The discovery of the p73 and p63 genes, homologous to p53 tumor suppressor has uncovered a family of transcription factors and widened the scenario of cell cycle control and apoptosis. We have identified a putative p53-responsive element in the human adenosine deaminase (ADA) gene, an important enzyme involved in nucleotide metabolism, the deficit of which causes the inhibition of DNA synthesis and repair. Here, we demonstrate that the ectopic expression of p73 isoforms leads to the ADA gene upregulation, showing for the first time a correlation between p73 and ADA. We found that p73 promotes ADA gene expression following a dNTP unbalance generated by ADA enzyme deficiency and 2'deoxyadenosine accumulation. The abrogation of p73 transcriptional activity by the specific dominant-negative p73DD abolishes ADA induction. By contrast, the ADA gene does not appear to be a functional p53 target in the physiological conditions we tested. On the whole, our results contribute to the emerging picture that p73 could play a different role from p53 in normal growth and development by inducing alternative target genes, which are not shared by p53.

Adenosine Deaminase, a key enzyme in DNA precursors control, is a new p73 target

Tullo A;
2003

Abstract

The discovery of the p73 and p63 genes, homologous to p53 tumor suppressor has uncovered a family of transcription factors and widened the scenario of cell cycle control and apoptosis. We have identified a putative p53-responsive element in the human adenosine deaminase (ADA) gene, an important enzyme involved in nucleotide metabolism, the deficit of which causes the inhibition of DNA synthesis and repair. Here, we demonstrate that the ectopic expression of p73 isoforms leads to the ADA gene upregulation, showing for the first time a correlation between p73 and ADA. We found that p73 promotes ADA gene expression following a dNTP unbalance generated by ADA enzyme deficiency and 2'deoxyadenosine accumulation. The abrogation of p73 transcriptional activity by the specific dominant-negative p73DD abolishes ADA induction. By contrast, the ADA gene does not appear to be a functional p53 target in the physiological conditions we tested. On the whole, our results contribute to the emerging picture that p73 could play a different role from p53 in normal growth and development by inducing alternative target genes, which are not shared by p53.
2003
Istituto di Tecnologie Biomediche - ITB
Inglese
22
8738
8748
http://www.nature.com/onc/journal/v22/n54/full/1206967a.html
Sì, ma tipo non specificato
p73
p53
oncosuppressor
Adenosine deaminase
La pubblicazione risulta importante perchè dimostra l'identificazione di un nuovo target trascrizionale specifico di p73 e non di p53, contribuendo a marcare una divergenza di ruoli tra i membri della famiglia genica dell'oncosoppressore p53 (p53, p73, p63) assegnando una funzione di oncosoppressore a p53 e una funzione nella crescita cellulare, sviluppo e differenziamento per p73.
10
info:eu-repo/semantics/article
262
Tullo, A; Mastropasqua, G; Bourdon, Jc; Centonze, P; Gostissa, M; Costanzo, A; Levrero, M; Del Sal, G; Saccone, C; Sbisa, E
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/80423
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