• 제목/요약/키워드: Pho

검색결과 87건 처리시간 0.019초

Bacillus subtilis의 Pho Regulon을 통한 인산 결핍 스트레스 반응 (Phosphate Deficiency Stress Response Mediated by Pho Regulon in Bacillus subtilis)

  • 박재용
    • 미생물학회지
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    • 제46권2호
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    • pp.113-121
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    • 2010
  • 인산 결핍기에 직면한 Bacillus subtilis는 PhoP-PhoR twocomponent system (TCS)를 통해 이러한 상황을 인식하고 생존을 유지하기 위해 Pho regulon으로 불리는 일련의 유전자들의 발현을 조절한다. 이때 histidine kinase인 PhoR은 자동 인산화되어, 인산을 response regulator인 PhoP에 전달한다. 인산화된 PhoP (PhoP~P)는 Pho regulon 유전자의 프로모터(promoter) 부위에 존재하는 반복되는 6 bp의 잘 보존된 PhoP 결합서열에 결합하여 해당 유전자의 발현을 활성화시키거나 억제한다. 이러한 Pho regulon 신호전달 시스템은 최소한 세 개의 TCS (PhoP-PhoR, ResD-ResE TCS, SpoOA phosphorelay), 광범위한 탄소대사 조절자(CcpA), 전위기 조절자(AbrB, ScoC) 등을 포함하는 신호전달 시스템과 밀접하게 상호 연결되어 있을 뿐만 아니라, 생육에 필수적인 YycF-YycG TCS와 상호조절을 통한 밀접한 관련을 가지고 있다. Pho regulon에 의한 인산결핍 스트레스 반응을 이해하는데 많은 진척이 있었으나, 많은 의문들은 여전히 남아있다. 이러한 의문들을 푸는 일은 B.subtilis의 응용연구에 중요한 정보를 제공할 것이다.

적량적 전산화단층촬영을 이용한 한국인의 골밀도 (Bone Mineral Density of Normal Korean Adult Using QCT)

  • 이종덕
    • 동의생리병리학회지
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    • 제18권6호
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    • pp.1918-1926
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    • 2004
  • Osteoporosis is defined as a progressive systemic skeletal disorder characterized by low bone mineral density, microarchitectual deteriorations of bone and susceptibility to fracture. numerous methods have been used for quantitative assessment of the skeleton in osteoporosis. QCT has been shown to measure changes in trabecular mineral content in the spine with great sensitivity and precision. To provide the normal reference values and changes of lumbar spinal bone mineral density in korean adult spinal bone mineral density was evaluated in 451 women (229 premenopausal and 222 postmenopausal women) and 206 men, aged 20 to 74 years old in Wonkwang hospital from 2000 to 2004, which was carried out by using QCT. women with oophorectomy, vertebral compression fracture, any history of endocrine disease and use of drugs that alter bone metabolism were excluded. According to the WHO definition, a patient is osteoporotic based on a bone mineral density(BMD) measurement that is 2.5 standard deviations (SDs) below typical peak bone mass of young healthy white women. This measurement of standard deviation from peak mass is called the T score. BMD values of normal women in their 20-24 years, 25-29 years, 30-34 years, 35-39 years, 40-44 years, 45-49 years, 50-54 years, 55-59 years, 60-64 years, 65-69 years, over 70 years were 168.95㎎/㏄ K₂PHO₄, 155.41㎎/㏄ K₂PHO₄, 166.87㎎/㏄ K₂PHO₄, 160.67㎎/㏄ K₂PHO₄, 154.06㎎/㏄ K₂PHO₄, 132.04㎎/㏄ K₂PHO₄, 114.05㎎/㏄ K₂PHO₄, 91.78㎎/㏄ K₂PHO₄, 78.61 ㎎/㏄ K₂PHO₄, 61.35㎎/㏄ K₂PHO₄, 50.53㎎/㏄ K₂PHO₄ Mean bone density of normal women was 115.77K₂PHO₄ K₂PHO₄. BMD values of normal men in their 20-24 years, 25-29 years, 30-34 years, 35-39 years, 40-44 years, 45-49 years, 50-54 years, 55-59 years, 60-64 years, 65-69 years, over 70 years were 171.46㎎/㏄ K₂PHO₄, 162.19㎎/㏄ K₂PHO₄, 155.62㎎/㏄ K₂PHO₄, 147.28㎎/㏄ K₂PHO₄, 137.56㎎/㏄ K₂PHO₄, 137.56㎎/㏄ K₂PHO₄, 101.25㎎/㏄ K₂PHO₄, 109.00㎎/㏄ K₂PHO₄, 103.32㎎/㏄ K₂PHO₄, 91.53㎎/㏄ K₂PHO₄, 88.35㎎/㏄ K₂PHO₄ Mean density of normal men was 115.77㎎/㏄ K₂PHO₄. Peak bone density of women and men was in the age group of 20-24 years and 168.95㎎/㏄ K₂PHO₄, 171.46㎎/㏄ K₂PHO₄, respectively. Bone loss was increased with aging and was accelerated in postmenopausal women than that of premenopausal women. The total loss of BMD for women and men was 70.09% and 48.47%, respectively. Postmenopausal women(mean BMD : 85.83㎎/㏄ K₂PHO₄) had significantly lower BMD than premenopausal women(meand BMD : 144.80㎎/㏄ K₂PHO₄)(p<0.001). The annual loss of BMD of women and men was 2.702㎎/㏄ K₂PHO₄ and 1.795㎎/㏄ K₂PHO₄, respectively. This study provided the BMD reference data for normal korean adult. further studies on BMD in healthy adult and comparison with published data are needed.

Transcriptome Analysis of Phosphate Starvation Response in Escherichia coli

  • Baek, Jong-Hwan;Lee, Sang-Yup
    • Journal of Microbiology and Biotechnology
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    • 제17권2호
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    • pp.244-252
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    • 2007
  • Escherichia coli has a PhoR-PhoB two-component regulatory system to detect and respond to the changes of environmental phosphate concentration. For the E. coli W3110 strain growing under phosphate-limiting condition, the changes of global gene expression levels were investigated by using DNA microarray analysis. The expression levels of some genes that are involved in phosphate metabolism were increased as phosphate became limited, whereas those of the genes involved in ribosomal protein or amino acid metabolism were decreased, owing to the stationary phase response. The upregulated genes could be divided into temporarily and permanently inducible genes by phosphate starvation. At the peak point showing the highest expression levels of the phoB and phoR genes under phosphate-limiting condition, the phoB- and/or phoR-dependent regulatory mechanisms were investigated in detail by comparing the gene expression levels among the wild-type and phoB and/or phoR mutant strains. Overall, the phoB mutation was epistatic over the phoR mutation. It was found that PhoBR and PhoB were responsible for the upregulation of the phosphonate or glycerol phosphate metabolism and high-affinity phosphate transport system, respectively. These results show the complex regulation by the PhoR-PhoB two-component regulatory system in E. coli.

Membrane-Bound Protease FtsH Protects PhoP from the Proteolysis by Cytoplasmic ClpAP Protease in Salmonella Typhimurium

  • Hyungkeun Song;Eunna Choi ;Eun-Jin Lee
    • Journal of Microbiology and Biotechnology
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    • 제33권9호
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    • pp.1130-1140
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    • 2023
  • Among the AAA+ proteases in bacteria, FtsH is a membrane-bound ATP-dependent metalloprotease, which is known to degrade many membrane proteins as well as some cytoplasmic proteins. In the intracellular pathogen Salmonella enterica serovar Typhimurium, FtsH is responsible for the proteolysis of several proteins including MgtC virulence factor and MgtA/MgtB Mg2+ transporters, the transcription of which is controlled by the PhoP/PhoQ two-component regulatory system. Given that PhoP response regulator itself is a cytoplasmic protein and also degraded by the cytoplasmic ClpAP protease, it seems unlikely that FtsH affects PhoP protein levels. Here we report an unexpected role of the FtsH protease protecting PhoP proteolysis from cytoplasmic ClpAP protease. In FtsH-depleted condition, PhoP protein levels decrease by ClpAP proteolysis, lowering protein levels of PhoP-controlled genes. This suggests that FtsH is required for normal activation of PhoP transcription factor. FtsH does not degrade PhoP protein but directly binds to PhoP, thus sequestering PhoP from ClpAP-mediated proteolysis. FtsH's protective effect on PhoP can be overcome by providing excess ClpP. Because PhoP is required for Salmonella's survival inside macrophages and mouse virulence, these data implicate that FtsH's sequestration of PhoP from ClpAP-mediated proteolysis is a mechanism ensuring the amount of PhoP protein during Salmonella infection.

세포내 기생세균의 병원성 관련 유전자의 분석에 관하여 (Analysis of Genes Involved in the Pathogenesis of Intracellularly Survival Bacteria)

  • 전태일;이태윤;김성광
    • Journal of Yeungnam Medical Science
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    • 제9권2호
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    • pp.248-255
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    • 1992
  • S. typhimurium의 세포내생존을 가능케하는 유전자가 다른 세균에서도 존재하는지를 조사하기 위해 8주의 세균주를 사용하였다. phoP-PhoQ operon은 세포내 환경의 자극을 인지하고 그 환경의 적응에 관여하는 유전자의 유전자표현을 조절한다고 알려져 있다. S. typhimurium의 phoP region의 514 basepairs EcoRV DNA fragment를 probe로 dot blot hybridization을 실시하였다. K. pneumoniae, P. aeruginosa, S. marscescens, E. cloacae, S. typhimurium의 phoP/phoQ gene과 유사한 DNA sequence를 가지지 않았으며 E. coli, S. dysenteriae, E. cloacae에서는 세포내 생존가능세균이 아님에도 불구하고 positive signal을 나타내었다. 이상의 결과에서 S. typhimurium외의 세포내 생존가능세균에는 phoP/PhoQ operon이 없다는 것을 알게 되었고 세포내 생존이 가능하지는 않지만 S. typhimurium과 계통발생학적으로 가까운 세균주에서 phoP/phoQ operon이 발견되었다. L. monocytogenes의 세포내 생존에는 phoP/phoQ에 의존하지 않는 어떤 다론 기전이 존재할 것으로 사료된다.

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병원성장내세균에서 phoP-phoQ operon의 지배를 받는 phoA 유전자의 cloning 및 염기서열결정 (Cloning and Sequencing of the phoA Gene which is Regulated by the phoP-phoQ Operon in Pathogenic Enteric Bacteria)

  • 김성광;이태윤
    • Journal of Yeungnam Medical Science
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    • 제12권2호
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    • pp.237-245
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    • 1995
  • Klebsiella pneumoniae 의 phoA 유전자를 함유하는 DNA를 plasmid pACYC184에 클로닝 하였다. 클로닝된 DNA의 크기는 4.0 kb이었으며 제한효소지도를 작성한 결과 3개의 PstI 절단부위와 4개의 PvuII 절단부위가 발견되었다. Klebsiella pneumoniae 의 phoA 유전자의 염기서열은 Escherichia coli와 매우 유사하여 80%의 유사성을 보였으며 이는 이 두 균종이 서로 유전적으로 매우 가까운 관계에 있음을 시사하였다.

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Coprinus congregatus의 분화와 Phenoloxidase와의 관계 (Phenoloxidases and Photomorphogenesis in Coprinus congregatus)

  • 최형태
    • 한국식물학회:학술대회논문집
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    • 한국식물학회 1987년도 식물생명공학 심포지움 논문집 Proceedings of Symposia on Plant Biotechnology
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    • pp.157-167
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    • 1987
  • The have been many reports that phenoloxidase are correlated with development in many fungi. C. congregatus, one of nushroom-forming basidiomycetes, which requires light for its development also has phenoloxidases. In C. congragatus, there are two sets of membrane-associated phenoloxidase (PHO I and PHO II) which are differentiated by their isozyme patterns, and each enzyme set consists of two different subtrate specific enzyme protein; o-tolidine reacting enzyme, and DOPA reacting enzyme. PHO I which is localized by a protoplast-concanavalin A technique by using a new solidifying agent, Pluronic Polyol F 127, instead of agar appears in the vegetative hyphae, and PHO II appears at the early primordial stage on agar and at the sclerotial stage of liquid shake cultures. Inhibition of PHO I with the enzyme inhibitors inhibits mushroom formation as well as melanization of the vegetative hyphae at concentrations which do not inhibit the vegetative growth. PHO I deficient mutants do not form mushrooms or melanins, and the mutants show abnormal nuclear migration patterns. PHO II has roles; possibly cementing the adjacent hyphae during the actual three dimensonal structure formation, and melanizing mushrooms and sclerotia. The possible roles of PHO I in the light reception complex and in melanin formation, the function of malanin, and possible roles of postulated post translational modifying enzymes which regulate the phenoloxidases, nuclear migration pattern, and self-nonself recognition mechanism are discussed.

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Pathways Regulating the pbgP Operon and Colistin Resistance in Klebsiella pneumoniae Strains

  • Choi, Myung-Jin;Kim, Sunju;Ko, Kwan Soo
    • Journal of Microbiology and Biotechnology
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    • 제26권9호
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    • pp.1620-1628
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    • 2016
  • In this study, we investigated colistin resistance mechanisms associated with the regulation of the pbgP operon in Klebsiella pneumoniae, using four isogenic pairs of colistin-susceptible strains and their colistin-resistant derivatives and two colistin-resistant clinical isolates. Amino acid sequence alterations of PhoPQ, PmrAB, and MgrB were investigated, and mRNA expression levels of phoQ, pmrB, pmrD, and pbgP were measured using quantitative real-time PCR. The phoQ and pmrB genes were deleted from two colistin-resistant derivatives, 134R and 063R. We found that phoQ, pmrD, and pbgP were significantly upregulated in all colistin-resistant derivatives. However, pmrB was significantly upregulated in only two colistin-resistant derivatives and one clinical strain. pmrB was not overexpressed in the other strains. The minimum inhibitory concentration of colistin was drastically lower in both phoQ- and pmrB-deleted mutants from a colistin-resistant derivative (134R) that was overexpressing phoQ and pmrB. However, colistin susceptibility was restored only in a phoQ-deleted mutant from a colistin-resistant derivative (063R) without overexpression of pmrB. In conclusion, two different regulations of the pbgP operon may associate with the development of colistinresisant K. pneumoniae.

세균의 인산 항상성: 인산 수송 단백질들의 역할 (Bacterial Phosphate Homeostasis: Role of Phosphate Transporters)

  • 박윤미;방일수
    • 미생물학회지
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    • 제48권2호
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    • pp.57-65
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    • 2012
  • 인은 인지질, 탄수화물 및 핵산 등의 생분자 합성에 필요한 원소이다. 세균은 외부환경으로부터 인산이나 인산을 포함하는 영양소를 흡수하여 인을 얻고, 세포대사에 사용되고 남은 인산은 polyphosphate 형태로 저장한다. 현재까지 알려진 다섯 개의 인산 수송 시스템 중, 인산에 특이적으로 높은 친화력을 갖는 Pst 시스템이 가장 중요한 역할을 하며, 그 발현은 세포외부 인산 농도에 반응하는 PhoB-PhoR two component 신호전달 시스템에 의해 조절된다. 반응 조절 단백질 PhoB는 인산 대사뿐 아니라 이와 관계없는 유전자들의 전사를 조절하는 것으로 알려졌으며, 따라서 PhoB의 활성이 조절되지 않으면 많은 종류의 다른 표현형이 나타난다. 본 총설은 각 인산 수송 시스템의 기능이 결여된 세균의 표현형에 대한 최근 연구 결과를 토대로 다음과 같은 내용을 기술하였다. 첫째, 세포 내부 인산의 적정 농도 유지를 위한 인산 수송 시스템들의 역할, 둘째, 인산뿐 아니라 여타 환경 신호와 관련된 수송 시스템의 다양한 표현형, 그리고 마지막으로, 수송 시스템들 간 혹은 그 조절자들 간의 표현형 중복을 분류하여 제시하였다. 이러한 내용은 결국 세균의 대사, 적응반응 및 병원성 발현에 미치는 인산 항상성의 중요성을 강조한다.

Enterobacter aerogenes 의 phoA 유전자 Promoter를 이용한 인 제한환경에서 발현하는 벡터 구축 (Construction of the Phosphate-Limitation Inducible Expression Vector Containing the phoA Promoter of Enterobacter aerogenes)

  • 장화형;고병훈;박신영;이성호;김성진;임유정;한갑진;김영호;이영근
    • 미생물학회지
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    • 제38권4호
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    • pp.318-321
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    • 2002
  • 토양 등의 인 제한환경에서 특이적으로 발현하는 벡터를 구축하기 위해서 Enterobacter areogenes의 phoA 유전자의 promoter가 든 pEAAP를 구축하였다. pEAAP는 pET-22b(+)을 BglII와 XbaI으로 절단하여 T7 promoter와 lac operator를 제거하고pho box가 포함된 phoA promoter를 삽입하여 구축하였다. pEAAP가 인 제한 환경에서 특이적으로 발현되는지 조사하고자 Bacillus subtillis var. amyloliquefaciens (KCTC 8913P)의 Phytase유전자인 Bsa-phy1을 도입한 pEAPHY1을 구축하였다. CK-PHY1 (pEAPHY1을 도입한Escherichia coli JM109)는 인 제한 환경에서 41 kD)의 Bsa-Phy1을 발현하였다. 또한, CK-PHY1은 phytate를 유일한 인산원으로 첨가된 고체배지에서 phytate를 분해하여 투명대를 형성하였다.