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Identification of Intracellular Signaling Events Induced in Viable Cells by Interaction with Neighboring Cells Undergoing Apoptotic Cell Death
Published on: December 27, 2016
Pectin induces apoptosis in human prostate cancer cells: correlation of apoptotic function with pectin structure
Crystal L Jackson1, Tina M Dreaden, Lisa K Theobald
1Complex Carbohydrate Research Center, Department of Biochemistry and Molecular Biology, The University of Georgia, Athens, GA 30602, USA.
Abstract:
Treatment options for androgen-independent prostate cancer cells are limited. Therefore, it is critical to identify agents that induce death of both androgen-responsive and androgen-insensitive cells. Here we demonstrate that a product of plant cell walls, pectin, is capable of inducing apoptosis in androgen-responsive (LNCaP) and androgen-independent (LNCaP C4-2) human prostate cancer cells. Commercially available fractionated pectin powder (FPP) induced apoptosis (approximately 40-fold above non-treated cells) in both cell lines as determined by the Apoptosense assay and activation of caspase-3 and its substrate, poly(ADP-ribose) polymerase. Conversely, citrus pectin (CP) and the pH-modified CP, PectaSol, had little or no apoptotic activity. Glycosyl residue composition and linkage analyses revealed no significant differences among the pectins. Mild base treatment to remove ester linkages destroyed FPP's apoptotic activity and yielded homogalacturonan (HG) oligosaccharides. The treatment of FPP with pectinmethylesterase to remove galacturonosyl carboxymethylesters and/or with endopolygalacturonase to cleave nonmethylesterified HG caused no major reduction in apoptotic activity, implicating the requirement for a base-sensitive linkage other than the carboxymethylester. Heat treatment of CP (HTCP) led to the induction of significant levels of apoptosis comparable to FPP, suggesting a means for generating apoptotic pectic structures. These results indicate that specific structural elements within pectin are responsible for the apoptotic activity, and that this structure can be generated, or enriched for, by heat treatment of CP. These findings provide the foundation for mechanistic studies of pectin apoptotic activity and a basis for the development of pectin-based pharmaceuticals, nutraceuticals, or recommended diet changes aimed at combating prostate cancer occurrence and progression.
Insights
Fractionated plant pectin powder (FPP) induces apoptosis in human prostate cancer cells. Heat treatment of citrus pectin (CP) also generates apoptotic activity, suggesting pectin
Area of Science:
- Plant biochemistry
- Cancer biology
- Molecular oncology
Background:
- Androgen-independent prostate cancer presents limited treatment options.
- Identifying agents that induce apoptosis in both responsive and unresponsive cancer cells is critical.
- Pectin, a plant cell wall component, is explored for its potential anti-cancer properties.
Purpose of the Study:
- To investigate the apoptotic activity of different pectin preparations on human prostate cancer cells.
- To identify structural features of pectin responsible for inducing apoptosis.
- To explore methods for generating or enhancing pectin's apoptotic potential.
Main Methods:
- Assessing apoptosis using Apoptosense assay and caspase-3/PARP activation.
- Analyzing pectin composition and linkage.
- Treating pectin with base, pectinmethylesterase, and endopolygalacturonase.
- Heat treatment of citrus pectin.
Main Results:
- Fractionated pectin powder (FPP) significantly induced apoptosis in LNCaP and LNCaP C4-2 cells.
- Citrus pectin (CP) and PectaSol showed minimal apoptotic activity.
- Base treatment abolished FPP's apoptotic activity, indicating a base-sensitive linkage.
- Heat treatment of CP (HTCP) generated significant apoptotic activity comparable to FPP.
Conclusions:
- Specific structural elements in pectin are responsible for inducing apoptosis in prostate cancer cells.
- Heat treatment is a viable method to generate or enrich for these apoptotic structures in CP.
- Findings support the development of pectin-based interventions for prostate cancer prevention and treatment.
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