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首页> 外文期刊>Human Molecular Genetics >Growth retardation and skin abnormalities of the Recql4-deficient mouse.
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Growth retardation and skin abnormalities of the Recql4-deficient mouse.

机译:Recql4缺陷小鼠的生长发育迟缓和皮肤异常。

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Mutations in the Recql4 gene are very likely responsible for a subset of Rothmund-Thomson syndrome (RTS) cases, but until now there has been no animal model to confirm this. Knockout mice in which the Recql4 gene is disrupted at exons 5-8 exhibit embryonic lethality at embryonic day 3.5-6.5. We generated a helicase activity-inhibited mouse by deleting exon 13 of Recql4, which is one of the coding exons of the consensus RecQ-helicase domain. This domain is the primary site of mutations that have been identified in RTS patients. The exon 13-deleted Recql4-deficient mice are viable, but exhibit severe growth retardation and abnormalities in several tissues, and embryonic fibroblasts show a defect in cell proliferation. Abnormalities in the Recql4-deficient mice are similar to those in RTS patients, suggesting that defects in the Recql4 gene may indeed be responsible for RTS. We speculate that the loss of Recql4 helicase activity results in the prematurely aged appearance observed in some RecQ helicase diseases.
机译:Recql4基因的突变很可能是Rothmund-Thomson综合征(RTS)病例的一部分,但到目前为止,还没有动物模型可以证实这一点。 Recql4基因在第5-8外显子被破坏的敲除小鼠在胚胎第3.5-6.5天表现出胚胎致死性。我们通过删除Recql4的外显子13(它是共有RecQ-解旋酶结构域的编码外显子之一)来产生抑制解旋酶活性的小鼠。该结构域是在RTS患者中已经鉴定出的突变的主要位点。外显子13缺失Recql4缺陷小鼠是可行的,但在几个组织中表现出严重的生长迟缓和异常,并且胚胎成纤维细胞在细胞增殖中表现出缺陷。 Recql4缺陷小鼠中的异常与RTS患者中的异常相似,表明Recql4基因中的缺陷可能确实是造成RTS的原因。我们推测,在某些RecQ解旋酶疾病中观察到Recql4解旋酶活性的丧失会导致外观过早老化。

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