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The emergence of the drug-resistant mechanisms in Mycobacterium tuberculosis poses the biggest challenges to the current therapeutic measures, which necessitates the identification of new drug targets. The Hypothetical Proteins (HPs), a class of functionally uncharacterized proteins, may provide a new class of undiscovered therapeutic targets. The genome of M. tuberculosis contains 1000 HPs with their sequences were analyzed using a variety of bioinformatics tools and the functional annotations were performed. The functions of 662 HPs were successfully predicted and further classified 483 HPs as enzymes, 141 HPs were predicted to be involved in the diverse cellular mechanisms and 38 HPs may function as transporters and carriers proteins. Furthermore, 28 HPs were predicted to be virulent in nature. Amongst them, the HP P95201, HP P9WM79, HP I6WZ30, HP I6 × 9T8, HP P9WKP3, and HP P9WK89 showed the highest virulence scores. Therefore, these proteins were subjected to extensive structure analyses and dynamics of their conformations were investigated using the principles of molecular dynamics simulations, each for a 150 ns time scale. This study provides a deeper understanding of the undiscovered drug targets and the generated outputs will facilitate the process of drug design and discovery against the infection of M. tuberculosis.
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http://dx.doi.org/10.1016/j.compbiolchem.2020.107270 | DOI Listing |
Arch Microbiol
August 2025
Department of Biosciences, Manipal University Jaipur, Dehmi Kalan, Rajasthan, 303007, India.
A large number of genes in bacterial genomes encode hypothetical proteins (HPs) with unknown functions that require annotation. These HPs have recently been linked to pathogenicity due to potential virulence factors. Understanding the key elements influencing their virulence is a crucial goal.
View Article and Find Full Text PDFJ Genet Eng Biotechnol
September 2025
Department of Basic Sciences, Faculty of Dental Medicine and Surgery, National University, Sudan. Electronic address:
Background: Bacterial genomes contain numerous hypothetical proteins (HPs) with uncharacterized roles. This study used computational methods to identify and predict the functions of such proteins in the Pseudomonas aeruginosa PAC1 strain.
Methods: The PAC1 genome (GenBank: CP053706.
BMC Public Health
August 2025
WHO Collaborating Centre for Health Literacy, TUM Health Literacy Unit, Department of Health and Sport Sciences, TUM School of Medicine and Health,, Technical University of Munich, Munich, Germany.
Background: Health literacy has recently been proposed as a resource to deal with health-related information during the COVID-19 pandemic. Especially the education sector was affected by the consequences of the pandemic, e.g.
View Article and Find Full Text PDFComput Struct Biotechnol J
July 2025
Institute for Biological Interfaces 5 (IBG-5), Biotechnology and Microbial Genetics, Karlsruhe Institute of Technology (KIT), Hermann-von-Helmholtz-Platz 1, Eggenstein-Leopoldshafen 76344, Germany.
Omics technologies have led to the discovery of a vast number of proteins that are expressed but have no functional annotation - so called hypothetical proteins (HPs). Even in the best-studied model organism K-12, over 2 % of the proteome remains uncharacterized. This knowledge gap becomes even worse when looking at microbial dark matter.
View Article and Find Full Text PDFClin J Pain
August 2025
Research Center on Aging, CIUSSS de l'Estrie-CHUS, Sherbrooke, Québec, Canada.
Objectives: Although significant progress has been made in recent years in the field of pain modulation, information regarding patients' pain modulation profiles remains largely research-bound and is not yet easily accessible in clinical settings. The aim of this study was to develop and validate a model for estimating pain modulation profiles - including temporal summation of pain (TSP) and conditioned pain modulation (CPM) - using easily accessible measures.
Methods: This study included 347 pain-free individuals and 108 with chronic pain.