Zhang Lan, Léon Sébastien, Subramani Suresh
Section of Molecular Biology, Division of Biological Sciences, University of California, San Diego, La Jolla, CA 92093-0322, USA.
Mol Biol Cell. 2006 Feb;17(2):690-9. doi: 10.1091/mbc.e05-08-0758. Epub 2005 Nov 30.
Among peroxins involved in peroxisome biogenesis, only Pex8p is predominantly intraperoxisomal at steady state. Pex8p is necessary for peroxisomal matrix protein import via the PTS1 and PTS2 pathways. It is proposed to bridge two peroxisomal membrane subcomplexes comprised of the docking (Pex13p, Pex14p, Pex17p) and RING (Pex2p, Pex10p, Pex12p) peroxins and is also implicated in cargo release of PTS1 proteins in the matrix. We show that Pichia pastoris Pex8p (PpPex8p) enters the peroxisome matrix using two redundant pathways in a Pex14p-dependent, but Pex2p-independent, manner, showing that the intact importomer and RING subcomplex are not required for its import. One pathway depends on the TPR motifs in Pex5p, the C-terminal PTS1 sequence (AKL) in PpPex8p, and the intraperoxisomal presence of this peroxin. The alternative pathway uses the PTS2 receptor, Pex7p, its accessory protein, Pex20p, and a putative PTS2 motif in PpPex8p, but does not require intraperoxisomal PpPex8p. Pex20p interaction with PpPex8p is independent of Pex7p, but the interaction of PpPex8p with Pex7p requires Pex20p. These data suggest a direct interaction between PpPex8p and Pex20p. Our studies shed light on the mechanism and evolution of the dual import pathways for PpPex8p.
在参与过氧化物酶体生物发生的过氧化物酶中,只有Pex8p在稳态时主要位于过氧化物酶体内。Pex8p对于通过PTS1和PTS2途径导入过氧化物酶体基质蛋白是必需的。它被认为可连接由对接(Pex13p、Pex14p、Pex17p)和RING(Pex2p、Pex10p、Pex12p)过氧化物酶组成的两个过氧化物酶体膜亚复合体,并且还与基质中PTS1蛋白的货物释放有关。我们发现,巴斯德毕赤酵母Pex8p(PpPex8p)以Pex14p依赖但Pex2p不依赖的方式通过两条冗余途径进入过氧化物酶体基质,这表明其导入不需要完整的输入体和RING亚复合体。一条途径依赖于Pex5p中的TPR基序、PpPex8p中的C末端PTS1序列(AKL)以及该过氧化物酶在过氧化物酶体内的存在。另一条途径使用PTS2受体Pex7p、其辅助蛋白Pex20p以及PpPex8p中一个假定的PTS2基序,但不需要过氧化物酶体内的PpPex8p。Pex20p与PpPex8p的相互作用独立于Pex7p,但PpPex8p与Pex7p的相互作用需要Pex20p。这些数据表明PpPex8p与Pex20p之间存在直接相互作用。我们的研究揭示了PpPex8p双重导入途径的机制和进化。