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Cold Shock Domain Family Members YB-1 and MSY4 Share Essential Functions during Murine Embryogenesis

机译:冷休克域家族成员YB-1和MSY4在小鼠胚胎发生过程中共享基本功能。

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摘要

Three cold shock domain (CSD) family members (YB-1, MSY2, and MSY4) exist in vertebrate species ranging from frogs to humans. YB-1 is expressed throughout embryogenesis and is ubiquitously expressed in adult animals; it protects cells from senescence during periods of proliferative stress. YB-1-deficient embryos die unexpectedly late in embryogenesis (embryonic day 18.5 [E18.5] to postnatal day 1) with a runting phenotype. We have now determined that MSY4, but not MSY2, is also expressed during embryogenesis; its abundance declines substantially from E9.5 to E17.5 and is undetectable on postnatal day 1(adult mice express MSY4 in testes only). Whole-mount analysis revealed similar patterns of YB-1 and MSY4 RNA expression in E11.5 embryos. To determine whether MSY4 delays the death of YB-1-deficient embryos, we created and analyzed MSY4-deficient mice and then generated YB-1 and MSY4 double-knockout embryos. MSY4 is dispensable for normal development and survival, but the testes of adult mice have excessive spermatocyte apoptosis and seminiferous tubule degeneration. Embryos doubly deficient for YB-1 and MSY4 are severely runted and die much earlier (E8.5 to E11.5) than YB-1-deficient embryos, suggesting that MSY4 indeed shares critical cellular functions with YB-1 in the embryonic tissues where they are coexpressed.
机译:在从蛙到人的脊椎动物物种中,存在三个冷休克域(CSD)家族成员(YB-1,MSY2和MSY4)。 YB-1在整个胚胎发生过程中表达,并在成年动物中普遍表达。它在增殖应激期间保护细胞免于衰老。缺乏YB-1的胚胎在胚发生后期意外死亡(胚胎第18.5天[E18.5]至出生后第1天),并出现侏儒表型。现在我们确定在胚胎发生过程中也表达了MSY4,但不表达MSY2。它的丰度从E9.5大幅下降到E17.5,并且在出生后第1天就无法检测到(成年小鼠仅在睾丸中表达MSY4)。整个分析显示E11.5胚胎中YB-1和MSY4 RNA表达的相似模式。为了确定MSY4是否延迟YB-1缺陷胚胎的死亡,我们创建并分析了MSY4缺陷小鼠,然后生成了YB-1和MSY4双敲除胚胎。 MSY4对于正常发育和存活是必不可少的,但是成年小鼠的睾丸具有过量的精母细胞凋亡和生精小​​管变性。与YB-1缺陷的胚胎相比,YB-1和MSY4双重缺陷的胚胎严重畸形且死亡时间更早(E8.5至E11.5),这表明MSY4确实在胚胎组织中与YB-1共享关键的细胞功能。他们是共表达的。

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