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首页> 外文期刊>The Plant Cell >ARC3 Activation by PARC6 Promotes FtsZ-Ring Remodeling at the Chloroplast Division Site
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ARC3 Activation by PARC6 Promotes FtsZ-Ring Remodeling at the Chloroplast Division Site

机译:Parc6的Arc3激活促进叶绿体分部部位的FtSZ环重塑

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摘要

Chloroplast division is initiated by assembly of the stromal Z ring, composed of cytoskeletal Filamenting temperature-sensitive Z (FtsZ) proteins. Midplastid Z-ring positioning is governed by the chloroplast Min (Minicell) system, which inhibits Z-ring assembly everywhere except the division site. The central Min-system player is the FtsZ-assembly inhibitor ACCUMULATION AND REPLICATION OF CHLOROPLASTS3 (ARC3). Here, we report Arabidopsis (Arabidopsis thaliana) chloroplasts contain two pools of ARC3: one distributed throughout the stroma, which presumably fully inhibits Z-ring assembly at nondivision sites, and the other localized to a midplastid ring-like structure. We show that ARC3 is recruited to the middle of the plastid by the inner envelope membrane protein PARALOG OF ARC6 (PARC6). ARC3 bears a C-terminal Membrane Occupation and Recognition Nexus (MORN) domain; previous yeast two-hybrid experiments with full-length and MORN-truncated ARC3 showed the MORN domain mediates ARC3-PARC6 interaction but prevents ARC3-FtsZ interaction. Using yeast three-hybrid experiments, we demonstrate that the MORN-dependent ARC3-PARC6 interaction enables full-length ARC3 to bind FtsZ. The resulting PARC6/ARC3/FtsZ complex enhances the dynamics of Z rings reconstituted in a heterologous system. Our findings lead to a model whereby activation of midplastid-localized ARC3 by PARC6 facilitates Z-ring remodeling during chloroplast division by promoting Z-ring dynamics and reveal a novel function for MORN domains in regulating protein-protein interactions.
机译:通过组装基质Z环,由细胞骨架细丝温度敏感Z(FTSZ)蛋白组成来引发叶绿体分割。中增塑锌定位由叶绿体MIN(MINICELL)系统来控制,该系统抑制除分割部位以外的Z环组件。中央最小系统播放器是FTSZ组装抑制剂积聚和复制叶绿体3(ARC3)。在这里,我们向拟南芥(拟南芥)递质含有两种散射池:分布在整个基质中的两个池,这可能会完全抑制在非抗性位点的z环组件,而另一个局部地抑制z环组件,而另一个局部地抑制到多塑料环状结构的另一个。我们表明ARC6(PARC6)的内包络膜蛋白窥视蛋白招募到塑料中间的弧形。 Arc3承受C型末端膜占用和识别Nexus(MORNY)域;以前的酵母双混合实验具有全长和早晨的ARC3,显示了早晨的域介导ARC3-PARC6相互作用,但防止ARC3-FTSZ相互作用。使用酵母三杂交实验,我们证明了早晨的ARC3-PARC6交互使全长ARC3能够结合FTSZ。由此产生的PARC6 / ARC3 / FTSZ复合体增强了在异源系统中重构的Z环的动态。我们的发现导致模型,由此通过Parc6激活中成塑性局部化的ARC3通过促进Z形圈动态,揭示用于调节蛋白质 - 蛋白质相互作用的新型功能。

著录项

  • 来源
    《The Plant Cell》 |2019年第4期|共24页
  • 作者单位

    Michigan State Univ Dept Plant Biol E Lansing MI 48824 USA;

    Michigan State Univ Dept Plant Biol E Lansing MI 48824 USA;

    Michigan State Univ Dept Plant Biol E Lansing MI 48824 USA;

    Michigan State Univ Dept Plant Biol E Lansing MI 48824 USA;

    Michigan State Univ Dept Plant Biol E Lansing MI 48824 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物细胞学;
  • 关键词

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