首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Localization of Apaf1 gene expression in the early development of the mouse by means of in situ reverse transcriptase-polymerase chain reaction.
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Localization of Apaf1 gene expression in the early development of the mouse by means of in situ reverse transcriptase-polymerase chain reaction.

机译:通过原位逆转录酶-聚合酶链反应在小鼠的早期发育中定位Apaf1基因表达。

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Apoptosis is an essential ubiquitous process that controls the duration of the life span of cells, thus playing a crucial role in morphogenetic, histogenetic, and phylogenetic developmental processes. Apaf1 (apoptosis protease activating factor 1) is one of the central mediators of the intrinsic apoptotic pathway and a part of the apoptosome, which activates procaspase-3 and promotes cell death. Gene knockout of Apaf1 in mice leads to late embryonic lethality with malformations such as the persistence of interdigital webs and hyperplasia of brain and retina. Therefore, Apaf1 is generally believed to play a crucial role in developmental apoptosis and have a widespread expression. However, its pattern of expression in early development remains unknown. To specify whether Apaf1 indeed plays this key role, we investigated the pattern of gene expression for Apaf1 in mouse embryos on day 7, 9, and 12 of development. Our results show, that gene expression for Apaf1 first occurs within the embryo between day 7and 9 of development, becoming more widespread toward day 12 and then includes structures, such as yolk sac, mesenchyme, cartilage, heart anlage, otic vesicle, peridermis, and anlagen of the spinal ganglia and vertebral bodies. Our results also show that gene expression for Apaf1 is not ubiquitous in early mouse development. This finding indicates that cell death processes are independent of or less dependent on Apaf1 during this time. Of interest, an active gene expression for Apaf1 is also present in organ anlagen such as heart or intestine, in which no obvious phenotype is seen after Apaf1 deletion. This finding suggests a possible role for Apaf1 in such anlagen as a putative alternative compensatory pathway, which could be switched on in the case of defects in the mediators that are normally involved in such organs.
机译:凋亡是控制细胞寿命的必不可少的普遍过程,因此在形态发生,组织发生和系统发育发育过程中起着至关重要的作用。 Apaf1(细胞凋亡蛋白酶激活因子1)是内在凋亡途径的中心介质之一,也是凋亡小体的一部分,它激活procaspase-3并促进细胞死亡。小鼠中Apaf1的基因敲除会导致晚期胚胎致死,并伴有畸形,如指间网的持久性以及脑和视网膜的增生。因此,通常认为Apaf1在发育性细胞凋亡中起关键作用,并具有广泛的表达。但是,其在早期发育中的表达模式仍然未知。为了确定Apaf1是否确实发挥了关键作用,我们在发育的第7、9和12天调查了Apaf1在小鼠胚胎中的基因表达模式。我们的结果表明,Apaf1的基因表达首先出现在发育的第7至9天之间的胚胎中,直到第12天变得更加普遍,然后包括卵黄囊,间充质,软骨,心脏血管,耳囊,周长和组织等结构。脊神经节和椎体的anlagen。我们的结果还表明,Apaf1的基因表达在小鼠早期发育中并不普遍。这一发现表明,在此期间,细胞死亡过程独立于或几乎不依赖于Apaf1。有趣的是,Apaf1的活性基因表达也存在于器官anlagen(例如心脏或肠)中,其中在Apaf1缺失后看不到明显的表型。这一发现表明,Apaf1在这样的胶原蛋白中可能发挥作用,作为推定的替代性补偿途径,在正常参与这种器官的介体缺陷的情况下,可以将其打开。

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