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首页> 外文期刊>Planta >Stable and transient expression of chimeric peroxisomal membrane proteins induces an independent 'zippering' of peroxisomes and an endoplasmic reticulum subdomain
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Stable and transient expression of chimeric peroxisomal membrane proteins induces an independent 'zippering' of peroxisomes and an endoplasmic reticulum subdomain

机译:嵌合的过氧化物酶体膜蛋白的稳定和瞬时表达诱导过氧化物酶体和内质网亚结构域的独立“拉链”

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摘要

Peroxisomal ascorbate peroxidase (APX) (EC 1.11.1.11) was shown recently to sort through a subdomain of the ER (peroxisomal endoplasmic reticulum; pER), and in certain cases, alter the distribution and/or morphology of peroxisomes and pER when overexpressed transiently in Nicotiana tabacum L. cv. Bright Yellow 2 (BY-2) cells. Our goal was to gain insight into the dynamics of peroxisomal membrane protein sorting by characterizing the structure and formation of reorganized peroxisomes and pER. Specifically, we test directly the hypothesis that the observed phenomenon is due to the oligomerization of cytosol-facing, membrane-bound polypeptides, a process referred to as membrane "zippering". Results from differential detergent permeabilization experiments confirmed that peroxisomal APX is a C-terminal "tail-anchored" (Cmatrix-Ncytosol) membrane protein with a majority of the polypeptide facing the cytosol. Transient expression of several APX chimeras whose passenger polypeptides can form dimers or trimers resulted in the progressive formation of "globular" peroxisomes and circular pER membranes. Stable expression of the trimer-capable fusion protein yielded suspension cultures that reproducibly maintained a high degree of peroxisomal globules but relatively few detectable pER membranes. Electron micrographs revealed that the globules consisted of numerous individual peroxisomes, seemingly in direct contact with other peroxisomes and/or mitochondria. These peroxisomal clusters or aggregates were not observed in cells transiently expressing monomeric versions of APX. These findings indicate that the progressive, independent "zippering" of peroxisomes and pER is due to the post-sorting oligomerization of monomeric, cytosol-facing polypeptides that are integrally inserted into the membranes of "like" organelles. The dynamics of this process are discussed, especially with respect to the involvement of the microtubule cytoskeleton.
机译:最近显示过氧化物酶体抗坏血酸过氧化物酶(APX)(EC 1.11.1.11)通过ER的一个子域(过氧化物酶体内质网; pER)进行分类,并且在某些情况下,瞬时过表达会改变过氧化物酶体和pER的分布和/或形态在烟草中。亮黄色2(BY-2)电池。我们的目标是通过表征重组的过氧化物酶体和pER的结构和形成来了解过氧化物酶体膜蛋白分选的动力学。具体而言,我们直接测试以下假设:观察到的现象是由于面向细胞溶胶的膜结合多肽的寡聚化,这一过程称为膜“拉链”。差异洗涤剂透化实验的结果证实,过氧化物酶体APX是C端“尾锚定”(Cmatrix -Ncytosol )膜蛋白,大部分多肽面向细胞质。其客运多肽可以形成二聚体或三聚体的几种APX嵌合体的瞬时表达导致“球形”过氧化物酶体和圆形pER膜的逐步形成。具有三聚体的融合蛋白的稳定表达产生了悬浮培养物,该培养物可重复地保持高度的过氧化物酶体小球,但可检测的pER膜相对较少。电子显微照片显示,小球由许多单独的过氧化物酶体组成,似乎与其他过氧化物酶体和/或线粒体直接接触。在瞬时表达APX单体形式的细胞中未观察到这些过氧化物酶体簇或聚集体。这些发现表明过氧化物酶体和pER的进行性,独立的“拉链”是由于单体地,面向细胞溶胶的多肽的分选后寡聚,所述单体整体插入“样”细胞器的膜中。讨论了该过程的动力学,特别是涉及微管细胞骨架的参与。

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