Michael T. McManus

Active 1988–2024

88
Papers
33,084
Citations
78
h-index
88
i10-index

Citations

Citations per year for Michael T. McManus1948: 1 citations1955: 1 citations1978: 1 citations1984: 1 citations1987: 5 citations1988: 5 citations1989: 5 citations1990: 6 citations1991: 11 citations1992: 15 citations1993: 6 citations1994: 4 citations1995: 5 citations1996: 6 citations1997: 10 citations1998: 10 citations1999: 6 citations2000: 5 citations2001: 8 citations2002: 25 citations2003: 140 citations2004: 196 citations2005: 190 citations2006: 235 citations2007: 292 citations2008: 388 citations2009: 390 citations2010: 464 citations2011: 392 citations2012: 374 citations2013: 345 citations2014: 363 citations2015: 429 citations2016: 494 citations2017: 460 citations2018: 517 citations2019: 1,235 citations2020: 1,359 citations2021: 1,384 citations2022: 1,067 citations2023: 806 citations2024: 1,043 citations2025: 476 citations2026: 27 citations1949–1954: no citations, so these years are not shown1956–1977: no citations, so these years are not shown1979–1983: no citations, so these years are not shown1985–1986: no citations, so these years are not shown

Citation sources

Countries

World map of the countries and regions citing this authorUnited States: 6,237 citing papers, 29.6% of this breakdownChina: 2,585 citing papers, 12.3% of this breakdownUnited Kingdom: 1,330 citing papers, 6.3% of this breakdownGermany: 1,193 citing papers, 5.7% of this breakdownCanada: 736 citing papers, 3.5% of this breakdownFrance: 632 citing papers, 3% of this breakdownJapan: 617 citing papers, 2.9% of this breakdownItaly: 607 citing papers, 2.9% of this breakdownNetherlands: 575 citing papers, 2.7% of this breakdownAustralia: 570 citing papers, 2.7% of this breakdownSpain: 412 citing papers, 1.9% of this breakdownSwitzerland: 381 citing papers, 1.8% of this breakdown
0%29.6%Other 24.7%

Fields

  • Biochemistry, Genetics and Molecular Biology67.5%
  • Medicine21.6%
  • Immunology and Microbiology3.8%
  • Neuroscience2.9%
  • Agricultural and Biological Sciences1.3%
  • Computer Science0.8%
  • Other2.1%

Topics

  • MicroRNA in disease regulation6.7%
  • Cancer-related molecular mechanisms research4%
  • Epigenetics and DNA Methylation3.9%
  • RNA modifications and cancer3.7%
  • Genomics and Chromatin Dynamics3.4%
  • RNA Research and Splicing3.3%
  • Other75%

Coauthors

All papers

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  1. Integrative analysis of 111 reference human epigenomes Open

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Wei Xie, R. David Hawkins, Ryan Lister, Chibo Hong, Philippe Gascard, Andrew J. Mungall, Richard A. Moore, Eric Chuah, Angela Tam, Theresa K. Canfield, R. Scott Hansen, Rajinder Kaul, Peter J. Sabo, Mukul S. Bansal, Annaick Carles, Jesse R. Dixon, Kyle Kai-How Farh, Soheil Feizi, Rosa Karlic, Ah-Ram Kim, Ashwinikumar Kulkarni, Daofeng Li, Rebecca F. Lowdon, GiNell Elliott, Tim R. Mercer, Shane J. Neph, Vitor Onuchic, Paz Polak, Nisha Rajagopal, Pradipta Ray, Richard C. Sallari, Kyle T. Siebenthall, Nicholas A. Sinnott-Armstrong, Michael Stevens, Robert E. Thurman, Jie Wu, Bo Zhang, Xin Zhou, Arthur E. Beaudet, Laurie A. Boyer, Philip L. De Jager, Peggy J. Farnham, Susan J. Fisher, David Haussler, Steven J. M. Jones, Wei Li, Marco A. Marra, Michael T. McManus, Shamil R. Sunyaev, James A. Thomson, Thea D. Tlsty, Li-Huei Tsai, Wei Wang, Robert A. Waterland, Michael Q. Zhang, Lisa H. Chadwick, Bradley E. Bernstein, Joseph F. Costello, Joseph R. Ecker, Martin Hirst, Alexander Meissner, Aleksandar Milosavljevic, Bing Ren, John A. Stamatoyannopoulos, Ting Wang, Manolis Kellis - Nature, Nat. 2015 cited by 7,201

  2. Drug-tolerant persister cancer cells are vulnerable to GPX4 inhibition

    Authors: , , , , , , , , , , , - Nature 2017 cited by 1,804

  3. BCAA catabolism in brown fat controls energy homeostasis through SLC25A44

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Labros S. Sidossis, Francis C. Szoka, Michael T. McManus, Masayuki Saito, Tomoyoshi Soga, Shingo Kajimura - Nature 2019 cited by 543

  4. Macrophage Exosomes Resolve Atherosclerosis by Regulating Hematopoiesis and Inflammation via MicroRNA Cargo

    Authors: , , , , , , , , , , , , , , , - Cell Reports 2020 cited by 256

  5. CD81 Controls Beige Fat Progenitor Cell Growth and Energy Balance via FAK Signaling

    Authors: , , , , , , , , , , , , , , , , , , , , , , - Cell 2020 cited by 301

  6. Choosing the Right Tool for the Job: RNAi, TALEN, or CRISPR

    Authors: , - Molecular Cell 2015 cited by 533

  7. Unexplored therapeutic opportunities in the human genome

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Anton Simeonov, Larry A. Sklar, Noel Southall, Susumu Tomita, Ilinca Tudose, Oleg Ursu, D. Vidović, Anna Waller, David Westergaard, Jeremy J. Yang, Gergely Zahoránszky-Köhalmi - Nature Reviews Drug Discovery 2018 cited by 385

  8. IRE1α Cleaves Select microRNAs During ER Stress to Derepress Translation of Proapoptotic Caspase-2

    Authors: , , , , , , , , , , , - Science 2012 cited by 643

  9. An expanded universe of cancer targets

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Andrew L. Kung, Brent R. Stockwell, Jesse S. Boehm, Josh Dempster, Robert T. Manguso, Francisca Vázquez, Lee Cooper, Yuhong Du, Andrei A. Ivanov, Sagar Lonial, Carlos S. Moreno, Qiankun Niu, Taofeek K. Owonikoko, Suresh S. Ramalingam, Matthew A. Reyna, Wei Zhou, Carla Grandori, Ilya Shmulevich, Elizabeth M. Swisher, Jitong Cai, Issac S. Chan, Matthew Dunworth, Yuchen Ge, Dan Georgess, Eloïse M. Grasset, Elodie Henriet, Hildur Knútsdóttir, Michael G. Lerner, Veena Padmanaban, Matthew C. Perrone, Yasir Suhail, Yohannes Tsehay, Manisha Warrier, Quin Morrow, Tamilla Nechiporuk, Nicola Long, Jennifer N. Saultz, Andy Kaempf, Jessica Minnier, Cristina E. Tognon, Stephen E. Kurtz, Anupriya Agarwal, Jordana F. Brown, Kevin Watanabe‐Smith, Tania Q. Vu, Thomas Jacob, Yunqi Yan, Bridget A. Robinson, Evan Lind, Yoko Kosaka, Emek Demir, Joseph Estabrook, Michael Grzadkowski, Olga Nikolova, Ken Chen, Ben Deneen, Han Liang, Michael C. Bassik, Asmita Bhattacharya, Kevin Brennan, Christina Curtis, Olivier Gevaert, Hanlee P. Ji, Kasper Karlsson, Kremena Karagyozova, Yuan‐Hung Lo, Katherine Liu, Michitaka Nakano, Anuja Sathe, Amber R. Smith and 25 more - Cell 2021 cited by 224

  10. TAZ, a Transcriptional Modulator of Mesenchymal Stem Cell Differentiation

    Authors: , , , , , , , , , , , - Science 2005 cited by 1,026

  11. A systematic comparison reveals substantial differences in chromosomal versus episomal encoding of enhancer activity

    Authors: , , , , , , , - Genome Research 2016 cited by 360

  12. The Extracellular RNA Communication Consortium: Establishing Foundational Knowledge and Technologies for Extracellular RNA Research

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Alton Etheridge, Marc Ferrer, Jeffrey L. Franklin, Jane E. Freedman, David J. Galas, Timur R. Galeev, Roopali Gandhi, Aitor Garcia, Mark Gerstein, Vikas Ghai, Ionita Ghiran, María D. Giraldez, Andrei Goga, Tasos Gogakos, Béatrice Goilav, Stephen J. Gould, Peixuan Guo, Mihir Gupta, Fred H. Hochberg, Bo Huang, Matt Huentelman, Craig P. Hunter, Elizabeth Hutchins, Andrew R. Jackson, M. Yashar S. Kalani, Pınar Kanlikilicer, Reka Agnes Karaszti, Kendall Van Keuren-Jensen, Anastasia Khvorova, Yong Kim, Hogyoung Kim, Taek‐Kyun Kim, Robert R. Kitchen, Richard P. Kraig, Anna M. Krichevsky, Raymond Y. Kwong, Louise C. Laurent, Min Young Lee, Noëlle D. L’Étoile, Shawn Levy, Feng Li, Jenny Li, Xin Li, Gabriel Lopez‐Berestein, Rocco Lucero, Bogdan Mateescu, A. Matin, Klaas E.A. Max, Michael T. McManus, Thorsten R. Mempel, Cindy Meyer, Aleksandar Milosavljevic, Debasis Mondal, Kenneth J. Mukamal, Oscar Murillo, Thangamani Muthukumar, Deborah A. Nickerson, Christopher J. O’Donnell, Dinshaw J. Patel, Tushar Patel, James G. Patton, Anu Paul, Elaine R. Peskind, Mitch A. Phelps, Chaim Putterman, Peter J. Quesenberry, Joseph F. Quinn, Robert L. Raffai, Saritha Ranabothu, Shannon Jiang Rao and 57 more - Cell 2019 cited by 230

  13. Erratum: Unexplored therapeutic opportunities in the human genome

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Anton Simeonov, Larry A. Sklar, Noel Southall, Susumu Tomita, Ilinca Tudose, Oleg Ursu, D. Vidović, Anna Waller, David Westergaard, Jeremy J. Yang, Gergely Zahoránszky-Köhalmi - Nature Reviews Drug Discovery 2018 cited by 323

  14. Examining the evidence for extracellular RNA function in mammals

    Authors: , - Nature Reviews Genetics 2021 cited by 84

  15. Pervasive Transcription of the Human Genome Produces Thousands of Previously Unidentified Long Intergenic Noncoding RNAs

    Authors: , , - PLoS Genetics 2013 cited by 755

  16. Dicer1 and miR-219 Are Required for Normal Oligodendrocyte Differentiation and Myelination

    Authors: , , , , , , , , , - Neuron 2010 cited by 554

  17. Dysregulation of Cardiogenesis, Cardiac Conduction, and Cell Cycle in Mice Lacking miRNA-1-2

    Authors: , , , , , , , , , - Cell 2007 cited by 1,438

  18. Genome-wide CRISPR screen identifies FAM49B as a key regulator of actin dynamics and T cell activation

    Authors: , , , , , , , , , , , , , - National Academy of Sciences, Proceedings of the National Academy of Sciences 2018 cited by 120

  19. Genomic Resolution of DLX-Orchestrated Transcriptional Circuits Driving Development of Forebrain GABAergic Neurons

    Authors: , , , , , , , , , , , , , - Cell Reports 2019 cited by 108

  20. miR-200 deficiency promotes lung cancer metastasis by activating Notch signaling in cancer-associated fibroblasts

    Authors: , , , , , , , , , , , , , , , , - Genes & Development 2021 cited by 72

  21. PIM1 kinase inhibition as a targeted therapy against triple-negative breast tumors with elevated MYC expression

    Authors: , , , , , , , , , , , , , , , , , , , - Nature Medicine 2016 cited by 167

  22. Dual gene activation and knockout screen reveals directional dependencies in genetic networks

    Authors: , , , , , , , , , , , , - Nature Biotechnology 2018 cited by 163

  23. Massively parallel functional annotation of 3′ untranslated regions

    Authors: , , , , , - Nature Biotechnology 2014 cited by 138

  24. Nucleolar-based Dux repression is essential for embryonic two-cell stage exit

    Authors: , , , , , , , , , , - Genes & Development 2022 cited by 62