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      • KCI등재

        SETDB1 genomic DNA 를 표적하는 TALEN construct 제작 및 분석

        노희정(Hee-Jung Noh),강윤성(Yoonsung Kang),김근철(Keun-Cheol Kim) 한국생명과학회 2014 생명과학회지 Vol.24 No.12

        TALEN은 특정유전자를 표적 하여 knock-out 시킬 수 있는 새로운 개념의 유전자 클로닝 방법이다. TALEN 플라스미드에는 DNA binding 도메인과 Fok1 절단효소 기능이 융합되어 있기 때문에, genomic DNA 의 어느 부위라도 결합할 수 있고, 표적 염기서열을 절단하여 유전자 돌연변이를 유도할 수 있다. 본 연구에서 우리는 SETDB1 HMTase 유전자의 단백질 개시코돈과 프로모터 -25 upstream 부위를 표적 하는 두 종의 TALEN constructs 를 제작하였다. 이를 위하여 두 단계의 클로닝이 진행되었다. 첫 번째는 모듈벡터에서 pFUS배열벡터로 표적서열을 옮겨 콜로니 PCR을 통해 smear밴드와 Esp1 제한 효소를 이용하여 약 1 kb의 insert가 들어 있음을 확인하였다. 두 번째는 배열 벡터로부터 TALEN 발현벡터로 옮기는 과정을 진행하였으며, 염기서열분석을 통해 확인하였다. 그 결과 최초의 고안된 모듈벡터 서열들이 약 100 bp 간격으로 배열되어 있음을 확인하였다. 제작된 TALEN-DBEX2 construct는 transfection을 통해 SETDB1의 발현이 사라지는 것을 확인하였고, T7E1 분석을 통하여 표적부위에서 돌연변이가 발생하였음을 추정할 수 있었다. 한편, TALEN-DBPR25 transfection을 통하여서도 SETDB1의 발현이 감소하는 현상을 확인 하였다. DBEX2, DBPR25를 이입시킨 HeLa 세포에서 세포 형태가 길어지는 현상을 관찰할 수 있었다. 그러므로 단백질 개시코돈 또는 -25 upstream을 표적 하는 TALEN knock-out 방법은 SETDB1 유전자의 기능연구에 매우 유용하다고 사료된다. TALEN is a newly developed gene engineering method to knock out specific genes. It contains a DNA binding domain and a Fok1 nuclease domain in the TALEN plasmid. Therefore, the engineered TALEN construct can bind to any region of genomic DNA and cut the target nucleotide, thereby inducing mutation. In this study, we constructed two TALEN constructs targeted to a protein initiation codon (DBEX2) or the 25th upstream region (DBPR25) to enable mRNA synthesis of SETDB1 HMTase. We performed the TALEN cloning in two steps. The first step was from module vectors to pFUS array vectors. We confirmed successful cloning with a colony PCR experiment and Esp31 restriction enzyme digestion, which resulted in a smear band and a 1 Kb insert band, respectively The second step of the cloning was from a pFUS array vector to a mammalian TALEN expression vector. The engineered TALEN construct was sequenced with specific primers in an expression vector. As expected, a specific array from the module vectors was shown in the sequencing analysis. The specific module sequences were regularly arrayed in every 100 bp, and SETDB1 expression totally disappeared in the TALEN-DBEX2 transfection. PCR amplification targeting of DBEX2 was performed, and the PCR product was digested with a T7E1 restriction enzyme. The expression of SETDB1 was down-regulated in the TALEN-DBPR25 transfection. Morphological changes were also observed in the two TALEN constructs with transfected HeLa cells. These results suggest that the engineered TALEN constructs in two strategic approaches are very useful to knock-out of the SETDB1 gene and to study gene function.

      • KCI등재

        TALEN-mediated bar-knockout Rice Production and Transcriptome Profiling

        ( Yang Qin ),( Tae-sung Park ),( Youn Sung Cho ),( Myung-ho Lim ) 한국육종학회 2021 Plant Breeding and Biotechnology Vol.9 No.1

        Gene editing technologies such as transcription activator-like effector nucleases (TALENs) and clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated 9 (Cas9) systems have been developed to create targeted DNA mutagenesis in many crop plants. This report describes application of the TALEN system to generate bialaphos resistance (bar)-knockout null segregants in herbicide-tolerant rice (Ba15) and microarray analysis on transcriptome changes of mutated lines, to identify unexpected effects resulting from off-targets. We generated 41 T<sub>0</sub> plants and identified TALEN-mediated bar sequence mutations in 14 of them. Non-target site single nucleotide polymorphisms (SNPs) and small insertion/deletions (InDels) accounted for a large proportion of the mutations. Segregations of phosphinothricin acetyltransferase (PAT) protein expression levels were observed in T<sub>1</sub> generations of two lines, R6 and R9. In addition, most T<sub>1</sub> offspring harbored the TALE-R expression cassette and acquired some de novo mutations that were not inherited from their T<sub>0</sub> parents. Three bar-knockout T<sub>1</sub> lines were tested for PAT protein expression in progeny seedlings, and their T<sub>2</sub> plants possessed inactive bar. We selected three bar-knockout T<sub>2</sub> plants that were TALE-DNA-free for microarray analysis, aiming to understand the transcriptome differences between mutated null segregants and their recipient line. Only 31 differentially expressed genes (DEGs) were identified in the bar-knockout rice lines, possibly resulting from somaclonal variations from the in vitro cell culture process. Taken together, TALEN-mediated bar mutations have little effect on the whole transcriptome profile of rice. We believe our results will be helpful to study unexpected consequences in gene-edited crops.

      • KCI등재

        A One-Step System for Convenient and Flexible Assembly of Transcription Activator-Like Effector Nucleases (TALENs)

        Zhao, Jinlong,Sun, Wenye,Liang, Jing,Jiang, Jing,Wu, Zhao Korean Society for Molecular and Cellular Biology 2016 Molecules and cells Vol.39 No.9

        Transcription activator-like effector nucleases (TALENs) are powerful tools for targeted genome editing in diverse cell types and organisms. However, the highly identical TALE repeat sequences make it challenging to assemble TALEs using conventional cloning approaches, and multiple repeats in one plasmid are easily catalyzed for homologous recombination in bacteria. Although the methods for TALE assembly are constantly improving, these methods are not convenient because of laborious assembly steps or large module libraries, limiting their broad utility. To overcome the barrier of multiple assembly steps, we report a one-step system for the convenient and flexible assembly of a 180 TALE module library. This study is the first demonstration to ligate 9 mono-/dimer modules and one circular TALEN backbone vector in a one step process, generating 9.5 to 18.5 repeat sequences with an overall assembly rate higher than 50%. This system makes TALEN assembly much simpler than the conventional cloning of two DNA fragments because this strategy combines digestion and ligation into one step using circular vectors and different modules to avoid gel extraction. Therefore, this system provides a convenient tool for the application of TALEN-mediated genome editing in scientific studies and clinical trials.

      • SCIESCOPUSKCI등재

        No excessive mutations in transcription activator-like effector nuclease-mediated α-1,3-galactosyltransferase knockout Yucatan miniature pigs

        Choi, Kimyung,Shim, Joohyun,Ko, Nayoung,Park, Joonghoon Asian Australasian Association of Animal Productio 2020 Animal Bioscience Vol.33 No.2

        Objective: Specific genomic sites can be recognized and permanently modified by genome editing. The discovery of endonucleases has advanced genome editing in pigs, attenuating xenograft rejection and cross-species disease transmission. However, off-target mutagenesis caused by these nucleases is a major barrier to putative clinical applications. Furthermore, off-target mutagenesis by genome editing has not yet been addressed in pigs. Methods: Here, we generated genetically inheritable α-1,3-galactosyltransferase (GGTA1) knockout Yucatan miniature pigs by combining transcription activator-like effector nuclease (TALEN) and nuclear transfer. For precise estimation of genomic mutations induced by TALEN in GGTA1 knockout pigs, we obtained the whole-genome sequence of the donor cells for use as an internal control genome. Results: In-depth whole-genome sequencing analysis demonstrated that TALEN-mediated GGTA1 knockout pigs had a comparable mutation rate to homologous recombination-treated pigs and wild-type strain controls. RNA sequencing analysis associated with genomic mutations revealed that TALEN-induced off-target mutations had no discernable effect on RNA transcript abundance. Conclusion: Therefore, TALEN appears to be a precise and safe tool for generating genomeedited pigs, and the TALEN-mediated GGTA1 knockout Yucatan miniature pigs produced in this study can serve as a safe and effective organ and tissue resource for clinical applications.

      • KCI등재

        A One-Step System for Convenient and Flexible Assembly of Transcription Activator-Like Effector Nucleases (TALENs)

        Zhao Wu,Jinlong Zhao,Wenye Sun,Jing Liang,Jing Jiang 한국분자세포생물학회 2016 Molecules and cells Vol.39 No.9

        Transcription activator-like effector nucleases (TALENs) are powerful tools for targeted genome editing in diverse cell types and organisms. However, the highly identical TALE repeat sequences make it challenging to assemble TALEs using conventional cloning approaches, and multiple repeats in one plasmid are easily catalyzed for homologous recombination in bacteria. Although the methods for TALE assembly are constantly improving, these methods are not convenient because of laborious assembly steps or large module libraries, limiting their broad utility. To overcome the barrier of multiple assembly steps, we report a one-step system for the con-venient and flexible assembly of a 180 TALE module library. This study is the first demonstration to ligate 9 mono-/dimer modules and one circular TALEN backbone vector in a one step process, generating 9.5 to 18.5 repeat sequences with an overall assembly rate higher than 50%. This system makes TALEN assembly much simpler than the conventional cloning of two DNA fragments because this strategy combines digestion and ligation into one step using circular vectors and different modules to avoid gel extraction. Therefore, this system provides a convenient tool for the application of TALEN-mediated genome editing in scientific studies and clinical trials.

      • KCI등재

        Sensitivity to tumor development by TALEN-mediated Trp53 mutant genes in the susceptible FVB/N mice and the resistance C57BL/6 mice

        윤우빈,김지은,이미림,최준영,박진주,송보람,강병철,남기택,이한웅,황대연 한국실험동물학회 2021 Laboratory Animal Research Vol.37 No.4

        Background This study was undertaken to compare the sensitivities of mice strains during tumor induction by transcription activator-like effector nucleases (TALEN)-mediated Trp53 mutant gene. Alterations of their tumorigenic phenotypes including survival rate, tumor formation and tumor spectrum, were assessed in FVB/N-Trp53em2Hwl/Korl and C57BL/6-Trp53em1Hwl/Korl knockout (KO) mice over 16 weeks. Results Most of the physiological phenotypes factors were observed to be higher in FVB/N-Trp53em2Hwl/Korl KO mice than C57BL/6-Trp53em1Hwl/Korl KO mice, although there were significant differences in the body weight, immune organ weight, number of red blood cells, mean corpuscular volume (MCV), mean corpuscular hemoglobin (MCH), mean corpuscular hemoglobin concentration (MCHC), platelet count (PLT), total bilirubin (Bil-T) and glucose (Glu) levels in the KO mice relative to the wild type (WT) mice. Furthermore, numerous solid tumors were also observed in various regions of the surface skin of FVB/N-Trp53em2Hwl/Korl KO mice, but were not detected in C57BL/6-Trp53em1Hwl/Korl KO mice. The most frequently observed tumor in both the Trp53 KO mice was malignant lymphoma, while soft tissue teratomas and hemangiosarcomas were only detected in the FVB/N-Trp53em2Hwl/Korl KO mice. Conclusions Our results indicate that the spectrum and incidence of tumors induced by the TALEN-mediated Trp53 mutant gene is greater in FVB/N-Trp53em2Hwl/Korl KO mice than C57BL/6-Trp53em1Hwl/Korl KO mice over 16 weeks.

      • SCIESCOPUSKCI등재

        Generation of Fibroblasts Lacking the Sal-like 1 Gene by Using Transcription Activator-like Effector Nuclease-mediated Homologous Recombination

        Kim, Se Eun,Kim, Ji Woo,Kim, Yeong Ji,Kwon, Deug-Nam,Kim, Jin-Hoi,Kang, Man-Jong Asian Australasian Association of Animal Productio 2016 Animal Bioscience Vol.29 No.4

        The Sal-like 1 gene (Sall1) is essential for kidney development, and mutations in this gene result in abnormalities in the kidneys. Mice lacking Sall1 show agenesis or severe dysgenesis of the kidneys. In a recent study, blastocyst complementation was used to develop mice and pigs with exogenic organs. In the present study, transcription activator-like effector nuclease (TALEN)-mediated homologous recombination was used to produce Sall1-knockout porcine fibroblasts for developing knockout pigs. The vector targeting the Sall1 locus included a 5.5-kb 5' arm, 1.8-kb 3' arm, and a neomycin resistance gene as a positive selection marker. The knockout vector and TALEN were introduced into porcine fibroblasts by electroporation. Antibiotic selection was performed over 11 days by using $300{\mu}g/mL$ G418. DNA of cells from G418-resistant colonies was amplified using polymerase chain reaction (PCR) to confirm the presence of fragments corresponding to the 3' and 5' arms of Sall1. Further, mono- and bi-allelic knockout cells were isolated and analyzed using PCR-restriction fragment length polymorphism. The results of our study indicated that TALEN-mediated homologous recombination induced bi-allelic knockout of the endogenous gene.

      • KCI등재

        BK Knockout by TALEN-Mediated Gene Targeting in Osteoblasts: KCNMA1 Determines the Proliferation and Differentiation of Osteoblasts

        Hei, Hongya,Gao, Jianjun,Dong, Jibin,Tao, Jie,Tian, Lulu,Pan, Wanma,Wang, Hongyu,Zhang, Xuemei Korean Society for Molecular and Cellular Biology 2016 Molecules and cells Vol.39 No.7

        Large conductance calcium-activated potassium (BK) channels participate in many important physiological functions in excitable tissues such as neurons, cardiac and smooth muscles, whereas the knowledge of BK channels in bone tissues and osteoblasts remains elusive. To investigate the role of BK channels in osteoblasts, we used transcription activator-like effector nuclease (TALEN) to establish a BK knockout cell line on rat ROS17/2.8 osteoblast, and detected the proliferation and mineralization of the BK-knockout cells. Our study found that the BKknockout cells significantly decreased the ability of proliferation and mineralization as osteoblasts, compared to the wild type cells. The overall expression of osteoblast differentiation marker genes in the BK-knockout cells was significantly lower than that in wild type osteoblast cells. The BK-knockout osteoblast cell line in our study displays a phenotype decrease in osteoblast function which can mimic the pathological state of osteoblast and thus provide a working cell line as a tool for study of osteoblast function and bone related diseases.

      • KCI등재

        BK Knockout by TALEN-Mediated Gene Targeting in Osteoblasts: KCNMA1 Determines the Proliferation and Differentiation of Osteoblasts

        Xuemei Zhang,Hongya Hei,Jianjun Gao,Jibin Dong,Jie Tao,Lulu Tian,Wanma Pan,Hongyu Wang 한국분자세포생물학회 2016 Molecules and cells Vol.39 No.7

        Large conductance calcium-activated potassium (BK) channels participate in many important physiological functions in excitable tissues such as neurons, cardiac and smooth muscles, whereas the knowledge of BK channels in bone tissues and osteoblasts remains elusive. To investigate the role of BK channels in osteoblasts, we used transcription activator-like effector nuclease (TALEN) to establish a BK knockout cell line on rat ROS17/2.8 osteoblast, and detected the proliferation and mineralization of the BK-knockout cells. Our study found that the BK-knockout cells significantly decreased the ability of proliferation and mineralization as osteoblasts, compared to the wild type cells. The overall expression of osteoblast differentiation marker genes in the BK-knockout cells was significantly lower than that in wild type osteoblast cells. The BK-knockout osteoblast cell line in our study displays a phenotype decrease in osteoblast function which can mimic the pathological state of osteoblast and thus provide a working cell line as a tool for study of osteoblast function and bone related diseases.

      • SCIESCOPUSKCI등재

        BMB Reports : Targeted disruption of EBNA1 in EBV-infected cells attenuated cell growth

        ( Ka Won Noh ),( Jihyun Park ),( Myung Soo Kang ) 생화학분자생물학회 2016 BMB Reports Vol.49 No.4

        Epstein Barr virus (EBV)-encoded nuclear antigen-1 (EBNA1) plays a pivotal in an EBV episome replication and persistence. Despite considerable attempts, there are no EBV drugs or vaccines. We attempted to eradicate EBV episomes by targeting EBNA1 using the transcription activator-like effector nucleases (TALEN) (E1TN). E1TN-mediated transient knockout (KO) of EBNA1 reduced EBNA1 expression, and caused significant loss of EBV genomes and progressive death of EBV-infected cells. Furthermore, when a mixture of EBV-infected Burkitt`s lymphoma (BL) cells and EBV-negative BL cells was targeted by E1TN, EBV-negative cells were counter-selected while most EBV-infected cells died, further substantiating that EBNA1 KO caused selective death of EBV-infected cells. TALEN-mediated transient targeting of EBNA1 attenuated the growth of EBV-infected cells, implicating a possible therapeutic application of E1TN for EBV-associated disorders. [BMB Reports 2016; 49(4): 226-231]

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