Centro de Investigaciones Biológicas, Consejo Superior de Investigaciones Científicas, and Centro de Investigación Biomédica en Red de Enfermedades Raras, c/Ramiro de Maeztu 9, Madrid, Spain.
Aging Cell. 2011 Oct;10(5):896-907. doi: 10.1111/j.1474-9726.2011.00727.x. Epub 2011 Jul 19.
Alternative splicing involving intron retention plays a key role in the regulation of gene expression. We previously reported that the alternatively spliced short isoform of endoglin (S-endoglin) is induced during the aging or senescence of endothelial cells by a mechanism of intron retention. In this work, we demonstrate that the alternative splicing factor or splicing factor-2 (ASF/SF2) is involved in the synthesis of endoglin. Overexpression of ASF/SF2 in endothelial cells switched the balance between the two endoglin isoforms, favoring the synthesis of S-endoglin. Using a minigene reporter vector and RNA immunoprecipitation experiments, it was shown that ASF/SF2 interacts with the nucleotide sequence of the endoglin minigene, suggesting the direct involvement of ASF/SF2. Accordingly, the sequence recognized by ASF/SF2 in the endoglin gene was identified inside the retained intron near the consensus branch point. Finally, the ASF/SF2 subcellular localization during endothelial senescence showed a preferential scattered distribution throughout the cytoplasm, where it interferes with the activity of the minor spliceosome, leading to an increased expression of S-endoglin mRNA. In summary, we report for the first time the molecular mechanisms by which ASF/SF2 regulates the alternative splicing of endoglin in senescent endothelial cells, as well as the involvement of ASF/SF2 in the minor spliceosome.
内含子保留的可变剪接在基因表达调控中起着关键作用。我们之前曾报道,内皮细胞衰老或衰老时,通过内含子保留机制诱导内皮糖蛋白的可变剪接短亚型(S-内皮糖蛋白)。在这项工作中,我们证明可变剪接因子或剪接因子-2(ASF/SF2)参与了内皮糖蛋白的合成。内皮细胞中 ASF/SF2 的过表达改变了两种内皮糖蛋白亚型的平衡,有利于 S-内皮糖蛋白的合成。使用 minigene 报告载体和 RNA 免疫沉淀实验,表明 ASF/SF2 与内皮糖蛋白 minigene 的核苷酸序列相互作用,提示 ASF/SF2 的直接参与。相应地,在内皮糖蛋白基因中被 ASF/SF2 识别的序列被鉴定为靠近保守分支点的内含子中。最后,在血管内皮细胞衰老过程中,ASF/SF2 的亚细胞定位显示出一种优先分布在整个细胞质中的分散分布,在细胞质中,它干扰了次要剪接体的活性,导致 S-内皮糖蛋白 mRNA 的表达增加。总之,我们首次报道了 ASF/SF2 在衰老内皮细胞中调节内皮糖蛋白可变剪接的分子机制,以及 ASF/SF2 在内含子剪接体中的参与。