Serino Giovanna, Su Hongwen, Peng Zhaohua, Tsuge Tomohiko, Wei Ning, Gu Hongya, Deng Xing Wang
Department of Molecular, Cellular, and Developmental Biology, Yale University, New Haven, Connecticut 06520-8104, USA.
Plant Cell. 2003 Mar;15(3):719-31. doi: 10.1105/tpc.009092.
The COP9 signalosome (CSN) is an evolutionarily conserved protein complex that resembles the lid subcomplex of proteasomes. Through its ability to regulate specific proteasome-mediated protein degradation events, CSN controls multiple aspects of development. Here, we report the cloning and characterization of AtCSN2, the last uncharacterized CSN subunit from Arabidopsis. We show that the AtCSN2 gene corresponds to the previously identified FUS12 locus and that AtCSN2 copurifies with CSN, confirming that AtCSN2 is an integral component of CSN. AtCSN2 is not only able to interact with the SCF(TIR1) subunit AtCUL1, which is partially responsible for the regulatory interaction between CSN and SCF(TIR1), but also interacts with AtCUL3, suggesting that CSN is able to regulate the activity of other cullin-based E3 ligases through conserved interactions. Phylogenetic analysis indicated that the duplication and subsequent divergence events that led to the genes that encode CSN and lid subunits occurred before the divergence of unicellular and multicellular eukaryotic organisms and that the CSN subunits were more conserved than the lid subunits during evolution. Comparative analyses of the subunit interaction of CSN revealed a set of conserved subunit contacts and resulted in a model of CSN subunit topology, some aspects of which were substantiated by in vivo cross-link tests.
COP9信号体(CSN)是一种在进化上保守的蛋白质复合体,类似于蛋白酶体的盖子亚复合体。通过其调节特定蛋白酶体介导的蛋白质降解事件的能力,CSN控制着发育的多个方面。在此,我们报告了拟南芥中最后一个未被表征的CSN亚基AtCSN2的克隆和表征。我们表明,AtCSN2基因对应于先前鉴定的FUS12位点,并且AtCSN2与CSN共纯化,证实AtCSN2是CSN的一个组成部分。AtCSN2不仅能够与SCF(TIR1)亚基AtCUL1相互作用,AtCUL1部分负责CSN与SCF(TIR1)之间的调节相互作用,而且还与AtCUL3相互作用,这表明CSN能够通过保守的相互作用调节其他基于cullin的E3连接酶的活性。系统发育分析表明,导致编码CSN和盖子亚基的基因的复制和随后的分化事件发生在单细胞和多细胞真核生物分化之前,并且在进化过程中CSN亚基比盖子亚基更保守。对CSN亚基相互作用的比较分析揭示了一组保守的亚基接触,并产生了CSN亚基拓扑结构模型,其中一些方面通过体内交联试验得到了证实。