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Viral evasion from effective human immunodeficiency virus type 1 (HIV-1)-specific CD8+ T-cell responses and from antiretroviral therapy through viral sequence variation is frequently accompanied by a loss in viral fitness. The impact of sequence variations on replication capacity in vitro was mostly studied by introducing single mutations into a specific clonal strain such as NL4-3. How the specific viral backbone itself impacts replicative fitness remains elusive. To test for a potential effect of the viral backbone, we constructed HIV-1 clade B clones with consensus sequences for and/or and evaluated the infectivity of viral variants harboring well-defined cytotoxic T-lymphocyte (CTL) escape mutations or drug resistance mutations within this backbone or the clonal NL4-3 strain. Viral variants with consensus sequences were replication-competent in vitro, although at lower rates than the NL4-3 virus. Introduction of the dominant CTL escape mutation RK into the newly constructed viruses or into NL4-3 led to a dramatic reduction in infection rates. In contrast to the NL4-3 backbone, the combination of RK with its compensatory mutation SA on the consensus backbone led to higher infection rates as compared to the same virus in the absence of RK and SA. Furthermore, 2 out of 10 drug resistance mutations in led to opposing effects, with an increase in infection rates on the consensus backbone and a reduction on NL4-3. Therefore, the effect of the respective viral backbone on infectivity observed in vitro might constitute an additional factor to explain differential kinetics of mutational evasion from immune and pharmaceutical pressure.
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http://dx.doi.org/10.3390/v17060842 | DOI Listing |
NAR Genom Bioinform
September 2025
Department of Human Genetics and Genomic Medicine, University of Southampton, Southampton, SO16 6YD, UK.
Whole exome sequencing (WES) is a well-established tool for clinical diagnostics, is more cost-effective and faster to analyse than whole genome sequencing and has been implemented to uplift diagnostic rates in human disease. However, challenges remain to achieve comprehensive and uniform coverage of targets, and high sensitivity and specificity. Differences in genomic target regions and exome capture mechanism between kits may lead to differences in overall coverage uniformity and capture efficiency.
View Article and Find Full Text PDFJ Magn Reson Imaging
September 2025
Department of Medical Imaging and Intervention, Chang Gung Memorial Hospital at Linkou, Taoyuan City, Taiwan.
Background: Automated cardiac MR segmentation enables accurate and reproducible ventricular function assessment in Tetralogy of Fallot (ToF), whereas manual segmentation remains time-consuming and variable.
Purpose: To evaluate the deep learning (DL)-based models for automatic left ventricle (LV), right ventricle (RV), and LV myocardium segmentation in ToF, compared with manual reference standard annotations.
Study Type: Retrospective.
J Neuroradiol
September 2025
Department of Neuroradiology, East Group Hospital, Hospices Civils de Lyon. 59 Bd Pinel, 69500, Bron, France; CREATIS Laboratory, CNRS UMR 5220, INSERM U1294, Claude Bernard Lyon I University. 7 avenue Jean Capelle O, 69100, Villeurbanne, France. Electronic address:
Background: Distinguishing radiation necrosis (RN) from true progression (TP) in irradiated brain metastases is challenging. We evaluated the diagnostic performance of the centrally restricted diffusion sign on diffusion-weighted imaging (DWI).
Methods: From August 2014 to August 2024, we screened 321 patients with histologically confirmed brain metastases treated with radiation therapy and follow-up MRI for new or enlarging necrotic lesions ≥1 cm.
J Membr Biol
September 2025
Protein Biology Lab, Department of Zoology, University of Delhi, Delhi, India.
Chlamydia trachomatis is an obligate intracellular Gram-negative pathogen that causes sexually transmitted infections (STIs) and trachoma. Current interventions are limited due to the widespread nature of asymptomatic infections, and the absence of a licensed vaccine exacerbates the challenge. In this study, we predicted outer membrane β-barrel (OMBB) proteins and designed a multi-epitope vaccine (MEV) construct using identified proteins.
View Article and Find Full Text PDFVet Ital
September 2025
Istituto Zooprofilattico Sperimentale della Sardegna.
Lumpy Skin Disease virus (LSDV) is a Capripoxvirus that causes Lumpy Skin Disease (LSD), a highly contagious disease of cattle transmitted primarily by blood-feeding arthropods, but also through direct contact and fomites. On 20 June 2025, an outbreak was reported in a beef cattle farm in Orani (Nuoro, Sardinia, Italy), where 21 of 131 animals showed typical clinical signs. Fourteen samples tested positive for LSDV by real-time PCR, and selected specimens underwent whole genome sequencing, generating three high-quality consensus sequences.
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