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拟南芥过氧化物酶体生物发生因子16通过重叠的分子靶向信号,经内质网和一个中间区室运输到预先存在的过氧化物酶体。

Arabidopsis peroxin 16 trafficks through the ER and an intermediate compartment to pre-existing peroxisomes via overlapping molecular targeting signals.

作者信息

Karnik Sheetal K, Trelease Richard N

机构信息

Arizona State University, School of Life Sciences, PO Box 874501, Tempe, AZ 85287-4501, USA.

出版信息

J Exp Bot. 2007;58(7):1677-93. doi: 10.1093/jxb/erm018. Epub 2007 Apr 12.

Abstract

Previously it has been shown that the endogenous Arabidopsis peroxin, AtPEX16, coexisted at steady state in membranes of the endoplasmic reticulum (ER) and peroxisomes. Herein, an ER-to-peroxisome trafficking pathway and the requisite molecular targeting signals for mycAtPEX16 transiently expressed in Arabidopsis and tobacco BY-2 suspension cells are described. Immunofluorescent mycAtPEX16 was observed initially in the cytosol (<2 h) and subsequently (2-4 h) in perinuclear/reticular ER and non-Golgi/non-peroxisome structures termed the ER-peroxisome intermediate compartment. After 4 h, all catalase- and ascorbate peroxidase-containing peroxisomes also possessed mycAtPEX16, indicative of mycAtPEX16 sorting to pre-existing peroxisomes. Incubations of bombarded cells at 15 degrees C, or in brefeldin A at 25 degrees C, resulted in accumulations of mycAtPEX16 within the ER. Following re-equilibration of cold-treated cells at 25 degrees C, or removal of brefeldin A, mycAtPEX16 was observed mainly in the ER-peroxisome intermediate compartment, and later within all of the peroxisomes in both species. Two internal membrane helices and the intervening sequence including the amino acid residues -VRS- were found necessary and sufficient for targeting AtPEX16 first to the ER and then to peroxisomes. Individual targeting signals for these organelles were indistinguishable, indicative of overlapping signal(s). In summary, the trafficking study of AtPEX16 revealed a dynamic link between the ER and pre-existing peroxisomes, which provided novel data in support of an upgraded semi-autonomous peroxisome model portraying participation of the ER in the sorting of certain peroxisome membrane proteins, such as AtPEX16, through an intermediate compartment to pre-existing plant peroxisomes.

摘要

先前的研究表明,拟南芥内源性过氧化物酶体生物发生因子AtPEX16在稳态下共存于内质网(ER)和过氧化物酶体的膜中。在此,描述了在拟南芥和烟草BY-2悬浮细胞中瞬时表达的mycAtPEX16从内质网到过氧化物酶体的转运途径以及所需的分子靶向信号。免疫荧光观察到mycAtPEX16最初存在于细胞质中(<2小时),随后(2-4小时)存在于核周/网状内质网以及称为内质网-过氧化物酶体中间区室的非高尔基体/非过氧化物酶体结构中。4小时后,所有含有过氧化氢酶和抗坏血酸过氧化物酶的过氧化物酶体也都含有mycAtPEX16,这表明mycAtPEX16被分选到预先存在的过氧化物酶体中。在15℃下轰击细胞,或在25℃下用布雷菲德菌素A处理,会导致mycAtPEX16在内质网中积累。在25℃下对冷处理的细胞进行再平衡,或去除布雷菲德菌素A后,在两个物种中,mycAtPEX16主要出现在内质网-过氧化物酶体中间区室中,随后出现在所有过氧化物酶体中。发现两个内膜螺旋以及包括氨基酸残基-VRS-的中间序列对于将AtPEX16首先靶向内质网然后靶向过氧化物酶体是必要且充分的。这些细胞器的单个靶向信号无法区分,表明存在重叠信号。总之,AtPEX16的转运研究揭示了内质网与预先存在的过氧化物酶体之间的动态联系,这为升级后的半自主过氧化物酶体模型提供了新的数据支持,该模型描述了内质网通过中间区室参与某些过氧化物酶体膜蛋白(如AtPEX16)分选到预先存在的植物过氧化物酶体的过程。

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