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Intracellular localization and content of YB-1 protein in multidrug resistant tumor cells
A V Vaiman1, T P Stromskaya, E Yu Rybalkina
1Institute of Carcinogenesis, Blokhin Russian Cancer Research Center, Russian Academy of Medical Sciences, 115478 Moscow, Russia. vaiman@yandex.ru
Abstract:
The multifunctional mammalian protein YB-1 is a member of the large DNA- and RNA-binding protein family with an evolutionarily ancient cold-shock domain. YB-1 is involved in multiple DNA- and mRNA-dependent events and regulates gene expression at various levels. It can be found both in the nucleus and the cytoplasm. Bound to DNA in the cell nucleus, YB-1 functions as a transcription factor interacting with inverted CCAAT-box (Y-box) in promoters and enhancers of multiple genes. In particular, YB-1 regulates activity of the multidrug resistance (MDR) genes MDR1 and LRP. In tumors, YB-1 has been suggested to be an early and global marker of MDR. In this study, we compared amounts of YB-1 mRNAs and intracellular localization of YB-1 protein in six pairs of drug sensitive and drug resistant sublines of diverse tumors. We have shown that neither great increase in the level of YB-1 mRNA nor substantial increase in the number of cells with nuclear localization of YB-1 are obligatory traits of drug resistant tumor cell populations. However, the cells with highest amounts of YB-1 mRNA also demonstrated increased quantities of MDR1, MRP1, BCRP, and LRP mRNAs encoding different MDR proteins. Transfection of two different populations of drug-sensitive cells with YB-1 cDNA led to increase in the amount of YB-1 mRNA. The quantities of MRP1 and LRP mRNAs increased in both populations. Introduction of YB-1 small hairpin RNA (shRNA) resulted in decreased amounts of YB-1 mRNA, as well as MRP1, LRP, and MDR1 mRNAs (in three different cell lines). Our data suggest that although YB-1 regulates several MDR genes, it could not be regarded as a global marker of already formed drug resistant tumor cell populations. It is most likely that at the first steps of MDR development YB-1 activity is necessary for propagation of resistant cell populations rather than for maintenance of drug resistance.
Insights
YB-1 protein regulates multidrug resistance (MDR) genes but is not a universal marker for established drug-resistant tumors. Its activity is crucial for the initial spread of resistant cell populations.
Area of Science:
- Molecular Biology
- Cancer Research
- Genetics
Background:
- YB-1 is a DNA/RNA-binding protein regulating gene expression.
- It functions as a transcription factor, binding to Y-box elements.
- YB-1 is implicated in multidrug resistance (MDR) gene regulation.
Purpose of the Study:
- To investigate YB-1 mRNA levels and protein localization in drug-sensitive versus drug-resistant tumor cells.
- To determine if YB-1 is a reliable marker for established tumor drug resistance.
- To elucidate YB-1's role in the development and maintenance of MDR.
Main Methods:
- Comparative analysis of YB-1 mRNA and protein in tumor sublines.
- Gene expression analysis of MDR genes (MDR1, LRP, MRP1, BCRP).
- Experimental manipulation using YB-1 cDNA transfection and shRNA knockdown.
Main Results:
- Increased YB-1 mRNA correlated with higher MDR gene expression, but nuclear localization wasn't always elevated in resistant cells.
- YB-1 overexpression in sensitive cells increased MRP1 and LRP mRNA.
- YB-1 knockdown decreased YB-1, MRP1, LRP, and MDR1 mRNA levels.
Conclusions:
- YB-1 regulates multiple MDR genes but is not a definitive marker for established drug resistance.
- YB-1's role appears more critical in the early stages of MDR development and cell propagation.
- YB-1 activity is likely essential for the initial emergence of resistant tumor cell populations.
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