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volume 7 issue 24 pages 20644-20655

Modulation of α-Chymotrypsin Conjugated to Magnetic Nanoparticles by the Non-Heating Low-Frequency Magnetic Field: Molecular Dynamics, Reaction Kinetics, and Spectroscopy Analysis

Igor V Uporov 1
Maria Efremova 1, 2, 3
Andrey N Prusov 4
Yuri I Golovin 1, 5
A.A. Kabanov 1, 6
Publication typeJournal Article
Publication date2022-06-07
scimago Q1
wos Q2
SJR0.773
CiteScore7.1
Impact factor4.3
ISSN24701343
General Chemistry
General Chemical Engineering
Abstract
Enzymes conjugated to magnetic nanoparticles (MNPs) undergo changes in the catalytic activity of the non-heating low-frequency magnetic field (LFMF). We apply in silico simulations by molecular dynamics (MD) and in vitro spectroscopic analysis of the enzyme kinetics and secondary structure to study α-chymotrypsin (CT) conjugated to gold-coated iron oxide MNPs. The latter are functionalized by either carboxylic or amino group moieties to vary the points of enzyme attachment. The MD simulation suggests that application of the stretching force to the CT globule by its amino or carboxylic groups causes shrinkage of the substrate-binding site but little if any changes in the catalytic triad. Consistent with this, in CT conjugated to MNPs by either amino or carboxylic groups, LFMF alters the Michaelis-Menten constant but not the apparent catalytic constant kcat (= Vmax/[E]o). Irrespective of the point of conjugation to MNPs, the CT secondary structure was affected with nearly complete loss of α-helices and increase in the random structures in LFMF, as shown by attenuated total reflection Fourier transformed infrared spectroscopy. Both the catalytic activity and the protein structure of MNP-CT conjugates restored 3 h after the field exposure. We believe that such remotely actuated systems can find applications in advanced manufacturing, nanomedicine, and other areas.
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Veselov M. M. et al. Modulation of α-Chymotrypsin Conjugated to Magnetic Nanoparticles by the Non-Heating Low-Frequency Magnetic Field: Molecular Dynamics, Reaction Kinetics, and Spectroscopy Analysis // ACS Omega. 2022. Vol. 7. No. 24. pp. 20644-20655.
GOST all authors (up to 50) Copy
Veselov M. M., Uporov I. V., Efremova M., Le Deygen I. M., Prusov A. N., Shchetinin I. V., Savchenko A. G., Golovin Y. I., Kabanov A., Klyachko N. L. Modulation of α-Chymotrypsin Conjugated to Magnetic Nanoparticles by the Non-Heating Low-Frequency Magnetic Field: Molecular Dynamics, Reaction Kinetics, and Spectroscopy Analysis // ACS Omega. 2022. Vol. 7. No. 24. pp. 20644-20655.
RIS |
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TY - JOUR
DO - 10.1021/acsomega.2c00704
UR - https://pubs.acs.org/doi/10.1021/acsomega.2c00704
TI - Modulation of α-Chymotrypsin Conjugated to Magnetic Nanoparticles by the Non-Heating Low-Frequency Magnetic Field: Molecular Dynamics, Reaction Kinetics, and Spectroscopy Analysis
T2 - ACS Omega
AU - Veselov, Maxim M
AU - Uporov, Igor V
AU - Efremova, Maria
AU - Le Deygen, Irina M
AU - Prusov, Andrey N
AU - Shchetinin, Igor V.
AU - Savchenko, Alexander G.
AU - Golovin, Yuri I
AU - Kabanov, A.A.
AU - Klyachko, Natalia L.
PY - 2022
DA - 2022/06/07
PB - American Chemical Society (ACS)
SP - 20644-20655
IS - 24
VL - 7
PMID - 35755395
SN - 2470-1343
ER -
BibTex |
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BibTex (up to 50 authors) Copy
@article{2022_Veselov,
author = {Maxim M Veselov and Igor V Uporov and Maria Efremova and Irina M Le Deygen and Andrey N Prusov and Igor V. Shchetinin and Alexander G. Savchenko and Yuri I Golovin and A.A. Kabanov and Natalia L. Klyachko},
title = {Modulation of α-Chymotrypsin Conjugated to Magnetic Nanoparticles by the Non-Heating Low-Frequency Magnetic Field: Molecular Dynamics, Reaction Kinetics, and Spectroscopy Analysis},
journal = {ACS Omega},
year = {2022},
volume = {7},
publisher = {American Chemical Society (ACS)},
month = {jun},
url = {https://pubs.acs.org/doi/10.1021/acsomega.2c00704},
number = {24},
pages = {20644--20655},
doi = {10.1021/acsomega.2c00704}
}
MLA
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MLA Copy
Veselov, Maxim M., et al. “Modulation of α-Chymotrypsin Conjugated to Magnetic Nanoparticles by the Non-Heating Low-Frequency Magnetic Field: Molecular Dynamics, Reaction Kinetics, and Spectroscopy Analysis.” ACS Omega, vol. 7, no. 24, Jun. 2022, pp. 20644-20655. https://pubs.acs.org/doi/10.1021/acsomega.2c00704.