volume 110 issue 15 pages 8121-8129

Density Functional Calculations of ATP Systems. 2. ATP Hydrolysis at the Active Site of Actin

Publication typeJournal Article
Publication date2006-03-25
scimago Q1
wos Q3
SJR0.742
CiteScore5.3
Impact factor2.9
ISSN15206106, 15205207, 10895647
PubMed ID:  16610915
Materials Chemistry
Surfaces, Coatings and Films
Physical and Theoretical Chemistry
Abstract
The hydrolysis of adenosine 5'-triphosphate (ATP) at the active site of actin has been studied using density functional calculations. The active site is modeled by the triphosphate tail of ATP, an Mg cation, surrounding water molecules, and the nearby protein residues. Four reaction paths have been followed by constraining coordinates that allow phosphate stretching, nucleophilic attack of the catalytic water, and OH(-) formation via water deprotonation. The lowest-energy barrier (21.0 kcal/mol) is obtained for a dissociative reaction where the terminal phosphate breaks on approaching the catalytic water, followed by proton release via a proton wire mechanism. A higher barrier (39.6 kcal/mol) results for an associative reaction path where OH(-) is formed first, with a pentacoordinated phosphorus atom (P-O distances 2.1 A). Stretching the terminal bridging P-O bond results in bond rupture at 2.8 A with an energy barrier of 28.8 kcal/mol. The residues Gln137 and His161 are not important in the reactions, but insight into their roles in vivo has been obtained. The favored coordination of the end products H(2)PO(4)(-) and ADP(3-) includes a hydrogen bond and an O-Mg-O bridge between the phosphates as well as a hydrogen bond between H(2)PO(4)(-) and the Ser14 side chain. The total energy is 2.1 kcal/mol lower than in the initial reactants. Classical simulations of ATP- and ADP.P(i)-actin show few hydrolysis-induced differences in the protein structure, indicating that phosphate migration is necessary for a change in conformation.
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Akola J., Jones R. O. Density Functional Calculations of ATP Systems. 2. ATP Hydrolysis at the Active Site of Actin // Journal of Physical Chemistry B. 2006. Vol. 110. No. 15. pp. 8121-8129.
GOST all authors (up to 50) Copy
Akola J., Jones R. O. Density Functional Calculations of ATP Systems. 2. ATP Hydrolysis at the Active Site of Actin // Journal of Physical Chemistry B. 2006. Vol. 110. No. 15. pp. 8121-8129.
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RIS Copy
TY - JOUR
DO - 10.1021/jp054921d
UR - https://doi.org/10.1021/jp054921d
TI - Density Functional Calculations of ATP Systems. 2. ATP Hydrolysis at the Active Site of Actin
T2 - Journal of Physical Chemistry B
AU - Akola, Jaakko
AU - Jones, R. O.
PY - 2006
DA - 2006/03/25
PB - American Chemical Society (ACS)
SP - 8121-8129
IS - 15
VL - 110
PMID - 16610915
SN - 1520-6106
SN - 1520-5207
SN - 1089-5647
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2006_Akola,
author = {Jaakko Akola and R. O. Jones},
title = {Density Functional Calculations of ATP Systems. 2. ATP Hydrolysis at the Active Site of Actin},
journal = {Journal of Physical Chemistry B},
year = {2006},
volume = {110},
publisher = {American Chemical Society (ACS)},
month = {mar},
url = {https://doi.org/10.1021/jp054921d},
number = {15},
pages = {8121--8129},
doi = {10.1021/jp054921d}
}
MLA
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MLA Copy
Akola, Jaakko, and R. O. Jones. “Density Functional Calculations of ATP Systems. 2. ATP Hydrolysis at the Active Site of Actin.” Journal of Physical Chemistry B, vol. 110, no. 15, Mar. 2006, pp. 8121-8129. https://doi.org/10.1021/jp054921d.