Novel mutations in LRRC23 cause asthenozoospermia in a nonconsanguineous family.

Asian journal of andrology Pub Date : 2024-09-01 Epub Date: 2024-07-26 DOI:10.4103/aja202435
Song-Xi Tang, Si-Yu Liu, Hong Xiao, Xin Zhang, Zhuang Xiao, Shan Zhou, Yi-Lang Ding, Peng Yang, Qiang Chen, Hai-Lin Huang, Xi Chen, Xi Lin, Hui-Liang Zhou, Ming-Xi Liu
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Abstract

Abstract: The cause of asthenozoospermia (AZS) is not well understood because of its complexity and heterogeneity. Although some gene mutations have been identified as contributing factors, they are only responsible for a small number of cases. Radial spokes (RSs) are critical for adenosine triphosphate-driven flagellar beating and axoneme stability, which is essential for flagellum motility. In this study, we found novel compound heterozygous mutations in leucine-rich repeat-containing protein 23 ( LRRC23 ; c.1018C>T: p.Q340X and c.881_897 Del: p.R295Gfs*32) in a proband from a nonconsanguineous family with AZS and male infertility. Diff-Quik staining and scanning electron microscopy revealed no abnormal sperm morphology. Western blotting and immunofluorescence staining showed that these mutations suppressed LRRC23 expression in sperm flagella. Additionally, transmission electron microscopy showed the absence of RS3 in sperm flagella, which disrupts stability of the radial spoke complex and impairs motility. Following in vitro fertilization and embryo transfer, the proband's spouse achieved successful pregnancy and delivered a healthy baby. In conclusion, our study indicates that two novel mutations in LRRC23 are associated with AZS, but successful fertility outcomes can be achieved by in vitro fertilization-embryo transfer techniques.

LRRC23的新型突变导致一个非血缘家族出现无精子症。
由于无精子症(AZS)的复杂性和异质性,人们对其病因还不甚了解。虽然一些基因突变已被确定为诱因,但它们只对少数病例负责。径向辐条(RS)对三磷酸腺苷驱动的鞭毛跳动和轴丝的稳定性至关重要,而轴丝的稳定性对鞭毛的运动至关重要。在这项研究中,我们在一个患有 AZS 和男性不育症的非血缘家族中发现了富亮氨酸重复序列蛋白 23(LRRC23;c.1018C>T:p.Q340X 和 c.881_897 Del:p.R295Gfs*32)的新型复合杂合突变。Diff-Quik 染色法和扫描电子显微镜检查未发现精子形态异常。Western 印迹和免疫荧光染色显示,这些突变抑制了精子鞭毛中 LRRC23 的表达。此外,透射电子显微镜显示精子鞭毛中缺少RS3,这破坏了径辐式复合体的稳定性并损害了运动能力。在体外受精和胚胎移植后,该患者的配偶成功怀孕并产下一名健康婴儿。总之,我们的研究表明,LRRC23的两个新型突变与AZS有关,但通过体外受精-胚胎移植技术可以成功实现生育。
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