TY - JOUR
T1 - Heat shock affects 5′ splice site selection, cleavage and ligation of CAD pre-mRNA in hamster cells, but not its packaging in InRNP particles
AU - Miriami, Elana
AU - Sperling, Joseph
AU - Sperling, Ruth
PY - 1994/8/11
Y1 - 1994/8/11
N2 - The effect of heat shock on the packaging and splicing of nuclear CAD pre-mRNA, a transcript expressed constitutively from a non heat-inducible promoter, was studied in vivo in Syrian hamster cells. While mild heat shock did not affect significantly the packaging of CAD RNA in 200S InRNP particles, it caused perturbation to splicing. First, the heat shock inhibited splicing of CAD pre-mRNA. Second, it affected 5′ splice site selection by activating cleavage at a cryptic 5′ splice site; yet ligation of the cryptic exon to the downstream proximal exon was not observed. Base complementarities of the cryptic site with U1, U5, or U6 snRNAs are comparable, or even better, than those with the neighboring normal site. Hence, the exclusion of the cryptic site under normal growth conditions cannot be attributed to weaker base pairing with these snRNAs. On the other hand, these results imply the involvement of a heat labile factor in the selection of the 5′ cleavage site. The exclusion of the cryptic site at 37°C and the aborted splicing at this site after heat shock may also be explained by a proposed nuclear checking mechanism that detects in-frame stop codons upstream of the 5′ splice site, and aborts splicing at such sites to prevent the production of a defective message.
AB - The effect of heat shock on the packaging and splicing of nuclear CAD pre-mRNA, a transcript expressed constitutively from a non heat-inducible promoter, was studied in vivo in Syrian hamster cells. While mild heat shock did not affect significantly the packaging of CAD RNA in 200S InRNP particles, it caused perturbation to splicing. First, the heat shock inhibited splicing of CAD pre-mRNA. Second, it affected 5′ splice site selection by activating cleavage at a cryptic 5′ splice site; yet ligation of the cryptic exon to the downstream proximal exon was not observed. Base complementarities of the cryptic site with U1, U5, or U6 snRNAs are comparable, or even better, than those with the neighboring normal site. Hence, the exclusion of the cryptic site under normal growth conditions cannot be attributed to weaker base pairing with these snRNAs. On the other hand, these results imply the involvement of a heat labile factor in the selection of the 5′ cleavage site. The exclusion of the cryptic site at 37°C and the aborted splicing at this site after heat shock may also be explained by a proposed nuclear checking mechanism that detects in-frame stop codons upstream of the 5′ splice site, and aborts splicing at such sites to prevent the production of a defective message.
UR - http://www.scopus.com/inward/record.url?scp=0028071845&partnerID=8YFLogxK
U2 - 10.1093/nar/22.15.3084
DO - 10.1093/nar/22.15.3084
M3 - ???researchoutput.researchoutputtypes.contributiontojournal.article???
C2 - 7915031
AN - SCOPUS:0028071845
SN - 0305-1048
VL - 22
SP - 3084
EP - 3091
JO - Nucleic Acids Research
JF - Nucleic Acids Research
IS - 15
ER -