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Arabidopsis CURVATURE THYLAKOID1 Proteins Modify Thylakoid Architecture by Inducing Membrane Curvature

机译:Arabidopsis曲率紫花形1蛋白通过诱导膜曲率来改变囊突结构

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摘要

Chloroplasts of land plants characteristically contain grana, cylindrical stacks of thylakoid membranes. A granum consists of a core of appressed membranes, two stroma-exposed end membranes, and margins, which connect pairs of grana membranes at their lumenal sides. Multiple forces contribute to grana stacking, but it is not known how the extreme curvature at margins is generated and maintained. We report the identification of the CURVATURE THYLAKOID1 (CURT1) protein family, conserved in plants and cyanobacteria. The four Arabidopsis thaliana CURT1 proteins (CURT1A, B, C, and D) oligomerize and are highly enriched at grana margins. Grana architecture is correlated with the CURT1 protein level, ranging from flat lobe-like thylakoids with considerably fewer grana margins in plants without CURT1 proteins to an increased number of membrane layers (and margins) in grana at the expense of grana diameter in overexpressors of CURT1A. The endogenous CURT1 protein in the cyanobacterium Synechocystis sp PCC6803 can be partially replaced by its Arabidopsis counterpart, indicating that the function of CURT1 proteins is evolutionary conserved. In vitro, Arabidopsis CURT1A proteins oligomerize and induce tubulation of liposomes, implying that CURT1 proteins suffice to induce membrane curvature. We therefore propose that CURT1 proteins modify thylakoid architecture by inducing membrane curvature at grana margins.
机译:陆地植物的叶绿体通常含有基粒,即圆柱形的类囊体膜。颗粒由一个核心的贴壁膜、两个暴露于基质的端膜和边缘组成,边缘连接两对位于管腔侧的颗粒膜。多种力有助于谷粒堆积,但不知道边缘的极端曲率是如何产生和维持的。我们报告了在植物和蓝藻中保守的类囊体1(CURT1)蛋白家族的鉴定。四种拟南芥CURT1蛋白(CURT1A、B、C和D)齐聚并在基粒边缘高度富集。基粒结构与CURT1蛋白水平相关,从没有CURT1蛋白的植物中基粒边缘明显较少的扁平叶状类囊体到CURT1A过表达的以基粒直径为代价的基粒中膜层(和边缘)数量增加。聚囊藻PCC6803中的内源性CURT1蛋白可以被其拟南芥对应物部分取代,表明CURT1蛋白的功能在进化上是保守的。在体外,拟南芥CURT1A蛋白寡聚并诱导脂质体的微管化,这意味着CURT1蛋白足以诱导膜弯曲。因此,我们提出CURT1蛋白通过诱导基粒边缘的膜弯曲来修饰类囊体结构。

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  • 来源
    《The Plant Cell》 |2013年第7期|共18页
  • 作者单位

    Univ Munich Dept Biol 1 D-81252 Planegg Martinsried Germany;

    Univ Munich Dept Biol 1 D-81252 Planegg Martinsried Germany;

    Univ Munich Dept Biol 1 D-81252 Planegg Martinsried Germany;

    Univ Munich Dept Biol 1 D-81252 Planegg Martinsried Germany;

    Univ Munich Dept Biol 1 D-81252 Planegg Martinsried Germany;

    Univ Munich Dept Biol 1 D-81252 Planegg Martinsried Germany;

    Univ Munich Dept Biol 1 D-81252 Planegg Martinsried Germany;

    Univ Munich Dept Biol 1 D-81252 Planegg Martinsried Germany;

    Univ Copenhagen Villum Kann Rasmussen Res Ctr Proact Plants Dept Plant Biol &

    Biotechnol Fac Life Sci DK-1871 Frederiksberg C Denmark;

    Unite Mixte Rech Ctr Natl Rech Sci 7141 Inst Biol Physicochim F-75005 Paris France;

    Unite Mixte Rech Ctr Natl Rech Sci 7141 Inst Biol Physicochim F-75005 Paris France;

    Univ Bonn Inst Mol Physiol &

    Biotechnol Pflanzen D-53115 Bonn Germany;

    Univ Munich Dept Biol 1 D-81252 Planegg Martinsried Germany;

    Univ Munich Dept Biol 1 D-81252 Planegg Martinsried Germany;

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