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首页> 外文期刊>Plant and cell physiology >Arabidopsis RPT2a Encoding the 26S Proteasome Subunit is Required for Various Aspects of Root Meristem Maintenance, and Regulates Gametogenesis Redundantly with its Homolog, RPT2b
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Arabidopsis RPT2a Encoding the 26S Proteasome Subunit is Required for Various Aspects of Root Meristem Maintenance, and Regulates Gametogenesis Redundantly with its Homolog, RPT2b

机译:编码26S蛋白酶体亚基的拟南芥RPT2a是维持根分生组织各个方面的必需,并利用其同源物RPT2b冗余地调节配子发生。

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摘要

The 26S proteasome plays fundamental roles in the degradation of short-lived regulatory proteins, thereby controlling diverse cellular processes. In Arabidopsis, the essential RPT2 subunit is encoded by two highly homologous genes: RPT2a and RPT2b. Currently, only RPT2a has been reported to regulate various developmental processes, including the maintenance of the root apical meristem (RAM), although the roles of RPT2a in the RAM are still obscure. Here, we analyzed the cell type-specific requirement for RPT2a. When RPT2a was expressed locally in the rpt2a mutant, pleiotropic defects in the RAM, such as cell death and distorted cellular organization, were rescued differently, suggesting that RPT2a regulates various specific activities, which converge to maintain the RAM. On the other hand, the homologous RPT2b was also expressed in meristems, and the expression of RPT2b protein under the control of the RPT2a promoter complemented the rpt2a RAM defects, although the rpt2b mutant showed no obvious defect in all developmental aspects we examined. These results show that RPT2b might work in the RAM, but is dispensable for RAM maintenance in the presence of RPT2a. In contrast, the rpt2a rpt2b double mutant was lethal in male and female gametophytes, suggesting that RPT2a and RPT2b are redundantly required for gametogenesis. Furthermore, we showed that similar meristematic and gametophytic defects were caused by mutations in other subunit genes, RPT5a and RPT5b, suggesting that proper activity of the proteasome, not an RPT2-specific function, is required. Taken together, our results suggest that RPT2a and RPT2b contribute differently to the proteasome activity required for each developmental context.
机译:26S蛋白酶体在短期调节蛋白的降解中起着基本作用,从而控制多种细胞过程。在拟南芥中,必需的RPT2亚基由两个高度同源的基因编码:RPT2a和RPT2b。目前,尽管RPT2a在RAM中的作用仍然不清楚,但只有RPT2a可以调节各种发育过程,包括维持根尖分生组织(RAM)。在这里,我们分析了RPT2a特定于细胞类型的要求。当RPT2a在rpt2a突变体中局部表达时,以不同的方式挽救了RAM中的多效性缺陷(例如细胞死亡和扭曲的细胞组织),这表明RPT2a调控着各种特定的活动,这些活动收敛以维持RAM。另一方面,同源RPT2b也在分生组织中表达,并且在RPT2a启动子的控制下,RPT2b蛋白的表达补充了rpt2a RAM缺陷,尽管rpt2b突变体在我们研究的所有发育方面均未显示明显缺陷。这些结果表明,RPT2b可能在RAM中工作,但在存在RPT2a的情况下,对于RAM维护是必不可少的。相比之下,rpt2a rpt2b双重突变体在雄性和雌性配子体中具有致死性,表明RPT2a和RPT2b是配子发生多余的。此外,我们表明相似的分生组织和配子缺陷是由其他亚基基因RPT5a和RPT5b的突变引起的,这表明需要蛋白酶体的适当活性而不是RPT2特异性功能。综上所述,我们的结果表明RPT2a和RPT2b对每种发育背景所需的蛋白酶体活性的贡献不同。

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