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A novel pathogenic splicing mutation of RPGR in a Chinese family with X-linked retinitis pigmentosa verified by minigene splicing assay
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作者 Hui-Qin Wang Pei-Kuan Cong +2 位作者 Tian He Xiao-Feng Yu Ya-Nan Huo 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2023年第10期1595-1600,共6页
AIM:To report a novel splicing mutation in the RPGR gene(encoding retinitis pigmentosa GTPase regulator)in a three-generation Chinese family with X-linked retinitis pigmentosa(XLRP).METHODS:Comprehensive ophthalmic ex... AIM:To report a novel splicing mutation in the RPGR gene(encoding retinitis pigmentosa GTPase regulator)in a three-generation Chinese family with X-linked retinitis pigmentosa(XLRP).METHODS:Comprehensive ophthalmic examinations including best corrected visual acuity,fundus photography,vision field,and pattern-visual evoked potential were performed to identify the disease phenotype of a six-yearold boy from the family(proband).Genomic DNA was extracted from peripheral blood of five available members of the pedigree.Whole-exome sequencing(WES),Sanger sequencing,and pSPL3-based exon trapping were used to investigate the aberrant splicing of RPGR.Human Splice Finder v3.1 and NNSPLICE v0.9 were used for in silico prediction of splice site variants.RESULTS:The proband was diagnosed as having retinitis pigmentosa(RP).He had severe symptoms with early onset.A novel splicing mutation,c.619+1G>C in RPGR was identified in the proband by WES and in four family members by Sanger sequencing.Minigene splicing assays verified that c.619+1G>C in RPGR would result in the formation of a damaging alternative transcript in which the last 91 bp of exon 6 were skipped,leading to the subsequent deletion of 623 correct amino acids(c.529_619del p.Val177Glnfs*16).CONCLUSION:We identify a novel splice donor site mutation causing aberrant splicing of RPGR.Our findings add to the catalog of pathological mutations of RPGR and further emphasize the functional importance of RPGR in RP pathogenesis and its complex clinical phenotypes. 展开更多
关键词 retinitis pigmentosa X-linked inheritance RPGR splicing mutation pSPL3 minigene assay
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中国人群中RHAG变异对mRNA剪接影响的体外研究
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作者 贾双双 孙明明 +3 位作者 温机智 魏玲 罗广平 姬艳丽 《中国输血杂志》 CAS 2023年第11期986-990,共5页
目的通过mRNA异常剪接体外验证实验,即体外微基因剪接系统(minigene splicing assay,MSA),研究中国人群中发现的RHAG突变对于RHAG基因mRNA剪接的影响。方法通过对KMxD数据库中RHAG基因数据的分析,选择10种中国人群中分布频率相对较高的... 目的通过mRNA异常剪接体外验证实验,即体外微基因剪接系统(minigene splicing assay,MSA),研究中国人群中发现的RHAG突变对于RHAG基因mRNA剪接的影响。方法通过对KMxD数据库中RHAG基因数据的分析,选择10种中国人群中分布频率相对较高的位于RHAG基因剪接位点附近的突变或编码区域的同义突变,构建相应的RHAG外显子野生型及突变型pSplicePOLR2G微基因表达质粒。转染HEK-293T细胞,48 h后收集细胞提取总RNA,反转录后进行PCR扩增,然后进行琼脂糖凝胶电泳检测和毛细管电泳检测,根据实验结果判断RHAG基因突变是否会影响相应外显子的正常剪接。结果2种RHAG基因剪接位点附近突变(c.158-5delT,c.807+3A>C)轻微减弱了原剪接位点的剪接效率,其余8种突变(c.312G>A,c.341+3G>A,c.609C>T,c.681G>A,c.861G>A,c.957T>A,c.984T>C和c.1139-7G>A)均不影响RHAG基因mRNA的剪接。结论RHAG基因在剪接方面比较保守,剪接位点附近突变及编码区同义突变较少会引起RHAG基因异常剪接。 展开更多
关键词 RHAG突变 体外微基因剪接系统 剪接异常 中国人群
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