4.8 Article

HNRNPM controls circRNA biogenesis and splicing fidelity to sustain cancer cell fitness

期刊

ELIFE
卷 10, 期 -, 页码 -

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eLIFE SCIENCES PUBL LTD
DOI: 10.7554/eLife.59654

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资金

  1. Institute of Molecular and Cell Biology, Agency for Science Technology and Research, Singapore
  2. National Cancer Institute of the NIH [R01CA249204]
  3. ISMMS seed fund
  4. Lee Kuan Yew Endowment Fund Postdoctoral Fellowship
  5. NCI Cancer Center Support Grant [P30 CA196521]
  6. NCI training grant [T32CA078207]
  7. MDC
  8. Helmholtz Association
  9. ERC
  10. Melanoma Research Alliance MRA Team Science Award
  11. [NMRC/OFIRG/0032/2017]
  12. [NRF-CRP17-2017-06]
  13. [NCI-R01CA197910]

向作者/读者索取更多资源

The study indicates that the dependency of cancer cells on heterogeneous nuclear ribonucleoprotein M (HNRNPM) is due to its role in mis-splicing of key homeostatic genes, mimicking HNRNPM-dependent splicing events can inhibit the growth of prostate cancer cells.
High spliceosome activity is a dependency for cancer cells, making them more vulnerable to perturbation of the splicing machinery compared to normal cells. To identify splicing factors important for prostate cancer (PCa) fitness, we performed pooled shRNA screens in vitro and in vivo. Our screens identified heterogeneous nuclear ribonucleoprotein M (HNRNPM) as a regulator of PCa cell growth. RNA- and eCLIP-sequencing identified HNRNPM binding to transcripts of key homeostatic genes. HNRNPM binding to its targets prevents aberrant exon inclusion and backsplicing events. In both linear and circular mis-spliced transcripts, HNRNPM preferentially binds to GU-rich elements in long flanking proximal introns. Mimicry of HNRNPM-ependent linear-splicing events using splice-switching-antisense-oligonucleotides was sufficient to inhibit PCa cell growth. This suggests that PCa dependence on HNRNPM is likely a result of mis-splicing of key homeostatic coding and non-coding genes. Our results have further been confirmed in other solid tumors. Taken together, our data reveal a role for HNRNPM in supporting cancer cell fitness. Inhibition of HNRNPM activity is therefore a potential therapeutic strategy in suppressing growth of PCa and other solid tumors.

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