| Literature DB >> 29598816 |
Chang-Yu Chen1,2, Yung-Song Lin3,4, Chien-Ho Chen5, Yin-Ju Chen6,7,8,9.
Abstract
Nasopharyngeal carcinoma (NPC) is a head and neck cancer with poor clinical outcomes and insufficient treatments in Southeast Asian populations. Although concurrent chemoradiotherapy has improved recovery rates of patients, poor overall survival and low efficacy are still critical problems. To improve the therapeutic efficacy, we focused on a tumor-associated protein called Annexin A2 (ANXA2). This review summarizes the mechanisms by which ANXA2 promotes cancer progression (e.g., proliferation, migration, the epithelial-mesenchymal transition, invasion, and cancer stem cell formation) and therapeutic resistance (e.g., radiotherapy, chemotherapy, and immunotherapy). These mechanisms gave us a deeper understanding of the molecular aspects of cancer progression, and further provided us with a great opportunity to overcome therapeutic resistance of NPC and other cancers with high ANXA2 expression by developing this prospective ANXA2-targeted therapy.Entities:
Keywords: Annexin A2 (ANXA2); Cancer progression; Nasopharyngeal carcinoma (NPC); Therapeutic resistance
Mesh:
Substances:
Year: 2018 PMID: 29598816 PMCID: PMC5877395 DOI: 10.1186/s12929-018-0430-8
Source DB: PubMed Journal: J Biomed Sci ISSN: 1021-7770 Impact factor: 8.410
High expression of Annexin-A2 (ANXA2) in biopsies as an indicator of the survival rate
| Tumor type |
| High ANXA2 expression (%) | Results | Reference | |
|---|---|---|---|---|---|
| Epithelial ovarian cancer | 119 | 65/119 (54.62%) | < 0.001 | Poor survival rate | [ |
| Nasopharyngeal carcinoma | 48 | 32/48 (66.67%) | 0.025 | Poor survival rate | [ |
| Urothelial carcinoma | 232 | 123/232 (53.02%) | 0.012 | Poor survival rate | [ |
| Hepatocellular carcinoma | 84 | 62/84 (73.81%) | 0.005 | Poor survival rate | [ |
| Serous ovarian cancer | 109 | 63/109 (57.79%) | 0.044 | Poor survival rate | [ |
Method: immunohistochemistry; N, total number of patients
High levels of Annexin-A2 (ANXA2) in serum as a potential biomarker for cancers
| Tumor type |
| Results | Reference | |
|---|---|---|---|---|
| Hepatocellular carcinoma | 70 | < 0.001 | Patients ( | [ |
| Hepatocellular carcinoma (early stage) | 70 | < 0.01 | Patients ( | [ |
| Gastric cancer | 93 | < 0.001 | Patients ( | [ |
| Lung cancer | 85 | < 0.01 | Patients ( | [ |
| Oral squamous cell carcinoma | 284 | < 0.01 | Patients ( | [ |
Method: enzyme-linked immunosorbent assay; N, total number of patients
Fig. 1Annexin A2 (ANXA2) in cancer progression. a The ANXA2-3-phosphoglycerate kinase (ANXA2-PGK) complex serves as a primer recognition protein to initiate DNA replication with the support from DNA polymerase alpha, which contributes to cell proliferation. b MIEN1 phosphorylates ANXA2 and supports ANXA2’s binding to actin filaments to modulate cytoskeletal change, thus resulting in cell migration. c ANXA2 initiates the endothelial-mesenchymal transition (EMT) via the Twist/Snail pathway. After initiation of the EMT, cells changed to a mesenchymal-like morphology, and cell junctions dissolved. d The ANXA2 heterotetramer complex links to the plasminogen and tissue plasminogen activator (tPA). After plasminogen is cleaved into plasmin, plasmin activates pro-matrix metalloproteases (MMPs) to become MMPs. MMPs digest the extracellular matrix and fibronectin, thus resulting acceleration of invasion. e ANXA2 increases stemness-related transcription factors (Oct4, Sox2, and Nanog) through the Akt signaling pathway, which activates cancer stem cell formation
Fig. 2Annexin A2 (ANXA2) in therapeutic resistance. a ANXA2-coated enlargeosomes widely exist in various cell types to regulate Ca2+-dependent cell exocytosis. Enlargeosomes exocytose chemotherapeutic drugs to prevent their chemotoxic accumulation inside tumor cells, thus resulting in chemotherapeutic resistance. b The phosphorylated ANXA2 protein is imported into nuclei to protect against DNA damage by irradiation. ANXA2 also mediates the Akt protein to form the Akt-heat shock protein 27 (Akt-HSP27) complex, which ameliorates radiotoxicity-induced DNA damage and apoptosis. c When tumor-infiltrating dendritic cells (DCs) are attached to nasopharyngeal carcinoma (NPC) cells, the interaction between DC-SIGN and ANXA2 causes DCs to lose mature major histocompatibility complex (MHC), and release high levels of the immunosuppressive cytokine interleukin (IL)-10. IL-10 causes consecutive immunosuppressive responses including DC immaturity, inhibition of IL-12 synthetic, CD8+ T cell dysfunction, and regulatory T cell expansion