Laboratorio de Interacciones Moleculares, Facultad de Ciencias, Iguá 4225, 11400 Montevideo, Uruguay.
Biochem Biophys Res Commun. 2013 Jun 28;436(2):295-9. doi: 10.1016/j.bbrc.2013.05.096. Epub 2013 Jun 4.
Because of their relevant role in the post-transcriptional regulation of the expression of a multitude of genes, RNA-binding proteins (RBPs) need to be accurately regulated in response to environmental signals in terms of quantity, functionality and localization. Transcriptional, post-transcriptional and post-translational steps have all been involved in this tight control. We have previously identified a Trypanosoma cruzi RBP, named TcRBP19, which can barely be detected at the replicative intracellular amastigote stage of the mammalian host. Even though protein coding genes are typically transcribed constitutively in trypanosomes, TcRBP19 protein is undetectable at the epimastigote stage. Here, we show that this protein expression pattern follows the steady-state of its mRNA. Using a T. cruzi reporter gene approach, we could establish a role for the 3' UTR of the tcrbp19 mRNA in transcript down-regulation at the epimastigote stage. In addition, the binding of the TcRBP19 protein to its encoding mRNA was revealed by in vitro pull down followed by qRT-PCR and confirmed by CLIP assays. Furthermore, we found that forced over-expression of TcRBP19 in T. cruzi epimastigotes decreased the stability of the endogenous tcrbp19 mRNA. These results support a negative feedback control of TcRBP19 to help maintain its very low concentration of TcRBP19 in the epimastigote stage. To our knowledge, this is the first RBP reported in trypanosomatids capable of negatively regulating its own mRNA. The mechanism revealed here adds to our limited but growing number of examples of negative mRNA autoregulation in the control of gene expression.
由于 RNA 结合蛋白 (RBPs) 在众多基因的转录后表达调控中发挥着重要作用,因此需要根据环境信号在数量、功能和定位上对其进行精确调控。转录、转录后和翻译后步骤都参与了这种严格的调控。我们之前已经鉴定出一种 Trypanosoma cruzi RBP,命名为 TcRBP19,它在哺乳动物宿主的复制性细胞内阿米巴阶段几乎无法检测到。尽管在锥虫中,蛋白质编码基因通常是组成性转录的,但 TcRBP19 蛋白在无鞭毛体阶段无法检测到。在这里,我们表明这种蛋白质表达模式遵循其 mRNA 的稳态。使用 T. cruzi 报告基因方法,我们可以确定 tcrbp19 mRNA 的 3'UTR 在无鞭毛体阶段对转录物下调的作用。此外,通过体外下拉结合 qRT-PCR 证实了 TcRBP19 蛋白与其编码 mRNA 的结合,并通过 CLIP 测定进一步证实。此外,我们发现强制过表达 TcRBP19 在 T. cruzi 无鞭毛体中降低了内源性 tcrbp19 mRNA 的稳定性。这些结果支持 TcRBP19 的负反馈控制有助于维持其在无鞭毛体阶段非常低的浓度。据我们所知,这是在动基体生物中报道的第一个能够负调控自身 mRNA 的 RBP。这里揭示的机制增加了我们在基因表达控制中对负 mRNA 自身调控的有限但不断增加的例子。