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Citations to this article

The Rothmund-Thomson syndrome helicase RECQL4 is essential for hematopoiesis
Monique F. Smeets, … , David J. Izon, Carl R. Walkley
Monique F. Smeets, … , David J. Izon, Carl R. Walkley
Published June 24, 2014
Citation Information: J Clin Invest. 2014;124(8):3551-3565. https://doi.org/10.1172/JCI75334.
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Research Article Hematology Article has an altmetric score of 2

The Rothmund-Thomson syndrome helicase RECQL4 is essential for hematopoiesis

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Abstract

Mutations within the gene encoding the DNA helicase RECQL4 underlie the autosomal recessive cancer-predisposition disorder Rothmund-Thomson syndrome, though it is unclear how these mutations lead to disease. Here, we demonstrated that somatic deletion of Recql4 causes a rapid bone marrow failure in mice that involves cells from across the myeloid, lymphoid, and, most profoundly, erythroid lineages. Apoptosis was markedly elevated in multipotent progenitors lacking RECQL4 compared with WT cells. While the stem cell compartment was relatively spared in RECQL4-deficent mice, HSCs from these animals were not transplantable and even selected against. The requirement for RECQL4 was intrinsic in hematopoietic cells, and loss of RECQL4 in these cells was associated with increased replicative DNA damage and failed cell-cycle progression. Concurrent deletion of p53, which rescues loss of function in animals lacking the related helicase BLM, did not rescue BM phenotypes in RECQL4-deficient animals. In contrast, hematopoietic defects in cells from Recql4Δ/Δ mice were fully rescued by a RECQL4 variant without RecQ helicase activity, demonstrating that RECQL4 maintains hematopoiesis independently of helicase activity. Together, our data indicate that RECQL4 participates in DNA replication rather than genome stability and identify RECQL4 as a regulator of hematopoiesis with a nonredundant role compared with other RecQ helicases.

Authors

Monique F. Smeets, Elisabetta DeLuca, Meaghan Wall, Julie M. Quach, Alistair M. Chalk, Andrew J. Deans, Jörg Heierhorst, Louise E. Purton, David J. Izon, Carl R. Walkley

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2017 2016 2015 Total
Citations: 1 1 4 2 4 2 2 3 1 3 23
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Citations to this article (23)

Title and authors Publication Year
RECQL4 affects MHC class II‐mediated signalling and favours an immune‐evasive signature that limits response to immune checkpoint inhibitor therapy in patients with malignant melanoma
Egea\u2010Rodriguez S, Váraljai R, Nordmann TM, Lubis R, Philip M, Rambow F, Roesch A, Flaig M, Horn S, Stoll R, Zhao F, Paschen A, Klebl B, Hickson ID, Schadendorf D, Mann M, Helfrich I
Clinical and Translational Medicine 2025
RECQL4 is not critical for firing of human DNA replication origins
Padayachy L, Ntallis SG, Halazonetis TD
Scientific Reports 2024
The phenotype of the most common human ADAR1p150 Zα mutation P193A in mice is partially penetrant
Liang Z, Chalk AM, Taylor S, Goradia A, Heraud\u2010Farlow JE, Walkley CR
EMBO reports 2023
Over-expression of ADAR1 in mice does not initiate or accelerate cancer formation in vivo
Mendez Ruiz S, Chalk AM, Goradia A, Heraud-Farlow J, Walkley CR
2023
Generation of a new Adar1p150−/− mouse demonstrates isoform-specific roles in embryonic development and adult homeostasis
Liang Z, Goradia A, Walkley CR, Heraud-Farlow JE
RNA (New York, N.Y.) 2023
Rothmund-Thomson syndrome, a disorder far from solved
Martins DJ, Di Lazzaro Filho R, Bertola DR, Hoch NC
2023
Srsf2P95H/+ co-operates with loss of TET2 to promote myeloid bias and initiate a chronic myelomonocytic leukemia like disease in mice
Jane Xu, Alistair Chalk, Meaghan Wall, Wallace Langdon, Monique Smeets, Carl Walkley
Leukemia 2022
Hrq1/RECQL4 regulation is critical for preventing aberrant recombination during DNA intrastrand crosslink repair and is upregulated in breast cancer
Luong TT, Li Z, Priedigkeit N, Parker PS, Böhm S, Rapchak K, Lee AV, Bernstein KA
PLoS genetics 2022
Deficiency of Antioxidative Paraoxonase 2 (Pon2) Leads to Increased Number of Phenotypic LT-HSCs and Disturbed Erythropoiesis
L Spiecker, I Witte, J Mehlig, V Shah, M Meyerhöfer, PS Haehnel, V Petermann, A Schüler, P More, N Cabezas-Wallscheid, S Horke, A Pautz, A Daiber, D Sasca, T Kindler, H Kleinert, L Qian
Oxidative Medicine & Cellular Longevity 2021
Rothmund-Thomson Syndrome-Like RECQL4 Truncating Mutations Cause a Haploinsufficient Low-Bone-Mass Phenotype in Mice
W Castillo-Tandazo, AE Frazier, NA Sims, MF Smeets, CR Walkley
Molecular and cellular biology 2021
RECQL4 regulates DNA damage response and redox homeostasis in esophageal cancer
G Lyu, P Su, X Hao, S Chen, S Ren, Z Zhao, Y Gong, Q Liu, C Shao
Cancer biology & medicine 2021
Molecular Mechanisms of the RECQ4 Pathogenic Mutations
X Xu, CW Chang, M Li, C Liu, Y Liu
Frontiers in Molecular Biosciences 2021
DNA repair fidelity in stem cell maintenance, health, and disease
C Mani, PH Reddy, K Palle
Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease 2020
History of DNA Helicases
RM Brosh, SW Matson
Genes & development 2020
Expanding the Clinical and Genetic Spectra of Primary Immunodeficiency-Related Disorders With Clinical Exome Sequencing: Expected and Unexpected Findings
F Rudilla, C Franco-Jarava, M Martínez-Gallo, M Garcia-Prat, A Martín-Nalda, J Rivière, A Aguiló-Cucurull, L Mongay, F Vidal, X Solanich, I Irastorza, JL Santos-Pérez, JT Sánchez, I Cuscó, C Serra, N Baz-Redón, M Fernández-Cancio, C Carreras, JM Vagace, V Garcia-Patos, R Pujol-Borrell, P Soler-Palacín, R Colobran
Frontiers in immunology 2019
ATP-dependent helicase activity is dispensable for the physiological functions of Recql4
W Castillo-Tandazo, MF Smeets, V Murphy, R Liu, C Hodson, J Heierhorst, AJ Deans, CR Walkley, MS Horwitz
PLoS genetics 2019
Protein sequestration at the nuclear periphery as a potential regulatory mechanism in premature aging
L Serebryannyy, T Misteli
The Journal of Cell Biology 2017
Protein recoding by ADAR1-mediated RNA editing is not essential for normal development and homeostasis
JE Heraud-Farlow, AM Chalk, SE Linder, Q Li, S Taylor, JM White, L Pang, BJ Liddicoat, A Gupte, JB Li, CR Walkley
Genome biology 2017
Cell cycle-dependent phosphorylation regulates RECQL4 pathway choice and ubiquitination in DNA double-strand break repair
H Lu, RA Shamanna, JK de Freitas, M Okur, P Khadka, T Kulikowicz, PP Holland, J Tian, DL Croteau, AJ Davis, VA Bohr
Nature Communications 2017
Adenosine-to-inosine RNA editing by ADAR1 is essential for normal murine erythropoiesis
BJ Liddicoat, JC Hartner, R Piskol, G Ramaswami, AM Chalk, PD Kingsley, VG Sankaran, M Wall, LE Purton, PH Seeburg, J Palis, SH Orkin, J Lu, JB Li, CR Walkley
Experimental Hematology 2016
The DNA Helicase Recql4 Is Required for Normal Osteoblast Expansion and Osteosarcoma Formation
AJ Ng, MK Walia, MF Smeets, AJ Mutsaers, NA Sims, LE Purton, NC Walsh, TJ Martin, CR Walkley, F Elefteriou
PLoS genetics 2015
RECQL5 Suppresses Oncogenic JAK2-Induced Replication Stress and Genomic Instability
E Chen, JS Ahn, DB Sykes, LJ Breyfogle, AL Godfrey, J Nangalia, A Ko, DJ DeAngelo, AR Green, A Mullally
Cell Reports 2015
Interaction of RECQ4 and MCM10 is important for efficient DNA replication origin firing in human cells
Kliszczak M, Sedlackova H, Pitchai GP, Streicher WW, Krejci L, Hickson ID
Oncotarget 2015

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