Ssb1 and Ssb2 cooperate to regulate mouse hematopoietic stem and progenitor cells by resolving replicative stress

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dc.contributor.author Shi, W en
dc.contributor.author Vu, T en
dc.contributor.author Boucher, D en
dc.contributor.author Biernacka, A en
dc.contributor.author Nde, J en
dc.contributor.author Pandita, RK en
dc.contributor.author Straube, J en
dc.contributor.author Boyle, GM en
dc.contributor.author Al-Ejeh, F en
dc.contributor.author Nag, P en
dc.contributor.author Jeffery, J en
dc.contributor.author Harris, JL en
dc.contributor.author Bain, AL en
dc.contributor.author Grzelak, M en
dc.contributor.author Skrzypczak, M en
dc.contributor.author Mitra, A en
dc.contributor.author Dojer, N en
dc.contributor.author Crosetto, N en
dc.contributor.author Cloonan, Nicole en
dc.contributor.author Becherel, OJ en
dc.contributor.author Finnie, J en
dc.contributor.author Skaar, JR en
dc.contributor.author Walkley, CR en
dc.contributor.author Pandita, TK en
dc.contributor.author Rowicka, M en
dc.contributor.author Ginalski, K en
dc.contributor.author Lane, SW en
dc.contributor.author Khanna, KK en
dc.date.accessioned 2017-06-26T03:22:32Z en
dc.date.issued 2017-05 en
dc.identifier.citation Blood 129(18):2479-2492 May 2017 en
dc.identifier.issn 0006-4971 en
dc.identifier.uri http://hdl.handle.net/2292/33758 en
dc.description.abstract Hematopoietic stem and progenitor cells (HSPCs) are vulnerable to endogenous damage and defects in DNA repair can limit their function. The 2 single-stranded DNA (ssDNA) binding proteins SSB1 and SSB2 are crucial regulators of the DNA damage response; however, their overlapping roles during normal physiology are incompletely understood. We generated mice in which both Ssb1 and Ssb2 were constitutively or conditionally deleted. Constitutive Ssb1/Ssb2 double knockout (DKO) caused early embryonic lethality, whereas conditional Ssb1/Ssb2 double knockout (cDKO) in adult mice resulted in acute lethality due to bone marrow failure and intestinal atrophy featuring stem and progenitor cell depletion, a phenotype unexpected from the previously reported single knockout models of Ssb1 or Ssb2 Mechanistically, cDKO HSPCs showed altered replication fork dynamics, massive accumulation of DNA damage, genome-wide double-strand breaks enriched at Ssb-binding regions and CpG islands, together with the accumulation of R-loops and cytosolic ssDNA. Transcriptional profiling of cDKO HSPCs revealed the activation of p53 and interferon (IFN) pathways, which enforced cell cycling in quiescent HSPCs, resulting in their apoptotic death. The rapid cell death phenotype was reproducible in in vitro cultured cDKO-hematopoietic stem cells, which were significantly rescued by nucleotide supplementation or after depletion of p53. Collectively, Ssb1 and Ssb2 control crucial aspects of HSPC function, including proliferation and survival in vivo by resolving replicative stress to maintain genomic stability. en
dc.format.medium Print-Electronic en
dc.language eng en
dc.publisher American Society of Hematology en
dc.relation.ispartofseries Blood en
dc.rights Items in ResearchSpace are protected by copyright, with all rights reserved, unless otherwise indicated. Previously published items are made available in accordance with the copyright policy of the publisher. en
dc.rights.uri https://researchspace.auckland.ac.nz/docs/uoa-docs/rights.htm en
dc.title Ssb1 and Ssb2 cooperate to regulate mouse hematopoietic stem and progenitor cells by resolving replicative stress en
dc.type Journal Article en
dc.identifier.doi 10.1182/blood-2016-06-725093 en
pubs.issue 18 en
pubs.begin-page 2479 en
pubs.volume 129 en
dc.rights.holder Copyright: American Society of Hematology en
dc.identifier.pmid 28270450 en
pubs.end-page 2492 en
dc.rights.accessrights http://purl.org/eprint/accessRights/RestrictedAccess en
pubs.subtype Article en
pubs.elements-id 618251 en
pubs.org-id Science en
pubs.org-id Biological Sciences en
dc.identifier.eissn 1528-0020 en
pubs.record-created-at-source-date 2017-06-26 en
pubs.dimensions-id 28270450 en


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