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在拟南芥中,PIF1通过泛素-26S蛋白酶体途径受光介导的降解调控,以优化幼苗的光形态建成。

PIF1 is regulated by light-mediated degradation through the ubiquitin-26S proteasome pathway to optimize photomorphogenesis of seedlings in Arabidopsis.

作者信息

Shen Hui, Moon Jennifer, Huq Enamul

机构信息

Section of Molecular Cell and Developmental Biology and The Institute for Cellular and Molecular Biology, The University of Texas at Austin, Austin, TX 78712, USA.

出版信息

Plant J. 2005 Dec;44(6):1023-35. doi: 10.1111/j.1365-313X.2005.02606.x.

Abstract

Light signals perceived by the phytochrome (phy) family of sensory photoreceptors control multiple aspects of plant development. Recently, PIF1, a phy-interacting basic helix-loop-helix (bHLH) transcription factor, has been shown to negatively regulate facets of the photomorphogenesis of seedlings. Moreover, the transcriptional activation activity of PIF1 is reduced in a phy-dependent manner. In this study we use the luciferase (LUC) activity of the LUC-PIF1 fusion protein as an indicator of the stability of PIF1 in various light conditions. We found that the activity of LUC-PIF1 in both transient and stable transgenic lines is rapidly reduced in light, while the LUC-only control is stable under the same conditions, suggesting that PIF1 is degraded in response to light. Fluence-rate response curves indicate that PIF1 degradation is very sensitive to the quality and quantity of light. The half-life of PIF1 is about 16 min under 10 micromol m-2 sec-1 red light. PIF1 reaccumulates in the subsequent dark period after light-induced degradation, signifying that PIF1 not only functions in the dark and during the transition from etiolated to de-etiolated growth, but may also function during diurnal cycles. Inhibitors of the 26S proteasome increased the stability of PIF1, indicating that degradation of PIF1 is mediated by the ubiquitin-26S proteasome pathway. Further, de novo protein synthesis is not required for degradation of PIF1, as the presence of cycloheximide does not prevent degradation of PIF1 in the light. Taken together, these results suggest that the light signals perceived by phys induce the degradation of PIF1 and other phy-interacting factors to optimize photomorphogenesis.

摘要

植物感光光受体的光敏色素(phy)家族所感知的光信号控制着植物发育的多个方面。最近,PIF1是一种与phy相互作用的碱性螺旋-环-螺旋(bHLH)转录因子,已被证明对幼苗的光形态建成的多个方面起负调控作用。此外,PIF1的转录激活活性以phy依赖的方式降低。在本研究中,我们使用LUC-PIF1融合蛋白的荧光素酶(LUC)活性作为PIF1在各种光照条件下稳定性的指标。我们发现,在瞬时和稳定转基因系中,LUC-PIF1的活性在光照下迅速降低,而仅LUC的对照在相同条件下是稳定的,这表明PIF1在光照下会降解。光通量率响应曲线表明,PIF1的降解对光的质量和数量非常敏感。在10微摩尔·米-2·秒-1的红光下,PIF1的半衰期约为16分钟。光诱导降解后,PIF1在随后的黑暗期重新积累,这表明PIF1不仅在黑暗中以及从黄化生长向去黄化生长的转变过程中起作用,而且可能在昼夜循环中也起作用。26S蛋白酶体抑制剂增加了PIF1的稳定性,表明PIF1的降解是由泛素-26S蛋白酶体途径介导的。此外,PIF1的降解不需要从头合成蛋白质,因为环己酰亚胺的存在并不能阻止PIF1在光照下的降解。综上所述,这些结果表明phy感知的光信号诱导PIF1和其他与phy相互作用的因子降解,以优化光形态建成。

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