• 제목/요약/키워드: transforming gene

검색결과 178건 처리시간 0.024초

고추의 역병 저항성 품종 개발을 위하여 Agrobacterium tumefaciens를 이용한 elicitin 유전자 도입 (Agrobacterium-Mediated Genetic Transformation of Pepper for the Development of Blight Resistant Cultivar)

  • 권태룡;이문중;한증술;신동현;오중열;김경민;김창길
    • Journal of Plant Biotechnology
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    • 제34권1호
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    • pp.55-59
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    • 2007
  • 고추 형질전환은 Agrobacterium (LBA4404/pBI101 cyc600-syna-elicitin)을 이용한 cyc600 promoter에 구축된 elicitin 유전자의 형질전환시 shoot의 형성율은 수비초의 경우 3 mg/L zeatin과 0.05 mg/L NAA 함유 배지에서 11.1%, 4 mg/L zeatin과 0.05 mg/L NAA 함유 배지에서 12.8%였다. 전배양 3일, 공동배양 $3{\sim}4$일에서 재분화율이 높았다. 자엽으로부터 재분화된 형질전환체의 NPTII 유전자의 primer를 이용한 PCR 반응에서 형질전환된 재분화 식물체는 536 bp의 밴드를 확인하였다. Membrane에 blot하여 NPTII gene을 probe로 사용하여 Southern blot 분석에서 고추형질전환 식물체는 536 bp 부위에 강한 signal을 보였다. elicitin 유전자를 이용한 역병 저항성 형질전환체 수비초 $T_{0}$세대의 생육은 계통간에 다소 차이는 보였고, 계통 모두 생육은 저조한 반면 개화 및 수정 등의 임성은 정상적이었다. 자식을 통해 채종한 $T_{1}$ 식물체의 유전자 도입을 확인하기 위하여 PCR을 수행한 결과 $T_{0}$ 식물체 $S1{\sim}S5$ 계통에서 elicitin 밴드가 나타나 형질전환체임을 확인하였고, $T_{1}$식물체인 S1-1 등 7계통에서 elicitin 밴드가 나타났고, S1-2 등 4계통에서는 밴드가 나타나지 않아 형질전환체가 후대에서 분리가 일어남을 확인할 수 있었다. Syn ${\alpha}$ clone을 이용하여 Southern blot analysis를 한 결과 band가 나타난 300 bp 정도의 위치에서 blot이 나오는 것을 관찰할 수 있었다. 위의 결과에서 cyc600 promoter-syn ${\alpha}$의 construct가 수비초의 genomic DNA에 삽입되었는 것을 확인할 수 있었다. 고추형질전환체의 유묘에 역병균을 접종한 결과 유주포자 $10^{3}$개/mL에서 형질전환체의 저항성 계통선발이 가능하였다.

phbC 유전자가 도입된 형질전환 Alcaligenes eutrophus를 이용한 고분율 4-hydroxybutyrate 함유 P(3-hydroxybutyrate-4-hydroxybutyrate)의 생산 (Cultivation of Alcaligenes eutrophus Transforming Cloned phbC Gene from Alcaligenes latus for Production of P(3-hydroxybutyrate-4-hydroxybutyrate) Containing High Molar Fraction of 4-Hydroxybutyrate)

  • 강명신;정영미;이용현
    • KSBB Journal
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    • 제14권4호
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    • pp.422-428
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    • 1999
  • Alcaligenes latus 유래의 phbC 유전자를 A. eutrophus에 재도입시킨 형질전환균주를 이용하여 높은 4HB 몰분율을 갖는 P(3HB-4HB)의 고농도 생산을 시도하였다. 형질전환균주는 총균체량, P(3HB-4HB) 농도, 그리고 축적률에서 모균주에 비해 다소 증가한 반면 P(3HB-4HB)내의 4HB 몰분율은 23.5 mol%로 모균주의 12.3 mol%에 비해 현저히 증가하였다. 이는 phbC유전자의 증폭으로 인해 해당과정에서 생성된 3HB와 전구물질인 ${\gamma}$-butyrolacton에서 전환된 4HB의 중합반응이 촉진되기 때문으로 사료된다. 또한 ${\gamma}$-butyrolacton의 농도 $Mg^{2-}$ 이온, 그리고 citrate 첨가량이 P(3HB-4HB)의 농도, 축적률, 그리고 4HB 몰분율에 미치는 영향을 검토하였다. P(3HB-4HB)내의 4HB 몰분율을 증대시키기 위하여 일반적으로 사용되는 2단계 배양법을 변형시켜 ${\gamma}$-butyrolacton과 citrate의 첨가시기를 늦춘 2단계 배양법을 활용하여 P(3HB-4HB)내의 4HB 몰분율을 61.0 mol%로 증가시킬 수 있었다. 또한 ${\gamma}$-butyrolacton의 첨가량을 조절하여 P(3HB-4HB)내의 4HB 몰분율이 92.0 mol%에 이르는 homopolymeric P(4HB)를 생산할 수 있었으며, 그 구조를 $^1$H-NMR을 통해 확인하였다.

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Molecular Analysis of Growth Factor and Clock Gene Expression in the Livers of Rats with Streptozotocin-Induced Diabetes

  • Kim, Joo-Heon;Shim, Cheol-Soo;Won, Jin-Young;Park, Young-Ji;Park, Soo-Kyoung;Kang, Jae-Seon;Hong, Yong-Geun
    • Reproductive and Developmental Biology
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    • 제33권3호
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    • pp.163-169
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    • 2009
  • Many biological systems are regulated by an intricate set of feedback loops that oscillate with a circadian rhythm of roughly 24 h. This circadian clock mediates an increase in body temperature, heart rate, blood pressure, and cortisol secretion early in the day. Recent studies have shown changes in the amplitude of the circadian clock in the hearts and livers of streptozotocin (STZ)-treated rats. It is therefore important to examine the relationships between circadian clock genes and growth factors and their effects on diabetic phenomena in animal models as well as in human patients. In this study, we sought to determine whether diurnal variation in organ development and the regulation of metabolism, including growth and development during the juvenile period in rats, exists as a mechanism for anticipating and responding to the environment. Also, we examined the relationship between changes in growth factor expression in the liver and clock-controlled protein synthesis and turnover, which are important in cellular growth. Specifically, we assessed the expression patterns of several clock genes, including Per1, Per2, Clock, Bmal1, Cry1 and Cry2 and growth factors such as insulin-like growth factor (IGF)-1 and -2 and transforming growth factor (TGF)-${\beta}1$ in rats with STZ-induced diabetes. Growth factor and clock gene expression in the liver at 1 week post-induction was clearly increased compared to the level in control rats. In contrast, the expression patterns of the genes were similar to those observed after 5 weeks in the STZ-treated rats. The increase in gene expression is likely a compensatory change in response to the obstruction of insulin function during the initial phase of induction. However, as the period of induction was extended, the expression of the compensatory genes decreased to the control level. This is likely the result of decreased insulin secretion due to the destruction of beta cells in the pancreas by STZ.

Hair follicle development and related gene and protein expression of skins in Rex rabbits during the first 8 weeks of life

  • Wu, Zhenyu;Sun, Liangzhan;Liu, Gongyan;Liu, Hongli;Liu, Hanzhong;Yu, Zhiju;Xu, Shuang;Li, Fuchang;Qin, Yinghe
    • Asian-Australasian Journal of Animal Sciences
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    • 제32권4호
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    • pp.477-484
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    • 2019
  • Objective: We aimed to observe hair follicle (HF) development in the dorsal skin and elucidate the expression patterns of genes and proteins related to skin and HF development in Rex rabbits from birth to 8 weeks of age. Methods: Whole-skin samples were obtained from the backs of Rex rabbits at 0, 2, 4, 6, and 8 weeks of age, the morphological development of primary and secondary HFs was observed, and the gene transcript levels of insulin-like growth factor-I (IGF-I), epidermal growth factor (EGF), bone morphogenetic protein 2 (BMP2), transforming growth factor ${\beta}-1$, 2, and 3 ($TGF{\beta}-1$, $TGF{\beta}-2$, and $TGF{\beta}-3$) were examined using quantitative real-time polymerase chain reaction (PCR). Additionally, Wnt family member 10b (Wnt10b) and ${\beta}$-Catenin gene and protein expression were examined by quantitative real-time PCR and western blot, respectively. Results: The results showed significant changes in the differentiation of primary and secondary HFs in Rex rabbits during their first 8 weeks of life. The IGF-I, EGF, $TGF{\beta}-2$, and $TGF{\beta}-3$ transcript levels in the rabbits were significantly lower at 2 weeks of age than at birth and gradually increased thereafter, while the BMP2 and $TGF{\beta}-1$ transcript levels at 2 weeks of age were significantly higher than those at birth and gradually decreased thereafter. ${\beta}$-Catenin gene expression was also significantly affected by age, while the Wnt10b transcript level was not. However, the Wnt10b and ${\beta}$-catenin protein expression levels were the lowest at 2 and 4 weeks of age. Conclusion: Our data showed that a series of changes in HFs in dorsal skin occurred during the first 8 weeks. Many genes, such as IGF-I, EGF, BMP2, $TGF{\beta}-1$, $TGF{\beta}-2$, $TGF{\beta}-3$, and ${\beta}$-Catenin, participated in this process, and the related proteins Wnt10b and ${\beta}$-Catenin in skin were also affected by age.

Identification of Differentially Expressed Genes by Gabapentin in Cultured Dorsal Root Ganglion in a Rat Neuropathic Pain Model

  • Heo, Ji Hye;Lee, Seung Ha;Chang, Kyung Ha;Han, Eun Hye;Lee, Seung Gwan;Choi, Dal Woong;Kim, Suhng Wook
    • Biomolecules & Therapeutics
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    • 제21권2호
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    • pp.126-131
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    • 2013
  • Neuropathic pain is a chronic pain disorder caused by nervous system lesions as a direct consequence of a lesion or by disease of the portions of the nervous system that normally signal pain. The spinal nerve ligation (SNL) model in rats that reflect some components of clinical pain have played a crucial role in the understanding of neuropathic pain. To investigate the direct effects of gabapentin on differential gene expression in cultured dorsal root ganglion (DRG) cells of SNL model rats, we performed a differential display reverse transcription-polymerase chain reaction analysis with random priming approach using annealing control primer. Genes encoding metallothionein 1a, transforming growth factor-${\beta}1$ and palmitoyl-protein thioesterase-2 were up-regulated in gabapentin-treated DRG cells of SNL model rats. The functional roles of these differentially expressed genes were previously suggested as neuroprotective genes. Further study of these genes is expected to reveal potential targets of gabapentin.

Pro-tumorigenic roles of TGF-β signaling during the early stages of liver tumorigenesis through upregulation of Snail

  • Moon, Hyuk;Han, Kwang-Hyub;Ro, Simon Weonsang
    • BMB Reports
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    • 제50권12호
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    • pp.599-600
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    • 2017
  • Many studies have focused on the tumor suppressive role of $TGF-{\beta}$ signaling during the early stages of tumorigenesis by activating the target genes involved in cytostasis and apoptosis. We investigated the effects of $TGF-{\beta}$ inhibition on early tumorigenesis in the liver, by employing diverse inhibitory methods. Strikingly, $TGF-{\beta}$ inhibition consistently suppressed hepatic tumorigenesis that was induced either by activated RAS plus p53 downregulation or by the co-activation of RAS and TAZ signaling; this demonstrates the requirements for canonical $TGF-{\beta}$ signaling in tumorigenesis. Moreover, we found that Snail is the target gene of the $TGF-{\beta}$ signaling pathway that promotes hepatic carcinogenesis. The knockdown of Snail suppressed the early tumorigenesis in the liver, as did the $TGF-{\beta}$ inhibition, while the ectopic expression of Snail restored tumorigenesis that was suppressed by the $TGF-{\beta}$ inhibition. Our findings establish the oncogenic $TGF-{\beta}$-Smad-Snail signaling axis during the early tumorigenesis in the liver.

Induction of Kanamycin Resistance Gene of Plasmid pUCD615 by Benzoic Acid and Phenols

  • Mitchell Robert J.;Hong Han-Na;Gu Man-Bock
    • Journal of Microbiology and Biotechnology
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    • 제16권7호
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    • pp.1125-1131
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    • 2006
  • A kan'::luxCDABE fusion strain that was both highly bioluminescent and responsive to benzoic acid was constructed by transforming E. coli strain W3110 with the plasmid pUCDK, which was constructed by digesting and removing the 7-kb KpnI fragment from the promoterless luxCDABE plasmid pUCD615. Experiments using buffered media showed that this induction was dependent on the pH of the media, which influences the degree of benzoic acid protonation, and the expression levels seen are likely due to acidification of the cytoplasm by uncoupling of benzoic acid. Consequently, the sensitivity of this strain for benzoic acid was increased by nearly 20-fold when the pH was shifted from 8.0 to 6.5. Benzoic acid derivatives and several phenolics also resulted in significantly increased bioluminescent signals. Although these compounds are known to damage membranes and induce the heat-shock response within E. coli, bacterial strains harboring mutations in the fadR and rpoH genes, which are responsible for fatty acid biosynthesis during membrane stress and induction of the heat-shock response, respectively, showed that these mutations had no effect on the responses observed.

X-ray radiation at low doses stimulates differentiation and mineralization of mouse calvarial osteoblasts

  • Park, Soon-Sun;Kim, Kyoung-A;Lee, Seung-Youp;Lim, Shin-Saeng;Jeon, Young-Mi;Lee, Jeong-Chae
    • BMB Reports
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    • 제45권10호
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    • pp.571-576
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    • 2012
  • Radiotherapy is considered to cause detrimental effects on bone tissue eventually increasing bone loss and fracture risk. However, there is a great controversy on the real effects of irradiation itself on osteoblasts, and the mechanisms by which irradiation affects osteoblast differentiation and mineralization are not completely understood. We explored how X-ray radiation influences differentiation and bone-specific gene expression in mouse calvarial osteoblasts. Irradiation at 2 Gy not only increased differentiation and mineralization of the cells, but also upregulated the expression of alkaline phosphatase, type I collagen, osteopontin, and osteocalcin at early stages of differentiation. However, irradiation at higher doses (>2 Gy) did not stimulate osteoblast differentiation, rather it suppressed DNA synthesis by the cells without a toxic effect. Additional experiments suggested that transforming growth factor-beta 1 and runt-transcription factor 2 play important roles in irradiation- stimulated bone differentiation by acting as upstream regulators of bone-specific markers.

Improved Degradation of 4-Chlorobiphencyl, 2,3-Dihydroxybiphenyl, and Catecholic Compounds by Recombinant Bacterial Strains

  • Kim, Ji-Young;Kim, Youngsoo;Lee, Kyoung;Kim, Chi-Kyung
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제6권1호
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    • pp.56-60
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    • 2001
  • The pcbC gene encoding (4-chloro-)2,3-dihydroxybiphenyl dioxygenase was cloned from the genomic DNA of Pseudomonas sp. P20 using pKT230 to construct pKK1. A recombinant strain, E. coli KK1, was selected by transforming the pKK1 into E. coli XL1-Blue. Another recombinant strain, Pseudomonas sp. DJP-120, was obtained by transferring the pKK1 of E. coli KK1 into Pseudomonas sp. DJ-12 by conjugation. Both recombinant strains showed a 23.7 to 26.5 fold increase in the degradation activity to 2,3-dihydroxybiphenyl compared with that of the natural isolate, Pseudomonas sp. DJ-12. The DJP-120 strain showed 24.5, 3.5, and 4.8 fold higher degradation activities to 4-chlorobiphenyl, catechol, and 3-methylcatechol than DJ-12 strain, respectively. The pKK1 plasmid of both strains and their ability to degrade 2,3-dihydroxybiphenyl were stable even after about 1,200 generations.

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Development and Functions of Alveolar Macrophages

  • Woo, Yeon Duk;Jeong, Dongjin;Chung, Doo Hyun
    • Molecules and Cells
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    • 제44권5호
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    • pp.292-300
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    • 2021
  • Macrophages residing in various tissue types are unique in terms of their anatomical locations, ontogenies, developmental pathways, gene expression patterns, and immunological functions. Alveolar macrophages (AMs) reside in the alveolar lumen of the lungs and serve as the first line of defense for the respiratory tract. The immunological functions of AMs are implicated in the pathogenesis of various pulmonary diseases such as allergic asthma, chronic obstructive pulmonary disorder (COPD), pulmonary alveolar proteinosis (PAP), viral infection, and bacterial infection. Thus, the molecular mechanisms driving the development and function of AMs have been extensively investigated. In this review article, we discuss the roles of granulocyte-macrophage colony-stimulating factor (GM-CSF) and transforming growth factor (TGF)-β in AM development, and provide an overview of the anti-inflammatory and pro-inflammatory functions of AMs in various contexts. Notably, we examine the relationships between the metabolic status of AMs and their development processes and functions. We hope that this review will provide new information and insight into AM development and function.