Analysis of the expression pattern of BRIX1 in HCC from public gene expression databases and tissue samples from clinical HCC provides a rational clue for the further investigation of BRIX1 as an invaluable biological marker for diagnosing and predicting prognosis of patients with HCC.
Abstract
Hepatocellular carcinoma (HCC) is particularly aggressive and difficult to treat. Due to the lack of early clinical diagnosis and the unsatisfactory clinical treatment effect, it is particularly important to identify novel markers that can predict tumor behavior in HCC. biogenesis of ribosomes BRX1 (BRIX1) is abundant in various tissues of the human body. However, the regulatory mechanisms and its role in various tissues are not fully understood. Here, we analyzed the expression pattern of BRIX1 in HCC from public gene expression databases and tissue samples from clinical HCC. We confirmed that BRIX1 was upregulated in both HCC cell lines and HCC paraffin section samples. BRIX1 depletion significantly dicreased the capacity of cells to grow and migrate in vitro, and knockdown BRIX1 suppressed tumor growth in xenograft tumor model. Mechanistically, BRIX1 depletion suppressed the MAPK/ERK pathway, as reflected by reduced phosphorylated ERK (p-ERK) levels. In summary, we provide a rational clue for the further investigation of BRIX1 as an invaluable biological marker for diagnosing and predicting prognosis of patients with HCC.
The molecular mechanism by which FAM117B promotes HCC progression via forming a bidirectional regulatory loop with NAT10 and activating the JAK-STAT3 signaling pathway through acetylation modification is revealed, providing a novel potential target and theoretical basis for targeted therapy of HCC.
DBF4B holds promise as both a prognostic biomarker and a novel therapeutic target for HCC after functional experiments demonstrated that silencing DBF4B markedly suppressed the proliferative and migratory capabilities of HCC cells.
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High expression of DCUN1D5 are closely associated with tumor invasion and proliferation and Knockdown of DCUN1D5 was found to inhibit the proliferation, migration, and invasion of HCC cells and increases its free fatty acid accumulation.
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