The chemical identity and integrity of the genome is challenged by the incorporation of ribonucleoside triphosphates (rNTPs) in place of deoxyribonucleoside triphosphates (dNTPs) during replication. Misincorporation is limited by the selectivity of DNA replicases. We show that accumulation of ribonucleoside monophosphates (rNMPs) in the genome causes replication stress and has toxic consequences, particularly in the absence of RNase H1 and RNase H2, which remove rNMPs. We demonstrate that postreplication repair (PRR) pathways-MMS2-dependent template switch and Pol ζ-dependent bypass-are crucial for tolerating the presence of rNMPs in the chromosomes; indeed, we show that Pol ζ efficiently replicates over 1-4 rNMPs. Moreover, cells lacking RNase H accumulate mono- and polyubiquitylated PCNA and have a constitutively activated PRR. Our findings describe a crucial function for RNase H1, RNase H2, template switch, and translesion DNA synthesis in overcoming rNTPs misincorporated during DNA replication, and may be relevant for the pathogenesis of Aicardi-Goutières syndrome.

RNaseH and postreplication repair protect cells from ribonucleotides incorporated in DNA / F. Lazzaro, D. Novarina, F. Amara, D.L. Watt, J.E. Stone, V. Costanzo, P.M. Burgers, T.A. Kunkel, P. Plevani, M. Muzi Falconi. - In: MOLECULAR CELL. - ISSN 1097-2765. - 45:1(2012), pp. 99-110.

RNaseH and postreplication repair protect cells from ribonucleotides incorporated in DNA

F. Lazzaro
Primo
;
D. Novarina
Secondo
;
F. Amara;V. Costanzo;P. Plevani
Penultimo
;
M. Muzi Falconi
Ultimo
2012

Abstract

The chemical identity and integrity of the genome is challenged by the incorporation of ribonucleoside triphosphates (rNTPs) in place of deoxyribonucleoside triphosphates (dNTPs) during replication. Misincorporation is limited by the selectivity of DNA replicases. We show that accumulation of ribonucleoside monophosphates (rNMPs) in the genome causes replication stress and has toxic consequences, particularly in the absence of RNase H1 and RNase H2, which remove rNMPs. We demonstrate that postreplication repair (PRR) pathways-MMS2-dependent template switch and Pol ζ-dependent bypass-are crucial for tolerating the presence of rNMPs in the chromosomes; indeed, we show that Pol ζ efficiently replicates over 1-4 rNMPs. Moreover, cells lacking RNase H accumulate mono- and polyubiquitylated PCNA and have a constitutively activated PRR. Our findings describe a crucial function for RNase H1, RNase H2, template switch, and translesion DNA synthesis in overcoming rNTPs misincorporated during DNA replication, and may be relevant for the pathogenesis of Aicardi-Goutières syndrome.
English
Settore BIO/11 - Biologia Molecolare
Settore BIO/18 - Genetica
Settore BIO/10 - Biochimica
Articolo
Esperti anonimi
Ricerca di base
Pubblicazione scientifica
2012
Elsevier
45
1
99
110
12
Pubblicato
Periodico con rilevanza internazionale
NON aderisco
info:eu-repo/semantics/article
RNaseH and postreplication repair protect cells from ribonucleotides incorporated in DNA / F. Lazzaro, D. Novarina, F. Amara, D.L. Watt, J.E. Stone, V. Costanzo, P.M. Burgers, T.A. Kunkel, P. Plevani, M. Muzi Falconi. - In: MOLECULAR CELL. - ISSN 1097-2765. - 45:1(2012), pp. 99-110.
reserved
Prodotti della ricerca::01 - Articolo su periodico
10
262
Article (author)
si
F. Lazzaro, D. Novarina, F. Amara, D.L. Watt, J.E. Stone, V. Costanzo, P.M. Burgers, T.A. Kunkel, P. Plevani, M. Muzi Falconi
File in questo prodotto:
File Dimensione Formato  
10_Mol Cell 2012 Lazzaro.pdf

accesso riservato

Tipologia: Publisher's version/PDF
Dimensione 2.13 MB
Formato Adobe PDF
2.13 MB Adobe PDF   Visualizza/Apri   Richiedi una copia
Pubblicazioni consigliate

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/169649
Citazioni
  • ???jsp.display-item.citation.pmc??? 100
  • Scopus 146
  • ???jsp.display-item.citation.isi??? 141
social impact