Dongjia Chen, Guoqing Fan, Yan Xu, Peng Luo, Qinyun Chen, Xuren Chen, Zexin Guo, Xianqing Zhu, Yong Gao
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摘要

原发性纤毛运动障碍(PCD)是一种常染色体隐性遗传疾病,其特征是细胞纤毛或鞭毛的超微结构缺陷,可导致呼吸异常、鼻窦炎、内脏移位和男性不育。DNAAF3 在纤毛或鞭毛中轴突动力蛋白复合物的组装和运输过程中发挥着重要作用,已被证明与 PCD 有关。迄今为止,只有两例与DNAAF3基因突变相关的PCD伴不育症病例被报道,而且还没有成功构建出该基因的小鼠模型。本研究的对象是一名有支气管炎病史的不育中国男性患者。该患者的精液检查发现了严重的无精子症和畸形精子症。全外显子组测序发现了一个新的同基因功能缺失 DNAAF3 突变。利用CRISPR-Cas9基因编辑技术在C57/B6小鼠中构建了相同的突变,发现同源的C57/B6小鼠具有严重脑积水和早死的特征。该研究结果扩大了DNAAF3的突变谱,并证实了其与PCD发病机制的相关性。这项研究为DNAAF3突变与PCD相关的男性不育症的机制提供了新的见解。
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A novel homozygous mutation in the DNAAF3 gene leads to severe asthenozoospermia and teratospermia

Primary ciliary dyskinesia (PCD) is an autosomal recessive genetic disorder characterized by ultrastructural defects in the cilia or flagella of cells, causing respiratory abnormalities, sinusitis, visceral transposition, and male infertility. DNAAF3 plays an important role in the assembly and transportation of axonemal dynein complexes in cilia or flagella and has been shown to be associated with PCD. To date, only two cases of PCD with infertility associated with DNAAF3 mutations have been reported, and no mouse models for this gene have been successfully constructed. This study was conducted on an infertile Chinese male patient with a history of bronchitis. Examination of the patient's semen revealed severe asthenozoospermia and teratospermia. Whole exome sequencing revealed a new homozygous loss-of-function DNAAF3 mutation. CRISPR-Cas9 gene-editing technology was used to construct the same mutation in C57/B6 mice, revealing that homozygous C57/B6 mice were characterized by severe hydrocephalus and early death. The results of this study expand the mutation spectrum of DNAAF3 and confirm its correlation with PCD pathogenesis. This study provides new insights on the mechanisms underlying male infertility related to DNAAF3 mutation and PCD.

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期刊介绍: The Journal of Cellular and Molecular Medicine serves as a bridge between physiology and cellular medicine, as well as molecular biology and molecular therapeutics. With a 20-year history, the journal adopts an interdisciplinary approach to showcase innovative discoveries. It publishes research aimed at advancing the collective understanding of the cellular and molecular mechanisms underlying diseases. The journal emphasizes translational studies that translate this knowledge into therapeutic strategies. Being fully open access, the journal is accessible to all readers.
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