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Abnormal accumulation of branched-chain amino acids (BCAAs) can lead to metabolic diseases and cancers. Branched-chain α-keto acid dehydrogenase kinase (BCKDK) is a key negative regulator of BCAA catabolism, and targeting BCKDK provides a promising therapeutic approach for diseases caused by BCAA accumulation. Here, we screened PPHN and POAB as novel putative allosteric inhibitors by integrating allosteric binding site prediction, large-scale ligand database virtual screening, and bioactivity evaluation assays. Both of them showed a high binding affinity to BCKDK, with K values of 3.9 μM and 1.86 μM, respectively. In vivo experiments, the inhibitors demonstrated superior kinase inhibitory activity and notable antiproliferative and proapoptotic effects on diverse cancer cells. Finally, bulk RNA-seq analysis revealed that PPHN and POAB suppressed cell growth through a range of signalling pathways. Taken together, our findings highlight two novel BCKDK inhibitors as potent therapeutic candidates for metabolic diseases and cancers associated with BCAA dysfunctional metabolism.
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http://dx.doi.org/10.1080/14756366.2023.2290458 | DOI Listing |
Triggering receptor expressed on myeloid cells 2 (TREM2) is a microglia-specific receptor whose activation promotes phagocytosis and neuroprotection in Alzheimer's disease (AD) and related neurodegenerative disorders. While therapeutic efforts have largely focused on antibodies, small molecule TREM2 modulators remain limited. Here, we applied a structure- based virtual screening workflow targeting a putative allosteric site on TREM2, guided by PyRod-derived pharmacophores from molecular dynamics simulations.
View Article and Find Full Text PDFPharmaceuticals (Basel)
July 2025
Computational Chemistry Laboratory, Chemistry Department, Faculty of Science, Minia University, Minia 61519, Egypt.
In the last few decades, the dengue virus, a prevalent flavivirus, has demonstrated various epidemiological, economic, and health impacts around the world. Dengue virus serotype 2 (DENV2) plays a vital role in dengue-associated mortality. The RNA-dependent RNA polymerase (RdRp) of DENV2 is a charming druggable target owing to its crucial function in viral reproduction.
View Article and Find Full Text PDFImaging Neurosci (Camb)
January 2025
PET Center, Department of Clinical Neuroscience, Center for Psychiatry Research, Karolinska Institutet, Stockholm, Sweden.
The benzodiazepines (BZ) bind to the GABAreceptor (GABAR) at the interface of its α-/γ-subunits and exert pharmacological activity as allosteric modulators. However, the distribution of the six distinct α-subunits (α-α) in the human brain has not been mapped in detail, primarily due to lack of α-subunit selective radioligands. AZD7325 and AZD6280 were two drug candidates with partial α-subunit selectivity, in development for the treatment of anxiety.
View Article and Find Full Text PDFACS Omega
August 2025
Research Unit in Bioinformatics (RUBi), Department of Biochemistry, Microbiology and Bioinformatics, Rhodes University, Makhanda 6139, South Africa.
Understanding the effects of single-nucleotide variations on the three-dimensional structures of drug-metabolizing enzymes at the atomic level is not a well-studied field and deserves attention as it could provide insights into tackling both drug resistance and drug efficacy/toxicity issues. Here, we examined molecular dynamics simulations of the isoniazid-metabolizing enzyme arylamine N-acetyltransferase 2 (NAT2) and established a computational approach to decipher how NAT2 transitions from being a rapid acetylator to a slow acetylator in the presence of residue variations. After revealing slight differences between two rapid acetylators (the NAT2 reference allele and the legacy reference allele), we compared them to five variants with slow clinical phenotypes.
View Article and Find Full Text PDFInt J Biol Macromol
September 2025
Multiuser Center for Biomolecular Innovation, São Paulo State University - UNESP, São José do Rio Preto, SP, Brazil. Electronic address:
Staphylococcal exfoliative toxins (ETs) are serine proteases that cleave desmoglein 1 (Dsg1), a protein critical for epidermal integrity, leading to severe skin conditions. While the specificity of ETs for Dsg1 has been partially studied, the molecular determinants of ET-Dsg1 recognition remain unclear. In this study, we used phage display biopanning and computational modeling to map the interaction between ETs and Dsg1.
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