Department of Industrial and Physical Pharmacy, Purdue University, West Lafayette, Indiana 47901, USA.
Mol Pharm. 2012 Apr 2;9(4):718-26. doi: 10.1021/mp3000088. Epub 2012 Feb 29.
The local effects of hydration on myoglobin (Mb) in solid matrices containing mannitol or sucrose (1:1 w/w, protein:additive) were mapped using hydrogen-deuterium exchange with mass spectrometric analysis (HDX-MS) at 5 °C and compared to solution controls. Solid powders were exposed to D₂O(g) at controlled activity (a(w)) followed by reconstitution and analysis of the intact protein and peptides produced by pepsin digestion. HDX varied with matrix type, a(w), and position along the protein backbone. HDX was less in sucrose matrices than in mannitol matrices at all a(w) while the difference in solution was negligible. Differences in HDX in the two matrices were detectable despite similarities in their bulk water content. The extent of exchange in solids is proposed as a measure of the hydration of exchangeable amide groups, as well as protein conformation and dynamics; pepsin digestion allows these effects to be mapped with peptide-level resolution.
采用氢氘交换质谱分析(HDX-MS),在 5°C 下对含有甘露醇或蔗糖(1:1 w/w,蛋白质:添加剂)的固体基质中肌红蛋白(Mb)的水合作用的局部影响进行了研究,并与溶液对照进行了比较。固体粉末在受控活度(a(w))下暴露于 D₂O(g),然后对完整蛋白质和胃蛋白酶消化产生的肽进行复性和分析。HDX 随基质类型、a(w)和蛋白质主链位置的不同而变化。在所有 a(w)下,蔗糖基质中的 HDX 均小于甘露醇基质,而溶液中的差异可以忽略不计。尽管两种基质的体相含水量相似,但仍能检测到两种基质中 HDX 的差异。固体中交换的程度被提议作为可交换酰胺基团水合程度以及蛋白质构象和动力学的衡量标准;胃蛋白酶消化允许以肽级分辨率绘制这些影响图。