DNA修复蛋白RAD50参与链脲佐菌素诱导的小鼠糖尿病易感性。

IF 2.2 4区 农林科学 Q1 VETERINARY SCIENCES
Yuki Miyasaka, Tomoki Maegawa, Takuma Nagura, Misato Kobayashi, Naru Babaya, Hiroshi Ikegami, Fumihiko Horio, Tamio Ohno
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引用次数: 0

摘要

链脲佐菌素(STZ)作为胰腺β细胞毒素被广泛应用于啮齿类动物诱导实验性糖尿病。stz诱导的小鼠糖尿病易感性的菌株依赖性变异已被报道。stz诱导的糖尿病易感性的差异被认为与通过DNA损伤反应的胰腺β细胞脆弱性有关。本研究利用C3H- 11nsy经济菌株,在名古屋-柴田-安田(NSY)小鼠11号染色体(Chr11)上鉴定出两个STZ诱导的糖尿病易感区域,其中将STZ抗性C3H/He (C3H)小鼠的整个Chr11替换为NSY小鼠的Chr11,并分别命名为NSY (Ssnsy)-1和-2的STZ易感区域。Ssnsy1区域的变异筛选显示,NSY小鼠在DNA修复基因RAD50双链断裂修复蛋白(RAD50)的高度保守区域表现出特征性错义c.599G>T (p.G200V)变异。随后,我们产生了R2B1-Rad50敲入小鼠,其中c.599T在stz易感C3H的Rad50中。通过基因组编辑将NSY-R2B1亚基因小鼠替换为c.599G。与C3H相比。NSY-R2B1小鼠和R2B1-Rad50敲入小鼠在单次高剂量和多次低剂量注射STZ后,高血糖、糖尿病发病率均得到抑制,血浆胰岛素水平降低。我们的研究结果表明,Rad50是stz诱导的糖尿病的易感基因,参与了胰腺β细胞的脆弱性。利用具有STZ易感性的近交小鼠品系作为表型指标的正向遗传方法将进一步阐明通过DNA损伤反应破坏胰腺β细胞的分子机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DNA repair protein RAD50 is involved in the streptozotocin-induced diabetes susceptibility of mice.

Streptozotocin (STZ) is widely used as a pancreatic beta-cell toxin to induce experimental diabetes in rodents. Strain-dependent variations in STZ-induced diabetes susceptibility have been reported in mice. Differences in STZ-induced diabetes susceptibility are putatively related to pancreatic beta-cell fragility via DNA damage response. In this study, we identified two STZ-induced diabetes susceptibility regions in chromosome 11 (Chr11) of Nagoya-Shibata-Yasuda (NSY) mice via congenic mapping using the C3H-11NSY consomic strains, in which the entire Chr11 of STZ-resistant C3H/He (C3H) mice was replaced with that of NSY mice, and named them STZ susceptibility region for NSY (Ssnsy)-1 and -2, respectively. Screening for variants in the Ssnsy1 region revealed that NSY mice exhibited a characteristic missense c.599G>T (p.G200V) variant in a highly conserved region within the DNA repair gene, RAD50 double-strand break repair protein (Rad50). Subsequently, we generated R2B1-Rad50 knock-in mice, in which c.599T in Rad50 of STZ-susceptible C3H.NSY-R2B1 subcongenic mice was replaced with c.599G via genome editing. Compared with C3H.NSY-R2B1 mice, and R2B1-Rad50 knock-in mice showed suppressed hyperglycemia, incidence of diabetes, and decrease in plasma insulin levels following single high-dose and multiple low-dose injections of STZ. Our results suggest Rad50 as a susceptibility gene for STZ-induced diabetes that is involved in pancreatic beta-cell fragility. Forward genetic approaches using inbred mouse strains with STZ susceptibility as a phenotypic indicator will further elucidate the molecular mechanisms of pancreatic beta-cell destruction via DNA damage response.

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来源期刊
Experimental Animals
Experimental Animals 生物-动物学
CiteScore
2.80
自引率
4.20%
发文量
2
审稿时长
3 months
期刊介绍: The aim of this international journal is to accelerate progress in laboratory animal experimentation and disseminate relevant information in related areas through publication of peer reviewed Original papers and Review articles. The journal covers basic to applied biomedical research centering around use of experimental animals and also covers topics related to experimental animals such as technology, management, and animal welfare.
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