精子无力症
原发性睫状体运动障碍
生物
动力蛋白
轴丝
遗传学
突变
基因
精子活力
纤毛
男性不育
精子
鞭毛
细胞生物学
分子生物学
微管
医学
内科学
不育
怀孕
支气管扩张
肺
作者
Daniela Zuccarello,Alberto Ferlin,Andrea Garolla,Mauro Antonio Pati,Afra Moretti,C. Cazzadore,Sandro La Vignera,Carlo Foresta
出处
期刊:Human Reproduction
[Oxford University Press]
日期:2008-01-29
卷期号:23 (4): 996-1001
被引量:45
标识
DOI:10.1093/humrep/dem400
摘要
Asthenozoospermia (AZS), characterized by grade A + B sperm motility (as in World Health Organization Guidelines) < or =50% or A <25% in fresh ejaculate, may exist as an isolated disorder, in combination with other sperm anomalies or as part of syndromic association. The majority of syndromic patients can be ascribed to mutations in dynein genes, while, to date, no genes have been described to be associated in humans with non-syndromic, isolated AZS. An interesting family of axonemal proteins, the tektins, has been recently identified in various mammals and they are thought to play a fundamental role in ciliary movement. Recently, the human tektin-t (or h-tekB1 or Tektin-2) gene has been cloned, showing specific expression in flagella of mature sperm. We report the screening of tektin-t gene in 90 isolated non-syndromic AZS patients. We found a heterozygous mutation (A229V) in one patient. Ultrastructural analysis showed anomalies in > or =80% of examined spermatozoa involving axoneme microtubules and mitochondria. Moreover, the viability and mitochondrial function of sperm were altered in the patient with the A229V mutation. This is the first description of human pathology linked to a tektin-family gene, since only murine models are available for these genes.
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