Zentrum für Molekulare Biologie der Universität Heidelberg, DKFZ-ZMBH Alliance, Im Neuenheimer Feld 282, Heidelberg, Germany.
Mol Microbiol. 2012 Mar;83(5):1048-63. doi: 10.1111/j.1365-2958.2012.07988.x. Epub 2012 Feb 15.
When Trypanosoma brucei differentiates from the bloodstream form to the procyclic form, there are decreases in the levels of many mRNAs encoding proteins required for the glycolytic pathway, and the mRNA encoding the RNA recognition motif protein RBP10 decreases in parallel. We show that RBP10 is a cytoplasmic protein that is specific to bloodstream-form trypanosomes, where it is essential. Depletion of RBP10 caused decreases in many bloodstream-form-specific mRNAs, with increases in mRNAs associated with the early stages of differentiation. The changes were similar to, but more extensive than, those caused by glucose deprivation. Conversely, forced RBP10 expression in procyclics induced a switch towards bloodstream-form mRNA expression patterns, with concomitant growth inhibition. Forced expression of RBP10 prevented differentiation of bloodstream forms in response to cis-aconitate, but did not prevent expression of key differentiation markers in response to glucose deprivation. RBP10 was not associated with heavy polysomes, showed no detectable in vivo binding to RNA, and was not stably associated with other proteins. Tethering of RBP10 to a reporter mRNA inhibited translation, and halved the abundance of the bound mRNA. We suggest that RBP10 may prevent the expression of regulatory proteins that are specific to the procyclic form.
当布氏锥虫从血液形式分化为前鞭毛体形式时,编码糖酵解途径所需蛋白质的许多 mRNA 的水平降低,并且编码 RNA 识别基序蛋白 RBP10 的 mRNA 平行降低。我们表明 RBP10 是一种细胞质蛋白,它是血腔型锥虫特有的,在血腔型锥虫中是必需的。RBP10 的耗竭导致许多血腔型特异性 mRNA 的减少,同时与分化早期相关的 mRNA 增加。这些变化与葡萄糖剥夺引起的变化相似,但更为广泛。相反,在前鞭毛体中强制表达 RBP10 诱导向血腔型 mRNA 表达模式的转变,同时伴随生长抑制。强制表达 RBP10 可防止顺乌头酸诱导的血腔形式分化,但不能防止葡萄糖剥夺诱导的关键分化标志物的表达。RBP10 与重多核糖体无关,体内检测不到与 RNA 的结合,也与其他蛋白质没有稳定的关联。RBP10 与报告 mRNA 的连接抑制了翻译,并使结合的 mRNA 的丰度减半。我们认为 RBP10 可能阻止了特定于前鞭毛体形式的调节蛋白的表达。