| Literature DB >> 28379203 |
Abstract
The transient receptor potential melastatin-subfamily member 7 (TRPM7) is a ubiquitously expressed ion channel with intrinsic kinase activity. Molecular and electrophysiological analyses of the structure and activity of TRPM7 have revealed functional coupling of its channel and kinase activity. Studies have indicated the important roles of TRPM7 channel-kinase in fundamental cellular processes, physiological responses, and embryonic development. Accumulating evidence has shown that TRPM7 is aberrantly expressed and/or activated in human diseases including cancer. TRPM7 plays a variety of functional roles in cancer cells including survival, cell cycle progression, proliferation, growth, migration, invasion, and epithelial-mesenchymal transition (EMT). Data from a study using mouse xenograft of human cancer show that TRPM7 is required for tumor growth and metastasis. The aberrant expression of TRPM7 and its genetic mutations/polymorphisms have been identified in various types of carcinoma. Chemical modulators of TRPM7 channel produced inhibition of proliferation, growth, migration, invasion, invadosome formation, and markers of EMT in cancer cells. Taken together, these studies suggest the potential value of exploiting TRPM7 channel-kinase as a molecular biomarker and therapeutic target in human malignancies.Entities:
Keywords: TRP; TRPM7; biomarker; cancer; ion channel; therapeutic target; transient receptor potential
Year: 2017 PMID: 28379203 PMCID: PMC5490396 DOI: 10.3390/ph10020039
Source DB: PubMed Journal: Pharmaceuticals (Basel) ISSN: 1424-8247
Figure 1A schematic diagram to illustrate the protein structure of TRPM7 channel-kinase.
Expression and roles of TRPM7 channels in various human malignancies.
| Cancer | Expression | Functional roles of TRPM7 | References |
|---|---|---|---|
| Pancreatic adenocarcinoma | Increased in human pancreatic adenocarcinoma tissues and cell lines. Increased in chronic pancreatitis, pancreatic intra-epithelial neoplasms | Required for cellular proliferation and cell cycle progression involving Mg2+. Required for preventing replicative senescence. Required for cell migration involving Mg2+. Required for cell invasion. | [ |
| Breast carcinoma | Over-expression in human breast carcinoma tissues and cell lines Increased expression in infiltrating ductal carcinoma with microcalcifications Somatic mutation T720S (Thr→Ser) in a breast infiltrating ductal carcinoma | Required for cancer cell proliferation in vitro. Required for cancer cell migration in vitro and tumor metastasis in a mouse xenograft model. Waixenicin A, TRPM7 blocker, inhibits growth and survival of breast cancer cells MCF-7. TRPM7 involved in estrogen receptor-negative metastatic breast cancer cells migration through kinase domain. Involved in ginsenoside Rd-induced apoptosis in cells. Involved in epithelial mesenchymal transition. TRPM7 mediates migration and invasion of breast cancer cells (MDA-MB-435) involving phosphorylation of Src and MAPK. | [ |
| Gastric carcinoma | Expressed in human gastric adenocarcinoma cell lines (AGS, MKN-1, MKN-45, SNU-1, SNU-484) Somatic mutation M830V (Met→Val) in gastric adenocarcinoma | Required for cell survival involving Mg2+. Waixenicin A, TRPM7 blocker, inhibits growth and survival of gastric cancer cells AGS. Involved in ginsenoside Rd-induced apoptosis AGS cells. | [ |
| Head and neck Carcinoma | Expressed in FaDu cells and SCC-25 cells. High expression in 5-8F cells, low expression in 6-10B cells | Required for cell growth and proliferation. Required for migration of nasopharyngeal carcinoma cells (5-8F and 6-10B). Proliferation of FaDu hypopharyngeal squamous cells (FaDu) inhibited by midazolam that targets TRPM7. | [ |
| Retinoblastoma | Existence in 5-8F cells | Required for cell proliferation. Required for 5-8F cell migration. | [ |
| Melanoma | Expressed in cell lines | Not reported. | [ |
| Lung carcinoma | Expressed in A549 cells | Required for migration of A549 cells. | [ |
| Erythroleukemia | TRPM7-like currents in cell lines | Not reported. | [ |
| Colon cancer | TRPM7 (Thr1482Ile) polymorphism | TRPM7 (Thr1482Ile) polymorphism associated with elevated risk of both adenomatous and hyperplastic polyps. Individuals with TRPM7 (Thr1482Ile) polymorphism with a high Ca:Mg ratio intake in diet at a relatively high risk of developing adenoma and hyperplastic polyps. | [ |
| Leukemia | Not reported | Waixenicin inhibits T cell leukemia (Jurkat T lymphocytes) and rat basophilic leukemia cells (RBL1) through blocking TRPM7 channel activity. | [ |
| Neuroblastoma | Not reported | In mouse neuroblastoma cells (N1E-115), TRPM7 promotes formation of Ca2+ sparking and invadosome by affecting actomyosin contractility independent from Ca2+ influx. In vivo and in vitro studies using N1E-115 cells, TRPM7 promotes tumor metastasis in a mouse xenograft model and cell migration in Boyden chamber. | [ |
| Ovarian carcinoma | Somatic mutation S406C (Ser→Cys) in ovarian serous carcinoma | Not reported. | [ |
| Prostate cancer | Expressed in human prostate cancer cell line DU145 | Increased Ca2+ to Mg2+ ratio in prostate cancer cells enhances TRPM7-mediated currents and promotes cellular entry of Ca2+, leading to increase in cell proliferation. | [ |
| Glioblastoma | Over-expressed in human glioblastoma cell line U87 | Carvacrol inhibits TRPM7 and suppresses glioblastoma cell proliferation, migration, and invasion Xylokeletal B inhibits TRPM7 and suppresses glioblastoma cell proliferation and migration through PI3K/Akt and MEK/ERK signaling Midazolam inhibits TRPM7-mediated current and suppresess TRPM7 expression, and induces cell cycle arrest and impairs proliferation | [ |
Figure 2A working model of the signaling mechanisms that mediate the functional roles of TRPM7.
Chemical modulators of TRPM7 channel activities as potential anti-cancer therapeutics.
| Chemicals | Effects on TRPM7 | Types of Cancer (Cell Lines) | Cellular Effects | References |
|---|---|---|---|---|
| Midazolam | Reduces expression of TRPM7, blocks TRPM7 channel activity (TRPM7 currents) | Human hypopharyngeal squamous cell carcinoma (FaDu), human glioma (MGR2) | Inhibits growth and proliferation with cell cycle arrest | [ |
| Ginsenoside Rg3 | Blocks TRPM7 channel activity (TRPM7 currents) | Human gastric adenocarcinoma (AGS) | Inhibits growth and survival (MTT-based viability assay: IC50 of 350 μM) | [ |
| Ginsenoside Rd | Inhibits TRPM7 channel activity (TRPM7 currents) | Human breast adenocarcinoma (MCF-7), | Inhibits proliferation and survival (MTT-based viability assay: IC50 of 154 μM in MCF-7; IC50 of 131 μM in AGS) | [ |
| Waixenicin A | Inhibits TRPM7 channel activity (TRPM7 currents: IC50 of 7 μM in 0 [Mg2+]i; 16 nM in 700 uM [Mg2+]i) | T cell leukemia (Jurkat), | Inhibits proliferation, inhibits invadosome formation | [ |
| Carvacrol | Inhibits TRPM7 channel activity | Human glioblastoma (U87) | Inhibits survival, migration, and invasion (MTT-based viability assay: IC50 of 561 µM) | [ |
| Xyloketal B | Inhibits TRPM7 channel activity (TRPM7 currents) | Human glioblastoma (U251) | Inhibits survival, proliferation and migration (MTT-based viability assay: IC50 of 287 µM) | [ |
| NS8593 | Inhibits TRPM7 channel activity (TRPM7 currents: IC50 1.6 μM in [Mg2+]i, IC50 of 5.9 uM in 300 μM [Mg2+]i) | Human breast carcinoma (MDA-MB468) | Inhibits epidermal growth factor-induced vimentin expression (epithelial-mesenchymal transition) | [ |