Holm M, Hardtke C S, Gaudet R, Deng X W
Department of Molecular, Cellular and Developmental Biology, Yale University, OML 354, Yale University, PO Box 20-8104, 165 Prospect Street, New Haven, CT 06520-8104, USA.
EMBO J. 2001 Jan 15;20(1-2):118-27. doi: 10.1093/emboj/20.1.118.
Arabidopsis COP1 is a photomorphogenesis repressor capable of directly interacting with the photomorphogenesis-promoting factor HY5. This interaction between HY5 and COP1 results in targeted deg radation of HY5 by the 26S proteasome. Here we characterized the WD40 repeat domain-mediated interactions of COP1 with HY5 and two new proteins. Mutational analysis of those interactive partners revealed a conserved motif responsible for the interaction with the WD40 domain. This novel motif, with the core sequence V-P-E/D-φ-G (φ = hydrophobic residue) in conjunction with an upstream stretch of 4-5 negatively charged residues, interacts with a defined surface area of the ss-propeller assembly of the COP1 WD40 repeat domain through both hydrophobic and ionic interactions. Several residues in the COP1 WD40 domain that are critical for the interaction with this motif have been revealed. The fact that point mutations either in the COP1 WD40 domain or in the HY5 motif that abolish the interaction between COP1 and HY5 in yeast result in a dramatic reduction of HY5 degradation in transgenic plants validates the biological significance of this defined interaction.
拟南芥COP1是一种光形态建成阻遏物,能够直接与促进光形态建成的因子HY5相互作用。HY5与COP1之间的这种相互作用导致HY5被26S蛋白酶体靶向降解。在此,我们对COP1与HY5以及另外两种新蛋白之间由WD40重复结构域介导的相互作用进行了表征。对这些相互作用伙伴的突变分析揭示了一个负责与WD40结构域相互作用的保守基序。这个新基序的核心序列为V-P-E/D-φ-G(φ=疏水残基),并伴有一段上游4至5个带负电荷的残基,它通过疏水和离子相互作用与COP1 WD40重复结构域的β-螺旋桨组件的特定表面积相互作用。已揭示了COP1 WD40结构域中对与该基序相互作用至关重要的几个残基。在酵母中,COP1 WD40结构域或HY5基序中的点突变会消除COP1与HY5之间的相互作用,而在转基因植物中会导致HY5降解显著减少,这一事实证实了这种特定相互作用的生物学意义。