том 125 издание 50 страницы 15608-15613

True Stabilization Energies for the Optimal Planar Hydrogen-Bonded and Stacked Structures of Guanine···Cytosine, Adenine···Thymine, and Their 9- and 1-Methyl Derivatives:  Complete Basis Set Calculations at the MP2 and CCSD(T) Levels and Comparison with Experiment

Тип публикацииJournal Article
Дата публикации2003-11-18
scimago Q1
wos Q1
БС1
SJR5.489
CiteScore24.4
Impact factor15.6
ISSN00027863, 15205126
General Chemistry
Catalysis
Biochemistry
Colloid and Surface Chemistry
Краткое описание
Planar H-bonded and stacked structures of guanine...cytosine (G.C), adenine...thymine (A...T), 9-methylguanine...1-methylcytosine (mG...mC), and 9-methyladenine...1-methylthymine (mA...mT) were optimized at the RI-MP2 level using the TZVPP ([5s3p2d1f/3s2p1d]) basis set. Planar H-bonded structures of G...C, mG...mC, and A...T correspond to the Watson-Crick (WC) arrangement, in contrast to mA...mT for which the Hoogsteen (H) structure is found. Stabilization energies for all structures were determined as the sum of the complete basis set limit of MP2 energies and a (DeltaE(CCSD(T)) - DeltaE(MP2)) correction term evaluated with the cc-pVDZ(0.25,0.15) basis set. The complete basis set limit of MP2 energies was determined by two-point extrapolation using the aug-cc-pVXZ basis sets for X = D and T and X = T and Q. This procedure is required since the convergency of the MP2 interaction energy for the present complexes is rather slow, and it is thus important to include the extrapolation to the complete basis set limit. For the MP2/aug-cc-pVQZ level of theory, stabilization energies for all complexes studied are already very close to the complete basis set limit. The much cheaper D-->T extrapolation provided a complete basis set limit close (by less than 0.7 kcal/mol) to the more accurate T-->Q term, and the D-->T extrapolation can be recommended for evaluation of complete basis set limits of more extended complexes (e.g. larger motifs of DNA). The convergency of the (DeltaE(CCSD(T)) - DeltaE(MP2)) term is known to be faster than that of the MP2 or CCSD(T) correlation energy itself, and the cc-pVDZ(0.25,0.15) basis set provides reasonable values for planar H-bonded as well as stacked structures. Inclusion of the CCSD(T) correction is essential for obtaining reliable relative values for planar H-bonding and stacking interactions; neglecting the CCSD(T) correction results in very considerable errors between 2.5 and 3.4 kcal/mol. Final stabilization energies (kcal/mol) for the base pairs studied are very substantial (A...T WC, 15.4; mA...mT H, 16.3; A...T stacked, 11.6; mA...mT stacked, 13.1; G...C WC, 28.8; mG...mC WC, 28.5; G...C stacked, 16.9; mG...mC stacked, 18.0), much larger than published previously. On the basis of comparison with experimental data, we conclude that our values represent the lower boundary of the true stabilization energies. On the basis of error analysis, we expect the present H-bonding energies to be fairly close to the true values, while stacked energies are still expected to be about 10% too low. The stacking energy for the mG...mC pair is considerably lower than the respective H-bonding energy, but it is larger than the mA...mT H-bonding energy. This conclusion could significantly change the present view on the importance of specific H-bonding interactions and nonspecific stacking interactions in nature, for instance, in DNA. Present stabilization energies for H-bonding and stacking energies represent the most accurate and reliable values and can be considered as new reference data.
Найдено 
Для доступа к списку цитирований публикации необходимо авторизоваться.
Для доступа к списку профилей, цитирующих публикацию, необходимо авторизоваться.

Топ-30

Журналы

5
10
15
20
25
30
35
40
Physical Chemistry Chemical Physics
37 публикаций, 10.85%
Journal of Physical Chemistry A
32 публикации, 9.38%
Journal of Physical Chemistry B
31 публикация, 9.09%
Journal of Chemical Theory and Computation
23 публикации, 6.74%
Chemical Physics Letters
22 публикации, 6.45%
Journal of Chemical Physics
17 публикаций, 4.99%
Journal of Computational Chemistry
15 публикаций, 4.4%
Journal of the American Chemical Society
13 публикаций, 3.81%
Chemistry - A European Journal
11 публикаций, 3.23%
Journal of Molecular Modeling
6 публикаций, 1.76%
ChemPhysChem
6 публикаций, 1.76%
Journal of Physical Chemistry C
5 публикаций, 1.47%
Chemical Communications
4 публикации, 1.17%
Inorganic Chemistry
3 публикации, 0.88%
Structural Chemistry
3 публикации, 0.88%
Biophysical Chemistry
3 публикации, 0.88%
Chemical Physics
3 публикации, 0.88%
Journal of Chemical Information and Modeling
3 публикации, 0.88%
Biopolymers
3 публикации, 0.88%
Wiley Interdisciplinary Reviews: Computational Molecular Science
3 публикации, 0.88%
Crystal Growth and Design
3 публикации, 0.88%
Chemical Reviews
3 публикации, 0.88%
New Journal of Chemistry
3 публикации, 0.88%
CrystEngComm
3 публикации, 0.88%
Molecular Physics
3 публикации, 0.88%
Acta Crystallographica Section B: Structural Science, Crystal Engineering and Materials
2 публикации, 0.59%
Journal of Theoretical and Computational Chemistry
2 публикации, 0.59%
Collection of Czechoslovak Chemical Communications
2 публикации, 0.59%
Journal of Molecular Structure
2 публикации, 0.59%
5
10
15
20
25
30
35
40

Издатели

20
40
60
80
100
120
140
American Chemical Society (ACS)
125 публикаций, 36.66%
Royal Society of Chemistry (RSC)
56 публикаций, 16.42%
Wiley
52 публикации, 15.25%
Elsevier
43 публикации, 12.61%
Springer Nature
21 публикация, 6.16%
AIP Publishing
18 публикаций, 5.28%
Taylor & Francis
4 публикации, 1.17%
International Union of Crystallography (IUCr)
2 публикации, 0.59%
World Scientific
2 публикации, 0.59%
Institute of Organic Chemistry & Biochemistry
2 публикации, 0.59%
Pleiades Publishing
2 публикации, 0.59%
Oxford University Press
2 публикации, 0.59%
MDPI
1 публикация, 0.29%
IOP Publishing
1 публикация, 0.29%
OOO Zhurnal "Mendeleevskie Soobshcheniya"
1 публикация, 0.29%
Scientific Research Publishing
1 публикация, 0.29%
American Association for the Advancement of Science (AAAS)
1 публикация, 0.29%
Institute of Molecular Biology and Genetics (NAS Ukraine)
1 публикация, 0.29%
Cold Spring Harbor Laboratory
1 публикация, 0.29%
Proceedings of the National Academy of Sciences (PNAS)
1 публикация, 0.29%
Annual Reviews
1 публикация, 0.29%
Palladin Institute of Biochemistry of the NASU
1 публикация, 0.29%
20
40
60
80
100
120
140
  • Мы не учитываем публикации, у которых нет DOI.
  • Статистика публикаций обновляется еженедельно.

Вы ученый?

Создайте профиль, чтобы получать персональные рекомендации коллег, конференций и новых статей.
Метрики
341
Поделиться
Цитировать
ГОСТ |
Цитировать
Jurečka P., Niemeyer C. M. True Stabilization Energies for the Optimal Planar Hydrogen-Bonded and Stacked Structures of Guanine···Cytosine, Adenine···Thymine, and Their 9- and 1-Methyl Derivatives: Complete Basis Set Calculations at the MP2 and CCSD(T) Levels and Comparison with Experiment // Journal of the American Chemical Society. 2003. Vol. 125. No. 50. pp. 15608-15613.
ГОСТ со всеми авторами (до 50) Скопировать
Jurečka P., Niemeyer C. M. True Stabilization Energies for the Optimal Planar Hydrogen-Bonded and Stacked Structures of Guanine···Cytosine, Adenine···Thymine, and Their 9- and 1-Methyl Derivatives: Complete Basis Set Calculations at the MP2 and CCSD(T) Levels and Comparison with Experiment // Journal of the American Chemical Society. 2003. Vol. 125. No. 50. pp. 15608-15613.
RIS |
Цитировать
TY - JOUR
DO - 10.1021/ja036611j
UR - https://doi.org/10.1021/ja036611j
TI - True Stabilization Energies for the Optimal Planar Hydrogen-Bonded and Stacked Structures of Guanine···Cytosine, Adenine···Thymine, and Their 9- and 1-Methyl Derivatives: Complete Basis Set Calculations at the MP2 and CCSD(T) Levels and Comparison with Experiment
T2 - Journal of the American Chemical Society
AU - Jurečka, Petr
AU - Niemeyer, C. M.
PY - 2003
DA - 2003/11/18
PB - American Chemical Society (ACS)
SP - 15608-15613
IS - 50
VL - 125
PMID - 14664608
SN - 0002-7863
SN - 1520-5126
ER -
BibTex |
Цитировать
BibTex (до 50 авторов) Скопировать
@article{2003_Jurečka,
author = {Petr Jurečka and C. M. Niemeyer},
title = {True Stabilization Energies for the Optimal Planar Hydrogen-Bonded and Stacked Structures of Guanine···Cytosine, Adenine···Thymine, and Their 9- and 1-Methyl Derivatives: Complete Basis Set Calculations at the MP2 and CCSD(T) Levels and Comparison with Experiment},
journal = {Journal of the American Chemical Society},
year = {2003},
volume = {125},
publisher = {American Chemical Society (ACS)},
month = {nov},
url = {https://doi.org/10.1021/ja036611j},
number = {50},
pages = {15608--15613},
doi = {10.1021/ja036611j}
}
MLA
Цитировать
Jurečka, Petr, and C. M. Niemeyer. “True Stabilization Energies for the Optimal Planar Hydrogen-Bonded and Stacked Structures of Guanine···Cytosine, Adenine···Thymine, and Their 9- and 1-Methyl Derivatives: Complete Basis Set Calculations at the MP2 and CCSD(T) Levels and Comparison with Experiment.” Journal of the American Chemical Society, vol. 125, no. 50, Nov. 2003, pp. 15608-15613. https://doi.org/10.1021/ja036611j.