NOVA1 regulates hTERT splicing and cell growth in non-small cell lung cancer
Alternative splicing is dysregulated in cancer and the reactivation of telomerase involves the splicing of TERT transcripts to produce full-length (FL) TERT . Knowledge about the splicing factors that enhance or silence FL hTERT is lacking. We identified splicing factors that reduced telomerase acti...
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Veröffentlicht in: | Nature communications 2018-08, Vol.9 (1), p.3112-15, Article 3112 |
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Sprache: | eng |
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Zusammenfassung: | Alternative splicing is dysregulated in cancer and the reactivation of telomerase involves the splicing of
TERT
transcripts to produce full-length (FL)
TERT
. Knowledge about the splicing factors that enhance or silence FL
hTERT
is lacking. We identified splicing factors that reduced telomerase activity and shortened telomeres using a siRNA minigene reporter screen and a lung cancer cell bioinformatics approach. A lead candidate, NOVA1, when knocked down resulted in a shift in
hTERT
splicing to non-catalytic isoforms, reduced telomerase activity, and progressive telomere shortening. NOVA1 knockdown also significantly altered cancer cell growth in vitro and in xenografts. Genome engineering experiments reveal that NOVA1 promotes the inclusion of exons in the reverse transcriptase domain of
hTERT
resulting in the production of FL
hTERT
transcripts. Utilizing
hTERT
splicing as a model splicing event in cancer may provide new insights into potentially targetable dysregulated splicing factors in cancer.
Splicing of the telomerase transcript,
hTERT
, can be altered in cancer cells. Here the authors report NOVA1, as a splicing regulator that directly interacts with
hTERT
pre-mRNA enhancing the number of full-length transcripts and thus telomerase activity in lung cancer cells. |
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ISSN: | 2041-1723 2041-1723 |
DOI: | 10.1038/s41467-018-05582-x |