Harvard Catalyst Profiles

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Michael Tsabar, Ph.D.

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Publications listed below are automatically derived from MEDLINE/PubMed and other sources, which might result in incorrect or missing publications. Faculty can login to make corrections and additions.
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PMC Citations indicate the number of times the publication was cited by articles in PubMed Central, and the Altmetric score represents citations in news articles and social media. (Note that publications are often cited in additional ways that are not shown here.) Fields are based on how the National Library of Medicine (NLM) classifies the publication's journal and might not represent the specific topic of the publication. Translation tags are based on the publication type and the MeSH terms NLM assigns to the publication. Some publications (especially newer ones and publications not in PubMed) might not yet be assigned Field or Translation tags.) Click a Field or Translation tag to filter the publications.
  1. Hafner A, Kublo L, Tsabar M, Lahav G, Stewart-Ornstein J. Identification of universal and cell-type specific p53 DNA binding. BMC Mol Cell Biol. 2020 Feb 18; 21(1):5. PMID: 32070277.
    Citations:    
  2. Waterman DP, Zhou F, Li K, Lee CS, Tsabar M, Eapen VV, Mazzella A, Haber JE. Live cell monitoring of double strand breaks in S. cerevisiae. PLoS Genet. 2019 03; 15(3):e1008001. PMID: 30822309.
    Citations:    
  3. Tsabar M, Lahav G. The Single-Cell Yin and Yang of Live Imaging and Transcriptomics. Cell Syst. 2017 04 26; 4(4):375-377. PMID: 28448797.
    Citations:    Fields:    
  4. Tsabar M, Hicks WM, Tsaponina O, Haber JE. Re-establishment of nucleosome occupancy during double-strand break repair in budding yeast. DNA Repair (Amst). 2016 11; 47:21-29. PMID: 27720308.
    Citations: 1     Fields:    Translation:AnimalsCells
  5. Tsabar M, Waterman DP, Aguilar F, Katsnelson L, Eapen VV, Memisoglu G, Haber JE. Asf1 facilitates dephosphorylation of Rad53 after DNA double-strand break repair. Genes Dev. 2016 05 15; 30(10):1211-24. PMID: 27222517.
    Citations: 5     Fields:    Translation:AnimalsCells
  6. Tsabar M, Haase J, Harrison B, Snider CE, Eldridge B, Kaminsky L, Hine RM, Haber JE, Bloom K. A Cohesin-Based Partitioning Mechanism Revealed upon Transcriptional Inactivation of Centromere. PLoS Genet. 2016 Apr; 12(4):e1006021. PMID: 27128635.
    Citations: 2     Fields:    Translation:AnimalsCells
  7. Tsabar M, Eapen VV, Mason JM, Memisoglu G, Waterman DP, Long MJ, Bishop DK, Haber JE. Caffeine impairs resection during DNA break repair by reducing the levels of nucleases Sae2 and Dna2. Nucleic Acids Res. 2015 Aug 18; 43(14):6889-901. PMID: 26019182.
    Citations: 12     Fields:    Translation:HumansAnimalsCells
  8. Tsabar M, Mason JM, Chan YL, Bishop DK, Haber JE. Caffeine inhibits gene conversion by displacing Rad51 from ssDNA. Nucleic Acids Res. 2015 Aug 18; 43(14):6902-18. PMID: 26019181.
    Citations: 3     Fields:    Translation:HumansAnimalsCells
  9. Ferrari M, Dibitetto D, De Gregorio G, Eapen VV, Rawal CC, Lazzaro F, Tsabar M, Marini F, Haber JE, Pellicioli A. Functional interplay between the 53BP1-ortholog Rad9 and the Mre11 complex regulates resection, end-tethering and repair of a double-strand break. PLoS Genet. 2015 Jan; 11(1):e1004928. PMID: 25569305.
    Citations: 28     Fields:    Translation:AnimalsCells
  10. Tsabar M, Haber JE. Chromatin modifications and chromatin remodeling during DNA repair in budding yeast. Curr Opin Genet Dev. 2013 Apr; 23(2):166-73. PMID: 23602331.
    Citations: 14     Fields:    Translation:AnimalsCells
  11. Eapen VV, Sugawara N, Tsabar M, Wu WH, Haber JE. The Saccharomyces cerevisiae chromatin remodeler Fun30 regulates DNA end resection and checkpoint deactivation. Mol Cell Biol. 2012 Nov; 32(22):4727-40. PMID: 23007155.
    Citations: 52     Fields:    Translation:AnimalsCells
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Funded by the NIH National Center for Advancing Translational Sciences through its Clinical and Translational Science Awards Program, grant number UL1TR002541.