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胱硫醚β-合酶基因失活会扰乱主要尿蛋白的生物发生,并损害小鼠的性信号传递。

Cystathionine β-synthase gene inactivation dysregulates major urinary protein biogenesis and impairs sexual signaling in mice.

机构信息

Department of Biochemistry and Biotechnology, Poznań University of Life Sciences, Poznań, Poland.

Institute of Bioorganic Chemistry, Poznań, Poland.

出版信息

FASEB J. 2022 Oct;36(10):e22547. doi: 10.1096/fj.202200969R.

DOI:10.1096/fj.202200969R
PMID:36098436
Abstract

Reproductive success in mice depends on sexually dimorphic major urinary proteins (Mup) that facilitate interactions between females and males. Deletion of cystathionine β-synthase (Cbs) gene, a metabolic gene important for homeostasis of one-carbon metabolism, impairs reproduction by causing female infertility in mice. Here, we examined Mup biogenesis and sexual signaling in Cbs versus Cbs mice. We found significantly reduced levels of total urinary Mup protein in male and female Cbs versus Cbs mice. SDS-PAGE/Western blot, ESI-MS, and RT-qPCR analyses of the liver, plasma, and urinary proteins identified a male-specific Mup20 in Cbs , but not in Cbs females. The 18 893 Da Mup20 became the most abundant in urine of Cbs females and males. Effects of Cbs genotype on 18 645 Da, 18 693 Da, and 18 709 Da Mup species abundance were Mup- and sex-specific. Cbs genotype-dependent changes in hepatic Mups and Mup20 expression were similar at the protein and mRNA level. Changes in Mups, but not in Mup20, can be explained by downregulation of hepatic Zhx2 and Ghr receptors in Cbs mice. Behavioral testing showed that Cbs females ignored Cbs male urine but were attracted to Cbs male urine. Cbs males ignored urine of Cbs males but countermarked urine of other Cbs males and were attracted to urines of Cbs as well as Cbs females. Cbs males did not countermark urine of Cbs males but were attracted to urines of Cbs females. Taken together, these findings show that Cbs, a metabolic gene, interacts with the processes involved in Mup biogenesis that are essential for the maintenance of sexual dimorphism and signaling and suggest that dysregulation of these interactions impairs reproductive fitness in mice.

摘要

小鼠的繁殖成功依赖于性二态主要尿蛋白(Mup),这些蛋白促进了雌雄个体之间的相互作用。半胱氨酸β-合酶(Cbs)基因是一个对一碳代谢平衡至关重要的代谢基因,该基因的缺失会导致小鼠雌性不育,从而损害繁殖能力。在这里,我们研究了 Cbs 与 Cbs 小鼠的 Mup 生物发生和性信号。我们发现,Cbs 与 Cbs 雄性和雌性小鼠的总尿 Mup 蛋白水平显著降低。肝、血浆和尿液蛋白的 SDS-PAGE/Western blot、ESI-MS 和 RT-qPCR 分析鉴定出 Cbs 中存在一种雄性特异性 Mup20,但 Cbs 雌性中不存在。18645Da、18693Da 和 18709Da Mup 物种丰度的 18893Da Mup20 成为 Cbs 雌性和雄性尿液中最丰富的 Mup20。Cbs 基因型对 18645Da、18693Da 和 18709Da Mup 物种丰度的影响具有 Mup 特异性和性别特异性。肝 Mup 和 Mup20 表达的 Cbs 基因型依赖性变化在蛋白质和 mRNA 水平上相似。Cbs 小鼠中,Mups 的变化而不是 Mup20 的变化可以用肝脏 Zhx2 和 Ghr 受体的下调来解释。行为测试表明,Cbs 雌性忽略 Cbs 雄性尿液,但被 Cbs 雄性尿液吸引。Cbs 雄性忽略 Cbs 雄性的尿液,但会标记其他 Cbs 雄性的尿液,并被 Cbs 以及 Cbs 雌性的尿液吸引。Cbs 雄性不会标记 Cbs 雄性的尿液,但会被 Cbs 雌性的尿液吸引。总之,这些发现表明,代谢基因 Cbs 与参与 Mup 生物发生的过程相互作用,这些过程对维持性二态性和信号至关重要,并表明这些相互作用的失调会损害小鼠的生殖适应性。

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