Università degli Studi di Milano, Dipartimento di Biologia e Genetica per le Scienze Mediche, Milan, Italy.
Am J Hum Genet. 2010 Jan;86(1):72-6. doi: 10.1016/j.ajhg.2009.11.014. Epub 2009 Dec 10.
Next-generation sequencing is a straightforward tool for the identification of disease genes in extended genomic regions. Autozygosity mapping was performed on a five-generation inbred Italian family with three siblings affected with Clericuzio-type poikiloderma with neutropenia (PN [MIM %604173]), a rare autosomal-recessive genodermatosis characterised by poikiloderma, pachyonychia, and chronic neutropenia. The siblings were initially diagnosed as affected with Rothmund-Thomson syndrome (RTS [MIM #268400]), with which PN shows phenotypic overlap. Linkage analysis on all living subjects of the family identified a large 16q region inherited identically by descent (IBD) in all affected family members. Deep sequencing of this 3.4 Mb region previously enriched with array capture revealed a homozygous c.504-2 A>C mismatch in all affected siblings. The mutation destroys the invariant AG acceptor site of intron 4 of the evolutionarily conserved C16orf57 gene. Two distinct deleterious mutations (c.502A>G and c.666_676+1del12) identified in an unrelated PN patient confirmed that the C16orf57 gene is responsible for PN. The function of the predicted C16orf57 gene is unknown, but its product has been shown to be interconnected to RECQL4 protein via SMAD4 proteins. The unravelled clinical and genetic identity of PN allows patients to undergo genetic testing and follow-up.
下一代测序是鉴定扩展基因组区域疾病基因的直接工具。对一个五代同堂的意大利近亲家族中的 3 名受 Clericuzio 型斑驳色素减少症伴中性粒细胞减少症(PN [MIM%604173])影响的同胞进行了自交系作图,这是一种罕见的常染色体隐性遗传皮肤病,其特征为斑驳色素减少症、厚甲症和慢性中性粒细胞减少症。这些同胞最初被诊断为 Rothmund-Thomson 综合征(RTS [MIM#268400]),与 PN 有表型重叠。对家族中所有在世成员进行连锁分析,发现所有受影响的家族成员都以相同的方式遗传了一个大的 16q 区域(IBD)。对该 3.4 Mb 区域进行深度测序,该区域之前已用阵列捕获进行了富集,发现所有受影响的同胞均存在纯合 c.504-2 A>C 错配。该突变破坏了进化上保守的 C16orf57 基因第 4 内含子中不变的 AG 受体位点。在一个无关的 PN 患者中发现的两种不同的有害突变(c.502A>G 和 c.666_676+1del12)证实了 C16orf57 基因是 PN 的原因。预测的 C16orf57 基因的功能未知,但已表明其产物通过 SMAD4 蛋白与 RECQL4 蛋白相互连接。PN 的已阐明的临床和遗传同一性使患者能够进行基因检测和随访。