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首页> 外文期刊>BMC Urology >Genetic variation in SPAG16 regions encoding the WD40 repeats is not associated with reduced sperm motility and axonemal defects in a population of infertile males
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Genetic variation in SPAG16 regions encoding the WD40 repeats is not associated with reduced sperm motility and axonemal defects in a population of infertile males

机译:编码WD40重复序列的SPAG16区的遗传变异与不育男性群体中精子活力降低和轴突缺损无关

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Background SPAG16 is a critical structural component of motile cilia and flagella. In the eukaryotic unicellular algae Chlamydomonas, loss of gene function causes flagellar paralysis and prevents assembly of the “9?+?2” axoneme central pair. In mice, we have previously shown that loss of Spag16 gene function causes male infertility and severe sperm motility defects. We have also reported that a heterozygous mutation of the human SPAG16 gene reduces stability of the sperm axonemal central apparatus. Methods In the present study, we analyzed DNA samples from 60 infertile male volunteers of Western European (Italian) origin, to search for novel SPAG16 gene mutations, and to determine whether increased prevalence of SPAG16 single nucleotide polymorphisms (SNPs) was associated with infertility phenotypes. Semen parameters were evaluated by light microscopy and sperm morphology was comprehensively analyzed by transmission electron microscopy (TEM). Results For gene analysis, sequences were generated covering exons encoding the conserved WD40 repeat region of the SPAG16 protein and the flanking splice junctions. No novel mutations were found, and the four SNPs in the assessed gene region were present at expected frequencies. The minor alleles were not associated with any assessed sperm parameter in the sample population. Conclusions Analysis of the SPAG16 regions encoding the conserved WD repeats revealed no evidence for association of mutations or genetic variation with sperm motility and ultrastructural sperm characteristics in a cohort of Italian infertile males.
机译:背景SPAG16是能动纤毛和鞭毛的关键结构成分。在真核单细胞藻类衣藻中,基因功能的丧失会引起鞭毛麻痹,并阻止“9β+β2”轴突中心对的组装。在小鼠中,我们先前已经证明Spag16基因功能的丧失会导致男性不育和严重的精子运动缺陷。我们还报道了人SPAG16基因的杂合突变降低了精子轴突中央装置的稳定性。方法在本研究中,我们分析了来自西欧(意大利)血统的60名不育男性志愿者的DNA样本,以寻找新的SPAG16基因突变,并确定SPAG16单核苷酸多态性(SNPs)的患病率增加是否与不育表型有关。通过光学显微镜评估精液参数,并通过透射电子显微镜(TEM)全面分析精子形态。结果为了进行基因分析,产生了覆盖编码SPAG16蛋白的保守WD40重复区和侧翼剪接点的外显子的序列。没有发现新的突变,并且评估的基因区域中的四个SNP以预期的频率出现。次要等位基因与样本人群中任何评估的精子参数均不相关。结论对意大利保守型男性不育男性中编码保守的WD重复的SPAG16区域的分析显示,没有证据表明突变或遗传变异与精子活力和超微结构精子特征相关。

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