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首页> 外文期刊>The Plant Cell >Degradation of Arabidopsis CRY2 is regulated by SPA proteins and phytochrome A.
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Degradation of Arabidopsis CRY2 is regulated by SPA proteins and phytochrome A.

机译:SPA蛋白和植物色素A调节拟南芥CRY2的降解。

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The UV-A/blue light photoreceptor crytochrome2 (cry2) plays a fundamental role in the transition from the vegetative to the reproductive phase in the facultative long-day plant Arabidopsis thaliana. The cry2 protein level strongly decreases when etiolated seedlings are exposed to blue light; cry2 is first phosphorylated, polyubiquitinated, and then degraded by the 26S proteasome. COP1 is involved in cry2 degradation, but several cop1 mutants show only reduced but not abolished cry2 degradation. SUPPRESSOR OF PHYA-105 (SPA) proteins are known to work in concert with COP1, and recently direct physical interaction between cry2 and SPA1 was demonstrated. Thus, we hypothesized that SPA proteins could also play a role in cry2 degradation. To this end, we analyzed cry2 protein levels in spa mutants. In all spa mutants analyzed, cry2 degradation under continuous blue light was alleviated in a fluence rate-dependent manner. Consistent with a role of SPA proteins in phytochrome A (phyA) signaling, a phyA mutant had enhanced cry2 levels, particularly under low fluence rate blue light. Fluorescence resonance energy transfer-fluorescence lifetime imaging microscopy studies showed a robust physical interaction of cry2 with SPA1 in nuclei of living cells. Our results suggest that cry2 stability is controlled by SPA and phyA, thus providing more information on the molecular mechanisms of interaction between cryptochrome and phytochrome photoreceptors.
机译:UV-A /蓝光感光细胞crytochrome2(cry2)在兼性长日拟南芥植物从营养期到生殖期的过渡中起着重要作用。当黄化的幼苗暴露在蓝光下时,cry2蛋白水平会大大降低。 cry2首先被26S蛋白酶体磷酸化,泛素化,然后降解。 COP1参与cry2降解,但几个cop1突变体仅显示减少的cry2降解,但没有消除。已知PHYA-105(SPA)蛋白的抑制因子与COP1协同工作,最近还证明了cry2和SPA1之间的直接物理相互作用。因此,我们假设SPA蛋白也可以在cry2降解中发挥作用。为此,我们分析了spa突变体中cry2蛋白的水平。在分析的所有spa突变体中,连续通量蓝光下的cry2降解以通量率依赖性方式得到缓解。与SPA蛋白在植物色素A(phyA)信号转导中的作用一致,phyA突变体具有增强的cry2水平,尤其是在低通量率蓝光下。荧光共振能量转移-荧光寿命成像显微镜研究表明,cry2与SPA1在活细胞核中具有强大的物理相互作用。我们的结果表明cry2的稳定性受SPA和phyA的控制,从而提供了更多有关隐色染料与植物色素感光剂相互作用的分子机制的信息。

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