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首页> 外文期刊>Molecular and Cellular Biochemistry >Double knockout Nme1/Nme2 mouse model suggests a critical role for NDP kinases in erythroid development
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Double knockout Nme1/Nme2 mouse model suggests a critical role for NDP kinases in erythroid development

机译:双敲除Nme1 / Nme2小鼠模型提示NDP激酶在类红细胞发育中的关键作用

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摘要

Nm23/NDP kinases A and B encoded by the Nme1/Nme2 genes are multifunctional enzymes responsible for the majority of NDP kinase activity in mammals. This review summarizes recent studies on their physiological roles using a mouse model in which both Nme1 and Nme2 genes have been deleted. The double knockout mice are stunted in growth and die perinatally. Additionally, these mice display hematologic phenotypes, including severe anemia, abnormal erythroid cell development, loss of the iron transport receptor molecule TfR1, and reduced iron uptake by Nme1 −/− /Nme2 −/− erythroid cells. We hypothesize that Nm23/NDP kinases regulate TfR1 gene expression in erythroid cells in some manner, and that defective iron transport into these cells is responsible for the anemia and death. This Nme1/Nme2 mouse model also links nucleotide metabolism with erythropoiesis, suggesting alternative or additional mechanisms that may explain the observed phenomena.
机译:由Nme1 / Nme2基因编码的Nm23 / NDP激酶A和B是负责哺乳动物大多数NDP激酶活性的多功能酶。这篇综述总结了使用小鼠模型的生理作用的最新研究,其中Nme1和Nme2基因均已被删除。双基因敲除小鼠生长发育迟缓,围产期死亡。此外,这些小鼠表现出血液学表型,包括严重的贫血,异常的红系细胞发育,铁转运受体分子TfR1的丢失以及Nme1 -/- / Nme2 -/-减少的铁吸收红细胞。我们假设Nm23 / NDP激酶以某种方式调节类红细胞中TfR1基因的表达,并且有缺陷的铁运输进入这些细胞是造成贫血和死亡的原因。此Nme1 / Nme2小鼠模型还将核苷酸代谢与促红细胞生成联系起来,提示可能解释所观察到现象的替代或其他机制。

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