The computational analysis of tumor cell sensitivity to supertarget deletion
D A Chetverina1, N Y Kozelchuk2, D V Lomaev1
1Institute of Gene Biology Russian Academy of Sciences, Moscow, RussiaInstitute of Gene Biology Russian Academy of Sciences, Moscow, Russia.
Abstract:
Gene mutations and altered epigenetic regulation of gene expression are characteristic features of malignant neoplasms. Combinations of these abnormalities form molecular features of individual tumors. In the large-scale Dependency Map (DepMap) project, the broad panels of human tumor cell lines are being tested for sensitivity to single gene inactivation. Using DepMap data, we have previously identified a set of genes termed supertargets, the deletion of which significantly reduced the survival of cells of a particular tissue origin while minimally impairing the unrelated cell lines. In the present study, we determined the factors of viability (inhibition of proliferation or death) of cell lines in which the supertarget genes have been deleted. We found that, in 79 % of cases, the reduced survival may be caused by epigenetic changes of gene expression. In the remaining 21 % of cases, it is associated with altered gene structure. Three groups containing different types of gene expression alterations can be distinguished. In the first group, the reduced cell survival correlated with a higher expression of the supertarget gene (e. g., SOX10 and HNF1B). In the second group, a gene different from the deleted supertarget was overexpressed (gene pairs: FOXA1 and SPDEF, TP63 and SERPINB13, etc.). The third group was characterized by correlations between low expression of a certain gene and tumor cell sensitivity (e. g., FAM126A and FAM126B, SMARCA2 and SMARCA4). The genetic changes included GOF mutations (KRAS, BRAF genes, etc.), LOF mutations (STAG1, SMARCA2 genes, etc.), gene fusions (BCR-ABL1, PAX3-FOXO1, etc.), and amplification (CPM, BEST3, etc.). Therefore, many different molecular mechanisms act as predictors of tumor cell response to inhibition of supertarget genes.
Insights
Cancer cell survival depends on specific "supertarget" genes. Their inactivation causes cell death, often due to epigenetic changes (79%) or genetic alterations (21%), revealing new therapeutic targets.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Malignant neoplasms are characterized by gene mutations and epigenetic dysregulation.
- The Dependency Map (DepMap) project identifies gene dependencies in cancer cell lines.
- Supertarget genes are critical for the survival of specific cancer cell types.
Purpose of the Study:
- To investigate the molecular mechanisms underlying cell viability loss upon supertarget gene deletion.
- To differentiate between epigenetic and genetic factors influencing cancer cell response.
Main Methods:
- Analysis of DepMap data on cancer cell line sensitivity to gene inactivation.
- Classification of cell lines based on gene expression changes and genetic alterations after supertarget deletion.
Main Results:
- Supertarget gene deletion led to reduced cell survival in 79% of cases due to epigenetic changes and in 21% due to genetic alterations.
- Three distinct patterns of gene expression alterations were identified: direct correlation with supertarget expression, overexpression of other genes, and inverse correlation with gene expression.
- Various genetic alterations, including mutations, fusions, and amplifications, were associated with reduced cell survival.
Conclusions:
- Epigenetic modifications and genetic alterations are key drivers of cancer cell response to supertarget gene inhibition.
- Understanding these molecular mechanisms can predict tumor cell sensitivity and inform targeted cancer therapies.
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