TY - JOUR
T1 - Role of Deltex-1 as a Transcriptional Regulator Downstream of the Notch Receptor
AU - Yamamoto, Naoya
AU - Yamamoto, Shin Ichi
AU - Inagaki, Fuyuki
AU - Kawaichi, Masashi
AU - Fukamizu, Akiyoshi
AU - Kishi, Noriyuki
AU - Matsuno, Kenji
AU - Nakamura, Kozo
AU - Weinmaster, Gerry
AU - Okano, Hideyuki
AU - Nakafuku, Masato
PY - 2001/11/30
Y1 - 2001/11/30
N2 - Intercellular signaling through the cell-surface receptor Notch plays important roles in a variety of developmental processes as well as in pathogenesis of some human cancers and genetic disorders. However, the mechanisms by which Notch signals are transduced into cells still remain elusive. Here we investigated the signaling mechanisms for Notch in the cell fate control of neural progenitor cells. We show that Deltex-1 (DTX1), a mammalian homolog of Drosophila Deltex, mediates a Notch signal to block differentiation of neural progenitor cells. We found that a significant fraction of DTX1 proteins were localized in the nucleus and physically interacted with the transcriptional coactivator p300. Through its binding to p300, DTX1 inhibited transcriptional activation by the neural-specific helix-loop-helix-type transcription factor MASH1, and this mechanism is likely responsible for the differentiation inhibition of neural progenitor cells. Our results further suggest that DTX1 regulates transcription independently of the previously characterized Notch signaling pathway involving RBP-J and HES1/HES5. Thus, DTX1 serves as an important signaling component downstream of Notch that regulates transcription in the nucleus.
AB - Intercellular signaling through the cell-surface receptor Notch plays important roles in a variety of developmental processes as well as in pathogenesis of some human cancers and genetic disorders. However, the mechanisms by which Notch signals are transduced into cells still remain elusive. Here we investigated the signaling mechanisms for Notch in the cell fate control of neural progenitor cells. We show that Deltex-1 (DTX1), a mammalian homolog of Drosophila Deltex, mediates a Notch signal to block differentiation of neural progenitor cells. We found that a significant fraction of DTX1 proteins were localized in the nucleus and physically interacted with the transcriptional coactivator p300. Through its binding to p300, DTX1 inhibited transcriptional activation by the neural-specific helix-loop-helix-type transcription factor MASH1, and this mechanism is likely responsible for the differentiation inhibition of neural progenitor cells. Our results further suggest that DTX1 regulates transcription independently of the previously characterized Notch signaling pathway involving RBP-J and HES1/HES5. Thus, DTX1 serves as an important signaling component downstream of Notch that regulates transcription in the nucleus.
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U2 - 10.1074/jbc.M105245200
DO - 10.1074/jbc.M105245200
M3 - Article
C2 - 11564735
AN - SCOPUS:0035977003
SN - 0021-9258
VL - 276
SP - 45031
EP - 45040
JO - Journal of Biological Chemistry
JF - Journal of Biological Chemistry
IS - 48
ER -