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拟南芥隐花色素在调控蛋白质和 mRNA 表达的稳态水平中的蓝光非依赖性活性。

Blue-light-independent activity of Arabidopsis cryptochromes in the regulation of steady-state levels of protein and mRNA expression.

机构信息

Bioenergy and Biomaterial Research Center, Hunan University, Changsha 410082, China.

出版信息

Mol Plant. 2008 Jan;1(1):167-77. doi: 10.1093/mp/ssm018. Epub 2007 Nov 15.

Abstract

Cryptochromes are blue-light receptors that mediate blue-light inhibition of hypocotyl elongation and blue-light stimulation of floral initiation in Arabidopsis. In addition to their blue-light-dependent functions, cryptochromes are also involved in blue-light-independent regulation of the circadian clock, cotyledon unfolding, and hypocotyl inhibition. However, the molecular mechanism associated with the blue-light-independent function of cryptochromes remains unclear. We reported here a comparative proteomics study of the light regulation of protein expression. We showed that, as expected, the protein expression of many metabolic enzymes changed in response to both blue light and red light. Surprisingly, some light-regulated protein expression changes are impaired in the cry1cry2 mutant in both blue light and red light. This result suggests that, in addition to mediating blue-light-dependent regulation of protein expression, cryptochromes are also involved in the blue-light-independent regulation of gene expression. Consistent with this hypothesis, the cry1cry2 mutant exhibited reduced changes of mRNA expression in response to not only blue light, but also red light, although the cryptochrome effects on the red-light-dependent gene expression changes are generally less pronounced. These results support a hypothesis that, in addition to their blue-light-specific functions, cryptochromes also play roles in the control of gene expression mediated by the red/far-red-light receptor phytochromes.

摘要

隐花色素是蓝光受体,介导拟南芥中蓝光抑制下胚轴伸长和蓝光刺激花诱导。除了它们的蓝光依赖功能外,隐花色素还参与生物钟、子叶展开和下胚轴抑制的蓝光非依赖调节。然而,与隐花色素蓝光非依赖功能相关的分子机制尚不清楚。我们在这里报告了一个关于光调控蛋白表达的比较蛋白质组学研究。我们表明,正如预期的那样,许多代谢酶的蛋白表达在蓝光和红光下都发生了变化。令人惊讶的是,在 cry1cry2 突变体中,一些光调控蛋白表达的变化在蓝光和红光下都受到了损害。这一结果表明,隐花色素除了介导蓝光依赖的蛋白表达调控外,还参与蓝光非依赖的基因表达调控。与这一假设一致,cry1cry2 突变体不仅对蓝光,而且对红光的反应,mRNA 表达的变化都减少了,尽管隐花色素对红光依赖的基因表达变化的影响通常不那么明显。这些结果支持了这样一种假设,即隐花色素除了具有蓝光特异性功能外,还在红光/远红光受体光敏色素介导的基因表达调控中发挥作用。

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