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Published on: February 16, 2015
Contribution of Anoctamins to Cell Survival and Cell Death
Karl Kunzelmann1, Jiraporn Ousingsawat2, Roberta Benedetto3
1Institut für Physiologie, Universität Regensburg, Universitätsstraße 31, D-93053 Regensburg, Germany. Karl.kunzelmann@ur.de.
Abstract:
Before anoctamins (TMEM16 proteins) were identified as a family of Ca2+-activated chloride channels and phospholipid scramblases, the founding member anoctamin 1 (ANO1, TMEM16A) was known as DOG1, a marker protein for gastrointestinal stromal tumors (GIST). Meanwhile, ANO1 has been examined in more detail, and the role of ANO1 in cell proliferation and the development of different types of malignomas is now well established. While ANO5, ANO7, and ANO9 may also be relevant for growth of cancers, evidence has been provided for a role of ANO6 (TMEM16F) in regulated cell death. The cellular mechanisms by which anoctamins control cell proliferation and cell death, respectively, are just emerging; however, the pronounced effects of anoctamins on intracellular Ca2+ levels are likely to play a significant role. Recent results suggest that some anoctamins control membrane exocytosis by setting Ca2+i levels near the plasma membrane, and/or by controlling the intracellular Cl- concentration. Exocytosis and increased membrane trafficking induced by ANO1 and ANO6 may enhance membrane expression of other chloride channels, such as CFTR and volume activated chloride channels (VRAC). Notably, ANO6-induced phospholipid scrambling with exposure of phosphatidylserine is pivotal for the sheddase function of disintegrin and metalloproteinase (ADAM). This may support cell death and tumorigenic activity of IL-6 by inducing IL-6 trans-signaling. The reported anticancer effects of the anthelminthic drug niclosamide are probably related to the potent inhibitory effect on ANO1, apart from inducing cell cycle arrest through the Let-7d/CDC34 axis. On the contrary, pronounced activation of ANO6 due to a large increase in intracellular calcium, activation of phospholipase A2 or lipid peroxidation, can lead to ferroptotic death of cancer cells. It therefore appears reasonable to search for both inhibitors and potent activators of TMEM16 in order to interfere with cancer growth and metastasis.
Insights
Anoctamins (TMEM16 proteins) are crucial in cancer, influencing cell proliferation and death. Targeting these calcium-activated channels and scramblases with inhibitors or activators offers potential for novel cancer therapies.
Area of Science:
- Cell Biology
- Oncology
- Molecular Medicine
Background:
- Anoctamins (TMEM16 proteins) are calcium-activated chloride channels and phospholipid scramblases.
- Anoctamin 1 (ANO1, TMEM16A) was initially identified as a marker for gastrointestinal stromal tumors (GIST).
- The roles of ANO1 in cancer cell proliferation and other malignomas are established, with ANO5, ANO7, and ANO9 also implicated in cancer growth.
Purpose of the Study:
- To elucidate the emerging cellular mechanisms by which anoctamins regulate cell proliferation and death.
- To explore the significant role of intracellular calcium (Ca2+) in anoctamin function.
- To investigate the potential of targeting TMEM16 proteins for cancer treatment.
Main Methods:
- Review of existing literature on anoctamin function in cancer.
- Analysis of anoctamin involvement in intracellular calcium regulation, exocytosis, and membrane trafficking.
- Examination of anoctamin roles in regulated cell death, including ferroptosis.
Main Results:
- Anocatmins influence cell proliferation and regulated cell death pathways.
- ANO1 and ANO6 modulate membrane trafficking and exocytosis, potentially affecting other chloride channels like CFTR and VRAC.
- ANO6-induced phospholipid scrambling is critical for ADAM sheddase activity and IL-6 trans-signaling.
- Niclosamide's anticancer effects are linked to ANO1 inhibition.
- ANO6 activation can induce ferroptotic death in cancer cells.
Conclusions:
- TMEM16 proteins play multifaceted roles in cancer, impacting proliferation, cell death, and metastasis.
- Understanding anoctamin mechanisms involving calcium and chloride ions is key to developing cancer therapies.
- Targeting TMEM16 proteins, either through inhibition or activation, presents a promising strategy for combating cancer growth and metastasis.
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