首页> 美国卫生研究院文献>PLoS Genetics >HYPER RECOMBINATION1 of the THO/TREX Complex Plays a Role in Controlling Transcription of the REVERSION-TO-ETHYLENE SENSITIVITY1 Gene in Arabidopsis
【2h】

HYPER RECOMBINATION1 of the THO/TREX Complex Plays a Role in Controlling Transcription of the REVERSION-TO-ETHYLENE SENSITIVITY1 Gene in Arabidopsis

机译:THO / TREX复合体的Hyper recombination1在控制拟南芥中REVERSION-to-ETHENE SENSITIVITY1基因的转录中发挥作用

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。
获取外文期刊封面目录资料

摘要

Arabidopsis REVERSION-TO-ETHYLENE SENSITIVITY1 (RTE1) represses ethylene hormone responses by promoting ethylene receptor ETHYLENE RESPONSE1 (ETR1) signaling, which negatively regulates ethylene responses. To investigate the regulation of RTE1, we performed a genetic screening for mutations that suppress ethylene insensitivity conferred by RTE1 overexpression in Arabidopsis. We isolated HYPER RECOMBINATION1 (HPR1), which is required for RTE1 overexpressor (RTE1ox) ethylene insensitivity at the seedling but not adult stage. HPR1 is a component of the THO complex, which, with other proteins, forms the TRanscription EXport (TREX) complex. In yeast, Drosophila, and humans, the THO/TREX complex is involved in transcription elongation and nucleocytoplasmic RNA export, but its role in plants is to be fully determined. We investigated how HPR1 is involved in RTE1ox ethylene insensitivity in Arabidopsis. The hpr1-5 mutation may affect nucleocytoplasmic mRNA export, as revealed by in vivo hybridization of fluorescein-labeled oligo(dT)45 with unidentified mRNA in the nucleus. The hpr1-5 mutation reduced the total and nuclear RTE1 transcript levels to a similar extent, and RTE1 transcript reduction rate was not affected by hpr1-5 with cordycepin treatment, which prematurely terminates transcription. The defect in the THO-interacting TEX1 protein of TREX but not the mRNA export factor SAC3B also reduced the total and nuclear RTE1 levels. SERINE-ARGININE-RICH (SR) proteins are involved mRNA splicing, and we found that SR protein SR33 co-localized with HPR1 in nuclear speckles, which agreed with the association of human TREX with the splicing machinery. We reveal a role for HPR1 in RTE1 expression during transcription elongation and less likely during export. Gene expression involved in ethylene signaling suppression was not reduced by the hpr1-5 mutation, which indicates selectivity of HPR1 for RTE1 expression affecting the consequent ethylene response. Thus, components of the THO/TREX complex appear to have specific roles in the transcription or export of selected genes.
机译:拟南芥对乙烯的增感1(RTE1)通过促进乙烯受体ETHENE RESPONSE1(ETR1)信号转导来抑制乙烯激素响应,从而抑制乙烯响应。为了研究RTE1的调控,我们对抑制拟南芥中RTE1过表达赋予的乙烯不敏感性的突变进行了遗传筛选。我们分离了HYPER RECOMBINATION1(HPR1),这是幼苗期而不是成年期RTE1过表达子(RTE1ox)乙烯不敏感所必需的。 HPR1是THO复合物的组成部分,它与其他蛋白质一起形成TRanscription EXport(TREX)复合物。在酵母,果蝇和人类中,THO / TREX复合物参与转录延伸和核质RNA的输出,但其在植物中的作用尚待充分确定。我们调查了拟南芥中HPR1如何参与RTE1ox乙烯不敏感性。 hpr1-5突变可能会影响核质mRNA的输出,如荧光素标记的oligo(dT)45与细胞核中未鉴定的mRNA的体内杂交所揭示。 hpr1-5突变使总RTE1和核RTE1转录本的水平降低了相似的程度,而虫草素处理的hpr1-5则不影响RTE1转录本的降低速度,因为该处理可提前终止转录。 TREX的与THO相互作用的TEX1蛋白中的缺陷而不是mRNA出口因子SAC3B的缺陷也降低了总RTE1和核RTE1的水平。富含丝氨酸-精氨酸(SR)的蛋白参与了mRNA的剪接,我们发现SR蛋白SR33与HPR1在核斑点中共定位,这与人TREX与剪接机制的关联是一致的。我们揭示了在转录延长过程中HPR1在RTE1表达中的作用,而在出口过程中可能性较小。 hpr1-5 突变并未降低参与乙烯信号抑制的基因表达,这表明HPR1对 RTE1 表达的选择性影响了随后的乙烯反应。因此,THO / TREX复合体的成分似乎在所选基因的转录或输出中具有特定作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号