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Telomere erosion contributes to age-associated tissue dysfunction and senescence, and p53 plays a crucial role in this response. We undertook a genome-wide screen to identify gene deletions that sensitized p53-positive human cells to loss of telomere integrity, and uncovered a previously unannotated...
ORGANISM(S): Homo sapiens (Human) 
2021-03-04 | PXD022128 | Pride
A genome-wide screen for essentiality upon telomerase inhibition identifies a novel p53 regulator, C16ORF72/TAPR1 [TAPR1_KO]
A genome-wide screen for essentiality upon telomerase inhibition identifies a novel p53 regulator, C16ORF72/TAPR1 [RNA-seq]
A genome-wide screen for essentiality upon telomerase inhibition identifies a novel p53 regulator, C16ORF72/TAPR1 [BIBR_screen]
Telomere erosion in cells with insufficient levels of the telomerase reverse transcriptase, TERT, contributes to age-associated tissue dysfunction and senescence, and p53 plays a crucial role in this response. We undertook a genome-wide screen to identify gene deletions that sensitized p53-positive ...
ORGANISM(S): Homo sapiens 
2021-03-04 | GSE160867 | GEO
Telomere erosion in cells with insufficient levels of the telomerase reverse transcriptase, TERT, contributes to age-associated tissue dysfunction and senescence, and p53 plays a crucial role in this response. We undertook a genome-wide screen to identify gene deletions that sensitized p53-positive ...
ORGANISM(S): Homo sapiens 
2021-03-04 | GSE160843 | GEO
Telomere erosion in cells with insufficient levels of the telomerase reverse transcriptase, TERT, contributes to age-associated tissue dysfunction and senescence, and p53 plays a crucial role in this response. We undertook a genome-wide screen to identify gene deletions that sensitized p53-positive ...
ORGANISM(S): Homo sapiens 
2021-03-04 | GSE160865 | GEO
C16orf72/HAPSTR1 is a molecular rheostat in an integrated network of stress response pathways
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