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Parvovirus B19 (B19V) is a ubiquitous virus that can infect the majority of human population and cause erythema infectiosum, acute arthropathy, and many other diseases. The main replication protein NS1 plays a critical role in cell cycle arrest, transactivation of viral and host genes, and replication and package of B19V genome. Both DNA nicking and unwinding activities are required for the in vivo function of NS1, but the underlying basis is poorly understood. Here, we report extensive structural and biochemical studies of NS1, showing that NS1 can unwind various types of DNA substrates. The cryo-electron microscopy (cryo-EM) structures reveal the detailed mechanisms for ATP binding and hydrolysis, and DNA binding and unwinding by NS1. In addition to the SF3 HD domain, the C-terminal region is also required for double-stranded DNA (dsDNA) nicking by NS1. Unexpectedly, instead of enhancing, the dsDNA nicking activity of NS1 is negatively regulated by its DNA unwinding ability, suggesting that they likely function in different stages. This study advances our understanding of the structure and function of NS1 and other parvoviral replication proteins, such as the Rep proteins of adeno-associated virus.
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http://dx.doi.org/10.1093/nar/gkaf562 | DOI Listing |
Biology (Basel)
August 2025
Nansha-South China Agricultural University Fishery Research Institute, Guangzhou 511457, China.
() is a globally significant aquatic pathogen responsible for severe economic losses in aquaculture. While the infection often exhibits distinct seasonal patterns strongly correlated with water temperature, there is limited knowledge regarding the temperature-dependent immune evasion strategies of . Our results demonstrated a striking temperature-dependent virulence phenotype, with significantly higher mortality rates observed at high temperature (HT, 33 °C) compared to low temperature (LT, 23 °C).
View Article and Find Full Text PDFEmerg Microbes Infect
September 2025
Graduate Institute of Microbiology and Public Health, College of Veterinary Medicine, National Chung Hsing University, Taichung 40227, Taiwan.
High pathogenicity avian influenza virus (HPAIV) poses major threats to both poultry health and public safety. The viral nonstructural protein 1 (NS1) plays a crucial role in counteracting innate immunity. NS1 typically consists of approximately 230 amino acids with two domains: an RNA-binding domain (RBD) and the effector domain (ED).
View Article and Find Full Text PDFPhys Chem Chem Phys
September 2025
Department of Applied Chemistry, Graduate School of Engineering, Kyushu University, Fukuoka, 819-0395, Japan.
The anti-Kasha fluorescence nature of azulene has been explained by the large energy gap between the second excited state and the lowest excited singlet state. While such property is expected to be perturbed in the presence of electronic interchromophore interactions without a change in the S-S energy gap, the study of the excited-state dynamics of azulene assemblies or oligomers remains scarce. In this study, we designed dimers with diverse rigid bridge structures with controlled intermolecular interactions.
View Article and Find Full Text PDFMol Ther Nucleic Acids
September 2025
Viral Immunology Group, Discipline of Surgery, The Basil Hetzel Institute for Translational Health Research, The University of Adelaide, Adelaide, SA 5011, Australia.
The coronavirus disease 2019 pandemic has highlighted the critical need for thermostable vaccines to ensure equitable distribution and accessibility, particularly in regions lacking cold chain infrastructure. Here we present a thermostable, solid dose DNA vaccine (SDV) platform for subcutaneous delivery, based on a sugar-sugar alcohol-polymer formulation manufactured via lyophilization and compaction. Using luciferase-expressing plasmid as a model, we demonstrate that subcutaneous vaccination with SDV formulation of C57BL/6 mice results in efficient and durable transgene expression .
View Article and Find Full Text PDFCureus
July 2025
Department of General Medicine, Mufti Mehmood Memorial Teaching Hospital, Medical Teaching Institute, Dera Ismail Khan, PAK.
Background Dengue fever significantly burdens healthcare systems, particularly in resource-limited settings such as Dera Ismail Khan, Khyber Pakhtunkhwa, Pakistan. Mufti Mehmood Memorial Teaching Hospital, the designated Dengue Isolation Unit in the region, continues to receive a steady influx of patients. This study analyzed the epidemiological profile of dengue cases admitted to the hospital to support public health planning and guide resource allocation.
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