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  4. Establishing the Catalytic Mechanism of Human Pancreatic α-Amylase with QM/MM Methods
 
research article

Establishing the Catalytic Mechanism of Human Pancreatic α-Amylase with QM/MM Methods

Pinto, Gaspar Pamplona
•
Brás, Natércia Fernandes
•
Perez, Marta A. S.
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2015
Journal of Chemical Theory and Computation

In this work, we studied the catalytic mechanism of human pancreatic α-amylase (HPA). Our goal was to determine the catalytic mechanism of HPA with atomic detail using computational methods. We demonstrated that the HPA catalytic mechanism consists of two steps, the first of which (glycosylation step) involves breaking the glycosidic bond to culminate in the formation of a covalent intermediate. The second (deglycosylation step) consists of the addition of a water molecule to release the enzyme/substrate covalent intermediate, completing the hydrolysis of the sugar. The active site was very open to the solvent. Our mechanism basically differs from the previously proposed mechanism by having two water molecules instead of only one near the active site that participate in the mechanism. We also demonstrate the relevant role of the three catalytic amino acids, two aspartate residues and a glutamate (D197, E233, and D300), during catalysis. It was also shown that the rate limiting step was glycosylation, and its activation energy was in agreement with experimental values obtained for HPA. The experimental activation energy was 14.4 kcal mol-1, and the activation energy obtained computationally was 15.1 kcal mol-1. © 2015 American Chemical Society.

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Type
research article
DOI
10.1021/acs.jctc.5b00222
Author(s)
Pinto, Gaspar Pamplona
Brás, Natércia Fernandes
Perez, Marta A. S.
Fernandes, Pedro A.
Russo, Nino
Ramos, Maria J.
Toscano, Marirosa
Date Issued

2015

Published in
Journal of Chemical Theory and Computation
Volume

11

Issue

6

Start page

2508

End page

2516

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
ISIC  
Available on Infoscience
May 20, 2015
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/114015
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