首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Mouse model of human beta zero thalassemia: targeted deletion of the mouse beta maj- and beta min-globin genes in embryonic stem cells.
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Mouse model of human beta zero thalassemia: targeted deletion of the mouse beta maj- and beta min-globin genes in embryonic stem cells.

机译:人β零地中海贫血的小鼠模型:在小鼠胚胎干细胞中有针对性地删除小鼠βmaj-和βmin-globin基因。

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摘要

beta zero-Thalassemia is an inherited disorder characterized by the absence of beta-globin polypeptides derived from the affected allele. The molecular basis for this deficiency is a mutation of the adult beta-globin structural gene or cis regulatory elements that control beta-globin gene expression. A mouse model of this disease would enable the testing of therapeutic regimens designed to correct the defect. Here we report a 16-kb deletion that includes both adult beta-like globin genes, beta maj and beta min, in mouse embryonic stem cells. Heterozygous animals derived from the targeted cells are severely anemic with dramatically reduced hemoglobin levels, abnormal red cell morphology, splenomegaly, and markedly increased reticulocyte counts. Homozygous animals die in utero; however, heterozygous mice are fertile and transmit the deleted allele to progeny. The anemic phenotype is completely rescued in progeny derived from mating beta zero-thalassemic animals with transgenic mice expressing high levels of human hemoglobin A. The beta zero-thalassemic mice can be used to test genetic therapies for beta zero-thalassemia and can be bred with transgenic mice expressing high levels of human hemoglobin HbS to produce an improved mouse model of sickle cell disease.
机译:β零地中海贫血是一种遗传性疾病,其特征在于不存在源自受影响等位基因的β珠蛋白多肽。这种缺陷的分子基础是成人β-珠蛋白结构基因或控制β-珠蛋白基因表达的顺式调节元件的突变。这种疾病的小鼠模型将能够测试旨在纠正该缺陷的治疗方案。在这里,我们报告了一个16 kb的缺失,其中包括小鼠胚胎干细胞中的成年beta样球蛋白基因,beta maj和beta min。来自靶细胞的杂合动物严重贫血,血红蛋白水平显着降低,红细胞形态异常,脾肿大,网织红细胞计数明显增加。纯合动物在子宫内死亡;然而,杂合小鼠能繁殖,并将缺失的等位基因传递给后代。贫血表型可在与表达高水平人类血红蛋白A的转基因小鼠交配的β零地中海贫血动物的后代中完全挽救。β零地中海贫血小鼠可用于测试β零地中海贫血的基因疗法,并且可以与表达高水平人血红蛋白HbS的转基因小鼠可产生镰状细胞疾病的改良小鼠模型。

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