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Updated: Jun 22, 2026

Evaluation of the Interplay Between the Complement Protein C1q and Hyaluronic Acid in Promoting Cell Adhesion
Published on: June 15, 2019
Complement C1q activates tumor suppressor WWOX to induce apoptosis in prostate cancer cells
Qunying Hong1, Chun-I Sze, Sing-Ru Lin
1Guthrie Research Institute, Laboratory of Molecular Immunology, Sayre, PA, USA.
Background:
Tissue exudates contain low levels of serum complement proteins, and their regulatory effects on prostate cancer progression are largely unknown. We examined specific serum complement components in coordinating the activation of tumor suppressors p53 and WWOX (also named FOR or WOX1) and kinases ERK, JNK1 and STAT3 in human prostate DU145 cells.
Methodology/Principal Findings:
DU145 cells were cultured overnight in 1% normal human serum, or in human serum depleted of an indicated complement protein. Under complement C1q- or C6-free conditions, WOX1 and ERK were mainly present in the cytoplasm without phosphorylation, whereas phosphorylated JNK1 was greatly accumulated in the nuclei. Exogenous C1q rapidly restored the WOX1 activation (with Tyr33 phosphorylation) in less than 2 hr. Without serum complement C9, p53 became activated, and hyaluronan (HA) reversed the effect. Under C6-free conditions, HA induced activation of STAT3, an enhancer of metastasis. Notably, exogenous C1q significantly induced apoptosis of WOX1-overexpressing DU145 cells, but not vehicle-expressing cells. A dominant negative and Y33R mutant of WOX1 blocked the apoptotic effect. C1q did not enhance p53-mediated apoptosis. By total internal reflection fluorescence (TIRF) microscopy, it was determined that C1q destabilized adherence of WOX1-expressing DU145 cells by partial detaching and inducing formation of clustered microvilli for focal adhesion particularly in between cells. These cells then underwent shrinkage, membrane blebbing and death. Remarkably, as determined by immunostaining, benign prostatic hyperplasia and prostate cancer were shown to have a significantly reduced expression of tissue C1q, compared to age-matched normal prostate tissues.
Conclusions/Significance:
We conclude that complement C1q may induce apoptosis of prostate cancer cells by activating WOX1 and destabilizing cell adhesion. Downregulation of C1q enhances prostate hyperplasia and cancerous formation due to failure of WOX1 activation.
Insights
Complement C1q induces prostate cancer cell death by activating WOX1 and disrupting cell adhesion. Reduced C1q levels are linked to prostate hyperplasia and cancer due to impaired WOX1 activation.
Area of Science:
- Immunology
- Cancer Biology
- Cell Biology
Background:
- Serum complement proteins in tissue exudates are low and their role in prostate cancer progression is unclear.
- This study investigates how complement proteins regulate tumor suppressors and kinases in prostate cancer cells.
Purpose of the Study:
- To examine the role of specific serum complement components in activating tumor suppressors p53 and WWOX (WOX1), and kinases ERK, JNK1, and STAT3 in human prostate DU145 cells.
- To elucidate the mechanism by which complement C1q affects prostate cancer cell apoptosis and adhesion.
Main Methods:
- Culturing DU145 cells in normal or complement-depleted human serum.
- Assessing protein localization and phosphorylation using immunofluorescence and Western blotting.
- Utilizing Total Internal Reflection Fluorescence (TIRF) microscopy to observe cell adhesion dynamics.
- Analyzing tissue samples for C1q expression in benign and cancerous prostate tissues.
Main Results:
- Complement C1q and C6 depletion altered WOX1, ERK, and JNK1 localization and phosphorylation.
- Exogenous C1q rapidly restored WOX1 activation and induced apoptosis in WOX1-overexpressing DU145 cells.
- C1q destabilized cell adhesion, leading to cell shrinkage, membrane blebbing, and death.
- Reduced C1q expression was observed in benign prostatic hyperplasia and prostate cancer tissues compared to normal tissues.
Conclusions:
- Complement C1q induces prostate cancer cell apoptosis by activating WOX1 and destabilizing cell adhesion.
- Downregulation of C1q is associated with enhanced prostate hyperplasia and cancer formation due to impaired WOX1 activation.
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