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首页> 外文期刊>Molecular and Cellular Biology >Null Mutation of the Lmo4 Gene or a Combined Null Mutation of the Lmo1/Lmo3 Genes Causes Perinatal Lethality, and Lmo4 Controls Neural Tube Development in Mice
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Null Mutation of the Lmo4 Gene or a Combined Null Mutation of the Lmo1/Lmo3 Genes Causes Perinatal Lethality, and Lmo4 Controls Neural Tube Development in Mice

机译:Lmo4基因的空突变或Lmo1 / Lmo3基因的组合空突变导致围产期致死,而Lmo4控制小鼠的神经管发育。

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The LIM-only family of proteins comprises four members; two of these (LMO1 and LMO2) are involved in human T-cell leukemia via chromosomal translocations, and LMO2 is a master regulator of hematopoiesis. We have carried out gene targeting of the other members of the LIM-only family, viz., genes Lmo1, Lmo3 and Lmo4, to investigate their role in mouse development. None of these genes has an obligatory role in lymphopoiesis. In addition, while null mutations of Lmo1 or Lmo3 have no discernible phenotype, null mutation of Lmo4 alone causes perinatal lethality due to a severe neural tube defect which occurs in the form of anencephaly or exencephaly. Since the Lmo1 and Lmo3 gene sequences are highly related and have partly overlapping expression domains, we assessed the effect of compound Lmo1/Lmo3 null mutations. Although no anatomical defects were apparent in compound null pups, these animals also die within 24 h of birth, suggesting that a compensation between the related Lmo1 and 3 proteins can occur during embryogenesis to negate the individual loss of these genes. Our results complete the gene targeting of the LIM-only family in mice and suggest that all four members of this family are important in regulators of distinct developmental pathways.
机译:仅LIM的蛋白质家族包含四个成员。其中两个(LMO1和LMO2)通过染色体易位参与人类T细胞白血病,而LMO2是造血功能的主要调节剂。我们已经对仅LIM家族的其他成员(即基因 Lmo1 Lmo3 Lmo4 )进行了基因定位研究它们在小鼠发育中的作用。这些基因均没有在淋巴细胞生成中起强制作用。此外,虽然 Lmo1 Lmo3 的无效突变没有可辨别的表型,但单独的 Lmo4 的无效突变会由于严重的神经管而导致围产期致死。以无脑或无脑的形式出现的缺陷。由于 Lmo1 Lmo3 基因序列高度相关且具有部分重叠的表达域,因此我们评估了化合物 Lmo1 / Lmo3 无效突变的作用。尽管没有复合缺陷的幼崽有明显的解剖学缺陷,但这些动物也在出生后的24小时内死亡,这表明相关的Lmo1和3蛋白之间的补偿可以在胚胎发生过程中发生,以消除这些基因的个体丢失。我们的结果完成了仅LIM家族在小鼠中的基因靶向,并表明该家族的所有四个成员在不同发育途径的调节剂中都很重要。

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