Generation and identification of a conditional knockout allele for the PSMD11 gene in mice.

Q2 Biochemistry, Genetics and Molecular Biology BMC Developmental Biology Pub Date : 2021-02-01 DOI:10.1186/s12861-020-00233-1
Linlin Zhao, Jinming Zhao, Yingying Zhang, Lele Wang, Longyan Zuo, Airu Niu, Wei Zhang, Xia Xue, Suhong Zhao, Chao Sun, Kailin Li, Jue Wang, Zhimin Bian, Xiaogang Zhao, Dieter Saur, Barbara Seidler, Chuanxin Wang, Tonggang Qi
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引用次数: 4

Abstract

Background: Our previous study have shown that the PSMD11 protein was an important survival factor for cancer cells except for its key role in regulation of assembly and activity of the 26S proteasome. To further investigate the role of PSMD11 in carcinogenesis, we constructed a conditional exon 5 floxed allele of PSMD11 (PSMD11flx) in mice.

Results: It was found that homozygous PSMD11 flx/flx mice showed normal and exhibited a normal life span and fertility, and showed roughly equivalent expression of PSMD11 in various tissues, suggesting that the floxed allele maintained the wild-type function. Cre recombinase could induce efficient knockout of the floxed PSMD11 allele both in vitro and in vivo. Mice with constitutive single allele deletion of PSMD11 derived from intercrossing between PSMD11flx/flx and CMV-Cre mice were all viable and fertile, and showed apparent growth retardation, suggesting that PSMD11 played a significant role in the development of mice pre- or postnatally. No whole-body PSMD11 deficient embryos (PSMD11-/-) were identified in E7.5-8.5 embryos in uteros, indicating that double allele knockout of PSMD11 leads to early embryonic lethality. To avoid embryonic lethality produced by whole-body PSMD11 deletion, we further developed conditional PSMD11 global knockout mice with genotype Flp;FSF-R26CAG - CreERT2/+; PSMD11 flx/flx, and demonstrated that PSMD11 could be depleted in a temporal and tissue-specific manner. Meanwhile, it was found that depletion of PSMD11 could induce massive apoptosis in MEFs.

Conclusions: In summary, our data demonstrated that we have successfully generated a conditional knockout allele of PSMD11 in mice, and found that PSMD11 played a key role in early and postnatal development in mice, the PSMD11 flx/flx mice will be an invaluable tool to explore the functions of PSMD11 in development and diseases.

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小鼠PSMD11基因条件敲除等位基因的产生和鉴定。
背景:我们之前的研究表明,PSMD11蛋白除了在调节26S蛋白酶体的组装和活性中起关键作用外,还是癌细胞的一个重要生存因子。为了进一步研究PSMD11在癌变中的作用,我们在小鼠中构建了PSMD11的条件外显子5柔化等位基因(PSMD11flx)。结果:发现纯合子PSMD11 flx/flx小鼠表现正常,寿命和生育能力正常,PSMD11在各组织中表达大致相当,表明flx等位基因保持了野生型功能。Cre重组酶在体外和体内均能诱导有效敲除PSMD11固定等位基因。PSMD11flx/flx与CMV-Cre小鼠杂交获得的PSMD11组成性单等位基因缺失小鼠均能存活和生育,并表现出明显的生长迟缓,提示PSMD11在小鼠出生前或出生后的发育中发挥了重要作用。在e7.5 ~ 8.5龄的子宫胚胎中未发现PSMD11整体缺陷胚胎(PSMD11-/-),提示PSMD11双等位基因敲除导致早期胚胎致死。为了避免PSMD11全身缺失造成的胚胎致死,我们进一步培育了基因型为Flp、FSF-R26CAG - CreERT2/+、FSF-R26CAG - CreERT2/+的条件PSMD11全敲除小鼠;PSMD11 flx/flx,并证明PSMD11可以以时间和组织特异性的方式耗尽。同时发现PSMD11缺失可诱导mef细胞大量凋亡。结论:综上所述,我们的数据表明,我们已经成功地在小鼠中产生了PSMD11的条件敲除等位基因,并发现PSMD11在小鼠的早期和产后发育中发挥了关键作用,PSMD11 flx/flx小鼠将成为探索PSMD11在发育和疾病中的功能的宝贵工具。
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来源期刊
BMC Developmental Biology
BMC Developmental Biology 生物-发育生物学
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>12 weeks
期刊介绍: BMC Developmental Biology is an open access, peer-reviewed journal that considers articles on the development, growth, differentiation and regeneration of multicellular organisms, including molecular, cellular, tissue, organ and whole organism research.
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