DNA replication must be tightly regulated to ensure accurate duplication of the genome and its transfer to the daughter cells. When these regulatory mechanisms fail, replicative stress and DNA damage ensue, eventually leading to cell cycle inhibition or cell death. We have recently uncovered that MYCN-dependent expansion of neuroprogenitor cells is accompanied by replication stress, which is restrained by the MRN complex, a direct transcriptional target of the MYCN proto-oncogene.

A MYCN-MRN complex axis controls replication stress for the safe expansion of neuroprogenitor cells / Petroni, Marialaura; Giannini, Giuseppe. - In: MOLECULAR & CELLULAR ONCOLOGY. - ISSN 2372-3556. - 3:2(2016), p. e1079673. [10.1080/23723556.2015.1079673]

A MYCN-MRN complex axis controls replication stress for the safe expansion of neuroprogenitor cells

PETRONI, MARIALAURA;GIANNINI, Giuseppe
2016

Abstract

DNA replication must be tightly regulated to ensure accurate duplication of the genome and its transfer to the daughter cells. When these regulatory mechanisms fail, replicative stress and DNA damage ensue, eventually leading to cell cycle inhibition or cell death. We have recently uncovered that MYCN-dependent expansion of neuroprogenitor cells is accompanied by replication stress, which is restrained by the MRN complex, a direct transcriptional target of the MYCN proto-oncogene.
2016
DNA damage response; DNA replication; MRN complex; N-myc; Neuroprogenitor cells; Replication stress; microcephaly; proto-oncogene
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A MYCN-MRN complex axis controls replication stress for the safe expansion of neuroprogenitor cells / Petroni, Marialaura; Giannini, Giuseppe. - In: MOLECULAR & CELLULAR ONCOLOGY. - ISSN 2372-3556. - 3:2(2016), p. e1079673. [10.1080/23723556.2015.1079673]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/927639
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