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Identification of Hub Genes to Regulate Breast Cancer Spinal Metastases by Bioinformatics Analyses
Yongxiong He1, Yongfei Cao2, Xiaolei Wang1
1Department of Spine Surgery, Inner Mongolia People's Hospital, Hohhot, 010017 Inner Mongolia, China.
Abstract:
Breast cancer (BC) had been one of the deadliest types of cancers in women worldwide. More than 65% of advanced-stage BC patients were identified to have bone metastasis. However, the molecular mechanisms involved in the BC spinal metastases remained largely unclear. This study screened dysregulated genes in the progression of BC spinal metastases by analyzing GSE22358. Moreover, we constructed PPI networks to identify key regulators in this progression. Bioinformatics analysis showed that these key regulators were involved in regulating the metabolic process, cell proliferation, Toll-like receptor and RIG-I-like receptor signaling, and mRNA surveillance. Furthermore, our analysis revealed that key regulators, including C1QB, CEP55, HIST1H2BO, IFI6, KIAA0101, PBK, SPAG5, SPP1, DCN, FZD7, KRT5, and TGFBR3, were correlated to the OS time in BC patients. In addition, we analyzed TCGA database to further confirm the expression levels of these hub genes in breast cancer. Our results showed that these regulators were significantly differentially expressed in breast cancer, which were consistent with GSE22358 dataset analysis. Furthermore, our analysis demonstrated that CEP55 was remarkably upregulated in the advanced stage of breast cancer compared to the stage I breast cancer sample and was significantly upregulated in triple-negative breast cancers (TNBC) compared to other types of breast cancers, including luminal and HER2-positive cancers, demonstrating CEP55 may have a regulatory role in TNBC. Finally, our results showed that CEP55 was the most highly expressed in Basal-like 1 TNBC and Basal-like 2 TNBC samples but the most lowly expressed in mesenchymal stem-like TNBC samples. Although more studies are still needed to understand the functions of key regulators in BC, this study provides useful information to understand the mechanisms underlying BC spinal metastases.
Insights
This study identifies key genes involved in breast cancer (BC) spinal metastasis. CEP55 is a significant regulator, particularly in triple-negative breast cancer (TNBC) advanced stages.
Area of Science:
- Oncology
- Genomics
- Bioinformatics
Background:
- Breast cancer (BC) is a leading cause of cancer death in women globally.
- Over 65% of advanced BC patients develop bone metastasis, but underlying mechanisms are unclear.
- Understanding BC spinal metastasis is crucial for improving patient outcomes.
Purpose of the Study:
- To identify dysregulated genes and key regulators in breast cancer spinal metastasis.
- To explore the role of identified regulators in BC progression and patient survival.
- To investigate the specific role of CEP55 in triple-negative breast cancer (TNBC).
Main Methods:
- Screened dysregulated genes using the GSE22358 dataset.
- Constructed protein-protein interaction (PPI) networks to identify key regulators.
- Analyzed The Cancer Genome Atlas (TCGA) database for gene expression validation.
- Correlated key regulators with overall survival (OS) time in BC patients.
Main Results:
- Identified key regulators involved in metabolic processes, cell proliferation, and immune signaling.
- Found significant correlations between regulators (e.g., CEP55, SPP1, TGFBR3) and BC patient OS time.
- CEP55 was significantly upregulated in advanced-stage BC and particularly in TNBC.
- CEP55 expression varied across TNBC subtypes, being highest in Basal-like 1 and 2.
Conclusions:
- This study provides insights into the molecular mechanisms of BC spinal metastasis.
- Identified key regulators, including CEP55, offer potential therapeutic targets.
- CEP55 shows promise as a biomarker and therapeutic target for TNBC.

