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Biology subjects

Alba, B.

Publications and source records attributed to Alba, B..

2 recordsLinked to original sources

Fine-tuning STEAP1 protein expression and purification to preserve its conformation and function

Six-transmembrane Epithelial Antigen of the Prostate 1 (STEAP1) has emerged as a promising therapeutic target for prostate cancer. We have optimized the expression and purification conditions of human STEAP1 to maximize the production of its homotrimeric form, which is crucial for metal ion reduction and maintaining cellular redox balance. Proteins obtained from these optimized conditions were complexed with both heme and flavin-adenine dinucleotide (FAD), two cofactors that are fundamental to STEAP functionality, suggesting native folding and interactions of the protein. In addition, we compared the impact of stable and transient expression systems on the protein quality of STEAP1. We found that stable expression promoted heme incorporation, improved expression homogeneity, and ensured correct protein orientation on cell surfaces. Our findings present effective strategies for optimizing the recombinant production of STEAP1, with potential applicability to other STEAP family proteins to facilitate therapeutic discovery.

biochemistry↗

SOX2 and SOX9 as Transcriptional Regulators of human Galectin-3 in SW1353 Cells: Potential Implications for Osteoarthritis

Galectin-3 (Gal-3), a member of the {beta}-galactoside-binding protein family, is critically involved in inflammation, extracellular matrix remodelling, and cartilage degeneration in osteoarthritis (OA). This study aims to elucidate the regulation of the human galectin-3 gene (LGALS3) promoter in SW1353 cells and its control by SOX transcription factors, known to be dysregulated during OA pathogenesis. We sought to identify key sequence elements in the LGALS3 promoter responsible for its transcriptional activity and the transcription factors (TFs) responsible for its regulation. Using luciferase reporter assays, we examined deletion variants of the 5 region (-2638 bp to +52 bp) and assessed their activation potential. We also identified potential transcription factor binding sites (TFBS) through in silico analyses and confirmed SOX9 binding in the -93/+49 region by chromatin immunoprecipitation using HaloCHIPTM. Functional assays revealed that the proximal promoter region (-97 to +52 bp) is critical for reporter gene expression in SW1353 cells. This study demonstrates that the presence of SOX2 and SOX9 leads to a dose-dependent decrease in LGALS3 promoter activity in SW1353 cells. We show that SOX9 can bind the promoter, highlighting the importance of SOX TF interactions in regulating LGALS3 expression and their potential role in chondrocytes.

molecular biology↗