Cargando…

Direct NMR Detection of Bifurcated Hydrogen Bonding in the α-Helix N-Caps of Ankyrin Repeat Proteins

[Image: see text] In biomolecules, bifurcated H-bonds typically involve the interaction of two donor protons with the two lone pairs of oxygen. Here, we present direct NMR evidence for a bifurcated H-bonding arrangement involving nitrogen as the acceptor atom. Specifically, the H-bond network compri...

Descripción completa

Detalles Bibliográficos
Autores principales: Preimesberger, Matthew R., Majumdar, Ananya, Aksel, Tural, Sforza, Kevin, Lectka, Thomas, Barrick, Doug, Lecomte, Juliette T. J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2015
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4311973/
https://www.ncbi.nlm.nih.gov/pubmed/25578373
http://dx.doi.org/10.1021/ja510784g
_version_ 1782355070883463168
author Preimesberger, Matthew R.
Majumdar, Ananya
Aksel, Tural
Sforza, Kevin
Lectka, Thomas
Barrick, Doug
Lecomte, Juliette T. J.
author_facet Preimesberger, Matthew R.
Majumdar, Ananya
Aksel, Tural
Sforza, Kevin
Lectka, Thomas
Barrick, Doug
Lecomte, Juliette T. J.
author_sort Preimesberger, Matthew R.
collection PubMed
description [Image: see text] In biomolecules, bifurcated H-bonds typically involve the interaction of two donor protons with the two lone pairs of oxygen. Here, we present direct NMR evidence for a bifurcated H-bonding arrangement involving nitrogen as the acceptor atom. Specifically, the H-bond network comprises the Nδ1 atom of histidine and both the backbone N–H and side-chain Oγ-H of threonine within the conserved TXXH motif of ankyrin repeat (AR) proteins. Identification of the H-bonding partners is achieved via solution NMR H-bond scalar coupling (HBC) and H/D isotope shift experiments. Quantitative determination of (2h)J(NN) HBCs supports that Thr N–H···Nδ1 His H-bonds within internal repeats are stronger (∼4 Hz) than in the solvent exposed C-terminal AR (∼2 Hz). In agreement, pK(a) values for the buried histidines bridging internal ARs are several units lower than those of the C-terminus. Quantum chemical calculations show that the relevant (2h)J and (1h)J couplings are dominated by the Fermi contact interaction. Finally, a Thr-to-Val replacement, which eliminates the Thr Oγ-H···Nδ1 His H-bond and decreases protein stability, results in a 25% increase in (2h)J(NN), attributed to optimization of the Val N–H···Nδ1 His H-bond. Overall, the results provide new insights into the H-bonding properties of histidine, a refined structural rationalization for the folding cooperativity of AR proteins, and a challenging benchmark for the calculation of HBCs.
format Online
Article
Text
id pubmed-4311973
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-43119732016-01-12 Direct NMR Detection of Bifurcated Hydrogen Bonding in the α-Helix N-Caps of Ankyrin Repeat Proteins Preimesberger, Matthew R. Majumdar, Ananya Aksel, Tural Sforza, Kevin Lectka, Thomas Barrick, Doug Lecomte, Juliette T. J. J Am Chem Soc [Image: see text] In biomolecules, bifurcated H-bonds typically involve the interaction of two donor protons with the two lone pairs of oxygen. Here, we present direct NMR evidence for a bifurcated H-bonding arrangement involving nitrogen as the acceptor atom. Specifically, the H-bond network comprises the Nδ1 atom of histidine and both the backbone N–H and side-chain Oγ-H of threonine within the conserved TXXH motif of ankyrin repeat (AR) proteins. Identification of the H-bonding partners is achieved via solution NMR H-bond scalar coupling (HBC) and H/D isotope shift experiments. Quantitative determination of (2h)J(NN) HBCs supports that Thr N–H···Nδ1 His H-bonds within internal repeats are stronger (∼4 Hz) than in the solvent exposed C-terminal AR (∼2 Hz). In agreement, pK(a) values for the buried histidines bridging internal ARs are several units lower than those of the C-terminus. Quantum chemical calculations show that the relevant (2h)J and (1h)J couplings are dominated by the Fermi contact interaction. Finally, a Thr-to-Val replacement, which eliminates the Thr Oγ-H···Nδ1 His H-bond and decreases protein stability, results in a 25% increase in (2h)J(NN), attributed to optimization of the Val N–H···Nδ1 His H-bond. Overall, the results provide new insights into the H-bonding properties of histidine, a refined structural rationalization for the folding cooperativity of AR proteins, and a challenging benchmark for the calculation of HBCs. American Chemical Society 2015-01-12 2015-01-28 /pmc/articles/PMC4311973/ /pubmed/25578373 http://dx.doi.org/10.1021/ja510784g Text en Copyright © 2015 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Preimesberger, Matthew R.
Majumdar, Ananya
Aksel, Tural
Sforza, Kevin
Lectka, Thomas
Barrick, Doug
Lecomte, Juliette T. J.
Direct NMR Detection of Bifurcated Hydrogen Bonding in the α-Helix N-Caps of Ankyrin Repeat Proteins
title Direct NMR Detection of Bifurcated Hydrogen Bonding in the α-Helix N-Caps of Ankyrin Repeat Proteins
title_full Direct NMR Detection of Bifurcated Hydrogen Bonding in the α-Helix N-Caps of Ankyrin Repeat Proteins
title_fullStr Direct NMR Detection of Bifurcated Hydrogen Bonding in the α-Helix N-Caps of Ankyrin Repeat Proteins
title_full_unstemmed Direct NMR Detection of Bifurcated Hydrogen Bonding in the α-Helix N-Caps of Ankyrin Repeat Proteins
title_short Direct NMR Detection of Bifurcated Hydrogen Bonding in the α-Helix N-Caps of Ankyrin Repeat Proteins
title_sort direct nmr detection of bifurcated hydrogen bonding in the α-helix n-caps of ankyrin repeat proteins
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4311973/
https://www.ncbi.nlm.nih.gov/pubmed/25578373
http://dx.doi.org/10.1021/ja510784g
work_keys_str_mv AT preimesbergermatthewr directnmrdetectionofbifurcatedhydrogenbondingintheahelixncapsofankyrinrepeatproteins
AT majumdarananya directnmrdetectionofbifurcatedhydrogenbondingintheahelixncapsofankyrinrepeatproteins
AT akseltural directnmrdetectionofbifurcatedhydrogenbondingintheahelixncapsofankyrinrepeatproteins
AT sforzakevin directnmrdetectionofbifurcatedhydrogenbondingintheahelixncapsofankyrinrepeatproteins
AT lectkathomas directnmrdetectionofbifurcatedhydrogenbondingintheahelixncapsofankyrinrepeatproteins
AT barrickdoug directnmrdetectionofbifurcatedhydrogenbondingintheahelixncapsofankyrinrepeatproteins
AT lecomtejuliettetj directnmrdetectionofbifurcatedhydrogenbondingintheahelixncapsofankyrinrepeatproteins