Estévez Antonio M, Lehner Ben, Sanderson Christopher M, Ruppert Thomas, Clayton Christine
Zentrum für Molekulare Biologie, Heidelberg Universität, Im Neuenheimer Feld 282, 69120 Heidelberg, Germany.
J Biol Chem. 2003 Sep 12;278(37):34943-51. doi: 10.1074/jbc.M305333200. Epub 2003 Jun 23.
In eukaryotes, at least 10 proteins associate in a 3'-5' exonuclease complex, the exosome, which is involved in the processing of many RNA species. A recent model for the exosome placed six RNase PH-related components in a hexameric ring core structure, with three S1 domain proteins associated with the ring surface. So far, however, this model lacks experimental support. Using a combination of RNA interference, complex affinity purification, and yeast two-hybrid approaches, we show here that the RNase PH homologues are important for maintenance of complex integrity. In contrast, the S1 domain proteins are not required for complex stability, although they are required for exosome function. Our results are partially consistent with the proposed model of the exosome, but indicate a different arrangement of the RNase PH proteins.
在真核生物中,至少有10种蛋白质会结合形成一种3'-5'核酸外切酶复合体,即外切体,它参与多种RNA的加工过程。最近关于外切体的一个模型将六个与核糖核酸酶PH相关的组分置于一个六聚体环状核心结构中,有三个S1结构域蛋白与环表面相关联。然而,到目前为止,这个模型缺乏实验支持。通过结合RNA干扰、复合体亲和纯化和酵母双杂交方法,我们在此表明核糖核酸酶PH同源物对于维持复合体完整性很重要。相比之下,S1结构域蛋白对于复合体稳定性并非必需,尽管它们对于外切体功能是必需的。我们的结果部分与所提出的外切体模型一致,但表明核糖核酸酶PH蛋白的排列方式不同。