Cost-effective selective deuteration of aromatic amino acid residues produces long-lived solution 1H-NMR magnetization in proteins
Gaddafi I. Danmaliki
1
,
Shanshan Yu
2
,
Stefan Braun
1
,
Yuan Zhao
1
,
Jack Moore
1
,
Richard P Fahlman
1
,
Frederick R. West
2
,
Peter M Hwang
3
Publication type: Journal Article
Publication date: 2023-08-01
scimago Q2
wos Q2
SJR: 0.554
CiteScore: 4.2
Impact factor: 1.9
ISSN: 10907807, 10960856
PubMed ID:
37307676
Biochemistry
Biophysics
Condensed Matter Physics
Nuclear and High Energy Physics
Abstract
Solution NMR studies of large proteins are hampered by rapid signal decay due to short-range dipolar 1H–1H and 1H–13C interactions. These are attenuated by rapid rotation in methyl groups and by deuteration (2H), so selective 1H,13C-isotope labelling of methyl groups in otherwise perdeuterated proteins, combined with methyl transverse relaxation optimized spectroscopy (methyl-TROSY), is now standard for solution NMR of large protein systems > 25 kDa. For non-methyl positions, long-lived magnetization can be introduced as isolated 1H–12C groups. We have developed a cost-effective chemical synthesis for producing selectively deuterated phenylpyruvate and hydroxyphenylpyruvate. Feeding these amino acid precursors to E. coli in D2O, along with selectively deuterated anthranilate and unlabeled histidine, results in isolated and long-lived 1H magnetization in the aromatic rings of Phe (HD, HZ), Tyr (HD), Trp (HH2, HE3) and His (HD2 and HE1). We are additionally able to obtain stereoselective deuteration of Asp, Asn, and Lys amino acid residues using unlabeled glucose and fumarate as carbon sources and oxalate and malonate as metabolic inhibitors. Combining these approaches produces isolated 1H–12C groups in Phe, Tyr, Trp, His, Asp, Asn, and Lys in a perdeuterated background, which is compatible with standard 1H–13C labeling of methyl groups in Ala, Ile, Leu, Val, Thr, Met. We show that isotope labeling of Ala is improved using the transaminase inhibitor L-cycloserine, and labeling of Thr is improved through addition of Cys and Met, which are known inhibitors of homoserine dehydrogenase. We demonstrate the creation of long-lived 1H NMR signals in most amino acid residues using our model system, the WW domain of human Pin1, as well as the bacterial outer membrane protein PagP.
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Danmaliki G. I. et al. Cost-effective selective deuteration of aromatic amino acid residues produces long-lived solution 1H-NMR magnetization in proteins // Journal of Magnetic Resonance. 2023. Vol. 353. p. 107499.
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Danmaliki G. I., Yu S., Braun S., Zhao Y., Moore J., Fahlman R. P., West F. R., Hwang P. M. Cost-effective selective deuteration of aromatic amino acid residues produces long-lived solution 1H-NMR magnetization in proteins // Journal of Magnetic Resonance. 2023. Vol. 353. p. 107499.
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TY - JOUR
DO - 10.1016/j.jmr.2023.107499
UR - https://doi.org/10.1016/j.jmr.2023.107499
TI - Cost-effective selective deuteration of aromatic amino acid residues produces long-lived solution 1H-NMR magnetization in proteins
T2 - Journal of Magnetic Resonance
AU - Danmaliki, Gaddafi I.
AU - Yu, Shanshan
AU - Braun, Stefan
AU - Zhao, Yuan
AU - Moore, Jack
AU - Fahlman, Richard P
AU - West, Frederick R.
AU - Hwang, Peter M
PY - 2023
DA - 2023/08/01
PB - Elsevier
SP - 107499
VL - 353
PMID - 37307676
SN - 1090-7807
SN - 1096-0856
ER -
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@article{2023_Danmaliki,
author = {Gaddafi I. Danmaliki and Shanshan Yu and Stefan Braun and Yuan Zhao and Jack Moore and Richard P Fahlman and Frederick R. West and Peter M Hwang},
title = {Cost-effective selective deuteration of aromatic amino acid residues produces long-lived solution 1H-NMR magnetization in proteins},
journal = {Journal of Magnetic Resonance},
year = {2023},
volume = {353},
publisher = {Elsevier},
month = {aug},
url = {https://doi.org/10.1016/j.jmr.2023.107499},
pages = {107499},
doi = {10.1016/j.jmr.2023.107499}
}