Spectrophotometric methods to probe the solution chemistry of lanthanide complexes with macromolecules.

Methods Enzymol

Glenn T. Seaborg Institute, Physical and Life Sciences Directorate, Lawrence Livermore National Laboratory, Livermore, CA, United States. Electronic address:

Published: June 2021

AI Article Synopsis

  • Recent advancements in lanthanide biochemistry have emerged due to new biomolecular platforms that effectively bind and transport lanthanide ions.* ! -
  • The chapter focuses on using spectrophotometric methods to analyze the stability of lanthanide-macromolecule complexes in solution.* ! -
  • Lanthanide ions possess distinct spectral properties that can be utilized to quantitatively study their chemistry, including factors like K, pH stability, and temperature effects.* !

Article Abstract

Lanthanide biochemistry has experienced a revival in recent years owing to the discovery of new biomolecular platforms that are amenable to bind, sequester, or transport lanthanide ions. This has inherently created a need for physicochemical methods that report on lanthanide-containing macromolecular systems. In this chapter, the use of spectrophotometric methods to study the stability of lanthanide-macromolecule complexes in solution is discussed. Indeed, lanthanide ions have unique spectral properties in the ultraviolet, visible, and near-infrared domains that set them apart from the more common elements encountered in biochemistry, and these unique features can be leveraged to study, in a quantitative and robust manner, the solution chemistry of their biorelevant species (K, pH stability, temperature profile, etc.). This chapter aims at bringing a method that has been established and validated in the small molecule chemistry field to this new era of lanthanide biochemistry.

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Source
http://dx.doi.org/10.1016/bs.mie.2020.12.012DOI Listing

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