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ECRG2/SPINK7 Tumor Suppressor as Modulator of DNA Damage Response
Harsh Patel1, M Saeed Sheikh1, Ying Huang1
1Department of Pharmacology, State University of New York Upstate Medical University, 750 East Adams Street, Syracuse, NY 13210, USA.
Abstract:
Esophageal Cancer-Related Gene 2 (ECRG2), also known as Serine Peptidase Inhibitor Kazal type 7 (SPINK7), is a novel tumor suppressor gene from the SPINK family of genes that exhibits anticancer potential. ECRG2 was originally identified during efforts to discover genes involved in esophageal tumorigenesis. ECRG2 was one of those genes whose expression was absent or reduced in primary human esophageal cancers. Additionally, absent or reduced ECRG2 expression was also noted in several other types of human malignancies. ECRG2 missense mutations were identified in various primary human cancers. It was reported that a cancer-derived ECRG2 mutant (valine to glutamic acid at position 30) failed to induce cell death and caspase activation triggered by DNA-damaging anticancer drugs. Furthermore, ECRG2 suppressed cancer cell proliferation in cultured cells and grafted tumors in animals and inhibited cancer cell migration/invasion and metastasis. ECRG2 also was identified as a negative regulator of Hu-antigen R (HuR), an oncogenic RNA-binding protein that is known to regulate mRNA stability and the expression of transcripts corresponding to many cancer-related genes. ECRG2 function is important also for the regulation of inflammatory responses and the maintenance of epithelial barrier integrity in the esophagus. More recently, ECRG2 was discovered as one of the newest members of the pro-apoptotic transcriptional targets of p53. Two p53-binding sites (BS-1 and BS-2) were found within the proximal region of the ECRG2 gene promoter; the treatment of DNA-damaging agents in cancer cells significantly increased p53 binding to the ECRG2 promoter and triggered a strong ECRG2 promoter induction following DNA damage. Further, the genetic depletion of ECRG2 expression significantly impeded apoptotic cell death induced by DNA damage and wild-type p53 in cancer cells. These findings suggest that the loss of ECRG2 expression, commonly observed in human cancers, could play important roles in conferring anticancer drug resistance in human cancers. Thus, ECRG2 is a novel regulator in DNA damage-induced cell death that may also be a potential target for anticancer therapeutics.
Insights
Esophageal Cancer-Related Gene 2 (ECRG2) is a tumor suppressor that, when lost in cancers, may lead to drug resistance. Restoring ECRG2 function could enhance cancer cell death and serve as a therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Esophageal Cancer-Related Gene 2 (ECRG2), also known as Serine Peptidase Inhibitor Kazal type 7 (SPINK7), is a novel tumor suppressor gene.
- ECRG2 expression is frequently absent or reduced in various human cancers, including esophageal tumors.
- Mutations in ECRG2 have been identified in primary human cancers, impacting its tumor-suppressive functions.
Purpose of the Study:
- To investigate the role of ECRG2 in cancer development and its potential as a therapeutic target.
- To elucidate the mechanisms by which ECRG2 suppresses tumor growth, invasion, and metastasis.
- To understand the relationship between ECRG2, p53, and DNA damage-induced apoptosis.
Main Methods:
- Analysis of ECRG2 expression in human cancers.
- Identification and characterization of ECRG2 mutations.
- In vitro and in vivo studies to assess ECRG2's effects on cancer cell proliferation, migration, invasion, and metastasis.
- Investigation of ECRG2's interaction with HuR and its role in DNA damage response pathways.
- Examination of p53 binding to the ECRG2 promoter and its impact on gene expression and apoptosis.
Main Results:
- ECRG2 demonstrates potent anticancer activity by suppressing proliferation, migration, invasion, and metastasis.
- ECRG2 acts as a negative regulator of the oncogenic protein HuR.
- ECRG2 is a transcriptional target of p53 and plays a critical role in DNA damage-induced apoptosis.
- Loss of ECRG2 function contributes to anticancer drug resistance.
Conclusions:
- ECRG2 is a crucial tumor suppressor with significant anticancer potential.
- ECRG2's role in apoptosis and its regulation by p53 highlight its importance in cancer therapy.
- Targeting ECRG2 may represent a novel therapeutic strategy for overcoming drug resistance in various cancers.
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