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Stress-responsive Long Non-coding RNA, hsrω, is a genetic modifier of JNK-dependent Intrinsic Tumor Suppression in Drosophila

Bajpai, A.; Kundu, S.; Pandey, R. K.; Ateeq, B.; Lakhotia, S. C.; Sinha, P.

2021-04-27 cancer biology
10.1101/2021.04.26.441543 bioRxiv
Show abstract

Host genetics is known to influence cancer susceptibility. However, the specific candidate genes and molecular mechanisms that confer resistance remain poorly understood. Here, we demonstrate the power of haploinsufficiency screen to uncover host genetic regulators of cancer in Drosophila and identify the long noncoding RNA (lncRNA) hsr{omega}, a structural component of nuclear biomolecular condensate known as omega speckles, as a key host cancer susceptibility locus. Loss of hsr{omega} disrupts proteostasis and cell fitness, while its haploinsufficiency accelerates epithelial tumor progression driven by loss of the Lethal giant larvae (Lgl) tumor suppressor. Further validating the breadth of this screening strategy, we independently identified Drosophila STING (innate immunity) and Keap1 (oxidative stress defense) as genetic modifiers of cancer. Moreover, in humans, copy number variations (CNV) in these genes and Sat III (a functional human homolog of hsr{omega}) correlate with poor cancer prognosis, thereby revealing conserved stress pathways as potential host genetic susceptibility regulators.

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