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  1. A clock- and light-regulated gene that links the circadian oscillator to LHCB gene expression. Xu Y, Johnson CH (2001) Plant Cell 13(6): 1411-25
    › Primary publication · 11402169 (PubMed) · PMC135572 (PubMed Central)
  2. Daily and circadian variation in survival from ultraviolet radiation in Chlamydomonas reinhardtii. Nikaido SS, Johnson CH (2000) Photochem Photobiol 71(6): 758-65
    › Primary publication · 10857373 (PubMed)
  3. Circadian control of cell division in unicellular organisms. Mori T, Johnson CH (2000) Prog Cell Cycle Res : 185-92
    › Primary publication · 10740825 (PubMed)
  4. Circadian clock-protein expression in cyanobacteria: rhythms and phase setting. Xu Y, Mori T, Johnson CH (2000) EMBO J 19(13): 3349-57
    › Primary publication · 10880447 (PubMed) · PMC313937 (PubMed Central)
  5. Forty years of PRCs--what have we learned? Johnson CH (1999) Chronobiol Int 16(6): 711-43
    › Primary publication · 10584173 (PubMed)
  6. Different circadian oscillators control Ca(2+) fluxes and lhcb gene expression. Sai J, Johnson CH (1999) Proc Natl Acad Sci U S A 96(20): 11659-63
    › Primary publication · 10500233 (PubMed) · PMC18090 (PubMed Central)
  7. Circadian programs in cyanobacteria: adaptiveness and mechanism. Johnson CH, Golden SS (1999) Annu Rev Microbiol : 389-409
    › Primary publication · 10547696 (PubMed)
  8. A bioluminescence resonance energy transfer (BRET) system: application to interacting circadian clock proteins. Xu Y, Piston DW, Johnson CH (1999) Proc Natl Acad Sci U S A 96(1): 151-6
    › Primary publication · 9874787 (PubMed) · PMC15108 (PubMed Central)
  9. Resonating circadian clocks enhance fitness in cyanobacteria. Ouyang Y, Andersson CR, Kondo T, Golden SS, Johnson CH (1998) Proc Natl Acad Sci U S A 95(15): 8660-4
    › Primary publication · 9671734 (PubMed) · PMC21132 (PubMed Central)
  10. Adaptive significance of circadian programs in cyanobacteria. Johnson CH, Golden SS, Kondo T (1998) Trends Microbiol 6(10): 407-10
    › Primary publication · 9807785 (PubMed)