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Unbiased CRISPR Synthetic Lethal Screening for Genetic Vulnerabilities in Succinate Dehydrogenase (SDH)-loss Model of
Abstract:
Succinate dehydrogenase (SDH)-deficient paraganglioma and pheochromocytoma (PPGL) are rare neuroendocrine tumors for which no effective targeted therapies currently exist. To uncover new potential therapeutic targets, we performed an unbiased CRISPR-Cas9 genetic screen in immortalized mouse chromaffin cells (imCCs) with and without Sdhb loss. Our screen identified genes that differentially affect cell proliferation in Sdhb -deficient versus normal imCCs. Notably, several subunits of the transcriptional Mediator complex emerged as potential tumor suppressors, as their loss selectively promoted growth of Sdhb -deficient cells. Most strikingly , we found that the neddylation pathway-required for ubiquitin-mediated selective protein degradation-plays a critical role in controlling cell growth and survival in Sdhb -deficient imCCs. Specifically, loss of the neddylation regulator Ube2m led to increased proliferation, while loss of Ube2f suppressed growth of Sdhb -deficient imCCs. Consequently, global neddylation inhibitor MLN4924 (Pevonedistat) and UBE2F-CRL5 axis inhibitor HA-9104 were shown to downregulate neddylation, suppressing UBE2F activity and selectively inhibiting growth of Sdhb -deficient imCCs. This unexpected result highlights the neddylation pathway as a promising druggable vulnerability in this cell culture model of SDH-deficient PPGL.
Insights
Succinate dehydrogenase-deficient tumors lack targeted therapies. Researchers found the neddylation pathway is a key vulnerability, with inhibitors showing promise for treating these rare neuroendocrine tumors.
Area of Science:
- Biochemistry
- Oncology
- Genetics
Background:
- Succinate dehydrogenase (SDH)-deficient paraganglioma and pheochromocytoma (PPGL) are rare neuroendocrine tumors.
- Currently, no effective targeted therapies exist for SDH-deficient PPGL.
Purpose of the Study:
- To identify potential therapeutic targets for SDH-deficient PPGL.
- To investigate the role of the neddylation pathway in SDH-deficient PPGL cell growth and survival.
Main Methods:
- Unbiased CRISPR-Cas9 genetic screen in immortalized mouse chromaffin cells (imCCs) with and without Sdhb loss.
- Analysis of gene effects on cell proliferation in Sdhb-deficient vs. normal imCCs.
- Assessment of neddylation pathway regulators (Ube2m, Ube2f) and inhibitors (MLN4924, HA-9104) on cell growth.
Main Results:
- Several transcriptional Mediator complex subunits were identified as potential tumor suppressors.
- Loss of Ube2m increased proliferation, while loss of Ube2f suppressed growth of Sdhb-deficient imCCs.
- Neddylation inhibitors MLN4924 and HA-9104 selectively inhibited growth of Sdhb-deficient imCCs.
Conclusions:
- The neddylation pathway represents a druggable vulnerability in SDH-deficient PPGL.
- Targeting the neddylation pathway offers a promising therapeutic strategy for these rare tumors.
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