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[橡胶树]胶乳中小橡胶粒子蛋白的相互作用网络在应激反应和次生代谢中显示出多种功能。 (注:原文中“of”后面缺少具体内容,这里补充了“橡胶树”使句子更完整,可根据实际情况调整)

The interaction networks of small rubber particle proteins in the latex of reveal diverse functions in stress responses and secondary metabolism.

作者信息

Wolters Silva Melissa, Laibach Natalie, Riekötter Jenny, Roelfs Kai-Uwe, Müller Boje, Eirich Jürgen, Twyman Richard M, Finkemeier Iris, Prüfer Dirk, Schulze Gronover Christian

机构信息

Fraunhofer Institute for Molecular Biology and Applied Ecology IME, Münster, Germany.

Institute of Plant Biology and Biotechnology, University of Münster, Münster, Germany.

出版信息

Front Plant Sci. 2024 Dec 13;15:1498737. doi: 10.3389/fpls.2024.1498737. eCollection 2024.

Abstract

The Russian dandelion () is a promising source of natural rubber (NR). The synthesis of NR takes place on the surface of organelles known as rubber particles, which are found in latex - the cytoplasm of specialized cells known as laticifers. As well as the enzymes directly responsible for NR synthesis, the rubber particles also contain small rubber particle proteins (SRPPs), the most abundant of which are SRPP3, 4 and 5. These three proteins support NR synthesis by maintaining rubber particle stability. We used homology-based searches to identify the whole gene family and qPCR to create their spatial expression profiles. Affinity enrichment-mass spectrometry was applied to identify TkSRPP3/4/5 protein interaction partners in latex and selected interaction partners were analyzed using qPCR, confocal laser scanning microscopy and heterologous expression in yeast. We identified 17 SRPP-like sequences in the genome, including three apparent pseudogenes, 10 paralogs arranged as an inverted repeat in a cluster with , and one separate gene (). Their sequence diversity and different expression profiles indicated distinct functions and the latex interactomes obtained for TkSRPP3/4/5 suggested that TkSRPP4 is a promiscuous hub protein that binds many partners from different compartments, whereas TkSRPP3 and 5 have more focused interactomes. Two interactors shared by TkSRPP3/4/5 (TkSRPP6 and TkUGT80B1) were chosen for independent validation and detailed characterization. TkUGT80B1 triterpenoid glycosylating activity provided first evidence for triterpenoid saponin synthesis in latex. Based on its identified interaction partners, TkSRPP4 appears to play a special role in the endoplasmic reticulum, interacting with lipidmodifying enzymes that may facilitate rubber particle formation. TkSRPP5 appears to be involved in GTPase-dependent signaling and TkSRPP3 may act as part of a kinase signaling cascade, with roles in stress tolerance. TkSRPP interaction with TkUGT80B1 draws a new connection between TkSRPPs and triterpenoid saponin synthesis in latex. Our data contribute to the functional differentiation between TkSRPP paralogs and demonstrate unexpected interactions that will help to further elucidate the network of proteins linking TkSRPPs, stress responses and NR biosynthesis within the cellular complexity of latex.

摘要

俄罗斯蒲公英是天然橡胶(NR)的一个有前景的来源。天然橡胶的合成发生在称为橡胶粒子的细胞器表面,橡胶粒子存在于乳胶中,乳胶是一种称为乳管的特化细胞的细胞质。除了直接负责天然橡胶合成的酶外,橡胶粒子还含有小橡胶粒子蛋白(SRPPs),其中最丰富的是SRPP3、4和5。这三种蛋白质通过维持橡胶粒子的稳定性来支持天然橡胶的合成。我们利用基于同源性的搜索来鉴定整个基因家族,并通过定量聚合酶链反应(qPCR)来创建它们的空间表达谱。应用亲和富集质谱法来鉴定俄罗斯蒲公英乳胶中TkSRPP3/4/5蛋白的相互作用伙伴,并使用qPCR、共聚焦激光扫描显微镜和酵母中的异源表达对选定的相互作用伙伴进行分析。我们在俄罗斯蒲公英基因组中鉴定出17个类SRPP序列,包括三个明显的假基因、10个旁系同源基因,它们与TkPPO1以反向重复的形式排列在一个簇中,还有一个单独的基因(TkSRPP1)。它们的序列多样性和不同的表达谱表明其功能不同,并且通过TkSRPP3/4/5获得的乳胶互作组表明,TkSRPP4是一种混杂的中心蛋白,它与来自不同区室的许多伙伴结合,而TkSRPP3和5具有更集中的互作组。选择TkSRPP3/4/5共有的两个相互作用蛋白(TkSRPP6和TkUGT80B1)进行独立验证和详细表征。TkUGT80B1的三萜糖基化活性为俄罗斯蒲公英乳胶中三萜皂苷的合成提供了首个证据。基于其鉴定出的相互作用伙伴,TkSRPP4似乎在内质网中发挥特殊作用,与可能促进橡胶粒子形成的脂质修饰酶相互作用。TkSRPP5似乎参与了GTP酶依赖性信号传导,而TkSRPP3可能作为激酶信号级联的一部分发挥作用,在胁迫耐受性方面发挥作用。TkSRPP与TkUGT80B1的相互作用在TkSRPPs与俄罗斯蒲公英乳胶中三萜皂苷合成之间建立了新的联系。我们的数据有助于TkSRPP旁系同源基因之间的功能分化,并证明了意想不到的相互作用,这将有助于进一步阐明在乳胶细胞复杂性中连接TkSRPPs、胁迫反应和天然橡胶生物合成的蛋白质网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1834/11671276/d7073bbac55a/fpls-15-1498737-g001.jpg

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