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Published on: July 21, 2018
Emerging treatments in lung cancer - targeting the RLIP76 molecular transporter
Lawrence E Goldfinger1, Seunghyung Lee2
1Department of Anatomy and Cell Biology, The Sol Sherry Thrombosis Research Center, Temple University School of Medicine, Philadelphia, PA, USA ; Cancer Biology Program, Fox Chase Cancer Center, Philadelphia, PA, USA.
Abstract:
Multidrug resistance in lung cancer cells is a significant obstacle in the treatment of lung cancer. Resistance to chemotherapeutic agents is often the result of efflux of the drugs from cancer cells, mediated by adenosine triphosphate (ATP)-dependent drug transport across the plasma membrane. Thus, identifying molecular targets in the cancer cell transport machinery could be a key factor in successful combinatorial therapy, along with chemotherapeutic drugs. The transport protein Ral-interacting protein of 76 kDa (RLIP76), also known as Ral-binding protein 1 (RalBP1), is a highly promising target for lung cancer treatment. RLIP76 is an ATP-dependent non-ATP-binding cassette (ABC) transporter, responsible for the major transport function in many cells, including many cancer cell lines, causing efflux of glutathione-electrophile conjugates of both endogenous metabolites and environmental toxins. RLIP76 is expressed in most human tissues, and is overexpressed in non-small-cell lung cancer cell lines and in many tumor types. The blockade of RLIP76 by various approaches has been shown to increase the sensitivity to radiation and chemotherapeutic drugs, and leads to apoptosis in cells. In xenograft tumor models in mice, RLIP76 blockade or depletion results in complete and sustained regression across many cancer cell types, including lung cancer cells. In addition to its transport function, RLIP76 has many other cellular and physiological functions based on its domain structure, which includes a unique Ral-binding domain and a Rho GTPase activating protein (RhoGAP)-catalytic domain as well as docking sites for multiple signaling proteins. As a Ral effector, RhoGAP, and adapter protein, RLIP76 has been shown to play important roles in endocytosis, mitochondrial fission, cell spreading and migration, actin dynamics during gastrulation, and Ras-induced tumorigenesis. Additionally, RLIP76 is also important for stromal cell function in tumors, as it was recently shown to be required for efficient endothelial cell function and angiogenesis in solid tumors. However, RLIP76 knockout mice are viable, and blockade effects appear to be selective for implanted tumors in mice, suggesting the possibility that RLIP76-targeting drugs may be successful in clinical trials. In this review, we outline the many cellular and physiological functions of RLIP76 in normal and cancer cells, and discuss the potential for RLIP76-based therapeutics in lung cancer treatment.
Insights
Targeting the RLIP76 transport protein may overcome multidrug resistance in lung cancer. Blocking RLIP76 enhances chemotherapy and radiation sensitivity, leading to tumor regression and apoptosis.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Multidrug resistance (MDR) in lung cancer hinders effective treatment, often due to ATP-dependent drug efflux.
- The transport protein RLIP76 (Ral-interacting protein of 76 kDa), also known as RalBP1, is implicated in this efflux mechanism.
- RLIP76 is overexpressed in non-small-cell lung cancer and other tumors, making it a potential therapeutic target.
Purpose of the Study:
- To review the cellular and physiological functions of RLIP76.
- To discuss the potential of RLIP76 as a therapeutic target for lung cancer treatment.
- To explore RLIP76-based combinatorial therapies.
Main Methods:
- Review of existing literature on RLIP76 function and its role in cancer.
- Analysis of RLIP76's involvement in drug transport and cellular processes.
- Examination of preclinical data from xenograft models and knockout mice.
Main Results:
- RLIP76 acts as an ATP-dependent transporter, mediating the efflux of drugs and toxins.
- Blocking RLIP76 increases sensitivity to chemotherapy and radiation, inducing apoptosis in cancer cells.
- RLIP76 blockade or depletion leads to significant tumor regression in preclinical models, including lung cancer.
- RLIP76 also plays roles in angiogenesis and stromal cell function within tumors.
Conclusions:
- RLIP76 is a promising molecular target for overcoming multidrug resistance in lung cancer.
- Targeting RLIP76 could form the basis of novel combinatorial therapeutic strategies.
- The selective action of RLIP76 blockade in tumors suggests potential clinical efficacy with minimal systemic toxicity.
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