James E. Haber

Active 1970–2024

173
Papers
38,918
Citations
114
h-index
171
i10-index

Citations

Citations per year for James E. Haber1971: 1 citations1972: 3 citations1973: 2 citations1974: 2 citations1975: 5 citations1976: 1 citations1977: 2 citations1978: 1 citations1979: 2 citations1980: 5 citations1981: 9 citations1982: 5 citations1983: 21 citations1984: 22 citations1985: 23 citations1986: 22 citations1987: 21 citations1988: 52 citations1989: 59 citations1990: 46 citations1991: 64 citations1992: 93 citations1993: 92 citations1994: 125 citations1995: 119 citations1996: 186 citations1997: 176 citations1998: 255 citations1999: 382 citations2000: 485 citations2001: 562 citations2002: 481 citations2003: 483 citations2004: 511 citations2005: 436 citations2006: 443 citations2007: 460 citations2008: 469 citations2009: 529 citations2010: 483 citations2011: 325 citations2012: 304 citations2013: 361 citations2014: 377 citations2015: 333 citations2016: 368 citations2017: 338 citations2018: 250 citations2019: 788 citations2020: 983 citations2021: 1,062 citations2022: 725 citations2023: 511 citations2024: 757 citations2025: 331 citations2026: 5 citations

Citation sources

Countries

World map of the countries and regions citing this authorUnited States: 4,311 citing papers, 35.6% of this breakdownUnited Kingdom: 1,102 citing papers, 9.1% of this breakdownFrance: 712 citing papers, 5.9% of this breakdownChina: 683 citing papers, 5.6% of this breakdownGermany: 600 citing papers, 5% of this breakdownJapan: 420 citing papers, 3.5% of this breakdownCanada: 416 citing papers, 3.4% of this breakdownNetherlands: 351 citing papers, 2.9% of this breakdownSwitzerland: 332 citing papers, 2.7% of this breakdownItaly: 321 citing papers, 2.7% of this breakdownSpain: 288 citing papers, 2.4% of this breakdownAustralia: 199 citing papers, 1.6% of this breakdown
0%35.6%Other 19.6%

Fields

  • Biochemistry, Genetics and Molecular Biology76%
  • Medicine15.1%
  • Agricultural and Biological Sciences4.7%
  • Immunology and Microbiology1.1%
  • Neuroscience0.9%
  • Dentistry0.7%
  • Other1.5%

Topics

  • DNA Repair Mechanisms16.9%
  • CRISPR and Genetic Engineering8.5%
  • Genomics and Chromatin Dynamics6.6%
  • Fungal and yeast genetics research3.8%
  • Chromosomal and Genetic Variations3.3%
  • Microtubule and mitosis dynamics2.6%
  • Other58.3%

Coauthors

All papers

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  1. Patterns of somatic structural variation in human cancer genomes

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , J. Lynn Fink, Milana Frenkel‐Morgenstern, Dale W. Garsed, Mark Gerstein, Dmitry A. Gordenin, David Haan, James E. Haber, Julian M. Hess, Barbara Hutter, Marcin Imieliński, David T. W. Jones, Young Seok Ju, Marat D. Kazanov, Leszek J. Klimczak, Youngil Koh, Jan O. Korbel, Kiran Kumar, Eunjung Alice Lee, Jake June-Koo Lee, Yilong Li, Andy G. Lynch, Geoff Macintyre, Florian Markowetz, Iñigo Martincorena, Alexander Martinez-Fundichely, Matthew Meyerson, Satoru Miyano, Hidewaki Nakagawa, Fábio C. P. Navarro, Stephan Ossowski, Peter J. Park, John V. Pearson, Montserrat Puiggròs, Karsten Rippe, Nicola D. Roberts, Steven A. Roberts, Bernardo Rodriguez-Martin, Steven E. Schumacher, Ralph Scully, Mark Shackleton, Nikos Sidiropoulos, Lina Sieverling, Chip Stewart, David Torrents, José M. C. Tubío, Izar Villasante, Nicola Waddell, Jeremiah A. Wala, Joachim Weischenfeldt, Lixing Yang, Xiaotong Yao, Sung-Soo Yoon, Jorge Zamora, Cheng-Zhong Zhang, Joachim Weischenfeldt, Rameen Beroukhim, Peter J. Campbell, Lauri A. Aaltonen, Federico Abascal, Adam Abeshouse, Hiroyuki Aburatani, David J. Adams, Nishant Agrawal, Keun Soo Ahn, Sung‐Min Ahn, Hiroshi Aikata, Rehan Akbani, Kadir C. Akdemir, Hikmat Al‐Ahmadie, Sultan T. Al‐Sedairy and 1,311 more - Nature 2020 cited by 998

  2. Comprehensive analysis of chromothripsis in 2,658 human cancers using whole-genome sequencing

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Milana Frenkel-Morgenstern, Dale W. Garsed, Mark Gerstein, Dmitry A. Gordenin, David Haan, James E. Haber, Julian M. Hess, Barbara Hutter, Marcin Imieliński, David Jones, Young Seok Ju, Marat D. Kazanov, Leszek J. Klimczak, Youngil Koh, Jan O. Korbel, Kiran Kumar, Eunjung Alice Lee, Jake June-Koo Lee, Yilong Li, Andy G. Lynch, Geoff Macintyre, Florian Markowetz, Iñigo Martincorena, Alexander Martinez‐Fundichely, Satoru Miyano, Hidewaki Nakagawa, Fabio C. P. Navarro, Stephan Ossowski, Peter J. Park, John V. Pearson, Montserrat Puiggròs, Karsten Rippe, Nicola D. Roberts, Steven A. Roberts, Bernardo Rodriguez-Martin, Steven E. Schumacher, Ralph Scully, Mark Shackleton, Nikos Sidiropoulos, Lina Sieverling, Chip Stewart, David Torrents, José M. C. Tubío, Izar Villasante, Nicola Waddell, Jeremiah A. Wala, Joachim Weischenfeldt, Lixing Yang, Xiaotong Yao, Sung-Soo Yoon, Jorge Zamora, Cheng-Zhong Zhang, Peter J. Park, Lauri A. Aaltonen, Federico Abascal, Adam Abeshouse, Hiroyuki Aburatani, David J. Adams, Nishant Agrawal, Keun Soo Ahn, Sung‐Min Ahn, Hiroshi Aikata, Rehan Akbani, Kadir C. Akdemir, Hikmat Al‐Ahmadie, Sultan T. Al‐Sedairy, Fátima Al‐Shahrour, Malik Alawi, Monique Albert, Kenneth Aldape and 1,307 more - Nature Genetics 2020 cited by 774

  3. Loop extrusion as a mechanism for formation of DNA damage repair foci

    Authors: , , , , , , , , , , , , - Nature 2021 cited by 331

  4. Analyses of non-coding somatic drivers in 2,658 cancer whole genomes

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Klev Diamanti, Nuno A. Fonseca, Abel González-Pérez, Qianyun Guo, Mark P. Hamilton, Nicholas J. Haradhvala, Hong Chen, Keren Isaev, Todd A. Johnson, Malene Juul, André Kahles, Abdullah Kahraman, Young-Wook Kim, Jan Komorowski, Kiran Kumar, Sushant Kumar, Donghoon Lee, Kjong-Van Lehmann, Yilong Li, Eric Minwei Liu, Lucas Lochovsky, Keunchil Park, Oriol Pich, Nicola D. Roberts, Gordon Saksena, Steven E. Schumacher, Nikos Sidiropoulos, Lina Sieverling, Nasa Sinnott-Armstrong, Chip Stewart, David Tamborero, José M. C. Tubío, Husen M. Umer, Liis Uusküla-Reimand, Claes Wadelius, Lina Wadi, Xiaotong Yao, Cheng‐Zhong Zhang, Jing Zhang, James E. Haber, Asger Hobolth, Marcin Imieliński, Manolis Kellis, Michael S. Lawrence, Christian von Mering, Hidewaki Nakagawa, Benjamin J. Raphael, Mark A. Rubin, Chris Sander, Lincoln D. Stein, Joshua M. Stuart, Tatsuhiko Tsunoda, David A. Wheeler, Rory Johnson, Jüri Reimand, Mark Gerstein, Ekta Khurana, Peter J. Campbell, Núria López-Bigas, PCAWG Drivers and Functional Interpretation Working Group, Federico Abascal, Samirkumar B. Amin, Gary D. Bader, Pratiti Bandopadhayay, Jonathan Barenboim, Rameen Beroukhim, Johanna Bertl, Keith A. Boroevich, Søren Brunak, Peter J. Campbell and 1,521 more - Nature, Nat. 2020 cited by 671

  5. Pan-cancer analysis of whole genomes identifies driver rearrangements promoted by LINE-1 retrotransposition

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Adam P. Butler, Sebastian M. Waszak, Fábio C. P. Navarro, Steven E. Schumacher, Jean Monlong, Francesco Maura, Niccolò Bolli, Guillaume Bourque, Mark Gerstein, Peter J. Park, David C. Wedge, Rameen Beroukhim, David Torrents, Jan O. Korbel, Iñigo Martincorena, Rebecca C. Fitzgerald, Peter Van Loo, Haig H. Kazazian, Kathleen H. Burns, PCAWG Structural Variation Working Group, Kadir C. Akdemir, Eva G. Alvarez, Adrian Baez‐Ortega, Rameen Beroukhim, Paul C. Boutros, David D.L. Bowtell, Benedikt Brors, Kathleen H. Burns, Peter J. Campbell, Kin Chan, Ken Chen, Isidro Cortés-Ciriano, Ana Dueso-Barroso, Andrew Dunford, Paul A. Edwards, Xavier Estivill, Dariush Etemadmoghadam, Lars Feuerbach, J. Lynn Fink, Milana Frenkel‐Morgenstern, Dale W. Garsed, Mark Gerstein, Dmitry A. Gordenin, David Haan, James E. Haber, Julian M. Hess, Barbara Hutter, Marcin Imielinski, David Jones, Young Seok Ju, Marat D. Kazanov, Leszek J. Klimczak, Youngil Koh, Jan O. Korbel, Kiran Kumar, Eunjung Alice Lee, Jake June-Koo Lee, Yilong Li, Andy G. Lynch, Geoff Macintyre, Florian Markowetz, Iñigo Martincorena, Alexander Martinez‐Fundichely, Matthew Meyerson, Satoru Miyano, Hidewaki Nakagawa, Fábio C. P. Navarro, Stephan Ossowski, Peter J. Park, John V. Pearson and 1,348 more - Nature Genetics 2020 cited by 478

  6. Break-Induced Replication Repair of Damaged Forks Induces Genomic Duplications in Human Cells

    Authors: , , , , , , , , , - Science 2013 cited by 448

  7. Sources of DNA Double-Strand Breaks and Models of Recombinational DNA Repair

    Authors: , - Cold Spring Harbor Perspectives in Biology 2014 cited by 733

  8. Disruption of chromatin folding domains by somatic genomic rearrangements in human cancer

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Dale W. Garsed, Mark Gerstein, Dmitry A. Gordenin, David Haan, James E. Haber, Julian M. Hess, Barbara Hutter, Marcin Imieliński, David Jones, Young Seok Ju, Marat D. Kazanov, Leszek J. Klimczak, Youngil Koh, Jan O. Korbel, Kiran Kumar, Eunjung Alice Lee, Jake June-Koo Lee, Yilong Li, Andy G. Lynch, Geoff Macintyre, Florian Markowetz, Iñigo Martincorena, Alexander Martinez‐Fundichely, Matthew Meyerson, Satoru Miyano, Hidewaki Nakagawa, Fábio C. P. Navarro, Stephan Ossowski, Peter J. Park, John V. Pearson, Montserrat Puiggròs, Karsten Rippe, Nicola D. Roberts, Steven A. Roberts, Bernardo Rodriguez-Martin, Steven E. Schumacher, Ralph Scully, Mark Shackleton, Nikos Sidiropoulos, Lina Sieverling, Chip Stewart, David Torrents, José M. C. Tubío, Izar Villasante, Nicola Waddell, Jeremiah A. Wala, Joachim Weischenfeldt, Lixing Yang, Xiaotong Yao, Sung-Soo Yoon, Jorge Zamora, Cheng‐Zhong Zhang, Lauri A. Aaltonen, Federico Abascal, Adam Abeshouse, Hiroyuki Aburatani, David J. Adams, Nishant Agrawal, Keun Soo Ahn, Sung‐Min Ahn, Hiroshi Aikata, Rehan Akbani, Kadir C. Akdemir, Hikmat Al‐Ahmadie, Sultan T. Al‐Sedairy, Fátima Al‐Shahrour, Malik Alawi, Monique Albert, Kenneth Aldape, Ludmil B. Alexandrov and 1,306 more - Nature Genetics 2020 cited by 308

  9. CRISPR/Cas9 cleavages in budding yeast reveal templated insertions and strand-specific insertion/deletion profiles

    Authors: , , , , , , , - National Academy of Sciences, Proceedings of the National Academy of Sciences 2018 cited by 209

  10. Multiple Pathways of Recombination Induced by Double-Strand Breaks in Saccharomyces cerevisiae

    Authors: , - Microbiology and Molecular Biology Reviews 1999 cited by 2,123

  11. Break-induced replication and telomerase-independent telomere maintenance require Pol32

    Authors: , , , - Nature 2007 cited by 487

  12. Randomized, controlled trial of resistance training in breast cancer patients receiving adjuvant radiotherapy: results on cancer-related fatigue and quality of life

    Authors: , , , , , , , , , , - Annals of Oncology 2014 cited by 246

  13. Checkpoint Responses to DNA Double-Strand Breaks

    Authors: , , - Annual Review of Biochemistry 2020 cited by 190

  14. Multiplexed precision genome editing with trackable genomic barcodes in yeast

    Authors: , , , , , , , , , , , , , , , , , , , , , , - Nature Biotechnology 2018 cited by 178

  15. DNA end resection, homologous recombination and DNA damage checkpoint activation require CDK1

    Authors: , , , , , , , , , , , - Nature 2004 cited by 709

  16. DNA Damage Response Pathway Uses Histone Modification to Assemble a Double-Strand Break-Specific Cohesin Domain

    Authors: , , , , , , - Molecular Cell 2004 cited by 574

  17. The democratization of gene editing: Insights from site-specific cleavage and double-strand break repair

    Authors: , - DNA repair 2016 cited by 234

  18. Migrating bubble during break-induced replication drives conservative DNA synthesis

    Authors: , , , , , , , , , - Nature 2013 cited by 325

  19. Structure-forming CAG/CTG repeats interfere with gap repair to cause repeat expansions and chromosome breaks

    Authors: , , , - Nature Communications 2023 cited by 21

  20. Surviving the Breakup: The DNA Damage Checkpoint

    Authors: , - Annual Review of Genetics 2006 cited by 560

  21. Break-Induced DNA Replication

    Authors: , , - Cold Spring Harbor Perspectives in Biology 2013 cited by 219

  22. Genomic footprints of activated telomere maintenance mechanisms in cancer

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Dariush Etemadmoghadam, Lars Feuerbach, J. Lynn Fink, Milana Frenkel‐Morgenstern, Dale W. Garsed, Mark Gerstein, Dmitry A. Gordenin, David Haan, James E. Haber, Julian M. Hess, Barbara Hutter, Marcin Imieliński, David T. W. Jones, Young Seok Ju, Marat D. Kazanov, Leszek J. Klimczak, Youngil Koh, Jan O. Korbel, Kiran Kumar, Eunjung Alice Lee, Jake June-Koo Lee, Yilong Li, Andy G. Lynch, Geoff Macintyre, Florian Markowetz, Iñigo Martincorena, Alexander Martinez‐Fundichely, Matthew Meyerson, Satoru Miyano, Hidewaki Nakagawa, Fábio C. P. Navarro, Stephan Ossowski, Peter J. Park, John V. Pearson, Montserrat Puiggròs, Karsten Rippe, Nicola D. Roberts, Steven A. Roberts, Bernardo Rodríguez–Martín, Steven E. Schumacher, Ralph Scully, Mark Shackleton, Nikos Sidiropoulos, Lina Sieverling, Chip Stewart, David Torrents, José M. C. Tubío, Izar Villasante, Nicola Waddell, Jeremiah A. Wala, Joachim Weischenfeldt, Lixing Yang, Xiaotong Yao, Sung-Soo Yoon, Jorge Zamora, Cheng‐Zhong Zhang, Benedikt Brors, Karsten Rippe, David T. W. Jones, Lars Feuerbach, Lauri A. Aaltonen, Federico Abascal, Adam Abeshouse, Hiroyuki Aburatani, David J. Adams, Nishant Agrawal, Keun Soo Ahn, Sung-Min Ahn, Hiroshi Aikata, Rehan Akbani and 1,314 more - Nature Communications 2020 cited by 139

  23. Break-Induced Replication and Recombinational Telomere Elongation in Yeast

    Authors: , - Annual Review of Biochemistry 2006 cited by 309

  24. Characterization of RAD51-Independent Break-Induced Replication That Acts Preferentially with Short Homologous Sequences

    Authors: , - Molecular and Cellular Biology 2002 cited by 189