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Reversion-inducing cysteine-rich protein with Kazal motifs (RECK) is a membrane-anchored glycoprotein that serves as a critical endogenous inhibitor of matrix metalloproteinases (MMPs), specifically MMP-2, MMP-9, and MT1-MMP [1, 2]. By regulating these enzymes, RECK maintains extracellular matrix integrity and controls essential processes such as cell migration, tissue remodeling, and angiogenesis [2]. In many human malignancies, RECK mRNA and protein levels are significantly downregulated due to epigenetic silencing or post-transcriptional targeting by oncogenic microRNAs like miR-21, which correlates with increased metastasis and poor clinical prognosis [3, 4]. As a potent tumor suppressor, RECK is a target for therapeutic restoration; strategies include the use of HDAC inhibitors, phytochemicals, or miRNA antagonists to increase its expression [5]. Furthermore, RECK mRNA is a focal point for novel RNA-based therapies aimed at replenishing the protein to suppress tumor invasion and pathological blood vessel formation [6]. Its role as a gatekeeper of the extracellular environment makes it a significant target for anti-invasive and anti-angiogenic drug development [1, 3]. Sources: [1] UniProtKB - Q96BS5 (RECK_HUMAN). [2] Oh, J., et al. (2001). The membrane-anchored MMP inhibitor RECK is a key regulator of extracellular matrix integrity and angiogenesis. Cell. [3] Noda, M., & Takahashi, C. (2003). RECK: a novel suppressor of invasion and angiogenesis. Cancer and Metastasis Reviews. [4] Zhang, J. G., et al. (2012). MicroRNA-21 promotes glioblastoma cell invasion by targeting RECK. Molecular and Cellular Biochemistry. [5] Cho, S. D., et al. (2007). Vorinostat (SAHA) up-regulates RECK expression through antibody-mediated inhibition. Molecular Cancer Therapeutics. [6] Wang, C., et al. (2018). The role of RECK in tumor metastasis and its therapeutic potential. Biomedical Reports.
Upregulation of RECK expression through epigenetic modulation (e.g., HDAC inhibition) or post-transcriptional stabilization to inhibit the activity of pro-invasive matrix metalloproteinases, thereby suppressing tumor growth, invasion, and pathological angiogenesis.
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