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蒺藜苜蓿模块化结节蛋白MtNOD25的信号肽作为一种地址标签,用于将蛋白质特异性靶向到固氮共生体。

The signal peptide of the Medicago truncatula modular nodulin MtNOD25 operates as an address label for the specific targeting of proteins to nitrogen-fixing symbiosomes.

作者信息

Hohnjec Natalija, Lenz Frauke, Fehlberg Vera, Vieweg Martin F, Baier Markus C, Hause Bettina, Küster Helge

机构信息

Institute for Genome Research and Systems Biology (IGS), Bielefeld University, Bielefeld, Germany.

出版信息

Mol Plant Microbe Interact. 2009 Jan;22(1):63-72. doi: 10.1094/MPMI-22-1-0063.

Abstract

The nodule-specific MtNOD25 gene of the model legume Medicago truncatula encodes a modular nodulin composed of different repetitive modules flanked by distinct N- and C-termini. Although similarities are low with respect to all repetitive modules, both the N-terminal signal peptide (SP) and the C-terminus are highly conserved in modular nodulins from different legumes. On the cellular level, MtNOD25 is only transcribed in the infected cells of root nodules, and this activation is mediated by a 299-bp minimal promoter containing an organ-specific element. By expressing mGFP6 translational fusions in transgenic nodules, we show that MtNOD25 proteins are exclusively translocated to the symbiosomes of infected cells. This specific targeting only requires an N-terminal MtNOD25 SP that is highly conserved across a family of legume-specific symbiosome proteins. Our finding sheds light on one possible mechanism for the delivery of host proteins to the symbiosomes of infected root nodule cells and, in addition, defines a short molecular address label of only 24 amino acids whose N-terminal presence is sufficient to translocate proteins across the peribacteroid membrane.

摘要

模式豆科植物蒺藜苜蓿的结节特异性MtNOD25基因编码一种模块化结节蛋白,该蛋白由不同的重复模块组成,两侧分别为独特的N端和C端。尽管所有重复模块的相似性较低,但N端信号肽(SP)和C端在不同豆科植物的模块化结节蛋白中高度保守。在细胞水平上,MtNOD25仅在根瘤的感染细胞中转录,这种激活由一个包含器官特异性元件的299 bp最小启动子介导。通过在转基因结节中表达mGFP6翻译融合蛋白,我们表明MtNOD25蛋白仅转运到感染细胞的共生体中。这种特异性靶向仅需要N端的MtNOD25 SP,它在豆科植物特异性共生体蛋白家族中高度保守。我们的发现揭示了宿主蛋白输送到感染根瘤细胞共生体的一种可能机制,此外,还定义了一个仅24个氨基酸的短分子地址标签,其N端的存在足以使蛋白质穿过类菌体膜。

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