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光敏色素B定位到核小体的要求的表征

Characterization of the requirements for localization of phytochrome B to nuclear bodies.

作者信息

Chen Meng, Schwab Rebecca, Chory Joanne

机构信息

Plant Biology Laboratory, The Salk Institute for Biological Studies, La Jolla, CA 92037, USA.

出版信息

Proc Natl Acad Sci U S A. 2003 Nov 25;100(24):14493-8. doi: 10.1073/pnas.1935989100. Epub 2003 Nov 11.

Abstract

Phytochromes are red- and far-red-sensing photoreceptors that detect the quantity, quality, and duration of light throughout the entire life cycle of plants. Phytochromes accumulate in the cytoplasm in the dark. As one of the earliest responses after light illumination, phytochromes localize to the nucleus where they become associated with discrete nuclear bodies (NBs). Here, we describe the steady-state dynamics of Arabidopsis phytochrome B (phyB) localization in response to different light conditions and define four phyB subnuclear localization patterns: diffuse nuclear localization, small and numerous NBs only, both small and large NBs, and large NBs only. We show that phyB nuclear import is not sufficient for phyB NB formation. Rather, phyB accumulation in NBs is mainly determined by the percentage of the total amount of phyB protein that is in the active phyB conformer, with large NBs always correlating with strong phyB responses. A genetic screen to identify determinants required for subnuclear localization of phyB resulted in several phyB mutants, mutants deficient in phytochrome chromophore biosynthesis, and mutations in at least one previously uninvestigated locus. This study lays the groundwork for future investigations to identify the molecular mechanisms of light-regulated partitioning of plant photoreceptors to discrete subnuclear domains.

摘要

光敏色素是感受红光和远红光的光感受器,可在植物的整个生命周期中检测光的数量、质量和持续时间。光敏色素在黑暗中积累于细胞质中。作为光照后的早期反应之一,光敏色素定位于细胞核,在那里它们与离散的核体(NBs)相关联。在这里,我们描述了拟南芥光敏色素B(phyB)在不同光照条件下定位的稳态动力学,并定义了四种phyB亚核定位模式:弥散性核定位、仅小而多的核体、小核体和大核体均有、仅大核体。我们表明,phyB的核输入不足以形成phyB核体。相反,phyB在核体中的积累主要由处于活性phyB构象的phyB蛋白总量的百分比决定,大核体总是与强烈的phyB反应相关。一项旨在鉴定phyB亚核定位所需决定因素的遗传筛选,产生了几个phyB突变体、缺乏光敏色素生色团生物合成的突变体,以及至少一个先前未研究位点的突变。这项研究为未来确定植物光感受器在离散亚核区域的光调节分配分子机制的研究奠定了基础。

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