Molecular Cell Biology, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, Haren, The Netherlands.
FEBS J. 2010 Aug;277(15):3203-18. doi: 10.1111/j.1742-4658.2010.07726.x. Epub 2010 Jun 28.
By genome analysis, we previously identified Pex14/17p as a putative novel peroxin of Penicillium chrysogenum. Here, we show that Pex14/17p is a component of the peroxisomal membrane that is essential for efficient peroxisomal targeting signal 1 and peroxisomal targeting signal 2 matrix protein import, implying that the protein is indeed a genuine peroxin. Additionally, a PEX14/17 deletion strain is affected in conidiospore formation. Pex14/17p has properties of both Pex14p and Pex17p, in that the N-terminus of this protein is similar to the highly conserved Pex5p-binding region present in the N-termini of Pex14p proteins, whereas its C-terminus shows weak similarity to yeast Pex17p proteins. We have identified a novel motif in both Pex17p and Pex14/17p that is absent in Pex14p. We show that an N-terminally truncated, but not a C-terminally truncated, Pex14/17p is able to complement both the matrix protein import and sporulation defects of a Delta pex14/17 strain, implying that it is the Pex17p-related portion of the protein that is crucial for its function as a peroxin. Possibly, this compensates for the fact that P. chrysogenum lacks an authenthic Pex17p. We also show that, in P. chrysogenum, Pex14/17p plays a role in making the penicillin biosynthesis process more efficient.
通过基因组分析,我们先前鉴定出 Pex14/17p 是一种潜在的新型青霉素菌属毕赤酵母过氧化物酶体蛋白。在这里,我们表明 Pex14/17p 是过氧化物酶体膜的一个组成部分,对于有效的过氧化物酶体靶向信号 1 和过氧化物酶体靶向信号 2 基质蛋白导入是必不可少的,这意味着该蛋白确实是一种真正的过氧化物酶体蛋白。此外,pex14/17 缺失株在分生孢子形成中受到影响。pex14/17p 具有 pex14p 和 pex17p 的特性,因为该蛋白的 N 端类似于存在于 pex14p 蛋白的 N 端的高度保守的 pex5p 结合区域,而其 C 端与酵母 pex17p 蛋白显示出微弱的相似性。我们在 pex17p 和 pex14/17p 中都鉴定出了一个新的基序,该基序在 pex14p 中不存在。我们表明,截短的 N 端,但不是截短的 C 端,pex14/17p 能够补充基质蛋白导入和Δpex14/17 株的孢子形成缺陷,这意味着该蛋白的 pex17p 相关部分对于其作为过氧化物酶体的功能至关重要。可能是因为青霉素菌属毕赤酵母缺乏真正的 pex17p。我们还表明,在青霉素菌属毕赤酵母中,pex14/17p 在提高青霉素生物合成过程的效率方面发挥作用。