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小鼠Hus1细胞周期检查点基因的条件性失活

Conditional inactivation of the mouse Hus1 cell cycle checkpoint gene.

作者信息

Levitt Peter S, Liu Houchun, Manning Charlene, Weiss Robert S

机构信息

Department of Biomedical Sciences, Cornell University, T2-006C Veterinary Research Tower, Ithaca, NY 14853, USA.

出版信息

Genomics. 2005 Aug;86(2):212-24. doi: 10.1016/j.ygeno.2005.04.007.

Abstract

The Hus1 cell cycle checkpoint protein plays a central role in genome maintenance by mediating cellular responses to DNA damage and replication stress. Targeted deletion of mouse Hus1 results in spontaneous chromosomal abnormalities and embryonic lethality. To study the physiological impact of Hus1 deficiency in adult mice, we generated a conditional Hus1 allele, Hus1(flox), in which exons two and three are flanked by loxP sites. Cre-mediated excision of the loxP-flanked region produces Hus1(Delta2,3), which is capable of encoding only 19 of 281 Hus1 amino acids. Germline homozygosity for Hus1(Delta2,3) resulted in mid-gestational embryonic lethality that was indistinguishable from that caused by an established null allele, Hus1(Delta1n). Hus1 was inactivated in adult mice using a transgenic strain in which Cre is sporadically expressed in a variety of tissues from the Hsp70-1 promoter. Conditional Hus1 knockout mice were produced at unexpectedly low frequency and, unlike control animals, demonstrated limited inactivation of the conditional allele, suggesting that Hus1-deficient cells were at a strong selective disadvantage in adult animals. However, viable conditional Hus1 knockout mice consistently showed the greatest degree of Hus1 inactivation specifically in lung and mammary gland, highlighting varying requirements for Hus1 in different tissues. The novel tools described here hold promise for elucidating how the Hus1-dependent checkpoint mechanism contributes to chromosomal stability, DNA damage responses, and tumor suppression in adult mice.

摘要

Hus1细胞周期检查点蛋白通过介导细胞对DNA损伤和复制应激的反应,在基因组维持中发挥核心作用。小鼠Hus1的靶向缺失会导致自发的染色体异常和胚胎致死性。为了研究成年小鼠中Hus1缺陷的生理影响,我们构建了一个条件性Hus1等位基因Hus1(flox),其中外显子2和3两侧为loxP位点。Cre介导的loxP侧翼区域切除产生Hus1(Delta2,3),其仅能编码281个Hus1氨基酸中的19个。Hus1(Delta2,3)的种系纯合性导致妊娠中期胚胎致死,这与由已建立的无效等位基因Hus1(Delta1n)引起的情况无法区分。使用转基因品系在成年小鼠中使Hus1失活,其中Cre从Hsp70-1启动子在多种组织中偶尔表达。条件性Hus1敲除小鼠的产生频率出乎意料地低,并且与对照动物不同,显示出条件等位基因的有限失活,这表明Hus1缺陷细胞在成年动物中处于强烈的选择劣势。然而,存活的条件性Hus1敲除小鼠始终在肺和乳腺中表现出最大程度的Hus1失活,突出了不同组织对Hus1的不同需求。本文描述的新工具有望阐明Hus1依赖性检查点机制如何促进成年小鼠的染色体稳定性、DNA损伤反应和肿瘤抑制。

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