Pan Ronghui, Satkovich John, Hu Jianping
Department of Energy Plant Research Laboratory, Michigan State University, East Lansing, MI 48824.
Department of Energy Plant Research Laboratory, Michigan State University, East Lansing, MI 48824;
Proc Natl Acad Sci U S A. 2016 Nov 15;113(46):E7307-E7316. doi: 10.1073/pnas.1613530113. Epub 2016 Oct 31.
Peroxisomes are ubiquitous eukaryotic organelles that play pivotal roles in a suite of metabolic processes and often act coordinately with other organelles, such as chloroplasts and mitochondria. Peroxisomes import proteins to the peroxisome matrix by peroxins (PEX proteins), but how the function of the PEX proteins is regulated is poorly understood. In this study, we identified the Arabidopsis RING (really interesting new gene) type E3 ubiquitin ligase SP1 [suppressor of plastid protein import locus 1 (ppi1) 1] as a peroxisome membrane protein with a regulatory role in peroxisome protein import. SP1 interacts physically with the two components of the peroxisome protein docking complex PEX13-PEX14 and the (RING)-finger peroxin PEX2. Loss of SP1 function suppresses defects of the pex14-2 and pex13-1 mutants, and SP1 is involved in the degradation of PEX13 and possibly PEX14 and all three RING peroxins. An in vivo ubiquitination assay showed that SP1 has the ability to promote PEX13 ubiquitination. Our study has revealed that, in addition to its previously reported function in chloroplast biogenesis, SP1 plays a role in peroxisome biogenesis. The same E3 ubiquitin ligase promotes the destabilization of components of two distinct protein-import machineries, indicating that degradation of organelle biogenesis factors by the ubiquitin-proteasome system may constitute an important regulatory mechanism in coordinating the biogenesis of metabolically linked organelles in eukaryotes.
过氧化物酶体是普遍存在的真核细胞器,在一系列代谢过程中发挥关键作用,并且常常与其他细胞器(如叶绿体和线粒体)协同作用。过氧化物酶体通过过氧化物酶(PEX蛋白)将蛋白质导入过氧化物酶体基质,但PEX蛋白的功能如何被调控却知之甚少。在本研究中,我们鉴定出拟南芥RING(真有趣的新基因)型E3泛素连接酶SP1 [质体蛋白输入位点1(ppi1)1的抑制子] 是一种过氧化物酶体膜蛋白,在过氧化物酶体蛋白输入中起调控作用。SP1与过氧化物酶体蛋白对接复合物PEX13 - PEX14的两个组分以及(RING)-指状过氧化物酶PEX2发生物理相互作用。SP1功能的丧失抑制了pex14 - 2和pex13 - 1突变体的缺陷,并且SP1参与PEX13以及可能还有PEX14和所有三种RING过氧化物酶的降解。体内泛素化分析表明SP1具有促进PEX13泛素化的能力。我们的研究表明,除了其先前报道的在叶绿体生物发生中的功能外,SP1在过氧化物酶体生物发生中也发挥作用。同一个E3泛素连接酶促进两种不同蛋白输入机制的组分的不稳定,这表明泛素 - 蛋白酶体系统对细胞器生物发生因子的降解可能构成真核生物中协调代谢相关细胞器生物发生的一种重要调控机制。