Valcárcel J, Gaur R K, Singh R, Green M R
Howard Hughes Medical Institute, University of Massachusetts Medical Center, Worcester, MA 01605, USA.
Science. 1996 Sep 20;273(5282):1706-9. doi: 10.1126/science.273.5282.1706.
The mammalian splicing factor U2AF65 binds to the polypyrimidine tract adjacent to the 3' splice site and promotes assembly of U2 small nuclear ribonucleoprotein on the upstream branch point, an interaction that involves base pairing with U2 small nuclear RNA (snRNA). U2AF65 contains an RNA binding domain, required for interaction with the polypyrimidine tract, and an arginine-serine-rich (RS) region, required for U2 snRNP recruitment and splicing. Here it is reported that binding of U2AF65 to the polypyrimidine tract directed the RS domain to contact the branch point and promoted U2 snRNA-branch point base pairing even in the absence of other splicing factors. Analysis of RS domain mutants indicated that the ability of U2AF65 to contact the branch point, to promote the U2 snRNA-branch point interaction, and to support splicing are related activities, requiring only a few basic amino acids. Thus, the U2AF65 RS domain plays a direct role in modulating spliceosomal RNA-RNA interactions.
哺乳动物剪接因子U2AF65与3'剪接位点附近的多嘧啶序列结合,并促进U2小核核糖核蛋白在上游分支点的组装,这种相互作用涉及与U2小核RNA(snRNA)的碱基配对。U2AF65包含一个与多嘧啶序列相互作用所需的RNA结合结构域,以及一个U2 snRNP招募和剪接所需的富含精氨酸-丝氨酸(RS)的区域。本文报道,即使在没有其他剪接因子的情况下,U2AF65与多嘧啶序列的结合也能引导RS结构域与分支点接触,并促进U2 snRNA与分支点的碱基配对。对RS结构域突变体的分析表明,U2AF65与分支点接触、促进U2 snRNA与分支点相互作用以及支持剪接的能力是相关的活动,只需要几个碱性氨基酸。因此,U2AF65 RS结构域在调节剪接体RNA-RNA相互作用中起直接作用。