• 제목/요약/키워드: gene disruption

검색결과 164건 처리시간 0.023초

클로닝된 Bacillus thuringiensis subsp. kurstaki HDI 살충성 단백질 유전자의 대장균에서의 발현 (Expression in Eschepichia coli of a Cloned Bacillus thuringiensis subsp. kurstaki HDI In-secticidal Protein Gene.)

  • 황성희;차성철;유관희;이형환
    • 한국미생물·생명공학회지
    • /
    • 제26권6호
    • /
    • pp.497-506
    • /
    • 1998
  • Bacillus thurintensis subsp. kurstaki HD1 살충성 단백질 ICP 유전자가 있는 NdeI 단편 3.856 kb를 클로닝하여 제조한 pHLN2-80(-) 클론이 pHLN1-80(-)에 비해서 대장균에서 ICP발현량이 과다발현되는 현상을 규명하고자 하였다. 본 연구에서는 상기의 pHLN2-80(+) 클론의 발현량을 조절하는 원인을 규명하기 위하여 ICP의 아미노산 서열은 변화되지 않는 범위 내에서 pHLN1-80(+) 클론에 있는 Plac프로모터와 ICP유전자 프로모터의 일부인 -80 bp프로모터의 염기서열, 전사 개시점과 종결부위의 변이가 ICP유전자발현에 미치는 영향을 조사하였다. pHLN1-80(+)에 5'-말단에 존재하는 -80 bp 프로모터만을 보유한 pHLNK-80 클론은 ICP 생산은 매우 저조하였다. Plac프로모터와 -80 bp 프로모터의 구조 골격을 일부 변이 시킨 pHLNF1-80클론의 ICP생산량은 pHLN2-80(-)가 생산한 양보다는 낮아서 과다발현이 안되었다. Plac프로모터 상류를 약 350bp을 제거하여 만든 클론 pHLND2-80의 ICP 생산량은 모클론인 pHLN2-80(-) 보다 매우 높게 과다발현 되었다. ICP 유전자의 과다발현 현상에 대한 전사 개시점과 전사종결 부위의 역할을 알아보기 위해서 -72bp ICP유전자프로모터를 갖는 클론 pHLD1-72는 재조합 클론 pHLN2-80(-)가 생산한 양보다 적은 양의 ICP을 생성하였고, 클론 pHLD2-72는 재조합 클론 pHLN2-80(-)보다 적은 ICP을 발현하여 과다 발현되었으며, 클론 pHLN2-72는 모클론인 pHLN2-80(-)보다 약간 높은 ICP 생산량을 보여 과다발현되었다. 클론 pHLN2-72를증식하여 파쇄액을 만든 후에 Bombyx mori유충에 대한 살충력 검사에서 클론 pHLN2-72이 생산한 ICP는 pHLN1-80(+)이 생산한 ICP보다 약 90배의 살충력을 보였다. SDS-PAGE와 Western blot 분석에서도 클론 pHLN2-72는 재조합 클론 pHLN2-80(-)보다 약간 높게 ICP가 생성이 되었었다. 이상의 결과는 과다발현에 Plac프로모터와 종결부위가 반드시 필요하며, -72 bp ICP 프로모터가 -80 bp 프로모터보다 과다발현률이 높았으며, ICP 유전자는 반드시 Plac프로모터의 전사 방향에 역방향으로 삽입이 되어야 하는 것으로 나타났다.

  • PDF

Bacillus thuringiensis crylAa1 Type Gene의 클로닝과 발현 (Cloning and Expression of Bacillus thuringiensis crylAa1 Type Gene.)

  • 이형환;황성희;권혁한;안준호;김혜연;안성규;박수일
    • 한국미생물·생명공학회지
    • /
    • 제32권2호
    • /
    • pp.110-116
    • /
    • 2004
  • B. thuringiensis subsp. kurstaki HD1 살충성 결정체 단백질 icp 유전자를 클로닝하여 두개의 클론 pHLNl-80(+) 및 pHLN2-80(-)을 제조하였으며, pHLNl-80(+) 클론에는 icp 유전자의 전사개시부위가 정방향으로 클론이 되었고, 유전자 프로모터의 일부인 -80 bp를 가지고 있고, pHLN2-80(-) 클론은 핀자의 전사개시부위가 역방향으로 클로닝이 되었다. 상기 두 클론을 대장균에서 발현을 조사한 결과 icp 유전자가 역으로 삽입된 pHLN2-80(-) 클론은 pHLNl-80(+)클론보다 ICP발현량이 현격히 증가하는 것을 확인하였다. pHLN2-80(-) 플라스미드에서의 -80 bp 프로모터에서 SD서열(-14 bp sequences) 상류부위를 제거한 후 동일한 살충성 결정체 단백질 icp 유전자의 과다발현 현상이 일어나는지 조사하기 위해 icp 유전자가 역방향으로 클로닝된 pHLRBSl-14와 icp 유전자가 정방향으로 클로닝된 pHLRBS2-14 클론을 제조하였다. 또한 상이한 클로닝 운반체에서도 과다 발현이 일어나는지를 보기위하여 pHLNl-80(+)과 pHLN2-80(-) 플라스미드에서와 동일한 구조가 되도록 icp 유전자를 pUC18과 pUC19플라스미드에 각각 클로닝하여 pHLNUCl-80과 pHLNUC2-80 클론을 제조하였다. pHLRBSl-14과 pHLRBS2-14클론을 대장균에서 발현을 시킨 후에 파쇄하여 SDS-PAGE와 Western blot으로 분석을 한 결과는 클론 pHLRBSl-14는 클론 pHLRBS2-14보다 많은 양의 ICP를 생산하였고, pHLRBSl-14는 pHLN2-80(-) 클론 보다는 적게 ICP를 생산하였다. 이러한 발현 현상은 -80 bp promoter 에서 결실된 SD서열의 상류부위가 발현에 직접적인 영향을 주고 있다는 것을 의미한다. pHLNUC1-80이 역방향으로 클로닝된 pHLNUC2-80 클론보다 적게 ICP 의 발현을 하였다. 이 결과는 상기 클론이 icp 유전자 과다발현이 특정 클로닝 운반체에만 국한되어 일어나는 것이 아니며 유전자와 프로모터 간의 구조적 배열에 의하거나 프로모터에 있는 transcription-supressing regions이 교란되어서 일어난 것임을 시사한다. 그러나 왜 전사개기부위가 역삽입의 경우에 과다발현이 되는지 아직은 판단하기 어려우며 앞으로 더욱 연구를 계속하여야 할 과제로 남아있다.

Effects of nandrolone decanoate on expression of steroidogenic enzymes in the rat testis

  • Min, TaeSun;Lee, Ki-Ho
    • Asian-Australasian Journal of Animal Sciences
    • /
    • 제31권5호
    • /
    • pp.658-671
    • /
    • 2018
  • Objective: Nandrolone decanoate (ND) is an anabolic-androgenic steroid frequently used for clinical treatment. However, the inappropriate use of ND results in the reduction of serum testosterone level and sperm production. The suppressive effect of ND on testosterone production has not been investigated in detail. The present study was designed to examine the effect of ND on the expression of steroidogenic enzymes in the rat testis. Methods: Male Sprague Dawley rats at 50 days of age were subcutaneously administrated with either 2 or 10 mg of ND/kg body weight/week for 2 or 12 weeks. The changes of transcript and protein levels of steroidogenic enzymes in the testis were determined by real-time polymerase chain reaction and western blotting analyses, respectively. Moreover, immunohistochemical analysis was employed to determine the changes of immunostaining intensity of these enzymes. The steroidogenic enzymes investigated were steroidogenic acute regulatory protein, cytochrome P450 side chain cleavage enzyme, $17{\alpha}-hydroxylase$, $3{\beta}-hydroxysteroid$ dehydrogenase, and cytochrome P450 aromatase. Results: The treatment of ND resulted in depletion of Leydig cells and sloughing of germ cells in the testis. The ND treatment caused significant expressional decreases of steroidogenic enzymes at transcript and protein levels, and the destructive effects of ND on the testis were more apparent with a higher dose and a longer period of the treatment. Evident reduction of immunostaining intensity present in Leydig cells was clearly detected by the ND treatment. Conclusion: The exposure to ND in young male results not only in histological changes of the testis but also in aberrant gene expression of testicular steroidogenic enzymes, consequently leading into the reduction of testosterone production in the testis and thus likely disruption of spermatogenesis.

The Role of Stress Granules in the Neuronal Differentiation of Stem Cells

  • Jeong, Sin-Gu;Ohn, Takbum;Jang, Chul Ho;Vijayakumar, Karthikeyan;Cho, Gwang-Won
    • Molecules and Cells
    • /
    • 제43권10호
    • /
    • pp.848-855
    • /
    • 2020
  • Cells assemble stress granules (SGs) to protect their RNAs from exposure to harmful chemical reactions induced by environmental stress. These SGs release RNAs, which resume translation once the stress is relieved. During stem cell differentiation, gene expression is altered to allow cells to adopt various functional and morphological features necessary to differentiate. This process induces stress within a cell, and cells that cannot overcome this stress die. Here, we investigated the role of SGs in the progression of stem cell differentiation. SGs aggregated during the neuronal differentiation of human bone marrow-mesenchymal stem cells, and not in cell lines that could not undergo differentiation. SGs were observed between one and three hours post-induction; RNA translation was restrained at the same time. Immediately after disassembly of SGs, the expression of the neuronal marker neurofilament-M (NF-M) gradually increased. Assembled SGs that persisted in cells were exposed to salubrinal, which inhibited the dephosphorylation of eukaryotic translation initiation factor 2 subunit 1 (eIF2α), and in eIF2α/S51D mutant cells. When eIF2α/S51A mutant cells differentiated, SGs were not assembled. In all experiments, the disruption of SGs was accompanied by delayed NF-M expression and the number of neuronally differentiated cells was decreased. Decreased differentiation was accompanied by decreased cell viability, indicating the necessity of SGs for preventing cell death during neuronal differentiation. Collectively, these results demonstrate the essential role of SGs during the neuronal differentiation of stem cells.

Treatment of BG-1 Ovarian Cancer Cells Expressing Estrogen Receptors with Lambda-cyhalothrin and Cypermethrin Caused a Partial Estrogenicity Via an Estrogen Receptor-dependent Pathway

  • Kim, Cho-Won;Go, Ryeo-Eun;Choi, Kyung-Chul
    • Toxicological Research
    • /
    • 제31권4호
    • /
    • pp.331-337
    • /
    • 2015
  • Synthetic pyrethroids (SPs) are the most common pesticides which are recently used for indoor pest control. The widespread use of SPs has resulted in the increased exposure to wild animals and humans. Recently, some SPs are suspected as endocrine disrupting chemicals (EDCs) and have been assessed for their potential estrogenicity by adopting various analyzing assays. In this study, we examined the estrogenic effects of lambda-cyhalothrin (LC) and cypermethrin (CP), the most commonly used pesticides in Korea, using BG-1 ovarian cancer cells expressing estrogen receptors (ERs). To evaluate the estrogenic activities of two SPs, LC and CP, we employed MTT assay and reverse-transcription polymerase chain reaction (RT-PCR) in LC or CP treated BG-1 ovarian cancer cells. In MTT assay, LC ($10^{-6}M$) and CP ($10^{-5}M$) significantly induced the growth of BG-1 cancer cells. LC or CP-induced cell growth was antagonized by addition of ICI 182,720 ($10^{-8}M$), an ER antagonist, suggesting that this effect appears to be mediated by an ER-dependent manner. Moreover, RT-PCR results showed that transcriptional level of cyclin D1, a cell cycle-regulating gene, was significantly up-regulated by LC and CP, while these effects were reversed by co-treatment of ICI 182,780. However, p21, a cyclin D-ckd-4 inhibitor gene, was not altered by LC or CP. Moreover, $ER{\alpha}$ expression was not significantly changed by LC and CP, while down-regulated by E2. Finally, in xenografted mouse model transplanted with human BG-1 ovarian cancer cells, E2 significantly increased the tumor volume compare to a negative control, but LC did not. Taken together, these results suggest that LC and CP may possess estrogenic potentials by stimulating the growth of BG-1 ovarian cancer cells via partially ER signaling pathway associated with cell cycle as did E2, but this estrogenic effect was not found in in vivo mouse model.

Identification of the Vibrio vulnificus fexA Gene and Evaluation of its Influence on Virulence

  • JU HYUN-MOK;HWANG IN-GYUN;WOO GUN-JO;KIM TAE SUNG;CHOI SANG HO
    • Journal of Microbiology and Biotechnology
    • /
    • 제15권6호
    • /
    • pp.1337-1345
    • /
    • 2005
  • Vibrio vulnificus is the causative agent of foodborne diseases such as gastroenteritis and life-threatening septicemia. Microbial pathogenicity is a complex phenomenon in which expression of numerous virulence factors is frequently controlled by a common regulatory system. In the present study, a mutant exhibiting decreased cytotoxic activity toward intestinal epithelial cells was screened from a library of V. vulnificus mutants constructed by a random transposon mutagenesis. By a transposon-tagging method, an open reading frame, fexA, a homologue of Escherichia coli areA, was identified and cloned. The nucleotide and deduced amino acid sequences of the fexA were analyzed, and the amino acid sequence of FexA from V. vulnificus was $84\%\;to\;97\%$ similar to those of AreA, an aerobic respiration control global regulator, from other Enterobacteriaceae. Functions of the FexA were assessed by the construction of an isogenic mutant, whose fexA gene was inactivated by allelic exchanges, and by evaluating its phenotype changes in vitro and in mice. The disruption of fexA resulted in a significant alteration in growth rate under aerobic as well as anaerobic conditions. When compared to the wild-type, the fexA mutant exhibited a substantial decrease in motility and cytotoxicity toward intestinal epithelial cell lines in vitro. Furthermore, the intraperitoneal $LD_{50}$ of the fexA mutant was approximately $10^{1}-10^{2}$ times higher than that of parental wild-type. Therefore, it appears that FexA is a novel global regulator controlling numerous genes and contributing to the pathogenesis as well as growth of V. vulnificus.

Metagenome Resource for D-Serine Utilization in a DsdA-Disrupted Escherichia coli

  • Lim, Mi-Young;Lee, Hyo-Jeong;Kim, Pil
    • Journal of Microbiology and Biotechnology
    • /
    • 제21권4호
    • /
    • pp.374-378
    • /
    • 2011
  • To find alternative genetic resources for D-serine dehydratase (E.C. 4.3.1.18, dsdA) mediating the deamination of D-serine into pyruvate, metagenomic libraries were screened. The chromosomal dsdA gene of a wild-type Escherichia coli W3110 strain was disrupted by inserting the tetracycline resistance gene (tet), using double-crossover, for use as a screening host. The W3110 dsdA::tet strain was not able to grow in a medium containing D-serine as a sole carbon source, whereas wild-type W3110 and the complement W3110 dsdA::tet strain containing a dsdA-expression plasmid were able to grow. After introducing metagenome libraries into the screening host, a strain containing a 40-kb DNA fragment obtained from the metagenomic souce derived from a compost was selected based on its capability to grow on the agar plate containing D-serine as a sole carbon source. For identification of the genetic resource responsible for the D-serine degrading capability, transposon-${\mu}$ was randomly inserted into the 40-kb metagenome. Two strains that had lost their D-serine degrading ability were negatively selected, and the two 6-kb contigs responsible for the D-serine degrading capability were sequenced and deposited (GenBank code: HQ829474.1 and HQ829475.1). Therefore, new alternative genetic resources for D-serine dehydratase was found from the metagenomic resource, and the corresponding ORFs are discussed.

분열효모에서 sphpr1 유전자의 결실이 생장 및 mRNA Export에 미치는 영향 (Effects of the Repression of sphpr1 Expression on Growth and mRNA Export in Fission Yeast)

  • 이현주;윤진호
    • 미생물학회지
    • /
    • 제48권2호
    • /
    • pp.171-174
    • /
    • 2012
  • THOC1/Hpr1는 mRNA가 전사되는 동안 mRNP의 포장과 mRNA 방출에 관여하는 진화적으로 잘 보존된 THO 복합체의 한 소단위이다. 분열효모 Schizosaccharomyces pombe에서도 THOC1/Hpr1과 유사한 단백질을 암호화하는 유전자(sphpr1로 명명)를 찾아 그 특성을 조사하였다. 이배체 S. pombe 균주에 하나의 sphpr1 유전자만을 결실시킨 후 4분체 분석을 수행한 결과, 이 유전자는 생장에 필수적이었다. 티아민에 의해 발현이 조절되는 강력한 nmt1 프러모터를 이용하여 sphpr1를 과발현시키더라도 세포의 생장과 mRNA 방출에는 전혀 영향이 없었다. 하지만, sphpr1의 발현을 억제하면 생장이 억제되었으며 poly$(A)^+$ RNA가 핵 안에 축적되었다. 이와 같은 결과들은 sphpr1 유전자가 생장과 mRNA의 핵에서 세포질로의 방출에 관여하고 있음을 시사한다.

분열효모에서 spThoc7 유전자의 결실이 생장 및 mRNA Export에 미치는 영향 (Effects of spThoc7 Deletion on Growth and mRNA Export in Fission Yeast)

  • 고은진;윤진호
    • 미생물학회지
    • /
    • 제50권3호
    • /
    • pp.249-253
    • /
    • 2014
  • THOC7/Mft1는 mRNA가 전사되는 동안 mRNP의 포장과 mRNA 방출에 관여하는 진화적으로 잘 보존된 THO 복합체의 구성인자이다. 분열효모 Schizosaccharomyces pombe에서 THOC7/Mft1의 이종상동체(spThoc7)가 합성치사 돌연변이체 SLRsm1의 생장 결함을 부분적으로 상보하는 것으로 선별되었다. 이배체 S. pombe 균주에 하나의 spthoc7 유전자만을 결실시킨 후 4분체 분석을 수행한 결과, 이 유전자는 생장에 필수적이지 않았다. 하지만, ${\Delta}thoc7$ 결실돌연변이는 생장과 mRNA의 핵에서 세포질로의 방출에 약간의 결함을 보였다. 기능을 하는 spThoc7-GFP단백질은 주로 핵 안에 존재하였다. 이와 같은 결과들은 spThoc7도 mRNA 방출에 관여하고 있음을 시사한다.

Response of Saccharomyces cerevisiae to Ethanol Stress Involves Actions of Protein Asr1p

  • Ding, Junmei;Huang, Xiaowei;Zhao, Na;Gao, Feng;Lu, Qian;Zhang, Ke-Qin
    • Journal of Microbiology and Biotechnology
    • /
    • 제20권12호
    • /
    • pp.1630-1636
    • /
    • 2010
  • During the fermentation process of Saccharomyces cerevisiae, yeast cells must rapidly respond to a wide variety of external stresses in order to survive the constantly changing environment, including ethanol stress. The accumulation of ethanol can severely inhibit cell growth activity and productivity. Thus, the response to changing ethanol concentrations is one of the most important stress reactions in S. cerevisiae and worthy of thorough investigation. Therefore, this study examined the relationship between ethanol tolerance in S. cerevisiae and a unique protein called alcohol sensitive RING/PHD finger 1 protein (Asr1p). A real-time PCR showed that upon exposure to 8% ethanol, the expression of Asr1 was continuously enhanced, reaching a peak 2 h after stimulation. This result was confirmed by monitoring the fluorescence levels using a strain with a green fluorescent protein tagged to the C-terminal of Asr1p. The fluorescent microscopy also revealed a change in the subcellular localization before and after stimulation. Furthermore, the disruption of the Asr1 gene resulted in hypersensitivity on the medium containing ethanol, when compared with the wild-type strain. Thus, when taken together, the present results suggest that Asr1 is involved in the response to ethanol stress in the yeast S. cerevisiae.