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本文引用的文献

1
ZMYND10 is mutated in primary ciliary dyskinesia and interacts with LRRC6.ZMYND10 突变与原发性纤毛运动障碍有关,并与 LRRC6 相互作用。
Am J Hum Genet. 2013 Aug 8;93(2):336-45. doi: 10.1016/j.ajhg.2013.06.007. Epub 2013 Jul 25.
2
DYX1C1 is required for axonemal dynein assembly and ciliary motility.DYX1C1 对于轴丝动力蛋白的组装和纤毛运动是必需的。
Nat Genet. 2013 Sep;45(9):995-1003. doi: 10.1038/ng.2707. Epub 2013 Jul 21.
3
ARMC4 mutations cause primary ciliary dyskinesia with randomization of left/right body asymmetry.ARMC4 突变导致原发性纤毛运动障碍,并伴有左右身体不对称的随机化。
Am J Hum Genet. 2013 Aug 8;93(2):357-67. doi: 10.1016/j.ajhg.2013.06.009. Epub 2013 Jul 11.
4
The nexin-dynein regulatory complex subunit DRC1 is essential for motile cilia function in algae and humans.连接蛋白-动力蛋白调节复合物亚基 DRC1 对藻类和人类的能动纤毛功能至关重要。
Nat Genet. 2013 Mar;45(3):262-8. doi: 10.1038/ng.2533. Epub 2013 Jan 27.
5
Splice-site mutations in the axonemal outer dynein arm docking complex gene CCDC114 cause primary ciliary dyskinesia.轴丝外动力蛋白臂 docking 复合物基因 CCDC114 的剪接位点突变导致原发性纤毛运动障碍。
Am J Hum Genet. 2013 Jan 10;92(1):88-98. doi: 10.1016/j.ajhg.2012.11.002. Epub 2012 Dec 20.
6
Exome sequencing identifies mutations in CCDC114 as a cause of primary ciliary dyskinesia.外显子组测序发现 CCDC114 突变是原发性纤毛运动障碍的一个原因。
Am J Hum Genet. 2013 Jan 10;92(1):99-106. doi: 10.1016/j.ajhg.2012.11.003. Epub 2012 Dec 20.
7
Loss-of-function mutations in LRRC6, a gene essential for proper axonemal assembly of inner and outer dynein arms, cause primary ciliary dyskinesia.LRRC6 基因的功能丧失突变,该基因对于内、外动力蛋白臂的正确轴丝组装至关重要,导致原发性纤毛运动障碍。
Am J Hum Genet. 2012 Nov 2;91(5):958-64. doi: 10.1016/j.ajhg.2012.10.003.
8
Whole-exome capture and sequencing identifies HEATR2 mutation as a cause of primary ciliary dyskinesia.全外显子组捕获和测序鉴定 HEATR2 突变是原发性纤毛运动障碍的原因。
Am J Hum Genet. 2012 Oct 5;91(4):685-93. doi: 10.1016/j.ajhg.2012.08.022.
9
RPGR mutations might cause reduced orientation of respiratory cilia.RPGR 突变可能导致呼吸纤毛的定向减少。
Pediatr Pulmonol. 2013 Apr;48(4):352-63. doi: 10.1002/ppul.22632. Epub 2012 Aug 6.
10
Mutations in axonemal dynein assembly factor DNAAF3 cause primary ciliary dyskinesia.轴丝动力蛋白装配因子 DNAAF3 突变导致原发性纤毛运动障碍。
Nat Genet. 2012 Mar 4;44(4):381-9, S1-2. doi: 10.1038/ng.1106.

SPAG1 基因突变导致与外、内动力蛋白臂缺陷相关的原发性纤毛运动障碍。

Mutations in SPAG1 cause primary ciliary dyskinesia associated with defective outer and inner dynein arms.

机构信息

Department of Medicine, UNC School of Medicine, Chapel Hill, NC 27599, USA.

出版信息

Am J Hum Genet. 2013 Oct 3;93(4):711-20. doi: 10.1016/j.ajhg.2013.07.025. Epub 2013 Sep 19.

DOI:10.1016/j.ajhg.2013.07.025
PMID:24055112
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3791252/
Abstract

Primary ciliary dyskinesia (PCD) is a genetically heterogeneous, autosomal-recessive disorder, characterized by oto-sino-pulmonary disease and situs abnormalities. PCD-causing mutations have been identified in 20 genes, but collectively they account for only ∼65% of all PCDs. To identify mutations in additional genes that cause PCD, we performed exome sequencing on three unrelated probands with ciliary outer and inner dynein arm (ODA+IDA) defects. Mutations in SPAG1 were identified in one family with three affected siblings. Further screening of SPAG1 in 98 unrelated affected individuals (62 with ODA+IDA defects, 35 with ODA defects, 1 without available ciliary ultrastructure) revealed biallelic loss-of-function mutations in 11 additional individuals (including one sib-pair). All 14 affected individuals with SPAG1 mutations had a characteristic PCD phenotype, including 8 with situs abnormalities. Additionally, all individuals with mutations who had defined ciliary ultrastructure had ODA+IDA defects. SPAG1 was present in human airway epithelial cell lysates but was not present in isolated axonemes, and immunofluorescence staining showed an absence of ODA and IDA proteins in cilia from an affected individual, thus indicating that SPAG1 probably plays a role in the cytoplasmic assembly and/or trafficking of the axonemal dynein arms. Zebrafish morpholino studies of spag1 produced cilia-related phenotypes previously reported for PCD-causing mutations in genes encoding cytoplasmic proteins. Together, these results demonstrate that mutations in SPAG1 cause PCD with ciliary ODA+IDA defects and that exome sequencing is useful to identify genetic causes of heterogeneous recessive disorders.

摘要

原发性纤毛运动障碍(PCD)是一种遗传异质性、常染色体隐性疾病,其特征为耳-鼻-肺疾病和内脏位置异常。已在 20 个基因中鉴定出导致 PCD 的突变,但它们总共仅占所有 PCD 的约 65%。为了鉴定导致 PCD 的其他基因中的突变,我们对三个具有纤毛外和内动力蛋白臂(ODA+IDA)缺陷的无关先证者进行了外显子组测序。在一个有三个受影响兄弟姐妹的家族中发现了 SPAG1 中的突变。在 98 个无关的受影响个体(62 个有 ODA+IDA 缺陷,35 个有 ODA 缺陷,1 个无可用的纤毛超微结构)中进一步筛选 SPAG1 时,在另外 11 个个体(包括一个同胞对)中发现了双等位基因失活突变。具有 SPAG1 突变的所有 14 个受影响个体均具有特征性的 PCD 表型,包括 8 个有内脏位置异常。此外,所有具有突变的个体,如果有明确的纤毛超微结构,则均具有 ODA+IDA 缺陷。SPAG1 存在于人呼吸道上皮细胞裂解物中,但不存在于分离的轴丝中,免疫荧光染色显示受影响个体的纤毛中缺乏 ODA 和 IDA 蛋白,这表明 SPAG1 可能在轴丝动力蛋白臂的细胞质组装和/或运输中发挥作用。SPAG1 的斑马鱼形态发生研究产生了先前报道的与编码细胞质蛋白的基因中的 PCD 引起的突变相关的纤毛相关表型。总之,这些结果表明 SPAG1 中的突变导致具有纤毛 ODA+IDA 缺陷的 PCD,并且外显子组测序有助于鉴定异质性隐性疾病的遗传原因。