TY - JOUR
T1 - c-erbB activation in ALV-induced erythroblastosis
T2 - novel RNA processing and promoter insertion result in expression of an amino-truncated EGF receptor
AU - Nilsen, Timothy W.
AU - Maroney, Patricia A.
AU - Goodwin, Raymond G.
AU - Rottman, Fritz M.
AU - Crittenden, Lyman B.
AU - Raines, Maribeth A.
AU - Kung, Hsing Jien
PY - 1985/1/1
Y1 - 1985/1/1
N2 - ALV induced erythroblastosis results from the specific interruption of the host oncogene, c-erbB, by the insertion of an intact provirus. Integrated proviruses are oriented in the same transcriptional direction as c-erbB, and expression of truncated c-erbB transcripts is observed. Evidence, including sequence analysis of cDNA clones, indicates that transcription of truncated c-erbB mRNA is initiated in the 5′ LTR of the integrated provirus. This transcript is processed through a series of remarkable splicing reactions to yield viral gag and env sequences fused to erbB sequences. These results establish a novel pathway of promoter insertion oncogenesis that stands in contrast to the pathways used in the activation of c-myc in B lymphomas.
AB - ALV induced erythroblastosis results from the specific interruption of the host oncogene, c-erbB, by the insertion of an intact provirus. Integrated proviruses are oriented in the same transcriptional direction as c-erbB, and expression of truncated c-erbB transcripts is observed. Evidence, including sequence analysis of cDNA clones, indicates that transcription of truncated c-erbB mRNA is initiated in the 5′ LTR of the integrated provirus. This transcript is processed through a series of remarkable splicing reactions to yield viral gag and env sequences fused to erbB sequences. These results establish a novel pathway of promoter insertion oncogenesis that stands in contrast to the pathways used in the activation of c-myc in B lymphomas.
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U2 - 10.1016/S0092-8674(85)80052-0
DO - 10.1016/S0092-8674(85)80052-0
M3 - Article
C2 - 2988784
AN - SCOPUS:0021932360
SN - 0092-8674
VL - 41
SP - 719
EP - 726
JO - Cell
JF - Cell
IS - 3
ER -