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High mobility group box 3 (HMGB3) is a non-histone chromosomal protein and a member of the HMGB family that functions as a DNA chaperone, regulating chromatin structure and gene transcription (UniProt P51991). It is essential for the maintenance and self-renewal of hematopoietic stem cells and is highly expressed during embryonic development (NCBI Gene ID: 3149). In various human cancers, such as gastric, breast, and colorectal cancer, HMGB3 mRNA is frequently overexpressed and acts as an oncogene by promoting cell proliferation, migration, and epithelial-mesenchymal transition (PubMed: 28656245, 30106434). Targeting HMGB3 mRNA through RNA interference (RNAi) technologies, including siRNAs and shRNAs, has demonstrated significant potential in preclinical studies to inhibit tumor growth and overcome chemoresistance (PubMed: 25670453). While no FDA-approved drugs currently target HMGB3, it remains a significant candidate for RNA-targeted therapies and serves as a valuable prognostic biomarker in oncology.
RNA interference (RNAi) mediated degradation of HMGB3 mRNA, which prevents the translation of the HMGB3 protein and subsequently inhibits oncogenic signaling pathways such as Wnt/beta-catenin and AKT.
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