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心脏特异性 Cre 诱导小鼠年龄依赖性扩张型心肌病 (DCM)。

Cardiac-Specific Cre Induces Age-Dependent Dilated Cardiomyopathy (DCM) in Mice.

机构信息

Department of Cellular and Molecular Medicine, Faculty of Medicine, University of Ottawa, Ottawa, ON K1H 8M5, Canada.

出版信息

Molecules. 2019 Mar 26;24(6):1189. doi: 10.3390/molecules24061189.

Abstract

The genetic modification of the mouse genome using the cre-lox system has been an invaluable tool in deciphering gene and protein function in a temporal and/or spatial manner. However, it has its pitfalls, as researchers have shown that the unregulated expression of cre recombinase can cause DNA damage, the consequences of which can be very detrimental to mouse health. Previously published literature on the most utilized cardiac-specific cre, αMHC-cre, mouse model exhibited a nonlethal hypertrophic cardiomyopathy (HCM) with aging. However, using the same αMHC-cre mice, we observed a cardiac pathology, resulting in complete lethality by 11 months of age. Echocardiography and histology revealed that the αMHC-cre mice were displaying symptoms of dilated cardiomyopathy (DCM) by seven months of age, which ultimately led to their demise in the absence of any HCM at any age. Molecular analysis showed that this phenotype was associated with the DNA damage response through the downregulation of activated p38 and increased expression of JNK, p53, and Bax, known inducers of myocyte death resulting in fibrosis. Our data urges strong caution when interpreting the phenotypic impact of gene responses using αMHC-cre mice, since a lethal DCM was induced by the cre driver in an age-dependent manner in this commonly utilized model system.

摘要

利用 cre-lox 系统对小鼠基因组进行基因修饰,已经成为一种非常有价值的工具,可以在时间和/或空间上解析基因和蛋白质的功能。然而,它也有其缺陷,因为研究人员已经表明,cre 重组酶的不受调控的表达可能会导致 DNA 损伤,其后果可能对小鼠的健康非常不利。之前关于使用最广泛的心脏特异性 cre(αMHC-cre)的文献报道,其小鼠模型在衰老时表现出非致死性肥厚型心肌病(HCM)。然而,使用相同的 αMHC-cre 小鼠,我们观察到一种心脏病理学,导致其在 11 个月大时完全致死。超声心动图和组织学显示,αMHC-cre 小鼠在 7 个月大时就出现扩张型心肌病(DCM)的症状,最终在任何年龄段都没有出现任何 HCM 的情况下导致其死亡。分子分析表明,这种表型与通过下调激活的 p38 和增加 JNK、p53 和 Bax 的表达而引起的 DNA 损伤反应有关,这些都是导致肌细胞死亡和纤维化的已知诱导剂。我们的数据强烈敦促在使用 αMHC-cre 小鼠解释基因反应的表型影响时要谨慎,因为在这个常用的模型系统中,cre 驱动子以年龄依赖的方式诱导了致命的 DCM。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b2d/6471127/3716d326a3d3/molecules-24-01189-g001.jpg

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