• 제목/요약/키워드: bacterial toxin

검색결과 126건 처리시간 0.02초

Improved Purification Process for Cholera Toxin and its Application to the Quantification of Residual Toxin in Cholera Vaccines

  • Jang, Hyun;Kim, Hyo-Seung;Kim, Jeong-Ah;Seo, Jin-Ho;Carbis, Rodney
    • Journal of Microbiology and Biotechnology
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    • 제19권1호
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    • pp.108-112
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    • 2009
  • A simplified method for the purification of cholera toxin was developed. The 569B strain of Vibrio cholerae, a recognized hyper-producer of cholera toxin, was propagated in a bioreactor under conditions that promote the production of the toxin. The toxin was separated from the bacterial cells using 0.2-${\mu}m$ crossflow microfiltration, the clarified toxin was passed through the membrane into the permeate, and the bacterial cells were retained in the retentate. The 0.2-${\mu}m$ permeate was then concentrated 3-fold and diafiltered against 10 mM phosphate buffer, pH 7.6, using 30-kDa crossflow ultrafiltration. The concentrated toxin was loaded onto a cation exchange column, the toxin was bound to the column, and most of the impurities were passed unimpeded through the column. The toxin was eluted with a salt gradient of phosphate buffer, pH 7.0, containing 1.0 M NaCl. The peak containing the toxin was assayed for cholera toxin and protein and the purity was determined to be 92%. The toxin peak had a low endotoxin level of $3.1\;EU/{\mu}g$ of toxin. The purified toxin was used to prepare antiserum against whole toxin, which was used in a $G_{M1}$ ganglioside-binding ELISA to determine residual levels of toxin in an oral inactivated whole-cell cholera vaccine. The $G_{M1}$ ganglioside-binding ELISA was shown to be very sensitive and capable of detecting as little as 1 ng/ml of cholera toxin.

Substrate specificity of bacterial endoribonuclease toxins

  • Han, Yoontak;Lee, Eun-Jin
    • BMB Reports
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    • 제53권12호
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    • pp.611-621
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    • 2020
  • Bacterial endoribonuclease toxins belong to a protein family that inhibits bacterial growth by degrading mRNA or rRNA sequences. The toxin genes are organized in pairs with its cognate antitoxins in the chromosome and thus the activities of the toxins are antagonized by antitoxin proteins or RNAs during active translation. In response to a variety of cellular stresses, the endoribonuclease toxins appear to be released from antitoxin molecules via proteolytic cleavage of antitoxin proteins or preferential degradation of antitoxin RNAs and cleave a diverse range of mRNA or rRNA sequences in a sequence-specific or codon-specific manner, resulting in various biological phenomena such as antibiotic tolerance and persister cell formation. Given that substrate specificity of each endoribonuclease toxin is determined by its structure and the composition of active site residues, we summarize the biology, structure, and substrate specificity of the updated bacterial endoribonuclease toxins.

박테리아의 toxin-antitoxin system과 생명공학기술 응용 (Bacterial Toxin-antitoxin Systems and Their Biotechnological Applications)

  • 김윤지;황지환
    • 생명과학회지
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    • 제26권2호
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    • pp.265-274
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    • 2016
  • Toxin-antitoxin (TA) system은 박테리아와 고세균에서 진화적으로 보존되어 흔히 발견되는 유전적 모듈이다. 기본적으로 이 시스템은 세포 내 toxin과 그들의 억제자로 작용하는 antitoxin으로 구성되어있으며, 현재 총 다섯가지 유형으로 구분된다. 공통적으로 toxin은 스트레스 조건에서 활성화됨으로써 세포 내 다양한 과정을 억제하는 활성을 가지는데 이는 결과적으로 세포 사멸 혹은 가역적인 생장 저해를 일으킨다. Toxin의 이러한 효과들은 유전자 발현의 조절, 성장 조절, programmed cell arrest, programmed cell death, persister cell의 형성, 박테리오파지 방어기작, 가동성 유전인자의 안정화, 플라스미드 유지 기작 등 다양한 생리학적 역할을 나타낸다. 그러므로 TA system은 일반적인 스트레스 반응모듈로서 여겨진다. 하지만 이를 역이용한다면 TA system으로부터 toxin을 활성화 시키는 인자를 개발하여 새로운 항균 물질로 이용할 수 있다. 그뿐만 아니라 TA system은 toxin의 세포 사멸 효과를 이용하여 원하는 타겟 유전자가 존재하는 세포만 선택적으로 살아남도록 하는 효율적인 클로닝 전략에 이용될 수 있다. 또한, toxin의 서열 특이적 리보핵산 가수분해효소 활성을 이용하여 타겟 단백질 이외의 단백질 합성을 막아 효과적인 단일 단백질 대량 생산을 위해서도 이용할 수 있다. 더 나아가 일부 TA system의 toxin은 진핵 세포에서도 세포 독성을 나타내기 때문에 암세포, 바이러스 감염 세포에서 toxin의 발현을 유도하여 세포사멸을 일으킴으로써 인간의 질병 치료로 이어질 수 있다.

Molecular cloning, Expression and purification of Anthrax toxin from Bacillus anthracis

  • Yoon, Moon-Young
    • Journal of Photoscience
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    • 제9권2호
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    • pp.323-325
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    • 2002
  • Bacillus Anthracis is the causative agent of anthrax. The major virulence factors are a poly-D glutamic acid capsule and three-protein component exotoxin, which is collectively known as anthrax toxin, protective antigen (PA, 83 kDa), lethal factor (LF, 90 kDa), and edema factor (EF, 89 kDa). These three proteins individually have no known toxic activities, but in combination with PA form two toxins (lethal toxin and edema toxin), causing different pathogenic responses in animals and cultured cells. However, it remains to be elucidated for pathogenic mechanism of anthrax toxin. In this study, we constructed toxin component in bacterial overexpression system and purified the native toxin from Bacillus anthracis delta sterne F32 using FPLC system. Recombinant toxin showed high homogeneity and rapid purification processes. Also, this recombinant toxin was comparable to B. anthracis native toxin in terms of cytotoxic effects on cultured cell lines.

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Development of a toxA Gene Knock-out Mutant of Pasteurella multocida and Evaluation of its Protective Effects

  • Kim Tae-Jung;Lee Jae-Il;Lee Bong-Joo
    • Journal of Microbiology
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    • 제44권3호
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    • pp.320-326
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    • 2006
  • Pasteurella multocida is an important veterinary and opportunistic human pathogen. In particular, strains of P. multocida serogroup D cause progressive atrophic rhinitis, and produce a potent, intracellular, mitogenic toxin known as P. multocida toxin (PMT), which is encoded by the toxA gene. To further investigate the toxigenic and pathogenic effects of PMT, a toxA-deleted mutant was developed by homologous gene recombination. When administrated to mice, the toxigenicity of the toxA mutant P. multocida was drastically reduced, suggesting that the PMT constributes the major part of the toxigenicity of P, multocida. Similar results were obtained in a subsequent experiment, while high mortalities were observed when toxA(+) P. multocida bacterial culture or culture Iysate were administrated. Mice immunized with toxA(-) P. multocida were not protected (none survived) following challenge with toxA(+) P. multocida or bacterial culture Iysate (toxin). These results suggest that the toxigenicity of P. multocida is mainly derived from PMT.

Repression of Type-1 Fimbriae in Shiga Toxin-Producing Escherichia coli O91:H21 Isolated from Asymptomatic Human Carriers in Korea

  • Kim, Jung-Beom;Oh, Kyung-Hwan;Park, Mi-Sun;Cho, Seung-Hak
    • Journal of Microbiology and Biotechnology
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    • 제23권5호
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    • pp.731-737
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    • 2013
  • Seventy-four Shiga toxin-producing Escherichia coli (STEC) isolates belonging to the serotype O91:H21 were isolated from 1,643 asymptomatic human carriers in a STEC outbreak at Gwangju in Korea. Although the isolates did not cause any symptoms, all of them produced Shiga toxins 1 (Stx1) and 2 (Stx2). In order to determine why these strains cause no symptoms, we explored the differences in virulence potential between the asymptomatic STEC O91:H21 isolates and symptomatic STEC O91:H21 strains (ATCC 51435 and ATCC 51434). The asymptomatic STEC O91:H21 isolates showed strongly reduced cytopathic effects compared with the symptomatic strains when intact bacterial cells were used as an inoculant. Moreover, we found a reduced adherence phenotype when testing asymptomatic strains on HeLa cells. Real-time quantitative PCR results suggest that transcriptional repression of the genes encoding type-1 fimbriae occurs in the asymptomatic isolates but not in the symptomatic strains.

꽃사슴의 Clostridium perfringens A형에 의한 장독혈증 발생 보고 (Enterotoxemia caused by Clostridium perfringens type A in Formosan deer)

  • 이청산;한성태;곽학구;박경재;현공율;조우영;이종인;배유찬;진영화
    • 한국동물위생학회지
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    • 제25권2호
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    • pp.127-133
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    • 2002
  • The case reports for clostridium type A enterotoxemia in Formosan deer have rarely been reported. This paper describes a natural case of type A enterotoxemia in farmed Formosan deer in Cheongwon-gun. A dead, male 10-month-old Formosan deer was submitted to Chungbuk Livestock and Veterinary Research Institute, March 24, 2001 and examined. That deer was fed with assorted grain feed, oak leaves, acorn and bean curd. Grossly there was no visible external change. Despite of the carcass being examined within 12 hours of death, there was a quite degree of posonortem decomposition. There was severe hemorrhage in the serosa of abomasum and small intestine. Much blood tinged and watery contents were contained in those organs. Also there were severe swelling of spleen, some red foci in hepatic parenchyma. Microscopically there were severe congestion and hemorrhage in mucosa submucosa, muscular layer, and serosa of abomasum and small intestine. Also spleen and pancreas showed severe Congestion and hemorrhage. There were multifocal hemorrhage with hepatic necrosis in periportal area and focal mononuclear cell deposition in sinusoid. In bacterial culture for small intestine, Cl perfringens was isolated. By toxin typing for the strain, that had $\alpha$ -toxin belonged to type A. In electronmicroscopy for feces, no vims particle was detected. Considering clinical signs, gross lesions, microscopic lesions, bacterial culture, and toxin typing of the isolate, this case was diagnosed as enterotoxemia by Cl perfringens type A.

법미생물 검사를 위한 식중독 세균(Bacillus cereus)의 동정 및 독소 유전자 검사법: 국립과학수사연구원 사례보고 (Identification of Food-Poisoning Bacteria (Bacillus cereus) and the Bacterial Toxin Genes for Application to Forensic Microbiology : A Case Report from National Forensic Service)

  • 조윤정;이민호;김효숙;엄기윤;김민희;김종배;이동섭
    • 과학수사학회지
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    • 제11권3호
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    • pp.210-217
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    • 2017
  • 법미생물 검사실에서는 식품의 미생물 분석이 요구되는 경우들이 있다. 국립과학수사연구원에 식품 미생물분석이 의뢰된 샘플들 중에서 Bacillus cereus 균이 분리되었던 일부 증례가 있었다. B. cereus는 식중독을 일으킬 수 있는 중요한 병원성 세균이다. 따라서 우리는 최근 미생물 검사를 위해 의뢰된 멸치액젓에서 B. cereus를 분리한 후, 16S rDNA 서열을 기반으로 하는 MSId 방법 및 real-time PCR 법에 따라 균을 동정 하였다. 또한 설사 독소 유전자 및 구토 독소 유전자 검출을 위한 PCR을 실시하고 B. cereus 분리 균주에서 nheABC, bceT 및 entFM 설사 독소 유전자의 존재를 확인하였다. 임상적으로 중요한 몇 가지 식중독 세균들은 식품 미생물 검사 시 주목해야 할 필요가 있다. 특히, 이러한 식중독 세균들 중에서 B. cereus는 환경저항성 및 내열성이 강한 내생포자를 형성하고, 내열성 독소를 형성할 수도 있기 때문에 조리된 음식을 섭취해도 식중독을 일으킬 수 있다. 본 연구를 통해서 B. cereus등의 임상적으로 중요한 세균을 구별하는 것이 식품미생물 검사 시 중요함을 강조하고, 또한 법미생물 검사실에 앞으로 의뢰될 식품미생물 분석 사례들을 위해 B. cereus의 식별 및 세균의 독소 유전자 검출을 위한 지침을 제공 하고자 한다.

Functional characterizations of residues Arg-158 and Tyr-170 of the mosquito-larvicidal Bacillus thuringiensis Cry4Ba

  • Leetachewa, Somphob;Moonsom, Saengduen;Chaisri, Urai;Khomkhum, Narumol;Yoonim, Nonglak;Wang, Ping;Angsuthanasombat, Chanan
    • BMB Reports
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    • 제47권10호
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    • pp.546-551
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    • 2014
  • The insecticidal activity of Bacillus thuringiensis (Bt) Cry toxins involves toxin stabilization, oligomerization, passage across the peritrophic membrane (PM), binding to midgut receptors and pore-formation. The residues Arg-158 and Tyr-170 have been shown to be crucial for the toxicity of Bt Cry4Ba. We characterized the biological function of these residues. In mosquito larvae, the mutants R158A/E/Q (R158) could hardly penetrate the PM due to a significantly reduced ability to alter PM permeability; the mutant Y170A, however, could pass through the PM, but degraded in the space between the PM and the midgut epithelium. Further characterization by oligomerization demonstrated that Arg-158 mutants failed to form correctly sized high-molecular weight oligomers. This is the first report that Arg-158 plays a role in the formation of Cry4Ba oligomers, which are essential for toxin passage across the PM. Tyr-170, meanwhile, is involved in toxin stabilization in the toxic mechanism of Cry4Ba in mosquito larvae.

The Antimicrobial Peptide CopA3 Inhibits Clostridium difficile Toxin A-Induced Viability Loss and Apoptosis in Neural Cells

  • Yoon, I Na;Hwang, Jae Sam;Lee, Joon Ha;Kim, Ho
    • Journal of Microbiology and Biotechnology
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    • 제29권1호
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    • pp.30-36
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    • 2019
  • Numerous studies have reported that enteric neurons involved in controlling neurotransmitter secretion and motility in the gut critically contribute to the progression of gut inflammation. Clostridium difficile toxins, which cause severe colonic inflammation, are also known to affect enteric neurons. Our previous study showed that C. difficile toxin A directly induces neural cell toxicities, such as viability loss and apoptosis. In the current study, we attempted to identify a potent inhibitor of toxin A-induced neural cell toxicity that may aid in managing toxin A-induced gut inflammation. In our recent study, we found that the Korea dung beetle-derived antimicrobial peptide CopA3 completely blocked neural cell apoptosis caused by okadaic acid or 6-OHDA. Here, we examined whether the antimicrobial peptide CopA3 inhibited toxin A-induced neural cell damage. In neuroblastoma SH-SY5Y cells, CopA3 treatment protected against both apoptosis and viability loss caused by toxin A. CopA3 also completely inhibited activation of the pro-apoptotic factor, caspase-3. Additionally, CopA3 rescued toxin A-induced downregulation of neural cell proliferation. However, CopA3 had no effect on signaling through ROS/p38 $MAPK/p27^{kip1}$, suggesting that CopA3 inhibits toxin A-induced neural cell toxicity independent of this well-characterized toxin A pathway. Our data further suggest that ability of CopA3 to rescue toxin A-induced neural cell damage may also ameliorate the gut inflammation caused by toxin A.