• 제목/요약/키워드: phenylalanine ammonia lyase

검색결과 81건 처리시간 0.031초

Biosynthesis of Pinocembrin from Glucose Using Engineered Escherichia coli

  • Kim, Bong Gyu;Lee, Hyejin;Ahn, Joong-Hoon
    • Journal of Microbiology and Biotechnology
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    • 제24권11호
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    • pp.1536-1541
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    • 2014
  • Pinocembrin is a flavonoid that exhibits diverse biological properties. Although the major source of pinocembrin is propolis, it can be synthesized biologically using microorganisms such as Escherichia coli, which has been used to synthesize diverse natural compounds. Pinocembrin is synthesized from phenylalanine by the action of three enzymes; phenylalanine ammonia lyase (PAL), 4-coumarate:CoA ligase (4CL), and chalcone synthase (CHS). In order to synthesize pinocembrin from glucose in Escherichia coli, the PAL, 4CL, and CHS genes from three different plants were introduced into an E. coli strain. Next, we tested the different constructs containing 4CL and CHS. In addition, the malonyl-CoA level was increased by overexpressing acetyl-CoA carboxylase. Through these strategies, a high production yield (97 mg/l) of pinocembrin was achieved.

INDUCTION OF SYSTEMIC RESISTANCE IN CUCUMBER AGAINST ANTHRACNOSE BY PLANT GROWTH PROMOTING FUNGI

  • Hyakumachi, Mitsuro
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 1997년도 Proceedings of special lectures on Recent Research Trend of Plant Pathology
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    • pp.47-55
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    • 1997
  • Plant growth promoting fungi(PGPF) obtained from zoysiagrass rhizosphere offer dual advantages - induse systemic disease resistance response in cucumber to C. orbiculare infection and cause enhancement of plant growth and increase yield. PGPF protected plants either by colonizing roots or by their metabolites. PGPF offer an advantage by protecting plants for more than 9 weeks and 6 week in the greenhouse and field. PGPF-induced plants limited pathogen spore germination and decreased the number of infection hyphae on the leaf, and increased lignification at places of attempted pathogen infection, thus reducing the pathogen spread. PGPF elicited increased activities of chitinascs, glucanases, peroxidase, polyphenol oxidase, and phenylalanine ammonia lyase to C. orbiculare infection in cucumber plants. The role of PGPF in elevating cucumber defense response to pathogen infection suggests potential application of PGPF as biological control agents.

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Enzyme Activities and Compounds Related to Self-Defense in UV-Challenged Leaves of Rice

  • Kim, Hak-Yoon;Shin, Dong-Hyun;Sohn, Dae-Seung;Lee, In-Jung;Kim, Kil-Ung;Lee, Sang-Chul;Jeong, Hyung-Jin;Cho, Moon-Soo
    • 한국작물학회지
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    • 제46권1호
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    • pp.22-28
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    • 2001
  • The induction of enzymes and the accumulation of their end products associated with self-defense mechanism in rice were investigated. When rice leaves were irradiated with UV light, activities of diterpene cyclase, phenylalanine ammonia-lyase (PAL), and cinnamic acid 4-hydroxylase (CA4H) were induced and rice phytoalexin, momilactone A was accumulated. The content of p-coumaric acid in rice leaves was closely correlated with self-defense or allelopathic potential against barnyardgrass. UV-challenged rice leaves gave rise to the inhibition of barnyardgrass growth.

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Microbial Aspartase and Its Activity on Deamination of L-Aspartyl-L-Phenylalanine Methyl Eester

  • Chang, Wonyoon;Goo, Yang-Mo
    • Archives of Pharmacal Research
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    • 제11권2호
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    • pp.139-144
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    • 1988
  • Examination of many microorganisms and soil isolated for the activity of aspartase proved that R, rubra, G, suboxydans, A. versicolor, P. purpurogenum, E. coli, Ps. aeruginosa, A. gigantus, A, unguis, A. parasiticus and a soil isolate (S-90) had high activity of aspartase. Comparison of the activity of the aspartase by cell free extracts of these microorganisms with the activity of the enzyme catalyzing the deamination of aspartame by the same cell free extracts showed similar kinetic characteristics. The aspartase existing in the cell free extracts seemed to catalyze the deamination of aspartame, too.

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Effects of Abscisic acid and Temperature on the Anthocyanin Accumulation in Seedlings of Arabidopsis thaliana

  • Song Ju-Yeun;Kim Tae-Yun;Hong Jung-Hee
    • 한국환경과학회지
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    • 제14권12호
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    • pp.1093-1102
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    • 2005
  • Effects of abscisic acid(ABA) and temperature on the anthocyanin accumulation and phenylalanine ammonia Iyase(PAL) activity were investigated in seedlings of Arabidopsis thaliana. In time course study, exogenous application of ABA $(50-1000\;{\mu}M)$ led to a noticeable increase in anthocyanin pigments which persisted over the following 5 days. Anthocyanins increased in concert with the chlorophyll loss. The activity of PAL, a key enzyme in the phenylpropanoid pathway, increased on exposure to ABA and reached maximum on the 4th day, This result shows that anthocyanin synthesis and PAL activity have a close physiological relationships. In the effects of temperatures ($10^{\circ}C,\;17^{\circ}C,\;25^{\circ}C$and $30^{\circ}C$) on anthocyanin accumulation and PAL activity in seedlings, a moderate-low temperatures ($17^{\circ}C$) enhanced both anthocyanin content and PAL activity, whereas elevated temperatures ($30^{\circ}C$) showed low levels of anthocyanin and PAL activity, suggesting a correlation between temperature-induced anthocyanin synthesis and the accumulation of PAL mRNA. Simultaneous application of ABA with temperatures Induced higher anthocyanin synthesis and PAL activity in seedlings than ABA or temperature stress alone. Moderate-low temperature with ABA exposure elicited the maximal induction of anthocyanin synthesis and PAL activity. Therefore, ABA treatment significantly increased thermotolerance in .A. thalinan seedlings. Ethephon and ABA showed similar mode of action in physiological effects on anthocyanin accumulation and PAL activity. Our data support that anthocyanins may be protective in preventing damage caused by environmental stresses and play an important role in the acquisition of freezing tolerance.

페닐케톤뇨증의 치료: 현재와 미래 (Phenylketonuria: Current Treatments and Future Developments)

  • 이정호
    • 대한유전성대사질환학회지
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    • 제20권2호
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    • pp.37-43
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    • 2020
  • 페닐케톤뇨증(PKU)은 전세계적으로 가장 잘 알려지고 중요한 유전성 대사질환이다. 1950년대 이후 단백제한을 이용한 식사치료를 처음으로 시도하여 성과가 있었던 질환이며 1960년대 이후 신생아선별검사를 통해 조기진단과 조기치료가 가능하게 된 최초의 유전성대사질환이기 때문이다. 단백제한 식사치료의 효과가 좋지만 학동기, 사춘기 이후 성인시기까지 유지하는 것의 어려움이 있고 이시기에 조절이 잘 되지 않았을 경우 경련, 여러가지 정신과적인 문제들, 삶의 질의 감소 등이 문제가 되어서 오랜 기간 치료를 위한 여러 방법들이 제시되었다. 더해서 2014년 미국의학유전학회(American Medical College of Medical Genetics and Genomics, ACMG)에서 전 연령에서 혈중 페닐알라닌 수치를 120-360 umol/L로 제시를 한 이후 더욱 치료의 중요성이 올라갔다. 2000년대 페닐알라닌수산화 효소(phenylalanine hydroxylase, PAH)의 조효소인 tetrahydrobiopterin (BH4)가 치료 승인되어서 약물반응을 보이는 환자에서 치료가 시작되었으며 4세미만에서도 허가가 되어서 이른 시기부터 약물치료를 병행하여 효과를 보게 되었다. 높은 혈중 페닐알라닌수치가 혈액-뇌 장벽(Blood-brain barrier, BBB)을 통하여 뇌로 넘어가서 회백질의 변성을 나타내게 되는 문제를 막기 위해 거대중성아미노산(LNAA)를 이용한 치료가 시도되고 있다. 오랫동안 연구되었던 페닐알라닌을 trans-cinnamic acid와 암모니아로 변화를 시키는 phenylalanine ammonialyase (PAL)을 이용한 효소치료는 최근 약제로 개발되어서 2018년 이후 성인환자를 대상으로 치료가 시작되었고 잘 조절되지 않는 환자들에게 효과를 보이고 있다. PAL을 경구용으로 개발하는 것이 빠르게 진행 중이며 유전자치료에 대한 연구들도 활발하게 진행이 되고 있어 다양한 치료들이 앞으로 기대된다.

고온에 의한 변색단계별 '홍로' 사과의 착색 및 당 축적 관련 유전자 발현 분석 (Expression of Genes Affecting Skin Coloration and Sugar Accumulation in 'Hongro' Apple Fruits at Ripening Stages in High Temperatures)

  • 김선애;안순영;윤해근
    • 생물환경조절학회지
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    • 제25권1호
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    • pp.9-15
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    • 2016
  • 고온은 사과(Malus domestica Borkh) 과실의 품질에 영향을 끼치는 가장 중요한 환경 요인 중 하나이다. 착색기의 '홍로' 사과 과실을 3단계로 구분하여 Real-time PCR을 통해 온도조건에 따른 안토시아닌 합성과 당 축적 관련 유전자의 발현 차이를 조사하였다. 당 합성관련 유전자인 ${\beta}$-amylase(BMY)와 polygalacturonase(PG)의 발현은 변색 시작단계보다 마지막 단계에서 월등히 높았다. 과피의 착색과 관련있는 phenylalanine ammonia-lyase(PAL), chalcone synthase(CHS), flavanone 3-hydroxylase(F3H)와 malate dehydrogenase(MDH)유전자는 변색 초기작단계에서는 고온 처리 24시간후에 발현이 증가하는 경향을 보였으며 변색 중간단계에서는 점차 증가하는 경향을 보였다. 변색단계별로 보았을 때 $25^{\circ}C$처리구가 다른 온도처리구보다 발현 정도가 더 높았으며, 변색 시작단계보다 마지막 단계에서의 발현이 강하게 유도되었다. 본 연구의 결과로 착색 초기단계의 과실이 고온스트레스가 가장 영향을 끼치므로 착색초기단계의 과실을 이용하여 전사체를 분석하면 분자생물학적 수준에서 사과의 성숙대사에서 유용한 정보를 얻을 수 있을 것으로 사료된다.

조직특이성 promoter를 이용한 Shiva 유전자의 식물체내 도입 (Introduction of Shiva Gene into tobacco and Potato Using Tissue-Specific Tomato PAL Promoter)

  • 이정윤;이신우;박권우
    • 식물조직배양학회지
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    • 제25권2호
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    • pp.109-113
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    • 1998
  • 본 연구에서는 상처, 병원균의 침입 등에 의하여 발현양이 크게 증폭되는 토마토 PAL유전자의 promoter에 giant silk moth(Hyalophora cecropia)로부터 분리한 lytic gene의 genetic code를 일부 변경한 Shiva 유전자를 부착하여 담배, 감자 등의 작물에 형질전환을 시도하였다. 형질전환된 담배로부터 얻은 종자에 대한 kanamycin저항성 유전자의 유전분석, PCR 증폭 혹은 genomic Southern blot hybridization에 의하여 tPAL5 promoter-Shiva fusion gene의 염색체내로의 integration을 확인하였다. Kanamycin 저항성 유전자의 유전분석에서 선발된 7개체를 PCR 분석 실시한 결과 모든 개체가 positive임이 확인되었으나, genomic Southern blot Hybridization으로는 4개체가 negative로 나타났다. 특히 한 개체의 경우는 chromosome rearrangement 현상이 일어난 것으로 추정되었다. 감자의 경우는 남작(Irish Cobbler) 품종이 Zeatin 2.0 mg/L NAA 0.01 mg/L, GA$_3$ 0.1mg/L을 포함한 배지에서 callus형성율 및 shooting율이 가장 높아서 재분화된 형질전환체를 얻을 수 있었다. 한편 GUS 유전자는 Shiva 유전자의 3' 말단에 존재하는 NOS terminator 때문에 translation까지의 발현이 어려울 것으로 예상되었으나 형질 전환하지 않은 담배에서보다 10배 이상의 GUS활성을 나타내었다. 또한 감자 조직에 X-gluc을 사용하여 GUS($\beta$-glucuronidase)의 기질로 작용하게 하여 효소활성 자리를 염색한 결과 줄기, 잎, 뿌리 등의 도관 조직에 다량 발혈됨을 확인할 수 있었다.

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Induction of Defense Related Enzymes and Pathogenesis Related Proteins in Pseudomonas fluorescens-Treated Chickpea in Response to Infection by Fusarium oxysporum f. sp. ciceri

  • Saikia, Ratul;Kumar, Rakesh;Singh, Tanuja;Srivastava, Alok K.;Arora, Dilip K.;Lee, Min-Woong
    • Mycobiology
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    • 제32권1호
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    • pp.47-53
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    • 2004
  • Pseudomonas fluorescens 1-94 induced systemic resistance in chickpea against Fusarium wilt of chickpea caused by Fusarium oxysporum f. sp. ciceri by the synthesis and accumulation of phenolic compounds, phenylalanine ammonia lyase(PAL) and pathogenesis related(PR) proteins(chitinase, $\beta$-1,3-glucanase and peroxidase). Time-course accumulation of these enzymes in chickpea plants inoculated with P. fluorescens was significantly(LSD, P=0.05) higher than control. Maximum activities of PR-proteins were recorded at 3 days after inoculation in all induced plants; thereafter, the activity decreased progressively. Five PR peroxidases detected in induced chickpea plants. Molecular mass of these purified peroxidases was 20, 29, 43, 66 and 97 kDa. Purified peroxidases showed antifungal activity against plant pathogenic fungi.

Role of Riboflavin in Induced Resistance against Fusarium Wilt and Charcoal Rot Diseases of Chickpea

  • Saikia Ratul;Yadav Mukesh;Varghese Saju;Singh Bhim Pratap;Gogoi Dip K;Kumar Rakesh;Arora Dilip K
    • The Plant Pathology Journal
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    • 제22권4호
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    • pp.339-347
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    • 2006
  • Riboflavin caused induction of systemic resistance in chickpea against Fusarium wilt and charcoal rot diseases. The dose effect of 0.01 to 20 mM riboflavin showed that 1.0 mM concentration was sufficient for maximum induction of resistance; higher concentration did not increase the effect. At this concentration, riboflavin neither caused cell death of the host plant nor directly affected the pathogen's growth. In time course observation, it was observed that riboflavin treated chickpea plants were inducing resistance 2 days after treatment and reached its maximum level from 5 to 7 days and then decreased. Riboflavin had no effect on salicylic acid(SA) levels in chickpea, however, riboflavin induced plants found accumulation of phenols and a greater activities of phenylalanine ammonia lyase(PAL) and pathogenesis related(PR) protein, peroxidase was observed in induced plant than the control. Riboflavin pre-treated plants challenged with the pathogens exhibited maximum activity of the peroxidases 4 days after treatment. Molecular weight of the purified peroxidase was 42 kDa. From these studies we demonstrated that riboflavin induced resistance is PR-protein mediated but is independent of salicylic acid.