Chen F, Wilusz J
UMDNJ-New Jersey Medical School, Department of Microbiology and Molecular Genetics, 185 South Orange Avenue, Newark, NJ 07103, USA.
Nucleic Acids Res. 1998 Jun 15;26(12):2891-8. doi: 10.1093/nar/26.12.2891.
We have previously identified a G-rich sequence (GRS) as an auxiliary downstream element (AUX DSE) which influences the processing efficiency of the SV40 late polyadenylation signal. We have now determined that sequences downstream of the core U-rich element (URE) form a fundamental part of mammalian polyadenylation signals. These novel AUX DSEs all influenced the efficiency of 3'-end processing in vitro by stabilizing the assembly of CstF on the core downstream URE. Three possible mechanisms by which AUX DSEs mediate efficient in vitro 3'-end processing have been explored. First, AUX DSEs can promote processing efficiency by maintaining the core elements in an unstructured domain which allows the general polyadenylation factors to efficiently assemble on the RNA substrate. Second, AUX DSEs can enhance processing by forming a stable structure which helps focus binding of CstF to the core downstream URE. Finally, the GRS element, but not the binding site for the bacteriophage R17 coat protein, can substitute for the auxiliary downstream region of the adenovirus L3 polyadenylation signal. This suggests that AUX DSE binding proteins may play an active role in stimulating 3'-end processing by stabilizing the association of CstF with the RNA substrate. AUX DSEs, therefore, serve as a integral part of the polyadenylation signal and can affect signal strength and possibly regulation.
我们之前已鉴定出一个富含G的序列(GRS)作为辅助下游元件(AUX DSE),它影响SV40晚期聚腺苷酸化信号的加工效率。我们现已确定,富含U的核心元件(URE)下游的序列构成了哺乳动物聚腺苷酸化信号的基本组成部分。这些新型AUX DSE均通过稳定CstF在核心下游URE上的组装来影响体外3'末端加工的效率。我们探究了AUX DSE介导高效体外3'末端加工的三种可能机制。首先,AUX DSE可通过将核心元件维持在一个无结构域中,使一般的聚腺苷酸化因子能够有效地组装在RNA底物上,从而提高加工效率。其次,AUX DSE可通过形成稳定结构来增强加工,该结构有助于使CstF与核心下游URE的结合集中。最后,GRS元件而非噬菌体R17外壳蛋白的结合位点,可替代腺病毒L3聚腺苷酸化信号的辅助下游区域。这表明AUX DSE结合蛋白可能通过稳定CstF与RNA底物的结合,在刺激3'末端加工中发挥积极作用。因此,AUX DSE作为聚腺苷酸化信号的一个组成部分,可影响信号强度并可能参与调控。