Kragt Astrid, Voorn-Brouwer Tineke, van den Berg Marlene, Distel Ben
Department of Medical Biochemistry, Academic Medical Center, Meibergdreef 15, 1105 AZ Amsterdam, The Netherlands.
J Biol Chem. 2005 Oct 7;280(40):34350-7. doi: 10.1074/jbc.M505432200. Epub 2005 Aug 12.
Recent studies on the sorting of peroxisomal membrane proteins challenge the long-standing model in which peroxisomes are considered to be autonomous organelles that multiply by growth and division. Here, we present data lending support to the idea that the endoplasmic reticulum (ER) is involved in sorting of the peroxisomal membrane protein Pex3p, a protein required early in peroxisome biogenesis. First, we show that the introduction of an artificial glycosylation site into the N terminus of Pex3p leads to partial N-linked core glycosylation, indicative of insertion into the ER membrane. Second, when FLAG-tagged Pex3p is equipped with an ER targeting signal, it can restore peroxisome formation in pex3Delta cells. Importantly, FLAG antibodies that specifically recognize the processed Pex3p show that the signal peptide of the fusion protein is efficiently cleaved off and that the processed protein localizes to peroxisomes. In contrast, a Pex3p construct in which cleavage of the signal peptide is blocked by a mutation localizes to the ER and the cytosol and cannot complement pex3Delta cells. Together, these results strongly suggest that ER-targeted Pex3p indeed routes via the ER to peroxisomes, and we hypothesize that this pathway is also used by endogenous Pex3p.
近期关于过氧化物酶体膜蛋白分选的研究对长期以来的模型提出了挑战,该模型认为过氧化物酶体是通过生长和分裂进行增殖的自主细胞器。在此,我们提供的数据支持了内质网(ER)参与过氧化物酶体膜蛋白Pex3p分选的观点,Pex3p是过氧化物酶体生物发生早期所需的一种蛋白。首先,我们表明在Pex3p的N端引入一个人工糖基化位点会导致部分N - 连接核心糖基化,这表明其插入到了内质网膜中。其次,当带有FLAG标签的Pex3p配备内质网靶向信号时,它可以在pex3Δ细胞中恢复过氧化物酶体的形成。重要的是,特异性识别加工后的Pex3p的FLAG抗体表明融合蛋白的信号肽被有效切割,并且加工后的蛋白定位于过氧化物酶体。相比之下,信号肽切割因突变而受阻的Pex3p构建体定位于内质网和细胞质中,并且不能互补pex3Δ细胞。总之,这些结果强烈表明内质网靶向的Pex3p确实通过内质网转运至过氧化物酶体,并且我们推测内源性Pex3p也使用这条途径。