Cowper A E, Cáceres J F, Mayeda A, Screaton G R
Human Immunology Unit, Weatherall Institute of Molecular Medicine, John Radcliffe Hospital, Headington, Oxford OX3 9DU, United Kingdom.
J Biol Chem. 2001 Dec 28;276(52):48908-14. doi: 10.1074/jbc.M103967200. Epub 2001 Oct 29.
We have characterized two RNA-binding proteins, of apparent molecular masses of approximately 40 and 35 kDa, which possess a single N-terminal RNA-recognition motif (RRM) followed by a C-terminal domain rich in serine-arginine dipeptides. Their primary structures resemble the single-RRM serine-arginine (SR) protein, SC35; however their functional effects are quite distinctive. The 40-kDa protein cannot complement SR protein-deficient HeLa cell S100 extract and showed a dominant negative effect in vitro against the authentic SR proteins, SF2/ASF and SC35. Interestingly, the 40- and 35-kDa proteins antagonize SR proteins and activate the most distal alternative 5' splice site of adenovirus E1A pre-mRNA in vivo, an activity that is similar to that characterized previously for the heterogeneous nuclear ribonucleoprotein particles A/B group of proteins. A series of recombinant chimeric proteins consisting of domains from these proteins and SC35 in various combinations showed that the RRM, but not the C-terminal domain rich in serine-arginine dipeptides, has a dominant role in this activity. Because of the similarity to SR proteins we have named these proteins SRrp40 and SRrp35, respectively, for SR-repressor proteins of approximately 40 and approximately 35 kDa. Both factors show tissue- and cell type-specific patterns of expression. We propose that these two proteins are SR protein-like alternative splicing regulators that antagonize authentic SR proteins in the modulation of alternative 5' splice site choice.
我们已鉴定出两种RNA结合蛋白,其表观分子量约为40 kDa和35 kDa,它们具有单个N端RNA识别基序(RRM),随后是富含丝氨酸 - 精氨酸二肽的C端结构域。它们的一级结构类似于单RRM丝氨酸 - 精氨酸(SR)蛋白SC35;然而它们的功能效应却截然不同。40 kDa的蛋白不能补充SR蛋白缺陷的HeLa细胞S100提取物,并且在体外对真实的SR蛋白SF2/ASF和SC35显示出显性负效应。有趣的是,40 kDa和35 kDa的蛋白在体内拮抗SR蛋白并激活腺病毒E1A前体mRNA最远端的可变5'剪接位点,这种活性类似于先前针对异质性核糖核蛋白颗粒A/B组蛋白所描述的活性。一系列由这些蛋白和SC35的结构域以各种组合组成的重组嵌合蛋白表明,RRM而非富含丝氨酸 - 精氨酸二肽的C端结构域在该活性中起主导作用。由于与SR蛋白相似,我们分别将这些蛋白命名为SRrp40和SRrp35,即约40 kDa和约35 kDa的SR抑制蛋白。这两种因子都显示出组织和细胞类型特异性的表达模式。我们提出这两种蛋白是类似SR蛋白的可变剪接调节因子,在可变5'剪接位点选择的调节中拮抗真实的SR蛋白。