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Hydrolysis of chemically distinct sites of human serum albumin by polyoxometalate: A hybrid QM/MM (ONIOM) study.

Vindi M Jayasinghe-ArachchigeQiaoyu HuGaurav SharmaThomas J PaulMarcus LundbergDavid QuinoneroTatjana N Parac-VogtRajeev Prabhakar
Published in: Journal of computational chemistry (2018)
In this study, mechanisms of hydrolysis of all four chemically diverse cleavage sites of human serum albumin (HSA) by [Zr(OH)(PW11 O39 )]4- (ZrK) have been investigated using the hybrid two-layer QM/MM (ONIOM) method. These reactions have been proposed to occur through the following two mechanisms: internal attack (IA) and water assisted (WA). In both mechanisms, the cleavage of the peptide bond in the Cys392-Glu393 site of HSA is predicted to occur in the rate-limiting step of the mechanism. With the barrier of 27.5 kcal/mol for the hydrolysis of this site, the IA mechanism is found to be energetically more favorable than the WA mechanism (barrier = 31.6 kcal/mol). The energetics for the IA mechanism are in line with the experimentally measured values for the cleavage of a wide range of dipeptides. These calculations also suggest an energetic preference (Cys392-Glu393, Ala257-Asp258, Lys313-Asp314, and Arg114-Leu115) for the hydrolysis of all four sites of HSA. © 2018 Wiley Periodicals, Inc.
Keyphrases
  • human serum albumin
  • anaerobic digestion
  • dna binding
  • computed tomography
  • density functional theory
  • mass spectrometry
  • molecular dynamics simulations
  • pet ct
  • high resolution
  • positron emission tomography