Sickle

镰刀
  • 文章类型: Journal Article
    细胞程序性死亡(PCD)在植物发育和对环境胁迫的响应中起着重要作用。这里,我们报告了一种蛋白质,SICKLE(SIC),抑制PCD。在拟南芥(拟南芥)中,SIC的功能丧失突变体,sic-4,过度积累的套索内含子RNA(lariRNAs)并表现出PCD。编码RNA脱支酶1(DBR1)的基因,lariRNAs衰变的限速酶,过表达以降低sic-4突变体中lariRNAs的水平,这导致PCD的抑制。同时,另一个lariRNAs超积累突变体,dbr1-2,也表现出PCD,进一步表明sic-4PCD是由lariRNAs的过度积累引起的。转录谱分析显示,sic-4突变干扰了与水杨酸(SA)稳态相关的mRNA的可变剪接和衰减,在PCD调节中起作用的众所周知的分子。此外,SA在sic-4中急剧增加,并且SA生物合成的破坏和信号传导抑制了突变体中的PCD,证明SA在sic-4的下游起作用。一起来看,我们的结果表明SIC参与调节SA触发的PCD.
    Programed cell death (PCD) plays fundamental roles in plant development and responses to environmental stresses. Here, we report a protein, SICKLE (SIC), which represses PCD. In Arabidopsis (Arabidopsis thaliana), the loss-of-function mutant of SIC, sic-4, hyperaccumulated lariat intronic RNAs (lariRNAs) and exhibited PCD. The gene encoding an RNA debranching enzyme 1 (DBR1), a rate-limiting enzyme for lariRNAs decay, was overexpressed to reduce the level of lariRNAs in the sic-4 mutant, which led to suppression of PCD. Meanwhile, another lariRNAs hyper-accumulating mutant, dbr1-2, also exhibited PCD, further indicating that sic-4 PCD is caused by hyper-accumulation of lariRNAs. Transcriptional profiling analyses revealed that the sic-4 mutation disturbed alternative splicing and decay of mRNAs associated with salicylic acid (SA) homeostasis, a well-known molecule functioning in PCD regulation. Moreover, SA is dramatically increased in sic-4 and the disruption of SA biosynthesis and signaling suppressed PCD in the mutant, demonstrating that SA functions downstream of sic-4. Taken together, our results demonstrate that SIC is involved in regulating SA-triggered PCD.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

       PDF(Pubmed)

  • 文章类型: Journal Article
    拟南芥的成分光形态发生1(COP1)和植物色素相互作用因子(PIFs)是负调节因子,而矮胖型5(HY5)是幼苗光形态发育的正调节剂。这里,我们报告SICKLE(SIC),富含脯氨酸的蛋白质,充当光形态发生的新型负调节剂。HY5直接结合SIC启动子并响应于光激活SIC表达。反过来,SIC与HY5物理相互作用并干扰其对下游靶基因的转录调节。此外,SIC与PIF4相互作用并促进PIF4激活的自身转录。有趣的是,SIC被COP1靶向用于在黑暗中26S蛋白酶体介导的降解。总的来说,我们的数据表明,光诱导的SIC起到制动作用,通过介导HY5和PIF4信号来防止过度的光响应,在黑暗中COP1的降解避免了在曝光开始时对光形态发生的强烈抑制。
    Arabidopsis CONSTITUTIVELY PHOTOMORPHOGENIC1 (COP1) and PHYTOCHROME INTERACTING FACTORs (PIFs) are negative regulators, and ELONGATED HYPOCOTYL5 (HY5) is a positive regulator of seedling photomorphogenic development. Here, we report that SICKLE (SIC), a proline rich protein, acts as a novel negative regulator of photomorphogenesis. HY5 directly binds the SIC promoter and activates SIC expression in response to light. In turn, SIC physically interacts with HY5 and interferes with its transcriptional regulation of downstream target genes. Moreover, SIC interacts with PIF4 and promotes PIF4-activated transcription of itself. Interestingly, SIC is targeted by COP1 for 26S proteasome-mediated degradation in the dark. Collectively, our data demonstrate that light-induced SIC functions as a brake to prevent exaggerated light response via mediating HY5 and PIF4 signaling, and its degradation by COP1 in the dark avoid too strong inhibition on photomorphogenesis at the beginning of light exposure.
    导出

    更多引用

    收藏

    翻译标题摘要

    我要上传

    求助全文

公众号