• Title/Summary/Keyword: Knockout mouse

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Mouse genetics: Catalogue and scissors

  • Sung, Young Hoon;Baek, In-Jeoung;Seong, Je Kyung;Kim, Jin-Soo;Lee, Han-Woong
    • BMB Reports
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    • 제45권12호
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    • pp.686-692
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    • 2012
  • Phenotypic analysis of gene-specific knockout (KO) mice has revolutionized our understanding of in vivo gene functions. As the use of mouse embryonic stem (ES) cells is inevitable for conventional gene targeting, the generation of knockout mice remains a very time-consuming and expensive process. To accelerate the large-scale production and phenotype analyses of KO mice, international efforts have organized global consortia such as the International Knockout Mouse Consortium (IKMC) and International Mouse Phenotype Consortium (IMPC), and they are persistently expanding the KO mouse catalogue that is publicly available for the researches studying specific genes of interests in vivo. However, new technologies, adopting zinc-finger nucleases (ZFNs) or Transcription Activator-Like Effector (TALE) Nucleases (TALENs) to edit the mouse genome, are now emerging as valuable and effective shortcuts alternative for the conventional gene targeting using ES cells. Here, we introduce the recent achievement of IKMC, and evaluate the significance of ZFN/TALEN technology in mouse genetics.

CRISPR/Cas9-mediated generation of a Plac8 knockout mouse model

  • Lee, HyunJeong;Kim, Joo-Il;Park, Jin-Sung;Roh, Jae-il;Lee, Jaehoon;Kang, Byeong-Cheol;Lee, Han-Woong
    • Laboraroty Animal Research
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    • 제34권4호
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    • pp.279-287
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    • 2018
  • Placenta specific 8 (PLAC8, also known as ONZIN) is a multi-functional protein that is highly expressed in the intestine, lung, spleen, and innate immune cells, and is involved in various diseases, including cancers, obesity, and innate immune deficiency. Here, we generated a Plac8 knockout mouse using the CRISPR/Cas9 system. The Cas9 mRNA and two single guide RNAs targeting a region near the translation start codon at Plac8 exon 2 were microinjected into mouse zygotes. This successfully eliminated the conventional translation start site, as confirmed by Sanger sequencing and PCR genotyping analysis. Unlike the previous Plac8 deficient models displaying increased adipose tissue and body weights, our male Plac8 knockout mice showed rather lower body weight than sex-matched littermate controls, though the only difference between these two mouse models is genetic context. Differently from the previously constructed embryonic stem cell-derived Plac8 knockout mouse that contains a neomycin resistance cassette, this knockout mouse model is free from a negative selection marker or other external insertions, which will be useful in future studies aimed at elucidating the multi-functional and physiological roles of PLAC8 in various diseases, without interference from exogenous foreign DNA.

Generation of knockout mouse models of cyclin-dependent kinase inhibitors by engineered nuclease-mediated genome editing

  • Park, Bo Min;Roh, Jae-il;Lee, Jaehoon;Lee, Han-Woong
    • Laboraroty Animal Research
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    • 제34권4호
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    • pp.264-269
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    • 2018
  • Cell cycle dysfunction can cause severe diseases, including neurodegenerative disease and cancer. Mutations in cyclin-dependent kinase inhibitors controlling the G1 phase of the cell cycle are prevalent in various cancers. Mice lacking the tumor suppressors $p16^{Ink4a}$ (Cdkn2a, cyclin-dependent kinase inhibitor 2a), $p19^{Arf}$ (an alternative reading frame product of Cdkn2a,), and $p27^{Kip1}$ (Cdkn1b, cyclin-dependent kinase inhibitor 1b) result in malignant progression of epithelial cancers, sarcomas, and melanomas, respectively. Here, we generated knockout mouse models for each of these three cyclin-dependent kinase inhibitors using engineered nucleases. The $p16^{Ink4a}$ and $p19^{Arf}$ knockout mice were generated via transcription activator-like effector nucleases (TALENs), and $p27^{Kip1}$ knockout mice via clustered regularly interspaced short palindromic repeats/CRISPR-associated nuclease 9 (CRISPR/Cas9). These gene editing technologies were targeted to the first exon of each gene, to induce frameshifts producing premature termination codons. Unlike preexisting embryonic stem cell-based knockout mice, our mouse models are free from selectable markers or other external gene insertions, permitting more precise study of cell cycle-related diseases without confounding influences of foreign DNA.

Dissemination of Advanced Mouse Resources and Technologies at RIKEN BioResource Center

  • Yoshiki, Atsushi
    • Interdisciplinary Bio Central
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    • 제2권4호
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    • pp.15.1-15.5
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    • 2010
  • RIKEN BioResource Center (BRC) has collected, preserved, conducted quality control of, and distributed mouse resources since 2002 as the core facility of the National BioResource Project by the Ministry of Education, Culture, Sports, Science and Technology (MEXT), Japan. Our mouse resources include over 5,000 strains such as humanized disease models, fluorescent reporters, and knockout mice. We have developed novel mouse strains such as tissue-specific Cre-drivers and optogenetic strains that are in high demand by the research community. We have removed all our specified pathogens from the deposited mice and used our quality control tests to examine their genetic modifications and backgrounds. RIKEN BRC is a founding member of the Federation of International Mouse Resources and the Asian Mouse Mutagenesis and Resource Association, and provides mouse resources to the one-stop International Mouse Strain Resource database. RIKEN BRC also participates in the International Gene Trap Consortium, having registered 713 gene-trap clones and their sequences in a public library, and is an advisory member of the CREATE (Coordination of resources for conditional expression of mutated mouse alleles) consortium which represents major European and international mouse database holders for the integration and dissemination of Cre-driver strains. RIKEN BRC provides training courses in the use of advanced technologies for the quality control and cryopreservation of mouse strains to promote the effective use of mouse resources worldwide.

Ahnak-knockout mice show susceptibility to Bartonella henselae infection because of CD4+ T cell inactivation and decreased cytokine secretion

  • Choi, Eun Wha;Lee, Hee Woo;Lee, Jun Sik;Kim, Il Yong;Shin, Jae Hoon;Seong, Je Kyung
    • BMB Reports
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    • 제52권4호
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    • pp.289-294
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    • 2019
  • The present study evaluated the role of AHNAK in Bartonella henselae infection. Mice were intraperitoneally inoculated with $2{\times}10^8$ colony-forming units of B. henselae Houston-1 on day 0 and subsequently on day 10. Blood and tissue samples of the mice were collected 8 days after the final B. henselae injection. B. henselae infection in the liver of Ahnak-knockout and wild-type mice was confirmed by performing polymerase chain reaction, with Bartonella adhesion A as a marker. The proportion of B. henselae-infected cells increased in the liver of the Ahnak-knockout mice. Granulomatous lesions, inflammatory cytokine levels, and liver enzyme levels were also higher in the liver of the Ahnak-knockout mice than in the liver of the wild-type mice, indicating that Ahnak deletion accelerated B. henselae infection. The proportion of CD4+interferon-${\gamma}$ ($IFN-{\gamma}^+$) and $CD4^+$ interleukin $(IL)-4^+$ cells was significantly lower in the B. henselae-infected Ahnak-knockout mice than in the B. henselae-infected wild-type mice. In vitro stimulation with B. henselae significantly increased $IFN-{\gamma}$ and IL-4 secretion in the splenocytes obtained from the B. henselae-infected wild-type mice, but did not increase $IFN-{\gamma}$ and IL-4 secretion in the splenocytes obtained from the B. henselae-infected Ahnak-KO mice. In contrast, $IL-1{\alpha}$, $IL-1{\beta}$, IL-6, IL-10, RANTES, and tumor necrosis $factor-{\alpha}$ secretion was significantly elevated in the splenocytes obtained from both B. henselae-infected wild-type and Ahnak-knockout mice. These results indicate that Ahnak deletion promotes B. henselae infection. Impaired $IFN-{\gamma}$ and IL-4 secretion in the Ahnak-knockout mice suggests the impairment of Th1 and Th2 immunity in these mice.

LDL Receptor Knockout Mouse에서 부추추출물의 죽상경화증 예방 효과 (Prevention effect of Allium tuberosum extract on ateriosclerosis in LDL Receptor Knockout Mouse)

  • 권오준;이주영;노성수
    • 대한본초학회지
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    • 제31권2호
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    • pp.13-19
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    • 2016
  • Objectives : The present study was designed to evaluate the protective effect of Allium tuberosum (AT) extract on atherosclerosis in LDL receptor knockout (LDLr KO) mouse fed western diet.Methods : The AT was extracted 70% ethanol. The experimental groups were divided with four groups of LDLr KO mice, one group fed a normal diet and the others fed a Western diets for 8weeks. Two Western diet groups were orally administered AT extract at dosage of 100 and 300 mg/kg body weight. The body weight and food intake were measured every day. We measured levels of alanine aminotransferase (ALT), aspartate aminotransferase (AST), triglyceride (TG), total cholesterol (TC), high-density lipoprotein (HDL), low-density lipoprotein (LDL), and Glucose in serum. Also, effect of AT extract performed using H&E staining.Results : The AT treatment groups showed decrease in body weight and food efficiency in comparison with control group. Blood biochemistry parameters such as TG, TC, LDL, and glucose levels were increased in control group, while AT treatment groups were reduced. Also, the increased levels of ALT and AST were improved by AT extract. We confirmed that the weights of liver, kidney, subcutaneous fat, epididymal fat, kidney leaf fat, and intraabdominal fat were change in LDLr KO mice treated AT extract. In addition, histopathological changes in liver and aorta were similar to normal group.Conclusions : Based on these results, the AT extract is considered to make prevention of atherosclerosis through reduction and functional improvement of the liver and vascular endothelial cells in the body fat accumulation and lipid content in LDLr ko mouse model.

Production of Knockout Mice using CRISPR/Cas9 in FVB Strain

  • Bae, Hee Sook;Lee, Soo Jin;Koo, Ok Jae
    • 한국수정란이식학회지
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    • 제30권4호
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    • pp.299-303
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    • 2015
  • KO mice provide an excellent tool to determine roles of specific genes in biomedical filed. Traditionally, knockout mice were generated by homologous recombination in embryonic stem cells. Recently, engineered nucleases, such as zinc finger nuclease, transcription activator-like effector nuclease and clustered regularly interspaced short palindromic repeats (CRISPR), were used to produce knockout mice. This new technology is useful because of high efficiency and ability to generate biallelic mutation in founder mice. Until now, most of knockout mice produced using engineered nucleases were C57BL/6 strain. In the present study we used CRISPR-Cas9 system to generate knockout mice in FVB strain. We designed and synthesized single guide RNA (sgRNA) of CRISPR system for targeting gene, Abtb2. Mouse zygote were obtained from superovulated FVB female mice at 8-10 weeks of age. The sgRNA was injected into pronuclear of the mouse zygote with recombinant Cas9 protein. The microinjected zygotes were cultured for an additional day and only cleaved embryos were selected. The selected embryos were surgically transferred to oviduct of surrogate mother and offsprings were obtained. Genomic DNA were isolated from the offsprings and the target sequence was amplified using PCR. In T7E1 assay, 46.7% among the offsprings were founded as mutants. The PCR products were purified and sequences were analyzed. Most of the mutations were founded as deletion of few sequences at the target site, however, not identical among the each offspring. In conclusion, we found that CRISPR system is very efficient to generate knockout mice in FVB strain.

LDL Receptor Knockout Mouse에서 영지추출물의 죽상경화증 개선 효과 (Improving Effect of Extract of Ganoderma lucidum in Atherosclerosis from LDL Receptor Knockout Mouse)

  • 권오준;김민영;노성수
    • 대한본초학회지
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    • 제31권1호
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    • pp.17-23
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    • 2016
  • Objectives : This study was designed to protect effect on atherosclerosis through regulation of low density lipoprotein(LDL) by 70 % ethanol extract Ganoderma lucidum (GL) in LDL receptor knockout mouse (LDLr ko mice) fed Western diet.Methods : The LDLr ko mice were divided into 3 groups ; Control, GL100, and GL300. After grouping, LDLr ko mice were fed Western diet. The GL (100 or 300 mg/kg body weight/day, p.o.) was administered every day for 8 weeks. The body weight and food intake were measured every day. The changes in the levels of alanine aminotransferase (ALT), aspartate aminotransferase (AST), creatinine, triglyceride (TG), total cholesterol (TC), and high-density lipoprotein (HDL) in serum were analyzed after experiment.Results : The LDLr ko mice fed Western diet were increased body weight gain and blood biochemistry parameters such as ALT, AST, TG, TC, and LDL. However GL300 group significantly reduced the body weight. Also TG, TC, and LDL level did not increase. The levels of ALT, AST, HDL were not changed. Also, LDLr ko mice model liver were observed lipid drop, but GL groups did not appear. Futhermore, histological analysis of GL groups aorta tissue were similar to NOR groups.Conclusions : We confirmed that whether GL administration is protect atherosclerosis or not. As the results, blood biochemistry and histological analysis did not changed much in GL administration groups. This study provides scientific evidence that GL protect the atherosclerosis through the reduction of LDL cholesterol. Therefore GL has potential medicine inhibition of atherosclerosis.

뮤코지방증 2형 마우스 모델의 특징과 태반에서 추출한 리소좀 효소 투여의 결과 (Characterization of a Mucolipidosis Type II Mouse Model and Therapeutic Implication of Lysosomal Enzyme Enriched Fraction Derived from Placenta)

  • 조성윤;김기용;김수진;손영배;맹세현;김치화;고아라;송정한;여성희;김경효;진동규
    • 대한유전성대사질환학회지
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    • 제12권1호
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    • pp.5-13
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    • 2012
  • I 세포 질환(뮤코지방증 2형; MIM 252500)과 pseudo-Hurler polydystrophy (뮤코지방증 3형; MIM 252600)는 세포내 비정상적인 리소좀 관련 운송으로 인해 발병한다. 특징적인 소견으로는 섬유아 세포의 세포질에 다수의 봉입체, 뮤코다당뇨의 부재, 혈청 내 리소좀 효소 활성도의 증가, GlcNAc-phosphotransferase 활성도의 감소를 보인다. 이 연구에서는 GlcNAc-phosphotransferase 알파/베타 아형에 대한 knockout 마우스의 표현형과 생화학적 특징을 조사하였다. 또한, 태반으로부터 추출한 리소좀 농축 분획을 knockout 마우스에 투여하였을 때 체중 증가에 대한 효과를 볼 수 있는지에 대해 알아보고자 하였다. knockout 마우스는 뮤코지방증 2형 환자에서 그렇듯이 정상적인 체중 증가를 보이지 않았고 낮은 골밀도를 보였다. 게다가 knockout 마우스의 피부 섬유 아세포의 배양액에서는 리소좀 효소 활성도가 증가한 반면, 세포 내에서는 리소좀 효소 활성도가 감소되어 있는 것을 확인할 수 있었으며 이러한 특징은 뮤코지방증 2형 환자에서 볼 수 있는 특징과 일치한다. knockout 마우스의 꼬리 정맥내로 태반에서 추출한 리소좀 농축 분획을 투여한 결과, 체중이 증가하는 것을 확인할 수 있었고, 반면 생리식염수를 투여한 knockout 마우스의 경우는 체중이 증가하지 않았다. 결론적으로, knockout 마우스의 표현형과 생화학적 특징이 뮤코지방증 2형 환자와 유사하다는 것을 확인하였으며, 리소좀 농축 분획의 치료적 가능성을 증명하였다. 더 큰 범위의 동물 실험을 진행할 필요가 있으나, 이 연구는 질병에 대한 동물 모델을 개발하고 리조솜 농축 분획의 치료적 가능성을 제시하는 것을 통해 현재까지 치료가 불가능한 뮤코지방증 2형의 새로운 치료 방법의 가능성을 열었다고 볼 수 있다.

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Gene Expression Analysis of Gα13-/- Knockout Mouse Embryos Reveals Perturbations in Gα13 Signaling Related to Angiogenesis and Hypoxia

  • Park, Ji-Hwan;Choi, Sang-Dun
    • Genomics & Informatics
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    • 제9권4호
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    • pp.161-172
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    • 2011
  • Angiogenesis is regulated by a large number of molecules and complex signaling mechanisms. The G protein $G{\alpha}_{13}$ is a part of this signaling mechanism as an endothelial cell movement regulator. Gene expression analysis of $G{\alpha}_{13}$ knockout mouse embryos was carried out to identify the role of $G{\alpha}_{13}$ in angiogenesis signaling during embryonic development. Hypoxia-inducible response factors including those acting as regulators of angiogenesis were over expressed, while genes related to the cell cycle, DNA replication, protein modification and cell-cell dissociation were under expressed. Functional annotation and network analysis indicate that $G{\alpha}_{13}{^{-/-}}$ embryonic mice were exposed to hypoxic conditions. The present analysis of the time course highlighted the significantly high levels of disorder in the development of the cardiovascular system. The data suggested that hypoxia-inducible factors including those associated with angiogenesis and abnormalities related to endothelial cell division contributed to the developmental failure of $G{\alpha}_{13}$ knockout mouse embryos.