Boutsma Erwin, Noback Sonja, van Lohuizen Maarten
Division of Molecular Genetics, Netherlands Cancer Institute, Amsterdam, The Netherlands.
PLoS One. 2008 Jun 4;3(6):e2322. doi: 10.1371/journal.pone.0002322.
Ring1B is an essential member of the highly conserved Polycomb group proteins, which orchestrate developmental processes, cell growth and stem cell fate by modifying local chromatin structure. Ring1B was found to be the E3 ligase that monoubiquitinates histone H2A, which adds a new level of chromatin modification to Polycomb group proteins. Here we report that Ring1B belongs to the exclusive group of proteins that for their translation depend on a stable 5' UTR sequence in their mRNA known as an Internal Ribosome Entry Site (IRES). In cell transfection assays the Ring1B IRES confers significantly higher expression levels of Ring1B than a Ring1B cDNA without the IRES. Also, dual luciferase assays show strong activity of the Ring1B IRES. Although our findings indicate Ring1B can be translated under conditions where cap-dependent translation is impaired, we found the Ring1B IRES to be cap-dependent. This raises the possibility that translational control of Ring1B is a multi-layered process and that translation of Ring1B needs to be maintained under varying conditions, which is in line with its essential role as an E3 ligase for monoubiquitination of histone H2A in the PRC1 Polycomb protein complex.
Ring1B是高度保守的多梳蛋白家族的重要成员,该家族通过修饰局部染色质结构来协调发育过程、细胞生长和干细胞命运。人们发现Ring1B是一种E3连接酶,可对组蛋白H2A进行单泛素化,这为多梳蛋白家族增添了新的染色质修饰水平。在此我们报告,Ring1B属于一类独特的蛋白质,其翻译依赖于mRNA中一种稳定的5'非翻译区(UTR)序列,即内部核糖体进入位点(IRES)。在细胞转染实验中,与不含IRES的Ring1B cDNA相比,Ring1B的IRES能使Ring1B的表达水平显著更高。此外,双荧光素酶实验显示Ring1B的IRES具有很强的活性。虽然我们的研究结果表明在帽依赖性翻译受损的条件下Ring1B仍可被翻译,但我们发现Ring1B的IRES是依赖帽的。这就提出了一种可能性,即Ring1B的翻译控制是一个多层次的过程,并且Ring1B的翻译需要在不同条件下得以维持,这与其作为PRC1多梳蛋白复合物中组蛋白H2A单泛素化的E3连接酶的重要作用是一致的。