Xiong Feng, Gao Jianjun, Li Jun, Liu Yun, Feng Guoyin, Fang Wenli, Chang Hongfen, Xie Jiang, Zheng Haitao, Li Tingyu, He Lin
Children's Hospital of Chongqing Medical University, Central District, Chongqing, PR China.
Eur J Hum Genet. 2009 Apr;17(4):510-6. doi: 10.1038/ejhg.2008.219. Epub 2008 Nov 12.
X-linked spondyloepiphyseal dysplasia tarda can be caused by mutations in the SEDL gene. This study describes an interesting novel mutation (IVS4+1A>G) located exactly at the rare noncanonical AT-AC consensus splicing donor point of SEDL, which regained the canonical GT-AG consensus splicing junction in addition to several other rarer noncanonical splice patterns. The mutation activated several cryptic splice sites and generated the production of seven erroneous splicing isoforms, which we confirmed by sequencing of RT-PCR products and resequencing of cDNA clones. All the practical splice donors/acceptors were further assessed using FSPLICE 1.0 and SPL(M) Platforms to predict potential splice sites in genomic DNA. Subsequently, the expression levels of SEDL among the affected patients, carriers and controls were estimated using real-time quantitative PCR. Expression analyses showed that the expression levels of SEDL in both patients and carriers were decreased. Taken together, these results illustrated how disruption of the AT donor site in a rare AT-AC intron, leading to a canonical GT donor site, resulted in a multitude of aberrant transcripts, thus impairing exon definition. The unexpected splicing patterns resulting from the special mutation provide additional challenges and opportunities for understanding splicing mechanisms and specificity.
X连锁迟发性脊椎骨骺发育不良可由SEDL基因突变引起。本研究描述了一个有趣的新突变(IVS4+1A>G),该突变恰好位于SEDL罕见的非经典AT-AC共有剪接供体位点,除了其他几种更罕见的非经典剪接模式外,还恢复了经典的GT-AG共有剪接连接。该突变激活了几个隐蔽剪接位点,并产生了七种错误剪接异构体,我们通过RT-PCR产物测序和cDNA克隆重测序进行了证实。使用FSPLICE 1.0和SPL(M)平台进一步评估了所有实际的剪接供体/受体,以预测基因组DNA中的潜在剪接位点。随后,使用实时定量PCR估计受影响患者、携带者和对照中SEDL的表达水平。表达分析表明,患者和携带者中SEDL的表达水平均降低。综上所述,这些结果说明了罕见的AT-AC内含子中AT供体位点的破坏如何导致经典的GT供体位点,从而产生大量异常转录本,进而损害外显子定义。由特殊突变产生的意外剪接模式为理解剪接机制和特异性带来了额外的挑战和机遇。