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Studying Cell Cycle-regulated Gene Expression by Two Complementary Cell Synchronization Protocols
Published on: June 6, 2017
Modulation of gene expression and cell cycle by botryosphaeran, a (1→3)(1→6)-β-d-glucan in human lymphocytes
Maressa Malini1, Marilesia Ferreira de Souza1, Marcelo Tempesta de Oliveira1
1Departmento de Biologia Geral, Centro de Ciências Biológicas - Universidade Estadual de Londrina, Londrina - PR, Brazil.
Abstract:
There is growing interest in the anticancer and immunomodulatory potential of fungal β-d-glucans. In the present study, the modulation of gene expression via RT-qPCR and cell cycle kinetics via flow cytometry were assessed in human normal and tumor (Jurkat) lymphocytes after treatment with botryosphaeran (a fungal (1→3)(1→6)-β-d-glucan) from Botryosphaeria rhodina MAMB-05. Cell cultures were treated with botryosphaeran either alone, or in combination with doxorubicin (DXR), in a post-treatment protocol. The expression of genes involved in immunomodulatory processes, apoptosis and cell cycle control, as well as β-d-glucans cell receptors were assessed. Flow cytometry analysis identified tetraploid Jurkat cells in G1 phase when treated with botryosphaeran combined with DXR. This antiproliferative effect in G1 may be associated with down-regulation of the expression of genes involved in the G1 checkpoint. The repression of the CCR5 gene following botryosphaeran treatment, either alone or in combination with DXR, in tumor lymphocytes indicates a possible affinity of this particular (1→3)(1→6)-β-d-glucan for the receptor CCR5. Therefore, botryosphaeran action appears to be involved in the repression of genes related to the G1 phase of the cell cycle and possibly in the interaction of the botryosphaeran, either alone, or in combination with DXR, with the CCR5 receptor.
Insights
Fungal beta-glucans like botryosphaeran show anticancer potential. Botryosphaeran treatment, alone or with doxorubicin, suppressed tumor cell cycle genes and may interact with the CCR5 receptor.
Area of Science:
- Mycology
- Immunology
- Cancer Research
Background:
- Fungal beta-glucans are investigated for anticancer and immunomodulatory effects.
- Botryosphaeran is a specific fungal (1→3)(1→6)-β-d-glucan from Botryosphaeria rhodina.
Purpose of the Study:
- To assess botryosphaeran's effect on gene expression and cell cycle kinetics in human lymphocytes.
- To investigate botryosphaeran's interaction with doxorubicin (DXR) in a post-treatment protocol.
Main Methods:
- Reverse transcription quantitative polymerase chain reaction (RT-qPCR) for gene expression analysis.
- Flow cytometry for cell cycle kinetics assessment.
- Treatment of normal and Jurkat (tumor) lymphocytes with botryosphaeran and/or DXR.
Main Results:
- Botryosphaeran combined with DXR induced tetraploid Jurkat cells in the G1 phase.
- Gene expression analysis revealed down-regulation of G1 checkpoint genes.
- Botryosphaeran treatment, alone or with DXR, repressed the CCR5 gene in tumor lymphocytes.
Conclusions:
- Botryosphaeran exhibits antiproliferative effects by potentially down-regulating G1 checkpoint genes.
- The fungal beta-glucan may interact with the CCR5 receptor, suggesting a targeted mechanism.
- Botryosphaeran demonstrates potential as an anticancer agent, possibly through immune modulation and cell cycle interference.
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