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Updated: May 17, 2026

Activation of Apoptosis by Cytoplasmic Microinjection of Cytochrome c
Published on: June 29, 2011
Expression of αB-crystallin overrides the anti-apoptotic activity of XIAP
Jee Suk Lee1, Hye Young Kim, Na Young Jeong
1Department of Anatomy and Cell Biology and Mitochondria Hub Regulation Center, College of Medicine, Dong-A University, Busan, Republic of Korea.
Abstract:
Although crystallins are major structural proteins in the lens, α-crystallins perform non-lens functions, and αB-crystallin has been shown to act as an anti-apoptotic mediator in various cells. The present study was undertaken to examine whether αB-crystallin expressed in human malignant glioma cells exerts anti-apoptotic activity. In addition, we sought to elucidate the mechanism underlying any observed anti-apoptotic function of αB-crystallin in these cells. Three glioma cell lines, U373MG, U118MG, and T98G, were used. We observed that only the U373MG cell line expresses αB-crystallin, whereas the other 2 glioma cell lines, U118MG and T98G, demonstrated no endogenous expression of αB-crystallin. We next observed that the silencing of αB-crystallin sensitized U373MG cells to suberoylanilide hydroxamic acid (SAHA)-induced apoptosis and that αB-crystallin associates with caspase-3 and XIAP. Because XIAP is the most potent suppressor of mammalian apoptosis through the direct binding with caspases, we assessed whether XIAP also plays an anti-apoptotic role in SAHA-induced apoptosis in αB-crystallin-expressing U373MG cells. Of note, the silencing of XIAP did not alter the amount of cell death induced by SAHA, indicating that XIAP does not exert an anti-apoptotic activity in U373MG cells. We then determined whether the ectopic expression of αB-crystallin in glioma cells caused a loss of the anti-apoptotic activity of XIAP. Accordingly, we established 2 αB-crystallin over-expressing glioma cell lines, U118MG and T98G, and found that the silencing of XIAP did not sensitize these cells to SAHA-induced apoptosis. These findings suggest that αB-crystallin expressed in glioma cells overrides the anti-apoptotic activity exerted by XIAP.
Insights
Alpha B-crystallin (αB-crystallin) exhibits anti-apoptotic activity in malignant glioma cells by overriding XIAP
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- Alpha-crystallins, particularly alpha B-crystallin (αB-crystallin), are known to mediate anti-apoptotic functions beyond their structural roles in the eye lens.
- Malignant gliomas are aggressive brain tumors characterized by resistance to apoptosis, making the identification of novel anti-apoptotic mediators crucial.
Purpose of the Study:
- To investigate the anti-apoptotic activity of αB-crystallin in human malignant glioma cells.
- To elucidate the underlying molecular mechanisms of αB-crystallin's anti-apoptotic function in these cells.
Main Methods:
- Utilized three human malignant glioma cell lines (U373MG, U118MG, T98G) with varying endogenous αB-crystallin expression.
- Employed gene silencing techniques to assess the role of αB-crystallin and XIAP (X-linked inhibitor of apoptosis protein) in apoptosis.
- Investigated protein-protein interactions between αB-crystallin, caspase-3, and XIAP.
- Established cell lines with ectopic αB-crystallin expression for further mechanistic studies.
Main Results:
- Only U373MG cells expressed endogenous αB-crystallin; silencing it sensitized cells to SAHA-induced apoptosis.
- αB-crystallin associated with caspase-3 and XIAP.
- XIAP did not exhibit anti-apoptotic activity in U373MG cells treated with SAHA.
- Ectopic expression of αB-crystallin in U118MG and T98G cells suggested that αB-crystallin overrides XIAP's anti-apoptotic function.
Conclusions:
- αB-crystallin exerts significant anti-apoptotic activity in malignant glioma cells.
- The mechanism involves overriding the function of XIAP, a known apoptosis suppressor.
- These findings highlight αB-crystallin as a potential therapeutic target for enhancing apoptosis in gliomas.
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