Královicová Jana, Houngninou-Molango Sophie, Krämer Angela, Vorechovsky Igor
University of Southampton School of Medicine, Division of Human Genetics, Southampton SO16 6YD, UK.
Hum Mol Genet. 2004 Dec 15;13(24):3189-202. doi: 10.1093/hmg/ddh334. Epub 2004 Oct 20.
We show that the allele-dependent expression of transcripts encoding soluble HLA-DQbeta chains is determined by branchpoint sequence (BPS) haplotypes in DQB1 intron 3. BPS RNAs associated with low inclusion of the transmembrane exon in mature transcripts showed impaired binding to splicing factor 1 (SF1), indicating that alternative splicing of DQB1 is controlled by differential BPS recognition early during spliceosome assembly. We also demonstrate that naturally occurring human BPS point mutations that alter splicing and lead to recognizable phenotypes cluster in BP and in position -2 relative to BP, implicating impaired SF1-BPS interactions in disease-associated BPS substitutions. Coding DNA variants produced smaller fluctuations of exon inclusion levels than random exonic substitutions, consistent with a selection against coding mutations that alter their own exonization. Finally, proximal splicing in this multi-allelic reporter system was promoted by at least seven SR proteins and repressed by hnRNPs F, H and I, supporting an extensive antagonism of factors balancing the splice site selection. These results provide the molecular basis for the haplotype-specific expression of soluble DQbeta, improve prediction of intronic point mutations and indicate how extraordinary, selection-driven DNA variability in HLA affects pre-mRNA splicing.
我们发现,编码可溶性HLA-DQβ链的转录本的等位基因依赖性表达由DQB1内含子3中的分支点序列(BPS)单倍型决定。与成熟转录本中跨膜外显子低包含率相关的BPS RNA与剪接因子1(SF1)的结合受损,这表明DQB1的可变剪接在剪接体组装早期受不同的BPS识别控制。我们还证明,导致剪接改变并产生可识别表型的天然人类BPS点突变聚集在BP以及相对于BP的-2位置,这意味着疾病相关的BPS替代中存在受损的SF1-BPS相互作用。编码DNA变体产生的外显子包含水平波动比随机外显子替代小,这与针对改变自身外显子化的编码突变的选择一致。最后,在这个多等位基因报告系统中,近端剪接受至少七种SR蛋白促进,并受hnRNPs F、H和I抑制,这支持了平衡剪接位点选择的因子之间的广泛拮抗作用。这些结果为可溶性DQβ的单倍型特异性表达提供了分子基础,改进了内含子点突变的预测,并表明HLA中由选择驱动的非凡DNA变异性如何影响前体mRNA剪接。