2012
DOI: 10.1073/pnas.1210898109
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C-terminal region of the UV-B photoreceptor UVR8 initiates signaling through interaction with the COP1 protein

Abstract: UV-B light initiates photomorphogenic responses in plants. Arabidopsis UV RESISTANCE LOCUS8 (UVR8) specifically mediates these responses by functioning as a UV-B photoreceptor. UV-B exposure converts UVR8 from a dimer to a monomer, stimulates the rapid accumulation of UVR8 in the nucleus, where it binds to chromatin, and induces interaction of UVR8 with CONSTITUTIVELY PHOTO-MORPHOGENIC1 (COP1), which functions with UVR8 to control photomorphogenic UV-B responses. Although the crystal structure of UVR8 reveals … Show more

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Cited by 166 publications
(299 citation statements)
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“…In a yeast two-hybrid assay, Cr-UVR8 interacted with Cr-COP1 and At-COP1 specifically under UV-B ( Figure 2B), mimicking the UV-B-dependent interaction previously observed between At-UVR8 and At-COP1 (Rizzini et al, 2011;Cloix et al, 2012;O'Hara and Jenkins, 2012;Huang et al, 2014;Yin et al, 2015). This suggests that a UVR8 photocycle exists in Chlamydomonas ( Figure 2C) that is very similar to what has been demonstrated in Arabidopsis (Tilbrook et al, 2013).…”
Section: Structural Conservation and Uv-b Dynamics Of Chlamydomonas Uvr8supporting
confidence: 53%
See 1 more Smart Citation
“…In a yeast two-hybrid assay, Cr-UVR8 interacted with Cr-COP1 and At-COP1 specifically under UV-B ( Figure 2B), mimicking the UV-B-dependent interaction previously observed between At-UVR8 and At-COP1 (Rizzini et al, 2011;Cloix et al, 2012;O'Hara and Jenkins, 2012;Huang et al, 2014;Yin et al, 2015). This suggests that a UVR8 photocycle exists in Chlamydomonas ( Figure 2C) that is very similar to what has been demonstrated in Arabidopsis (Tilbrook et al, 2013).…”
Section: Structural Conservation and Uv-b Dynamics Of Chlamydomonas Uvr8supporting
confidence: 53%
“…Briefly, the UVR8 homodimer monomerizes upon UV-B exposure and interacts with CONSTITUTIVELY PHOTOMORPHOGENIC1 (COP1) (Oravecz et al, 2006;Favory et al, 2009;Rizzini et al, 2011). Two separate domains of UVR8 participate in the interaction with COP1: The b-propeller core of UVR8 mediates UV-Bdependent interaction with COP1 and the UVR8 C-terminal C27 domain further stabilizes the interaction and regulates COP1 activity (Cloix et al, 2012;Yin et al, 2015). UVR8-COP1 interaction induces UV-B signaling governed by the bZIP transcription factor ELONGATED HYPOCOTYL5 (HY5) and its homolog HYH (Ulm et al, 2004;Brown and Jenkins, 2008;Stracke et al, 2010;Binkert et al, 2014), which leads to UV-B acclimation (Brown et al, 2005;Oravecz et al, 2006;Favory et al, 2009).…”
Section: Introductionmentioning
confidence: 99%
“…The RUP1 and RUP2 mechanism of action may be by preventing UVR8 monomerization and/or facilitating UVR8 redimerization post UV-B exposure. Consistent with both possibilities and in contrast to the UV-B-specific UVR8-COP1 interaction, RUP1 and RUP2 can interact with UVR8 under conditions with and without UV-B and thus with both UVR8 monomers and homodimers (22,24). To begin with, we tested whether RUP1 and RUP2 influence the UVR8 dimer-monomer ratio upon UV-B exposure, which would imply that RUP1 and RUP2 act upstream of the UVR8-COP1 interaction.…”
mentioning
confidence: 99%
“…Photoactivated UVR8 then interacts with the E3 ubiquitin ligase CONSTITUTIVELY PHOTOMORPHOGENIC1 (COP1) (Favory et al, 2009;Rizzini et al, 2011;Cloix et al, 2012;Huang et al, 2014), which is a well-known repressor of photomorphogenesis and also plays an important role in UV-B signaling (Oravecz et al, 2006). As part of the UVR8 photocycle, regeneration of reactive UVR8 occurs by rapid reversion from the monomer to the dimer Heilmann and Jenkins, 2013).…”
Section: Introductionmentioning
confidence: 99%