Familial retinoblastoma due to intronic LINE-1 insertion causes aberrant and noncanonical mRNA splicing of the RB1 gene

被引:0
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作者
Carlos Rodríguez-Martín
Florencia Cidre
Ana Fernández-Teijeiro
Gema Gómez-Mariano
Leticia de la Vega
Patricia Ramos
Ángel Zaballos
Sara Monzón
Javier Alonso
机构
[1] Unidad de Tumores Sólidos Infantiles,
[2] Área de Genética Humana,undefined
[3] Instituto de Investigación de Enfermedades Raras (IIER),undefined
[4] Instituto de Salud Carlos III (ISCIII),undefined
[5] Unidad de Gestión Clínica Intercentros de Oncología Pediátricas,undefined
[6] Hospitales Universitarios Virgen Macarena y Virgen del Rocío,undefined
[7] National Reference Unit for Retinoblastoma,undefined
[8] Unidad de Genómica,undefined
[9] Centro Nacional de Microbiología,undefined
[10] Instituto de Salud Carlos III,undefined
[11] Centro de Investigación Biomédica en Red de Enfermedades Raras (CIBERER U758),undefined
[12] Instituto de Salud Carlos III,undefined
来源
Journal of Human Genetics | 2016年 / 61卷
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摘要
Retinoblastoma (RB, MIM 180200) is the paradigm of hereditary cancer. Individuals harboring a constitutional mutation in one allele of the RB1 gene have a high predisposition to develop RB. Here, we present the first case of familial RB caused by a de novo insertion of a full-length long interspersed element-1 (LINE-1) into intron 14 of the RB1 gene that caused a highly heterogeneous splicing pattern of RB1 mRNA. LINE-1 insertion was inferred by mRNA studies and full-length sequenced by massive parallel sequencing. Some of the aberrant mRNAs were produced by noncanonical acceptor splice sites, a new finding that up to date has not been described to occur upon LINE-1 retrotransposition. Our results clearly show that RNA-based strategies have the potential to detect disease-causing transposon insertions. It also confirms that the incorporation of new genetic approaches, such as massive parallel sequencing, contributes to characterize at the sequence level these unique and exceptional genetic alterations.
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页码:463 / 466
页数:3
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