Literature DB >> 23818183

Brief report: a human induced pluripotent stem cell model of cernunnos deficiency reveals an important role for XLF in the survival of the primitive hematopoietic progenitors.

Katarzyna Tilgner1, Irina Neganova, Chatchawan Singhapol, Gabriele Saretzki, Jumana Yousuf Al-Aama, Jerome Evans, Vera Gorbunova, Andrew Gennery, Stefan Przyborski, Miodrag Stojkovic, Lyle Armstrong, Penny Jeggo, Majlinda Lako.   

Abstract

Cernunnos (also known as XLF) deficiency syndrome is a rare recessive autosomal disorder caused by mutations in the XLF gene, a key factor involved in the end joining step of DNA during nonhomologous end joining (NHEJ) process. Human patients with XLF mutations display microcephaly, developmental and growth delays, and severe immunodeficiency. While the clinical phenotype of DNA damage disorders, including XLF Syndrome, has been described extensively, the underlying mechanisms of disease onset, are as yet, undefined. We have been able to generate an induced pluripotent stem cell (iPSC) model of XLF deficiency, which accurately replicates the double-strand break repair deficiency observed in XLF patients. XLF patient-specific iPSCs (XLF-iPSC) show typical expression of pluripotency markers, but have altered in vitro differentiation capacity and an inability to generate teratomas comprised of all three germ layers in vivo. Our results demonstrate that XLF-iPSCs possess a weak NHEJ-mediated DNA repair capacity that is incapable of coping with the DNA lesions introduced by physiological stress, normal metabolism, and ionizing radiation. XLF-iPSC lines are capable of hematopoietic differentiation; however, the more primitive subsets of hematopoietic progenitors display increased apoptosis in culture and an inability to repair DNA damage. Together, our findings highlight the importance of NHEJ-mediated-DNA repair in the maintenance of a pristine pool of hematopoietic progenitors during human embryonic development. © AlphaMed Press.

Entities:  

Keywords:  Cernunnos syndrome; Double-strand break; Human pluripotent stem cells; Induced pluripotent stem cells; Nonhomologous end joining

Mesh:

Substances:

Year:  2013        PMID: 23818183     DOI: 10.1002/stem.1456

Source DB:  PubMed          Journal:  Stem Cells        ISSN: 1066-5099            Impact factor:   6.277


  10 in total

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Journal:  J Mol Diagn       Date:  2015-07-04       Impact factor: 5.568

Review 2.  Recent advances in the study of immunodeficiency and DNA damage response.

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Journal:  Int J Hematol       Date:  2017-05-26       Impact factor: 2.490

3.  Case Report: Refractory Cytopenia With a Switch From a Transient Monosomy 7 to a Disease-Ameliorating del(20q) in a NHEJ1-Deficient Long-term Survivor.

Authors:  Fiona Poyer; Raúl Jimenez Heredia; Wolfgang Novak; Petra Zeitlhofer; Karin Nebral; Michael N Dworzak; Oskar A Haas; Kaan Boztug; Leo Kager
Journal:  Front Immunol       Date:  2022-06-24       Impact factor: 8.786

Review 4.  Biological and medical applications of a brain-on-a-chip.

Authors:  David Pamies; Thomas Hartung; Helena T Hogberg
Journal:  Exp Biol Med (Maywood)       Date:  2014-06-09

Review 5.  Genomic editing tools to model human diseases with isogenic pluripotent stem cells.

Authors:  Huen Suk Kim; Jeffrey M Bernitz; Dung-Fang Lee; Ihor R Lemischka
Journal:  Stem Cells Dev       Date:  2014-10-07       Impact factor: 3.272

6.  Hematopoietic stem cell dysfunction underlies the progressive lymphocytopenia in XLF/Cernunnos deficiency.

Authors:  Serine Avagyan; Michael Churchill; Kenta Yamamoto; Jennifer L Crowe; Chen Li; Brian J Lee; Tian Zheng; Siddhartha Mukherjee; Shan Zha
Journal:  Blood       Date:  2014-07-29       Impact factor: 22.113

7.  Cernunnos/Xlf Deficiency Results in Suboptimal V(D)J Recombination and Impaired Lymphoid Development in Mice.

Authors:  Benoit Roch; Vincent Abramowski; Julie Chaumeil; Jean-Pierre de Villartay
Journal:  Front Immunol       Date:  2019-03-14       Impact factor: 7.561

8.  Differential role of nonhomologous end joining factors in the generation, DNA damage response, and myeloid differentiation of human induced pluripotent stem cells.

Authors:  Kerstin Felgentreff; Likun Du; Katja G Weinacht; Kerry Dobbs; Margarita Bartish; Silvia Giliani; Thorsten Schlaeger; Alexander DeVine; Axel Schambach; Lisa J Woodbine; Graham Davies; Sachin N Baxi; Mirjam van der Burg; Jack Bleesing; Andrew Gennery; John Manis; Qiang Pan-Hammarström; Luigi D Notarangelo
Journal:  Proc Natl Acad Sci U S A       Date:  2014-06-02       Impact factor: 11.205

Review 9.  hiPSC-derived iMSCs: NextGen MSCs as an advanced therapeutically active cell resource for regenerative medicine.

Authors:  Vikram Sabapathy; Sanjay Kumar
Journal:  J Cell Mol Med       Date:  2016-04-21       Impact factor: 5.310

Review 10.  Induced Pluripotent Stem Cells: Advances in the Quest for Genetic Stability during Reprogramming Process.

Authors:  Valentina Turinetto; Luca Orlando; Claudia Giachino
Journal:  Int J Mol Sci       Date:  2017-09-13       Impact factor: 5.923

  10 in total

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