New Mexico State University, Las Cruces, NM 88003, USA.
Planta. 2010 Oct;232(5):1151-62. doi: 10.1007/s00425-010-1247-1. Epub 2010 Aug 13.
Glutamine synthetase (GS) catalyzes the ATP-dependent condensation of ammonia with glutamate to produce glutamine. The GS enzyme is located either in the chloroplast (GS(2)) or in the cytoplasm (GS(1)). GS(1) is encoded by a small gene family and the members exhibit differential expression pattern mostly attributed to transcriptional regulation. Based on our recent finding that a soybean GS(1) gene, Gmglnβ ( 1 ) is subject to its 3'UTR-mediated post-transcriptional regulation as a transgene in alfalfa (Medicago sativa) we have raised the question of whether the 3'UTR-mediated transcript destabilization is a more universal phenomenon. Gene constructs consisting of the CaMV35S promoter driving the reporter gene, GUS, followed by the 3'UTRs of the two alfalfa GS(1) genes, MsGSa and MsGSb, were introduced into alfalfa and tobacco. The analysis of these transformants suggests that while both the 3'UTRs promote transcript turnover, the MsGSb 3'UTR is more effective than the MsGSa 3'UTR. However, both the 3'UTRs along with Gmglnβ ( 1 ) 3'UTR respond to nitrate as a trigger in transcript turnover. More detailed analysis points to glutamine rather than nitrate as the mediator of transcript turnover. Our data suggests that the 3'UTR-mediated regulation of GS(1) genes at the level of transcript turnover is probably universal and is used for fine-tuning the expression in keeping with the availability of the substrates.
谷氨酰胺合成酶(GS)催化氨与谷氨酸在 ATP 依赖性条件下的缩合反应,生成谷氨酰胺。GS 酶存在于叶绿体(GS(2))或细胞质(GS(1))中。GS(1)由一个小基因家族编码,其成员表现出不同的表达模式,主要归因于转录调控。基于我们最近的发现,大豆 GS(1)基因 Gmglnβ(1)作为转基因为拟南芥(Medicago sativa)中的基因,受到其 3'UTR 介导的转录后调控,我们提出了一个问题,即 3'UTR 介导的转录本不稳定是否是一个更普遍的现象。含有 CaMV35S 启动子驱动报告基因 GUS 的基因构建体,其后接两种紫花苜蓿 GS(1)基因 MsGSa 和 MsGSb 的 3'UTR,被导入紫花苜蓿和烟草中。这些转化体的分析表明,虽然两个 3'UTR 都促进转录本的周转,但 MsGSb 3'UTR 比 MsGSa 3'UTR 更有效。然而,这两个 3'UTR 以及 Gmglnβ(1)3'UTR 都对硝酸盐作为转录本周转的触发因素做出响应。更详细的分析表明,谷氨酸而不是硝酸盐是转录本周转的介导物。我们的数据表明,GS(1)基因的 3'UTR 介导的转录本周转水平的调控可能是普遍存在的,用于根据底物的可用性精细调节表达。