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The Coil Library, which contains structural data on protein fragments from non-secondary structure regions (coil fragments) of globular proteins, has served as a structural model for denatured proteins and intrinsically disordered proteins. Previously, the hydrogen bonds (HBs) between main-chain atoms in coil fragments were analyzed in detail concerning the number of restricted residues and the dihedral angle distributions of the restricted residues. However, there are few reports on HBs involving side-chain atoms in coil fragments. Herein, I examined and classified HB patterns in 71,134 coil fragments (6-25 residues) from 11,670 proteins in the Protein Data Bank (PDB). I found that 47.4% of the HBs in the coil fragments were formed between atoms from the main chain and the side chain, while 9.1% were between side chains. Although structural motifs containing multiple HBs were observed, 80% of the motifs contained only one or two HBs, referred to as the 1-HB motif and 2-HB motif, respectively. Among the 1-HB motifs, I identified a high probability of motifs whose HB patterns resemble those of standard turns: an HB acceptor atom from the main chain in standard turns is replaced by a polar atom from a side chain in the 1-HB motifs. While motifs resembling β-turns have been previously reported in proteins, including secondary structures, motifs resembling γ-turns were newly identified in the coil fragments in this study. Among the 2-HB motifs, 38.3% featured one HB forming a β-turn and another independent HB involving a surrounding side chain. Using a 2-HB motif in which a side-chain β-turn coexists with the β-turn as an example, I demonstrated that changes in the fraction of subspecies with the addition of an HB can be qualitatively explained by the distribution of the main-chain dihedral angle. In the future, developing a Coil Library that quantitatively incorporates HB formation is expected to enhance the accuracy of structural analyses of unfolded proteins.
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http://dx.doi.org/10.1002/pro.70215 | DOI Listing |
Infect Drug Resist
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Department of Clinical Microbiology and Immunology, Faculty of Medicine, King Abdulaziz University, Jeddah, Saudi Arabia.
Antimicrobial peptides (AMPs) are short protein fragments that function as an innate immune response across diverse life forms. Structurally, AMPs exhibit diverse configurations, including α-helical, β-sheet, mixed, and random-coil forms, enabling a variety of mechanisms to combat pathogens. The mechanisms of action of AMPs encompass membrane disruption and inhibition of critical cellular processes, highlighting their broad-spectrum activity against bacteria, fungi, viruses, and parasites.
View Article and Find Full Text PDFJ Phys Chem B
September 2025
Laboratory of Biophysics, Institute for Advanced Study in Technology, Ton Duc Thang University, Ho Chi Minh City 72915, Vietnam.
The self-aggregation of amyloid-beta (Aβ) peptides is strongly associated with Alzheimer's disease. In this study, the influence of the small varoglutamstat compound on the conformations of the FAβ dimer was extensively characterized by using MD simulations. The influence of the ligand on the conformation of the FAβ dimer was studied during the first 10.
View Article and Find Full Text PDFJ Cutan Pathol
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Dermatology Department, Hospital Clínico Universitario, INCLIVA Biomedical Research Institute, Valencia, Spain.
Background: The prevalence of diabetes mellitus continues to rise. Cutaneous histological manifestations of diabetes include microangiopathy and atherosclerosis. No morphological alterations of sweat glands have been reported.
View Article and Find Full Text PDFBiomolecules
July 2025
Department of Molecular and Cell Biology, University of Connecticut, Storrs, CT 06269, USA.
The gene is the site of congenital mutations linked to neurodevelopmental and musculoskeletal pathologies collectively termed ZARD (ZC4H2-Associated Rare Disorders). ZC4H2 consists of a coiled coil and a single novel zinc finger with four cysteines and two histidines, from which the protein obtains its name. Alpha Fold 3 confidently predicts a structure for the zinc finger but also for similarly sized random sequences, providing equivocal information on its folding status.
View Article and Find Full Text PDFBiochim Biophys Acta Biomembr
August 2025
Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, 16/10 Miklukho-Maklaya St., Moscow 117997, Russian Federation; Research Institute for Systems Biology and Medicine, 18 Nauchny Proezd St., Moscow 117246, Russian Federation; National Research University Higher Scho
The coronavirus spike protein, the key entity effectuating membrane fusion, cannot exist without membrane-active fragments. In addition to fusion peptides, among such domains are HR1 and HR2. Crucial to the spike's refolding and membrane fusion, they are believed to both interact with each other and bind to the membranes that are merged.
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