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Defects in the IFT-B Component IFT172 Cause Jeune and Mainzer-Saldino Syndromes in Humans

机译:IFT-B组件IFT172中的缺陷导致人的Jeune和Mainzer-Saldino综合征

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摘要

Intraflagellar transport (IFT) depends on two evolutionarily conserved modules, subcomplexes A (IFT-A) and B (IFT-B), to drive ciliary assembly and maintenance. All six IFT-A components and their motor protein, DYNC2H1, have been linked to human skeletal ciliopathies, including asphyxiating thoracic dystrophy (ATD; also known as Jeune syndrome), Sensenbrenner syndrome, and Mainzer-Saldino syndrome (MZSDS). Conversely, the 14 subunits in the IFT-B module, with the exception of IFT80, have unknown roles in human disease. To identify additional IFT-B components defective in ciliopathies, we independently performed different mutation analyses: candidate-based sequencing of all IFT-B-encoding genes in 1,467 individuals with a nephronophthisis-related ciliopathy or whole-exome resequencing in 63 individuals with ATD. We thereby detected biallelic mutations in the IFT-B-encoding gene IFT172 in 12 families. All affected individuals displayed abnormalities of the thorax and/or long bones, as well as renal, hepatic, or retinal involvement, consistent with the diagnosis of ATD or MZSDS. Additionally, cerebellar aplasia or hypoplasia characteristic of Joubert syndrome was present in 2 out of 12 families. Fibroblasts from affected individuals showed disturbed ciliary composition, suggesting alteration of ciliary transport and signaling. Knockdown of ift172 in zebrafish recapitulated the human phenotype and demonstrated a genetic interaction between ift172 and ift80. In summary, we have identified defects in IFT172 as a cause of complex ATD and MZSDS. Our findings link the group of skeletal ciliopathies to an additional IFT-B component, IFT172, similar to what has been shown for IFT-A.
机译:鞭毛内运输(IFT)取决于两个进化保守的模块,亚复合物A(IFT-A)和B(IFT-B),以驱动睫状体的组装和维护。所有六个IFT-A成分及其运动蛋白DYNC2H1已与人类骨骼肌纤毛病相关,包括窒息性胸廓营养不良(ATD;也称为Jeune综合征),Sensenbrenner综合征和Mainzer-Saldino综合征(MZSDS)。相反,IFT-B模块中的14个亚基(IFT80除外)在人类疾病中的作用未知。为了鉴定其他在纤毛病中存在缺陷的IFT-B成分,我们独立进行了不同的突变分析:在1467名患有肾炎相关性睫状体病的个体中,对所有IFT-B编码基因进行基于候选者的测序,或者对63名ATD患者进行全基因组重测序。因此,我们在12个家庭的IFT-B编码基因IFT172中检测到双等位基因突变。所有受影响的个体均表现出胸部和/或长骨异常,以及肾脏,肝或视网膜受累,与ATD或MZSDS的诊断一致。此外,在12个家庭中,有2个存在小脑发育不全或Joubert综合征特征性发育不全。受影响个体的成纤维细胞显示出纤毛成分紊乱,表明纤毛运输和信号传导发生了改变。斑马鱼中ift172的敲除概括了人类的表型,并显示了ift172和ift80之间的遗传相互作用。总而言之,我们已经确定IFT172中的缺陷是导致复杂的ATD和MZSDS的原因。我们的发现将骨骼肌纤毛病与另外的IFT-B成分IFT172相关联,类似于IFT-A所显示的。

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