MSU-DOE Plant Research Laboratory, Michigan State University, East Lansing, Michigan 48824, USA.
J Integr Plant Biol. 2013 Jan;55(1):108-20. doi: 10.1111/jipb.12014.
Peroxisomes are essential eukaryotic organelles that mediate various metabolic processes. Peroxisome import depends on a group of peroxisome biogenesis factors called peroxins, many of which are evolutionarily conserved. PEX2, PEX10, and PEX12 are three RING-finger-domain-containing integral membrane peroxins crucial for protein import. In yeast (Saccharomyces cerevisae), RING peroxins act as E3 ligases, facilitating the recycling of the peroxisome import receptor protein PEX5 through ubiquitination. In plants, RING peroxins are essential to plant vitality. To elucidate the mode of action of the plant RING peroxins, we employed in vitro assays to show that the Arabidopsis RING peroxins also have E3 ligase activities. We also identified a PEX2-interacting protein, DSK2b, which is a member of the ubiquitin receptor family known to function as shuttle factors ferrying polyubiquitinated substrates to the proteasome for degradation. DSK2b and its tandem duplicate DSK2a are localized in the cytosol and the nucleus, and both interact with the RING domain of PEX2 and PEX12. DSK2 artificial microRNA lines did not display obvious defects in plant growth or peroxisomal processes, indicating functional redundancies among Arabidopsis ubiquitin receptor proteins. Our results suggest that Arabidopsis RING peroxins can function as E3 ligases and act together with the ubiquitin receptor protein DSK2 in the peroxisomal membrane-associated protein degradation system.
过氧化物酶体是真核生物中必不可少的细胞器,参与多种代谢过程。过氧化物酶体的输入依赖于一组称为过氧化物酶体生物发生因子的蛋白质,其中许多因子在进化上是保守的。PEX2、PEX10 和 PEX12 是三种含 RING 指结构域的整合膜过氧化物酶体蛋白,对于蛋白质输入至关重要。在酵母(Saccharomyces cerevisiae)中,RING 过氧化物酶体作为 E3 连接酶,通过泛素化促进过氧化物酶体输入受体蛋白 PEX5 的循环利用。在植物中,RING 过氧化物酶体对于植物活力至关重要。为了阐明植物 RING 过氧化物酶体的作用模式,我们采用体外测定法表明,拟南芥 RING 过氧化物酶体也具有 E3 连接酶活性。我们还鉴定了一个 PEX2 相互作用蛋白 DSK2b,它是泛素受体家族的成员,已知作为穿梭因子,将多泛素化的底物运送到蛋白酶体进行降解。DSK2b 和其串联重复体 DSK2a 定位于细胞质和细胞核中,并且都与 PEX2 和 PEX12 的 RING 结构域相互作用。DSK2 人工 microRNA 系在植物生长或过氧化物酶体过程中没有明显缺陷,表明拟南芥泛素受体蛋白存在功能冗余。我们的结果表明,拟南芥 RING 过氧化物酶体可以作为 E3 连接酶,与泛素受体蛋白 DSK2 一起在过氧化物酶体膜相关蛋白降解系统中发挥作用。