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Published on: June 13, 2014
Targeting of lysosomal-bound protein mEAK-7 for cancer therapy
Insoon Chang1, Yi-Ling Loo2, Jay Patel2
1Section of Endodontics, Division of Regenerative and Reconstructive Sciences, School of Dentistry, University of California, Los Angeles, Los Angeles, CA, United States.
Abstract:
mEAK-7 (mammalian EAK-7 or MTOR-associated protein, eak-7 homolog), is an evolutionarily conserved lysosomal membrane protein that is highly expressed in several cancer cells. Multiple recent studies have identified mEAK-7 as a positive activator of mTOR (mammalian/mechanistic target of rapamycin) signaling via an alternative mTOR complex, implying that mEAK-7 plays an important role in the promotion of cancer proliferation and migration. In addition, structural analyses investigating interactions between mEAK-7 and V-ATPase, a protein complex responsible for regulating pH homeostasis in cellular compartments, have suggested that mEAK-7 may contribute to V-ATPase-mediated mTORC1 activation. The C-terminal α-helix of mEAK-7 binds to the D and B subunits of the V-ATPase, creating a pincer-like grip around its B subunit. This binding undergoes partial disruption during ATP hydrolysis, potentially enabling other proteins such as mTOR to bind to the α-helix of mEAK-7. mEAK-7 also promotes chemoresistance and radiation resistance by sustaining DNA damage-mediated mTOR signaling through interactions with DNA-PKcs (DNA-dependent protein kinase catalytic subunit). Taken together, these findings indicate that mEAK-7 may be a promising therapeutic target against tumors. However, the precise molecular mechanisms and signal transduction pathways of mEAK-7 in cancer remain largely unknown, motivating the need for further investigation. Here, we summarize the current known roles of mEAK-7 in normal physiology and cancer development by reviewing the latest studies and discuss potential future developments of mEAK-7 in targeted cancer therapy.
Insights
Mammalian EAK-7 (mEAK-7) activates mTOR signaling, promoting cancer growth and resistance. Further research is needed to understand its precise role and therapeutic potential in cancer treatment.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- mEAK-7 is a lysosomal membrane protein highly expressed in cancer cells.
- mEAK-7 positively regulates mTOR signaling, influencing cancer proliferation and migration.
- mEAK-7 interacts with V-ATPase and DNA-PKcs, impacting cellular pH homeostasis and DNA damage response.
Purpose of the Study:
- To summarize current knowledge on mEAK-7's roles in normal physiology and cancer.
- To review recent studies on mEAK-7's molecular mechanisms and signaling pathways in cancer.
- To discuss the potential of mEAK-7 as a therapeutic target in cancer therapy.
Main Methods:
- Review of recent scientific literature on mEAK-7.
- Analysis of structural data on mEAK-7 interactions with V-ATPase.
- Examination of mEAK-7's role in mTOR signaling and DNA damage response.
Main Results:
- mEAK-7 activates mTORC1 via interaction with V-ATPase subunits.
- mEAK-7 sustains DNA damage-mediated mTOR signaling through DNA-PKcs interaction, promoting chemoresistance and radiation resistance.
- mEAK-7's precise molecular mechanisms in cancer require further elucidation.
Conclusions:
- mEAK-7 is implicated in cancer proliferation, migration, and resistance.
- mEAK-7's interaction with V-ATPase and DNA-PKcs highlights its multifaceted role in cancer.
- mEAK-7 represents a potential therapeutic target for cancer treatment, warranting further investigation.
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