Steve A. Kay

Active 1983–2026

164
Papers
53,344
Citations
115
h-index
162
i10-index

Citations

Citations per year for Steve A. Kay1968: 1 citations1985: 1 citations1986: 1 citations1987: 2 citations1988: 23 citations1989: 30 citations1990: 26 citations1991: 29 citations1992: 24 citations1993: 26 citations1994: 18 citations1995: 50 citations1996: 54 citations1997: 78 citations1998: 135 citations1999: 217 citations2000: 354 citations2001: 348 citations2002: 573 citations2003: 630 citations2004: 548 citations2005: 660 citations2006: 595 citations2007: 759 citations2008: 597 citations2009: 597 citations2010: 750 citations2011: 784 citations2012: 842 citations2013: 709 citations2014: 677 citations2015: 615 citations2016: 608 citations2017: 573 citations2018: 423 citations2019: 1,372 citations2020: 1,473 citations2021: 1,325 citations2022: 1,027 citations2023: 701 citations2024: 1,092 citations2025: 489 citations2026: 6 citations1969–1984: no citations, so these years are not shown

Citation sources

Countries

World map of the countries and regions citing this authorUnited States: 4,377 citing papers, 30.8% of this breakdownChina: 1,786 citing papers, 12.6% of this breakdownUnited Kingdom: 1,122 citing papers, 7.9% of this breakdownGermany: 1,050 citing papers, 7.4% of this breakdownJapan: 873 citing papers, 6.1% of this breakdownFrance: 513 citing papers, 3.6% of this breakdownSwitzerland: 337 citing papers, 2.4% of this breakdownSpain: 328 citing papers, 2.3% of this breakdownCanada: 322 citing papers, 2.3% of this breakdownNetherlands: 309 citing papers, 2.2% of this breakdownSouth Korea: 302 citing papers, 2.1% of this breakdownAustralia: 250 citing papers, 1.8% of this breakdown
0%30.8%Other 18.5%

Fields

  • Neuroscience36.1%
  • Agricultural and Biological Sciences33.1%
  • Biochemistry, Genetics and Molecular Biology22%
  • Medicine5%
  • Environmental Science0.8%
  • Computer Science0.6%
  • Other2.4%

Topics

  • Circadian rhythm and melatonin13.2%
  • Plant Molecular Biology Research11%
  • Light effects on plants9.2%
  • Photosynthetic Processes and Mechanisms6.9%
  • Photoreceptor and optogenetics research3%
  • Plant Reproductive Biology2.8%
  • Other53.9%

Coauthors

All papers

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  1. Targeting Glioblastoma Stem Cells through Disruption of the Circadian Clock

    Authors: , , , , , , , , , , , , , , , , , , , - Cancer Discovery 2019 cited by 292

  2. Suprachiasmatic Nucleus: Cell Autonomy and Network Properties

    Authors: , , - Annual Review of Physiology 2010 cited by 1,203

  3. Coordinated Transcription of Key Pathways in the Mouse by the Circadian Clock

    Authors: , , , , , , , , , - Cell 2002 cited by 2,320

  4. The ELF4–ELF3–LUX complex links the circadian clock to diurnal control of hypocotyl growth

    Authors: , , , , , , , - Nature 2011 cited by 950

  5. Circadian regulator BMAL1::CLOCK promotes cell proliferation in hepatocellular carcinoma by controlling apoptosis and cell cycle

    Authors: , , , , , , , , , , - National Academy of Sciences, Proceedings of the National Academy of Sciences 2023 cited by 141

  6. An Arabidopsis gene regulatory network for secondary cell wall synthesis

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , - Nature 2014 cited by 796

  7. A Functional Genomics Strategy Reveals Rora as a Component of the Mammalian Circadian Clock

    Authors: , , , , , , , , , - Neuron 2004 cited by 1,107

  8. Circadian rhythms from flies to human

    Authors: , , - Nature 2002 cited by 1,079

  9. Identification of Small Molecule Activators of Cryptochrome

    Authors: , , , , , , , , , , , , - Science 2012 cited by 506

  10. FKF1 and GIGANTEA Complex Formation Is Required for Day-Length Measurement in Arabidopsis

    Authors: , , , - Science 2007 cited by 922

  11. FKF1 F-Box Protein Mediates Cyclic Degradation of a Repressor of CONSTANS in Arabidopsis

    Authors: , , , , - Science 2005 cited by 803

  12. Cryptochrome mediates circadian regulation of cAMP signaling and hepatic gluconeogenesis

    Authors: , , , , , , , , , , , , - Nature Medicine 2010 cited by 553

  13. Plant Stress Tolerance Requires Auxin-Sensitive Aux/IAA Transcriptional Repressors

    Authors: , , , , , , , , , , , , , - Current Biology 2017 cited by 243

  14. Guidelines for Genome-Scale Analysis of Biological Rhythms

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Paul de Goede, Susan S. Golden, Carla A. Green, John Harer, Stacey L. Harmer, Jeff Haspel, Michael H. Hastings, Hanspeter Herzel, Erik D. Herzog, Christy M. Hoffmann, Christian I. Hong, Jacob Hughey, Jennifer Hurley, Horacio O. de la Iglesia, Carl Hirschie Johnson, Steve A. Kay, Nobuya Koike, Karl Kornacker, Achim Kramer, Katja Lamia, Tanya Leise, Scott A. Lewis, Jiajia Li, Xiaodong Li, Andrew C. Liu, Jennifer Loros, Tami A. Martino, Jérôme S. Menet, Martha Merrow, Andrew J. Millar, Todd C. Mockler, Félix Naef, Emi Nagoshi, Michael N. Nitabach, María Olmedo, Dmitri A. Nusinow, Louis J. Ptáček, D.A.J. Rand, Akhilesh B. Reddy, María S. Robles, Till Roenneberg, Michael Rosbash, Marc D. Ruben, Samuel S. C. Rund, Aziz Sancar, Paolo Sassone‐Corsi, Amita Sehgal, Scott Sherrill-Mix, Debra J. Skene, Kai‐Florian Storch, Joseph S. Takahashi, Hiroki R. Ueda, Han Wang, Charles J. Weitz, Pål O. Westermark, Herman Wijnen, Ying Xu, Gang Wu, Seung Hee Yoo, Michael W. Young, Eric Erquan Zhang, T. Zieliński, John B. Hogenesch - Journal of Biological Rhythms 2017 cited by 303

  15. Linking photoreceptor excitation to changes in plant architecture

    Authors: , , , , , , , , , , , , - Genes & Development 2012 cited by 549

  16. A mouse forward genetics screen identifies LISTERIN as an E3 ubiquitin ligase involved in neurodegeneration

    Authors: , , , , , , , , , , - National Academy of Sciences, Proceedings of the National Academy of Sciences 2009 cited by 249

  17. Orchestrated Transcription of Key Pathways in Arabidopsis by the Circadian Clock

    Authors: , , , , , , , , - Science 2000 cited by 1,662

  18. Reciprocal Regulation Between TOC1 and LHY / CCA1 Within the Arabidopsis Circadian Clock

    Authors: , , , , , - Science 2001 cited by 1,174

  19. Melanopsin ( Opn4 ) Requirement for Normal Light-Induced Circadian Phase Shifting

    Authors: , , , , , , , - Science 2002 cited by 860

  20. Control of plant stem cell function by conserved interacting transcriptional regulators

    Authors: , , , , , , , , - Nature 2014 cited by 257

  21. Light Perception: A Matter of Time

    Authors: , , - Molecular Plant 2020 cited by 136

  22. Global transcriptome analysis reveals circadian regulation of key pathways in plant growth and development

    Authors: , , , , - Genome biology 2008 cited by 770

  23. Functional interaction of phytochrome B and cryptochrome 2

    Authors: , , , - Nature 2000 cited by 473

  24. CIRCADIAN CLOCK-ASSOCIATED 1 regulates ROS homeostasis and oxidative stress responses

    Authors: , , , , , - National Academy of Sciences, Proceedings of the National Academy of Sciences 2012 cited by 377