Webb Helena, Burns Roisin, Ellis Louise, Kimblin Nicola, Carrington Mark
Department of Biochemistry 80 Tennis Court Road, Cambridge CB2 1GA, UK.
Nucleic Acids Res. 2005 Mar 8;33(5):1503-12. doi: 10.1093/nar/gki298. Print 2005.
The expression of the vast majority of protein coding genes in trypanosomes is regulated exclusively at the post-transcriptional level. Developmentally regulated mRNAs that vary in levels of expression have provided an insight into one mechanism of regulation; a decrease in abundance is due to a shortened mRNA half-life. The decrease in half-life involves cis-acting elements in the 3' untranslated region of the mRNA. The trans-acting factors necessary for the increased rate of degradation remain uncharacterized. The GPI-PLC gene in Trypanosoma brucei encodes a phospholipase C expressed in mammalian bloodstream form, but not in the insect procyclic form. Here, it is reported that the differential expression of the GPI-PLC mRNA also results from a 10-fold difference in half-life. Second, the instability of the GPI-PLC mRNA in procyclic forms can be reversed by the inhibition of protein synthesis. Third, specifically blocking the translation of the GPI-PLC mRNA in procyclic forms by the inclusion of a hairpin in the 5' untranslated region does not result in stabilization of the mRNA. Thus, the effect of protein synthesis inhibitors in stabilizing the GPI-PLC mRNA operates in trans through a short-lived factor dependent on protein synthesis.
绝大多数锥虫蛋白质编码基因的表达仅在转录后水平受到调控。不同发育阶段表达水平各异的mRNA为一种调控机制提供了线索;丰度降低是由于mRNA半衰期缩短。半衰期的缩短涉及mRNA 3'非翻译区的顺式作用元件。降解速率增加所需的反式作用因子仍未明确。布氏锥虫中的GPI-PLC基因编码一种在哺乳动物血液形式中表达,但在昆虫前循环形式中不表达的磷脂酶C。在此报道,GPI-PLC mRNA的差异表达也是由半衰期相差10倍所致。其次,蛋白质合成的抑制可逆转前循环形式中GPI-PLC mRNA的不稳定性。第三,通过在5'非翻译区包含一个发夹结构特异性阻断前循环形式中GPI-PLC mRNA的翻译,并不会导致mRNA的稳定。因此,蛋白质合成抑制剂对GPI-PLC mRNA的稳定作用是通过一种依赖蛋白质合成的短命因子以反式作用发挥的。