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修饰后的光敏色素A蛋白的生物活性和二聚化状态。

Biological activity and dimerization state of modified phytochrome A proteins.

作者信息

Liu Peng, Sharrock Robert A

机构信息

Department of Plant Sciences and Plant Pathology, Montana State University, Bozeman, Montana, United States of America.

出版信息

PLoS One. 2017 Oct 19;12(10):e0186468. doi: 10.1371/journal.pone.0186468. eCollection 2017.

Abstract

To assess potential physical interactions of type I phyA with the type II phyB-phyE phytochromes in vivo, transgenes expressing fusion gene forms of phyA were introduced into the Arabidopsis phyA mutant background. When a single c-Myc (myc) epitope is added to either the N- or C-terminus of phyA, the constructs completely complement phyA mutant phenotypes. However, addition of larger tags, such as six consecutive myc epitopes or the yellow fluorescent protein sequence, result in fusion proteins that show reduced activity. All the tagged phyA proteins migrate as dimers on native gels and co-immunoprecipitation reveals no binding interaction of phyA to any of the type II phys in the dark or under continuous far-red light. Dimers of the phyA 1-615 amino acid N-terminal photosensory domain (NphyA), generated in vivo with a yeast GAL4 dimerization domain and attached to a constitutive nuclear localization sequence, are expressed at a low level and, although they cause a cop phenotype in darkness and mediate a very low fluence response to pulses of FR, have no activity under continuous FR. It is concluded that type I phyA in its Pr form is present in plants predominantly or exclusively as a homodimer and does not stably interact with type II phys in a dimer-to-dimer manner. In addition, its activity in mediating response to continuous FR is sensitive to modification of its N- or C-terminus.

摘要

为了在体内评估I型phyA与II型phyB - phyE光敏色素之间潜在的物理相互作用,将表达phyA融合基因形式的转基因导入拟南芥phyA突变体背景中。当在phyA的N端或C端添加单个c-Myc(myc)表位时,构建体完全互补phyA突变体表型。然而,添加更大的标签,如六个连续的myc表位或黄色荧光蛋白序列,会导致融合蛋白活性降低。所有带标签的phyA蛋白在天然凝胶上以二聚体形式迁移,共免疫沉淀显示在黑暗或连续远红光下,phyA与任何II型光敏色素均无结合相互作用。phyA 1 - 615个氨基酸的N端光感受域(NphyA)的二聚体,在体内与酵母GAL4二聚化结构域产生并连接到组成型核定位序列,表达水平较低,并且尽管它们在黑暗中导致cop表型并介导对FR脉冲的极低光通量反应,但在连续FR下没有活性。得出的结论是,处于Pr形式的I型phyA在植物中主要或仅以同二聚体形式存在,并且不以二聚体对二聚体的方式与II型光敏色素稳定相互作用。此外,其介导对连续FR反应的活性对其N端或C端的修饰敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c949/5648194/423e55b5406b/pone.0186468.g001.jpg

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