Integrin-linked kinase regulates senescence in an Rb-dependent manner in cancer cell lines
Rose Duminuco1, Jake W Noble1, Joseph Goody1
1a Department of Biology ; Trinity Western University ; Langley , British Columbia , Canada.
Abstract:
Anti-integrin-linked kinase (ILK) therapies result in aberrant mitosis including altered mitotic spindle organization, centrosome declustering and mitotic arrest. In contrast to cells that expressed the retinoblastoma tumor suppressor protein Rb, we have shown that in retinoblastoma cell lines that do not express Rb, anti-ILK therapies induced aberrant mitosis that led to the accumulation of temporarily viable multinucleated cells. The present work was undertaken to: 1) determine the ultimate fate of cells that had survived anti-ILK therapies and 2) determine whether or not Rb expression altered the outcome of these cells. Our data indicate that ILK, a chemotherapy drug target is expressed in both well-differentiated, Rb-negative and relatively undifferentiated, Rb-positive retinoblastoma tissue. We show that small molecule targeting of ILK in Rb-positive and Rb-deficient cancer cells results in increased centrosomal declustering, aberrant mitotic spindle formation and multinucleation. However, anti-ILK therapies in vitro have different outcomes in retinoblastoma and glioblastoma cell lines that depend on Rb expression. TUNEL labeling and propidium iodide FACS analysis indicate that Rb-positive cells exposed to anti-ILK therapies are more susceptible to apoptosis and senescence than their Rb-deficient counterparts wherein aberrant mitosis induced by anti-ILK therapies exhibit mitotic arrest instead. These studies are the first to show a role for ILK in chemotherapy-induced senescence in Rb-positive cancer lines. Taken together these results indicate that the oncosuppressive outcomes for anti-ILK therapies in vitro, depend on the expression of the tumor suppressor Rb, a known G1 checkpoint and senescence regulator.
Insights
Integrin-linked kinase (ILK) therapies cause abnormal cell division. Rb-positive cells undergo apoptosis or senescence, while Rb-deficient cells experience mitotic arrest, indicating Rb
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- Anti-integrin-linked kinase (ILK) therapies induce aberrant mitosis, including mitotic spindle disorganization and centrosome declustering.
- Retinoblastoma tumor suppressor protein (Rb) expression influences cellular response to anti-ILK therapies.
- Rb-negative cells accumulate multinucleated cells after anti-ILK treatment, unlike Rb-positive cells.
Purpose of the Study:
- To determine the ultimate fate of cells surviving anti-ILK therapies.
- To investigate whether Rb expression affects the outcome of anti-ILK therapies in cancer cells.
Main Methods:
- Utilized retinoblastoma and glioblastoma cell lines with varying Rb expression.
- Administered small molecule inhibitors targeting ILK.
- Assessed cellular fate using TUNEL labeling and propidium iodide FACS analysis.
Main Results:
- ILK is expressed in both Rb-positive and Rb-negative retinoblastoma tissues.
- Targeting ILK increases centrosomal declustering, aberrant mitotic spindle formation, and multinucleation in both Rb-positive and Rb-deficient cancer cells.
- Rb-positive cells are more susceptible to apoptosis and senescence following anti-ILK therapy, whereas Rb-deficient cells exhibit mitotic arrest.
Conclusions:
- The oncosuppressive effects of anti-ILK therapies in vitro are dependent on the expression of the tumor suppressor Rb.
- These findings highlight a novel role for ILK in chemotherapy-induced senescence in Rb-positive cancer cell lines.
- Rb acts as a critical regulator of cellular fate in response to ILK inhibition during mitosis.
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