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The Arabidopsis COP9 Signalosome Subunit 7 Is a Model PCI Domain Protein with Subdomains Involved in COP9 Signalosome Assembly[W]

机译:拟南芥COP9信号体亚基7是一种PCI模式域蛋白,其子域参与COP9信号体装配[W]

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摘要

The COP9 Signalosome (CSN) is a multiprotein complex that was originally identified in Arabidopsis thaliana as a negative regulator of photomorphogenesis and subsequently shown to be a general eukaryotic regulator of developmental signaling. The CSN plays various roles, but it has been most often implicated in regulating protein degradation pathways. Six of eight CSN subunits bear a sequence motif called PCI. Here, we report studies of subunit 7 (CSN7) from Arabidopsis, which contains such a motif. Our in vitro and structural results, based on 1.5 Å crystallographic data, enable a definition of a PCI domain, built from helical bundle and winged helix subdomains. Using functional binding assays, we demonstrate that the PCI domain (residues 1 to 169) interacts with two other PCI proteins, CSN8 and CSN1. CSN7 interactions with CSN8 use both PCI subdomains. Furthermore, we show that a C-terminal tail outside of this PCI domain is responsible for association with the non-PCI subunit, CSN6. In vivo studies of transgenic plants revealed that the overexpressed CSN7 PCI domain does not assemble into the CSN, nor can it complement a null mutation of CSN7. However, a CSN7 clone that contains the PCI domain plus part of the CSN6 binding domain can complement the null mutation in terms of seedling viability and photomorphogenesis. These transgenic plants, though, are defective in adult growth, suggesting that the CSN7 C-terminal tail plays additional functional roles. Together, the findings have implications for CSN assembly and function, highlighting necessary interactions between subunits.
机译:COP9信号体(CSN)是一种多蛋白复合物,最初在拟南芥中被鉴定为光形态发生的负调节剂,随后被证明是发育信号的一般真核调节剂。 CSN发挥着各种作用,但最常涉及调节蛋白质降解途径。八个CSN亚基中的六个具有称为PCI的序列基序。在这里,我们报告了来自拟南芥的7号亚基(CSN7)的研究,该亚基含有这种基序。我们基于1.5Å晶体学数据的体外和结构结果可确定由螺旋束和有翼螺旋子域构建的PCI域。使用功能结合试验,我们证明了PCI域(残基1至169)与其他两个PCI蛋白CSN8和CSN1相互作用。 CSN7与CSN8的交互使用两个PCI子域。此外,我们显示此PCI域之外的C末端尾部负责与非PCI亚基CSN6关联。对转基因植物的体内研究表明,过表达的CSN7 PCI域无法组装到CSN中,也不能补充CSN7的无效突变。但是,包含PCI结构域和部分CSN6结合结构域的CSN7克隆可以在幼苗活力和光形态发生方面补充无效突变。但是,这些转基因植物在成年生长中存在缺陷,这表明CSN7 C末端尾巴还具有其他功能。总之,这些发现对CSN的组装和功能具有重要意义,强调了亚基之间的必要相互作用。

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