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Arfgef2基因被破坏的基因捕获小鼠的早期胚胎致死性。

Early embryonic lethality in gene trap mice with disruption of the Arfgef2 gene.

作者信息

Grzmil Pawel, Enkhbaatar Zanabazar, Gundsambuu Batjargal, Oidovsambuu Odgerel, Yalcin Safak, Wolf Stephan, Engel Wolfgang, Neesen Jurgen

机构信息

Institute of Human Genetics, University of Gottingen, Heinrich-Düker-Weg 12, Göttingen, Germany.

出版信息

Int J Dev Biol. 2010;54(8-9):1259-66. doi: 10.1387/ijdb.092959pg.

Abstract

The switching of ADP-ribosylation factors from the inactive form to the active form is catalyzed by ARF-GEF (ADP ribosylation factor--guanine nucleotide exchange protein) proteins containing a Sec7 domain. The murine Arfgef2 gene encoding the BIG2 protein belongs to the class of high molecular mass (>100 kDa) ARF-GEF proteins. BIG2 is believed to be associated with the trans-Golgi network and the recycling endosomes. In humans, mutations in the ARFGEF2 gene cause autosomal recessive periventricular heterotopia with microcephaly. To elucidate the function of BIG2 in mouse we studied a gene-trap mouse line with a functional disruption of the Arfgef2 gene. Heterozygous mutants did not reveal phenotypic abnormalities and were fertile. However, no homozygous embryos were obtained from breeding heterozygous females and males. To explore the reason for embryonic lethality, we analysed the pattern of expression of Arfgef2. Arfgef2 transcripts were detected in several adult tissues. Interestingly, Arfgef2 undergoes alternative splicing and the splicing pattern differs among tissues from adult animals. Moreover, the LacZ reporter gene of the gene-trap construct was used to reveal the expression of Arfgef2 during embryonic development. Here, we show that Arfgef2 mRNA is stored in the oocyte and is likely translated during the first embryonic divisions. SNP (Single Nucleotide Polymorphism) markers were used to demonstrate that the embryonic Arfgef2 gene is activated first at the 4-cell stage, suggesting an important role for embryonic development. This assumption is supported by the failure of Arfgef2-deficient oocytes fertilized with Arfgef2-deficient sperm to develop into 4-cell stage embryos. Our results indicate that murine BIG2 is essential for early embryonic development.

摘要

含Sec7结构域的ARF-GEF(ADP核糖基化因子-鸟嘌呤核苷酸交换蛋白)蛋白催化ADP核糖基化因子从无活性形式转变为活性形式。编码BIG2蛋白的小鼠Arfgef2基因属于高分子量(>100 kDa)ARF-GEF蛋白类别。BIG2被认为与反式高尔基体网络和再循环内体相关。在人类中,ARFGEF2基因突变会导致常染色体隐性遗传性脑室周围异位合并小头畸形。为了阐明BIG2在小鼠中的功能,我们研究了一个Arfgef2基因功能被破坏的基因陷阱小鼠品系。杂合突变体未表现出表型异常且可育。然而,通过杂合雌鼠和雄鼠杂交未获得纯合胚胎。为探究胚胎致死的原因,我们分析了Arfgef2的表达模式。在几种成年组织中检测到了Arfgef2转录本。有趣的是,Arfgef2会发生可变剪接,且成年动物不同组织中的剪接模式有所不同。此外,利用基因陷阱构建体中的LacZ报告基因来揭示Arfgef2在胚胎发育过程中的表达。在此,我们表明Arfgef2 mRNA存储在卵母细胞中,并可能在胚胎的首次分裂过程中被翻译。单核苷酸多态性(SNP)标记被用于证明胚胎Arfgef2基因首先在4细胞阶段被激活,这表明其在胚胎发育中具有重要作用。Arfgef2缺陷的卵母细胞与Arfgef2缺陷的精子受精后无法发育成4细胞阶段胚胎,这一结果支持了上述假设。我们的结果表明,小鼠BIG2对早期胚胎发育至关重要。

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