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An ab initio quantum chemical investigation of Ca-43 NMR interaction parameters for the Ca2+ sites in organic complexes and in metalloproteins

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An ab initio quantum chemical investigation of Ca-43 NMR interaction parameters for the Ca2+ sites in organic complexes and in metalloproteins. / Wong, Alan; Laurencin, Danielle; Wu, Gang et al.
In: Journal of Physical Chemistry A, Vol. 112, No. 40, 01.10.2008, p. 9807-9813.

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Wong A, Laurencin D, Wu G, Dupree R, Smith ME. An ab initio quantum chemical investigation of Ca-43 NMR interaction parameters for the Ca2+ sites in organic complexes and in metalloproteins. Journal of Physical Chemistry A. 2008 Oct 1;112(40):9807-9813. doi: 10.1021/jp801015y

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Wong, Alan ; Laurencin, Danielle ; Wu, Gang et al. / An ab initio quantum chemical investigation of Ca-43 NMR interaction parameters for the Ca2+ sites in organic complexes and in metalloproteins. In: Journal of Physical Chemistry A. 2008 ; Vol. 112, No. 40. pp. 9807-9813.

Bibtex

@article{8aa1bcc1d57c46f7859d5a4e22b08e09,
title = "An ab initio quantum chemical investigation of Ca-43 NMR interaction parameters for the Ca2+ sites in organic complexes and in metalloproteins",
abstract = "We have carried out an extensive ab initio quantum chemical (QC) Ca-43 NMR study on a series of Ca-O organic compounds and three different Ca-bound proteins and found that the HF/6-31G* level of function can reliably predict Ca-43 NMR interaction parameters (delta(iso) and chi(q)), especially for organic solids. This QC study finds correlations between Ca-O bond environment (mean distance and coordination number) and delta(iso)(Ca-43). Although relatively small values of chi(q)(Ca-43) are found for Ca-O organic compounds with a coordination number between 6 and 10, the QC shows that chi(q)(Ca-43) is sensitive to the Ca-O coordination geometry of the Ca2+ sites in metalloproteins-a potentially important observation. An application of such ab initio QC Ca-43 NMR studies is in characterizing the Ca-O bonding environment around target Ca2+ sites. As an example, we propose a new potential analytical approach using the absolute Ca-43 chemical shielding constant to investigate the hydration shell of Ca2+ in a dilute CaCl2 aqueous solution. Furthermore, by adopting a NMR methodology similar to that reported in Wong et al. Chem. Phys. Lett. 2006, 427, 201, natural abundance Ca-43 MAS NMR spectra of Ca(L-glutamate)(2)center dot 4H(2)O were recorded, and delta(iso)(Ca-43) and the quadrupolar parameter (P-q) were estimated to be 6.6 ppm and 0.8 MHz, respectively.",
author = "Alan Wong and Danielle Laurencin and Gang Wu and Ray Dupree and Smith, {Mark E.}",
year = "2008",
month = oct,
day = "1",
doi = "10.1021/jp801015y",
language = "English",
volume = "112",
pages = "9807--9813",
journal = "Journal of Physical Chemistry A",
issn = "1520-5215",
publisher = "AMER CHEMICAL SOC",
number = "40",

}

RIS

TY - JOUR

T1 - An ab initio quantum chemical investigation of Ca-43 NMR interaction parameters for the Ca2+ sites in organic complexes and in metalloproteins

AU - Wong, Alan

AU - Laurencin, Danielle

AU - Wu, Gang

AU - Dupree, Ray

AU - Smith, Mark E.

PY - 2008/10/1

Y1 - 2008/10/1

N2 - We have carried out an extensive ab initio quantum chemical (QC) Ca-43 NMR study on a series of Ca-O organic compounds and three different Ca-bound proteins and found that the HF/6-31G* level of function can reliably predict Ca-43 NMR interaction parameters (delta(iso) and chi(q)), especially for organic solids. This QC study finds correlations between Ca-O bond environment (mean distance and coordination number) and delta(iso)(Ca-43). Although relatively small values of chi(q)(Ca-43) are found for Ca-O organic compounds with a coordination number between 6 and 10, the QC shows that chi(q)(Ca-43) is sensitive to the Ca-O coordination geometry of the Ca2+ sites in metalloproteins-a potentially important observation. An application of such ab initio QC Ca-43 NMR studies is in characterizing the Ca-O bonding environment around target Ca2+ sites. As an example, we propose a new potential analytical approach using the absolute Ca-43 chemical shielding constant to investigate the hydration shell of Ca2+ in a dilute CaCl2 aqueous solution. Furthermore, by adopting a NMR methodology similar to that reported in Wong et al. Chem. Phys. Lett. 2006, 427, 201, natural abundance Ca-43 MAS NMR spectra of Ca(L-glutamate)(2)center dot 4H(2)O were recorded, and delta(iso)(Ca-43) and the quadrupolar parameter (P-q) were estimated to be 6.6 ppm and 0.8 MHz, respectively.

AB - We have carried out an extensive ab initio quantum chemical (QC) Ca-43 NMR study on a series of Ca-O organic compounds and three different Ca-bound proteins and found that the HF/6-31G* level of function can reliably predict Ca-43 NMR interaction parameters (delta(iso) and chi(q)), especially for organic solids. This QC study finds correlations between Ca-O bond environment (mean distance and coordination number) and delta(iso)(Ca-43). Although relatively small values of chi(q)(Ca-43) are found for Ca-O organic compounds with a coordination number between 6 and 10, the QC shows that chi(q)(Ca-43) is sensitive to the Ca-O coordination geometry of the Ca2+ sites in metalloproteins-a potentially important observation. An application of such ab initio QC Ca-43 NMR studies is in characterizing the Ca-O bonding environment around target Ca2+ sites. As an example, we propose a new potential analytical approach using the absolute Ca-43 chemical shielding constant to investigate the hydration shell of Ca2+ in a dilute CaCl2 aqueous solution. Furthermore, by adopting a NMR methodology similar to that reported in Wong et al. Chem. Phys. Lett. 2006, 427, 201, natural abundance Ca-43 MAS NMR spectra of Ca(L-glutamate)(2)center dot 4H(2)O were recorded, and delta(iso)(Ca-43) and the quadrupolar parameter (P-q) were estimated to be 6.6 ppm and 0.8 MHz, respectively.

U2 - 10.1021/jp801015y

DO - 10.1021/jp801015y

M3 - Journal article

VL - 112

SP - 9807

EP - 9813

JO - Journal of Physical Chemistry A

JF - Journal of Physical Chemistry A

SN - 1520-5215

IS - 40

ER -