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March 21, 2026Applied Sciences0 citationsOpen Access

Characterization of Oxidative Modifications to Short Peptides Using Low Dose Rate X-Rays

SKSavannah KiddTMThomas J. McCarthySSSimruthi Subramanian

Key Points

  • To explore the oxidative changes to short peptides induced by low dose rate X-rays and to quantify hydrogen peroxide production.
  • Utilized low dose rate X-rays from a commercial source for X-ray footprinting and mass spectrometry (XFMS).
  • Characterized oxidative modifications of short peptides under aerobic and low oxygen conditions.
  • Measured hydrogen peroxide production across various exposure doses.
  • Identified oxidative modifications of +14, +16, and +32 Da for peptides under different oxygen levels.
  • Quantified hydrogen peroxide production associated with various doses of X-ray exposure.

Abstract

The method of X-ray footprinting and mass spectrometry (XFMS) using high flux synchrotron X-ray sources has become an established method in structural biology and is based on the radiolytic production of hydroxyl radicals, which oxidatively modify protein sidechains. While other methods of producing hydroxyl radicals are available, one benefit of using high flux density sources is that hydroxyl radical scavenging reactions can be minimized, and exposure times kept short to minimize secondary reactions. Here we present an application of the XFMS method using low dose rate X-rays from a commercial instrument. We demonstrate the feasibility of the approach using short peptides, characterizing the oxidative modifications +14, +16, and +32 Da under both aerobic and low oxygen conditions, and we additionally quantify the hydrogen peroxide production for various doses using the low dose rate source. These results provide fundamental information on the oxidative damage to peptides due to hydroxyl radicals using a low dose rate X-ray source.

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Cite This Study

Kidd et al. (2026) studied this question.

synapsesocial.com/papers/69be36bf6e48c4981c675dc2https://doi.org/10.3390/app16062903
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