The homogeneous type II beta-turn distribution is compatible with the formation of a beta-spiral structure, which provides the protein with elastic properties. The beta-turns and thus the beta-spiral are stabilized by hydrogen bonds within and between turns. Reformation of this hydrogen bonding network after, e.g., mechanical disruption may be important for the elastic properties of gluten proteins.
利用高分子量(HMW)小麦面筋蛋白Bx6和Bx7以及HMW Dx5重复结构域的亚克隆细菌表达部分,对溶液状态和干燥状态下的HMW小麦面筋蛋白中央重复结构域进行了表征。对HMW共有肽PGQGQQ和GYYPTSPQQ的模型研究构成了数据分析的基础(van Dijk AA等人,1997年,《蛋白质科学》6:637 - 648)。在溶液中,重复结构域在模型研究预测的位置包含一系列连续且不重叠的I型和II型β-转角;II型β-转角出现在QPGQ和QQGY序列处,I型β-转角出现在YPTS和SPQQ处。HMW Dx5重复结构域的亚克隆部分在SDS - PAGE上有时迁移为两条带;我们提供的证据表明,这可能是由单个氨基酸插入导致的,该插入扰乱了β-转角的规则结构。当蛋白质在固体表面干燥时,I型β-转角会丢失,可能是转变为II型β-转角。均匀的II型β-转角分布与β-螺旋结构的形成相符,β-螺旋结构赋予蛋白质弹性特性。β-转角以及β-螺旋通过转角内部及之间的氢键得以稳定。例如,在机械破坏后这种氢键网络的重新形成可能对面筋蛋白的弹性特性很重要。