首页> 外文期刊>American journal of medical genetics, Part A >LAMP2 exon-copy number variations in Danon disease heterozygote female probands: Infrequent or underdetected?
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LAMP2 exon-copy number variations in Danon disease heterozygote female probands: Infrequent or underdetected?

机译:灯2外显子拷贝数变异杂志杂合子女性概念:罕见或未受到批量?

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摘要

Danon disease (DD) is an X-linked disorder caused by mutations in the lysosomal-associated membrane protein 2 (LAMP2) gene (Xq24). DD is characterized by cognitive deficit, myopathy, and cardiomyopathy in male patients. The phenotype is variable and mitigated in females. The timely identification of de-novo LAMP2 mutated family members, many of whom are heterozygous females, remains critical for their treatment and family counseling. DD laboratory testing builds on minimally invasive quantification of the LAMP2 protein in white blood cells and characterization of the specific mutation. This integrative approach is particularly helpful when assessing suspect female heterozygotes. LAMP2 exon-copy number variations (eCNVs) were so far reported only in X-hemizygous male DD probands. In heterozygous female DD probands, the wild-type allele may hamper the identification of an eCNV even if it results in the complete abolition of LAMP2 transcription and/or translation. To document the likely underappreciated rate of occurrence and point out numerous potential pitfalls of detection of the LAMP2 eCNVs, we present the first two DD heterozygote female probands who harbor novel multi-exon LAMP2 deletions. Critical for counseling and recurrence prediction, we also highlight the need to search for somatic-germinal mosaicism in DD families.
机译:Danon病(DD)是溶酶体相关膜蛋白2(灯2)基因(XQ24)中突变引起的X链接疾病。 DD的特征在于男性患者中的认知缺陷,肌病和心肌病变。表型是可变的并且在女性中减轻。及时识别De-Novo Lamp2变异的家庭成员,其中许多人是杂合的女性,对其治疗和家庭咨询仍然至关重要。 DD实验室测试在白细胞中的灯泡2蛋白的微创定量和特异性突变的表征上构建。当评估怀疑女性杂合子时,这种综合方法特别有用。目前,目前仅在X-hemizygous男性DD证据中报告了灯光2外显拷数数变型(ECNV)。在杂合子雌性DD证据中,野生型等位基因可能会阻碍ECNV的鉴定,即使它导致完全取消灯2转录和/或翻译。要记录可能的可能被低估的发生率并指出了灯光2 eCNV检测的许多潜在缺陷,我们介绍了涉及新型多外显子灯2缺失的前两个DD杂合子女性缺失。对于咨询和复发预测至关重要,我们还强调了在DD系列中寻找体细胞生殖马赛族的需要。

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