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扩展等位基因的正常回复:两个独立脆性 X 综合征家系中的罕见事件。

Reversion to Normal of Expanded Alleles: A Rare Event in Two Independent Fragile X Syndrome Families.

机构信息

Fondazione Policlinico Universitario "A. Gemelli" IRCCS, Istituto di Medicina Genomica, Università Cattolica del Sacro Cuore, 00168 Roma, Italia.

Fondazione Policlinico Universitario A. Gemelli IRCCS, UOC Genetica Medica, 00168 Roma, Italia.

出版信息

Genes (Basel). 2020 Feb 26;11(3):248. doi: 10.3390/genes11030248.

Abstract

Fragile X syndrome (FXS) is mostly due to the expansion and subsequent methylation of a polymorphic CGG repeat in the 5' UTR of the gene. Full mutation alleles (FM) have more than 200 repeats and result in gene silencing and FXS. FMs arise from maternal premutations (PM) that have 56-200 CGGs; contractions of a maternal PM or FM are rare. Here, we describe two unaffected boys in two independent FXS families who inherited a non-mosaic allele in the normal and intermediate range, respectively, from their mothers who are carriers of an expanded CGG allele. The first boy inherited a 51 CGG allele (without AGG interruptions) from his mother, who carries a PM allele with 72 CGGs. The other boy inherited from his FM mother an unusual allele with 19 CGGs resulting from a deletion, removing 85 bp upstream of the CGG repeat. Given that transcription of the deleted allele was found to be preserved, we assume that the binding sites for transcription factors are excluded from the deletion. Such unusual cases resulting in non-mosaic reduction of maternal CGG expansions may help to clarify the molecular mechanisms underlying the instability of the gene.

摘要

脆性 X 综合征(FXS)主要是由于基因 5'UTR 中的多态性 CGG 重复序列的扩增和随后的甲基化引起的。完全突变等位基因(FM)有超过 200 个重复,导致基因沉默和 FXS。FM 来自于具有 56-200 个 CGG 的母体前突变(PM);母体 PM 或 FM 的收缩很少见。在这里,我们描述了来自两个独立 FXS 家族的两个未受影响的男孩,他们分别从携带扩增 CGG 等位基因的母亲那里遗传了正常和中间范围的非嵌合等位基因。第一个男孩从携带 72 个 CGG 的 PM 等位基因的母亲那里遗传了一个 51 个 CGG 的等位基因(没有 AGG 中断)。另一个男孩从他的 FM 母亲那里遗传了一个不寻常的等位基因,该等位基因有 19 个 CGG,是由于删除了 CGG 重复上游的 85 个碱基对而产生的。由于发现缺失等位基因的转录被保留下来,我们假设转录因子的结合位点被排除在缺失之外。这种导致母体 CGG 扩展非嵌合减少的异常情况可能有助于阐明该基因不稳定的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e730/7140891/c14bdfd27f75/genes-11-00248-g001.jpg

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