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For the first time, a statistical potential has been developed to quantitatively describe the CH.O hydrogen bonding interaction at the protein-protein interface. The calculated energies of the CH.O pair interaction show a favorable valley at approximately 3.3 A, exhibiting a feature typical of an H-bond and similar to the ab initio quantum calculation result (Scheiner, S., Kar, T., and Gu, Y. (2001) J. Biol. Chem. 276, 9832-9837). The potentials have been applied to a set of 469 protein-protein complexes to calculate the contribution of different types of interactions to each protein complex: the average energy contribution of a conventional H-bond is approximately 30%; that of a CH.O H-bond is 17%; and that of a hydrophobic interaction is 50%. In some protein-protein complexes, the contribution of the CH.O H-bond can reach as high as approximately 40-50%, indicating the importance of the CH.O H-bond at the protein interface. At the interfaces of these complexes, C(alpha)H.O H-bonds frequently occur between adjacent strands in both parallel and antiparallel orientations, having the obvious structural motif of bifurcated H-bonds. Our study suggests that the weak CH.O H-bond makes an important contribution to the association and stability of protein complexes and needs more attention in protein-protein interaction studies.
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http://dx.doi.org/10.1074/jbc.M204514200 | DOI Listing |
Phys Chem Chem Phys
March 2025
Computational Chemistry Research Laboratory (CCRL), Department of Chemistry, SRM Institute of Science and Technology, Kattankulathur-603 203, Chengalpattu, Tamil Nadu, India.
This study explores how an active pharmaceutical ingredient-ionic liquid (API-IL), cholinium taurate ([Cho][Tau]) IL, may alter the structural and functional stability of histone deacetylase 2 (HDAC2), which is a crucial enzyme linked to alcohol use disorder (AUD). A particular hallmark of AUD, which is a worldwide health burden, is epigenetic dysregulation, in which HDAC2 plays a significant role in gene silencing and chronic neuroplastic alterations. Leveraging the unique physicochemical properties of [Cho][Tau]IL, including hydrogen bond (H-bond) formation and structural reinforcement, we explored its therapeutic potential through comprehensive computational approaches.
View Article and Find Full Text PDFJ Am Chem Soc
February 2025
Department of Chemistry, Stanford University, Stanford, California 94305, United States.
C-H···O hydrogen bonds are formed in systems ranging from biomolecular complexes to small-molecule structures. Previous work has focused on the blueshifts in the C-H stretching frequency () induced by these hydrogen bonds and their chemical and biological roles. Here, we show that, in contrast, terminal alkyne C-H hydrogen bonds exhibit large redshifts (50-100 cm) upon hydrogen bonding with oxygen-containing solvents.
View Article and Find Full Text PDFPrecis Chem
December 2024
Department of Molecular and Macromolecular Chemistry, Graduate School of Engineering, Nagoya University, Furo-cho, Chikusa-ku, Nagoya 464-8603, Japan.
Dual control of the molecular weight and tacticity in proton transfer anionic polymerization (PTAP) of methyl methacrylate (MMA) was investigated by using various ligands in the presence of a bulky potassium base catalyst and an organic compound with a weakly acidic C-H bond as dormant species in toluene at 0 °C. The tacticity of the resulting poly(MMA) (PMMA) produced without ligands was nearly atactic (// = 22/54/24). However, the use of 18-crown-6 as a ligand afforded predominantly syndiotactic PMMA ( ≈ 58%), whereas the use of chiral bis(oxazoline) ligands gave slightly isotactic-rich PMMA ( ≈ 32%).
View Article and Find Full Text PDFJ Am Chem Soc
December 2024
Department of Chemistry, University of Texas at Austin, Austin, Texas 78712, United States.
Biomolecular condensates provide a mechanism for compartmentalization of biomolecules in eukaryotic cells. These liquid-like condensates are formed via liquid-liquid phase separation, by a plethora of interactions, and can mediate several biological processes in healthy cells. Expansions of dipeptide repeat proteins, DPRs, in which arginine rich DPRs like poly-proline-arginine (PR), and poly-glycine-arginine (GR), partition RNA into condensates can however induce cell toxicity.
View Article and Find Full Text PDFACS Omega
November 2024
Department of Chemistry, St. Paul's Cathedral Mission College, University of Calcutta, 33/1 Raja Rammohan Roy Sarani, Kolkata 700009, India.
X-ray structural elucidation, supramolecular self-assembly, and energetics of existential noncovalent interactions for a triad comprising α-diketone, α-ketoimine, and an imidorhenium complex are highlighted in this report. Molecular packing reveals a self-assembled 2D network stabilized by the C-H···O H-bonds for the α-diketone (benzil), and the first structural report of Brown and Sadanaga stressing on the prevalence of seems to be an oversimplified conjecture. In the α-ketoimine, the imine nitrogen atom undergoes intramolecular N···H interaction to render itself inert toward intermolecular C-H···N interaction and exhibits two types of C-H···O H-bonds in consequence to generate a self-assembled 2D molecular architecture.
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