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首页> 外文期刊>Plant physiology >Unique Motifs and Length of Hairpin in Oleosin Target the Cytosolic Side of Endoplasmic Reticulum and Budding Lipid Droplet
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Unique Motifs and Length of Hairpin in Oleosin Target the Cytosolic Side of Endoplasmic Reticulum and Budding Lipid Droplet

机译:Oleosin的独特主题和发夹长度靶向内质网的细胞溶质侧和芽脂液滴

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摘要

Plant cytosolic lipid droplets (LDs) are covered with a layer of phospholipids and oleosin and were extensively studied before those in mammals and yeast. Oleosin has short amphipathic N- and C-terminal peptides flanking a conserved 72-residue hydrophobic hairpin, which penetrates and stabilizes the LD. Oleosin is synthesized on endoplasmic reticulum (ER) and extracts ER-budding LDs to cytosol. To delineate the mechanism of oleosin targeting ER-LD, we have expressed modified-oleosin genes in Physcomitrella patens for transient expression and tobacco (Nicotiana tabacum) BY2 cells for stable transformation. The results have identified oleosin motifs for targeting ER-LD and oleosin as the sole molecule responsible for budding-LD entering cytosol. Both the N- terminal and C-terminal peptides are not required for the targeting. The hairpin, including its entire length, initial N- portion residues, and hairpin-loop of three Pro and one Ser residues, as well as the absence of an N- terminal ER-targeting peptide, are necessary for oleosin targeting ER and moving onto budding LDs and extracting them to cytosol. In a reverse approach, eliminations of these necessities allow the modified oleosin to enter the ER lumen and extract budding LDs to the ER lumen. Modified oleosin with an added vacuole signal peptide transports the ER-luminal LDs to vacuoles. The overall findings define the mechanism of oleosin targeting ER-LDs and extracting budding LDs to the cytosol as well as reveal potential applications.
机译:植物细胞溶质脂液滴(LDS)覆盖有一层磷脂和油蛋白,并在哺乳动物和酵母中进行广泛研究。 oleosin具有短的两亲性N-和C-末端肽,侧翼为保守的72-残基疏水发夹,其渗透并稳定LD。在内质网(ER)上合成油蛋白,并提取ER-萌芽的LDS至Cytosol。为了描绘靶向ER-LD的油蛋白素的机制,我们在Physcomatrella中表达了用于瞬态表达和烟草(烟草塔巴氏虫)BY2细胞的改性-oleosin基因,用于稳定转化。结果鉴定了靶向ER-LD和油蛋白的油蛋白基序作为唯一的分子,其负责进入细胞溶溶胶的Budding-LD。靶向不需要N-末端和C末端肽。在靶向ER并移动到左右的油蛋白是必需的,包括其全长,初始N-部分残基和三末端肽,以及不存在N-末端ER靶向肽的发夹,以及不存在N-末端ER靶向肽。萌芽LD并将它们提取至细胞溶胶。以反向的方法,消除这些必需品允许改性的油蛋白进入ER内腔并提取芽面LD。用添加的芳氢信号肽改性的油蛋白将ER-Luminal LD​​S转化为真空。整体发现限定了甲酚靶向ER-LDS的机制,并将萌芽LDS提取到胞浆溶液中,以及揭示潜在应用。

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  • 来源
    《Plant physiology》 |2017年第4期|共13页
  • 作者单位

    Univ Calif Riverside Dept Bot &

    Plant Sci Ctr Plant Cell Biol Riverside CA 92521 USA;

    Univ Calif Riverside Dept Bot &

    Plant Sci Ctr Plant Cell Biol Riverside CA 92521 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物生理学;
  • 关键词

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