Department of Industrial and Physical Pharmacy, College of Pharmacy, Purdue University, 575 Stadium Mall Drive, West Lafayette, Indiana 47907, United States.
National Institute for Bioprocessing Research and Training, Belfield, Blackrock, Co., Dublin A94 X099, Ireland.
Mol Pharm. 2020 Sep 8;17(9):3501-3512. doi: 10.1021/acs.molpharmaceut.0c00521. Epub 2020 Jul 27.
The effects of peptide secondary structure on the rate and extent of deuterium incorporation in solid-state hydrogen deuterium exchange mass spectrometry (ssHDX-MS) were assessed. Unstructured poly-d,l-alanine (PDLA) peptides, an α-helical model peptide (peptide A) and a β-sheet model peptide (peptide B), were co-lyophilized with various excipients. Peptide structures were confirmed in solution using circular dichroism (CD) spectroscopy and in the solid state with Fourier transform infrared (FTIR) spectroscopy. ssHDX-MS was conducted at two relative humidities (11 and 23% RH DO) and deuterium uptake kinetics were monitored over 10 days. The relative contributions of peptide secondary structure and matrix interactions to deuteration incorporation were evaluated by comparing the ssHDX-MS kinetic data of peptide A and peptide B with PDLA of similar molecular weight. The results demonstrate that both peptide secondary structure and interactions with the solid matrix contribute to the protection from exchange in ssHDX-MS. A quantitative data analysis and interpretation method is presented, in which the number of protected amide bonds is calculated as the difference between the maximum deuterium incorporation in solution and in solid samples.
研究了肽二级结构对固态氘氚交换质谱(ssHDX-MS)中氘掺入速率和程度的影响。将无规聚-d,l-丙氨酸(PDLA)肽、α-螺旋模型肽(肽 A)和β-折叠模型肽(肽 B)与各种赋形剂共冻干。使用圆二色性(CD)光谱在溶液中以及傅里叶变换红外(FTIR)光谱在固态中确认肽结构。在两个相对湿度(11% 和 23% RH DO)下进行 ssHDX-MS,并在 10 天内监测氘吸收动力学。通过将肽 A 和肽 B 的 ssHDX-MS 动力学数据与具有相似分子量的 PDLA 进行比较,评估了肽二级结构和与固体基质相互作用对氘掺入的贡献。结果表明,肽二级结构和与固体基质的相互作用都有助于 ssHDX-MS 中的交换保护。提出了一种定量数据分析和解释方法,其中保护的酰胺键数计算为溶液中最大氘掺入量与固体样品中最大氘掺入量之间的差值。