CHIP buffers heterogeneous Bcl-2 expression levels to prevent augmentation of anticancer drug-resistant cell
M Tsuchiya1, Y Nakajima1,2, T Waku3
1Graduate School of Life and Environmental Sciences, University of Tsukuba, Tsukuba Science City, Ibaraki, Japan.
Abstract:
Many types of cancer display heterogeneity in various features, including gene expression and malignant potential. This heterogeneity is associated with drug resistance and cancer progression. Recent studies have shown that the expression of a major protein quality control ubiquitin ligase, carboxyl terminus of Hsc70-interacting protein (CHIP), is negatively correlated with breast cancer clinicopathological stages and poor overall survival. Here we show that CHIP acts as a capacitor of heterogeneous Bcl-2 expression levels and prevents an increase in the anticancer drug-resistant population in breast cancer cells. CHIP knockdown in breast cancer cells increased variation in Bcl-2 expression levels, an antiapoptotic protein, among the cells. Our results also showed that CHIP knockdown increased the proportion of anticancer drug-resistant cells. These findings suggest that CHIP buffers variation in gene expression levels, affecting resistance to anticancer drugs. In single-cell clones derived from breast cancer cell lines, CHIP knockdown did not alter the variation in Bcl-2 expression levels and the proportion of anticancer drug-resistant cells. In contrast, when clonal cells were treated with a mutagen, the variation in Bcl-2 expression levels and proportion of anticancer drug-resistant cells were altered by CHIP knockdown. These results suggest that CHIP masks genetic variations to suppress heterogeneous Bcl-2 expression levels and prevents augmentation of the anticancer drug-resistant population of breast cancer cells. Because genetic variation is a major driver of heterogeneity, our results suggest that the degree of heterogeneity in expression levels is decided by a balance between genetic variation and the buffering capacity of CHIP.
Insights
Carboxyl terminus of Hsc70-interacting protein (CHIP) buffers gene expression variation in breast cancer cells. This protein prevents increased drug resistance by suppressing heterogeneous Bcl-2 levels, thus impacting cancer progression.
Area of Science:
- Cancer Biology
- Molecular Oncology
- Cellular Heterogeneity
Background:
- Cancer cells exhibit heterogeneity, influencing drug resistance and progression.
- Carboxyl terminus of Hsc70-interacting protein (CHIP) expression correlates with better breast cancer outcomes.
- CHIP is a key ubiquitin ligase involved in protein quality control.
Purpose of the Study:
- To investigate the role of CHIP in regulating gene expression heterogeneity.
- To determine CHIP's impact on anticancer drug resistance in breast cancer.
- To elucidate the mechanism by which CHIP influences Bcl-2 expression variation.
Main Methods:
- CHIP knockdown in breast cancer cell lines.
- Analysis of Bcl-2 expression levels using single-cell assays.
- Assessment of drug-resistant cell populations.
- Treatment of clonal cells with mutagens to induce genetic variation.
Main Results:
- CHIP knockdown increased heterogeneity in Bcl-2 expression and the proportion of drug-resistant cells.
- CHIP acts as a buffer against variations in Bcl-2 expression.
- CHIP's buffering effect is evident when genetic variation is induced, suggesting it masks genetic variations.
- CHIP suppresses heterogeneous Bcl-2 expression and prevents the rise of drug-resistant cell populations.
Conclusions:
- CHIP plays a critical role in buffering gene expression heterogeneity, specifically Bcl-2 levels, in breast cancer cells.
- CHIP's function is crucial in preventing the expansion of drug-resistant cancer cell populations.
- The balance between genetic variation and CHIP's buffering capacity determines the extent of expression heterogeneity in cancer.
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