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Amine additives for improved in-ESI H/D exchange.
Sergey Osipenko1, Eugene Nikolaev1, Yury Kostyukevich1
1Center for Computational and Data-Intensive Science and Engineering, Skolkovo Institute of Science and Technology, Nobel Str., 3, 121205 Moscow, Russia. e.nikolaev@skoltech.ru.
Amine additives significantly boost in-solution electrospray ionization hydrogen-deuterium exchange (in-ESI H/D exchange) for small molecules, peptides, and proteins. This method enhances deuterium incorporation without requiring elevated temperatures, simplifying H/D exchange analysis.
Area of Science:
- Analytical Chemistry
- Mass Spectrometry
- Biochemistry
Background:
- In-solution electrospray ionization hydrogen-deuterium exchange (in-ESI H/D exchange) is valuable for analyzing complex mixtures.
- Standard in-ESI H/D exchange often requires high temperatures, potentially causing artifactual exchanges and complicating data interpretation.
- Gas-phase H/D exchange efficiency is influenced by the deuterating agent's basicity, suggesting amine additives could improve in-ESI exchange.
Purpose of the Study:
- To evaluate the efficacy of various amines in enhancing in-ESI H/D exchange compared to using D2O alone.
- To identify an optimal amine modifier for increasing the extent of H/D exchange in small molecules, peptides, and proteins.
- To investigate the mechanism by which amines facilitate in-ESI H/D exchange.
Main Methods:
- In-solution electrospray ionization mass spectrometry (in-ESI-MS) was employed.
- Experiments compared deuterium incorporation using D2O alone versus D2O with different amine additives (primary, secondary, tertiary).
- Analysis focused on the extent of H/D exchange in small molecules, peptides, and proteins under various conditions, including ambient temperature.
Main Results:
- Amine additives substantially increased the extent of H/D exchange across small molecules, peptides, and proteins, even without capillary heating.
- The order of increasing exchange efficiency was observed as: tertiary amines < secondary amines < primary amines.
- Evidence suggests amines act as deuterating agents after initial exchange with D2O, facilitating broader H/D exchange.
Conclusions:
- Primary amines are the most effective additives for enhancing in-ESI H/D exchange.
- The use of amine additives offers a method to improve H/D exchange efficiency, particularly for small molecule analysis, without the need for elevated temperatures.
- Further research into amine-enhanced H/D exchange in peptides and proteins is warranted.
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