Increased DNA strand breaks in spermatozoa of Pxt1 knockout mice.

IF 1.8 4区 生物学 Q3 DEVELOPMENTAL BIOLOGY
Bernadetta Pawlicka, Michal Duliban, Mateusz Zieba, Michal Bochenek, Kamila Zieba, Ibrahim Adham, Maja Studencka-Turski, Andreas Meinhardt, Pawel Grzmil
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引用次数: 1

Abstract

Context: The Pxt1 gene encodes a male germ cell-specific protein and its overexpression results in male germ cell degeneration and male infertility in transgenic mice.

Aims: The analysis of the function of Pxt1 during mouse spermatogenesis.

Methods: The phenotype of Pxt1 knockout mice was characterised by testicular histology, assessment of semen parameters including sperm motility, and DNA fragmentation by flow cytometry. Gene expression was analysed using RT-PCR. Fertility of mutants was checked by standard breeding and competition breeding tests.

Key results: In Pxt1 -/- mice, a strong increase in the sperm DNA fragmentation index (DFI) was observed, while other sperm parameters were comparable to those of control animals. Despite enhanced DFI, mutants were fertile and able to mate in competition with wild type males.

Conclusions: Pxt1 induces cell death; thus, the higher sperm DFI of mice with targeted deletion of Pxt1 suggests some function for this gene in the elimination of male germ cells with chromatin damage.

Implications: Ablation of mouse Pxt1 results in enhanced DFI. In humans, the homologous PXT1 gene shares 74% similarity with the mouse gene; thus, it can be considered a candidate for mutation screening in patients with increased DFI.

Pxt1基因敲除小鼠精子中DNA链断裂增加。
背景:Pxt1基因编码雄性生殖细胞特异性蛋白,其过表达导致转基因小鼠雄性生殖细胞变性和雄性不育。目的:分析Pxt1基因在小鼠精子发生过程中的功能。方法:Pxt1基因敲除小鼠的表型通过睾丸组织学、精液参数评估(包括精子活力)和流式细胞术DNA片段分析进行表征。RT-PCR分析基因表达。通过标准育种和竞争育种试验检验突变体的育性。关键结果:在Pxt1 -/-小鼠中,观察到精子DNA碎片指数(DFI)明显增加,而其他精子参数与对照动物相当。尽管DFI增强,突变体仍具有可育性,并能与野生型雄虫竞争交配。结论:Pxt1诱导细胞死亡;因此,Pxt1靶向缺失小鼠的精子DFI较高,表明该基因在消除具有染色质损伤的雄性生殖细胞中具有一定功能。意义:小鼠Pxt1消融导致DFI增强。在人类中,同源PXT1基因与小鼠基因有74%的相似性;因此,它可以被认为是DFI增加患者突变筛查的候选物。
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来源期刊
CiteScore
2.10
自引率
10.50%
发文量
317
审稿时长
2 months
期刊介绍: Reproduction, Fertility and Development is an international journal for the publication of original and significant contributions on vertebrate reproductive and developmental biology. Subject areas include, but are not limited to: physiology, biochemistry, cell and molecular biology, endocrinology, genetics and epigenetics, behaviour, immunology and the development of reproductive technologies in humans, livestock and wildlife, and in pest management. Reproduction, Fertility and Development is a valuable resource for research scientists working in industry or academia on reproductive and developmental biology, clinicians and veterinarians interested in the basic science underlying their disciplines, and students. Reproduction, Fertility and Development is the official journal of the International Embryo Technology Society and the Society for Reproductive Biology. Reproduction, Fertility and Development is published with the endorsement of the Commonwealth Scientific and Industrial Research Organisation (CSIRO) and the Australian Academy of Science.
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