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p300/CBP and cancer

OncogenePublished 24 May 2004
N. Gopalakrishna Iyer, Hi̇lal Özdağ, Carlos Caldas
Citations629
SJR quartileQ1
SJR score2.49
SNIP1.46

TL;DR

A mouse model confirms that p300 and CBP function as suppressors of hematological tumor formation and provides a mechanistic route as to how their inactivation could result in cancer.

Abstract

p300 and cyclic AMP response element-binding protein (CBP) are adenoviral E1A-binding proteins involved in multiple cellular processes, and function as transcriptional co-factors and histone acetyltransferases. Germline mutation of CBP results in Rubinstein-Taybi syndrome, which is characterized by an increased predisposition to childhood malignancies. Furthermore, somatic mutations of p300 and CBP occur in a number of malignancies. Chromosome translocations target CBP and, less commonly, p300 in acute myeloid leukemia and treatment-related hematological disorders. p300 mutations in solid tumors result in truncated p300 protein products or amino-acid substitutions in critical protein domains, and these are often associated with inactivation of the second allele. A mouse model confirms that p300 and CBP function as suppressors of hematological tumor formation. The involvement of these proteins in critical tumorigenic pathways (including TGF-beta, p53 and Rb) provides a mechanistic route as to how their inactivation could result in cancer.

Keywords

MedicineBiochemistry, Genetics and Molecular Biology