Time-resolved IR spectroscopy for monitoring protein dynamics in microcrystals.

Methods Enzymol

Graduate School of Science, University of Hyogo, Kouto, Kamigori, Ako, Hyogo, Japan. Electronic address:

Published: November 2024

AI Article Synopsis

  • - Understanding protein dynamics is essential for deciphering how proteins function, and time-resolved X-ray crystallography enhanced by X-ray free-electron lasers can capture structural changes at an atomic level, though interpreting this data can be complex due to differences between crystal and solution states.
  • - Time-resolved spectroscopy techniques, particularly time-resolved IR spectroscopy, provide a versatile approach to studying protein dynamics in both crystalline and solution phases, and are effective even for colorless proteins, revealing important chemical information.
  • - The chapter outlines a protocol for conducting time-resolved IR microspectroscopic measurements on protein microcrystals, detailing system setup, sample preparation, experimental conditions, and data analysis, while demonstrating the technique's advantages in comparing protein dynamics across different environments

Article Abstract

Analysis of protein dynamics is crucial for understanding the molecular mechanisms underlying protein function. To gain insights into the structural changes in proteins, time-resolved X-ray crystallography has been greatly advanced by the development of X-ray free-electron lasers. This tool has the potential to trace structural changes at atomic resolution; however, data interpretation and extrapolation to the solution state is often not straightforward as the in crystallo environment is not the same as it is in solution. On the other hand, time-resolved spectroscopy techniques, which have long been used for tracking protein dynamics, offer the advantage of being applicable irrespective of whether the target proteins are in crystalline or solution phase. Time-resolved IR spectroscopy is a particularly powerful technique, as it can be used on various proteins, including those that are colorless, and provides information on the chemical structures of functional sites of proteins and ligands which complements X-ray crystallography. This chapter presents the protocol for time-resolved IR microspectroscopic measurements of protein microcrystals. It includes an overview of the measurement system assembly, sample preparation, setting of experimental conditions, and time-resolved data analysis. It also describes, with examples, the usefulness of time-resolved IR measurements for comparing the dynamics between crystalline and solution conditions.

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Source
http://dx.doi.org/10.1016/bs.mie.2024.10.006DOI Listing

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