• 제목/요약/키워드: irreversible inhibition

검색결과 54건 처리시간 0.024초

Diabetic Atherosclerosis and Glycation of LDL(Low Density Lipoprotein)

  • Park, Young-June;Kim, Tae-Woong
    • Preventive Nutrition and Food Science
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    • 제1권1호
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    • pp.134-142
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    • 1996
  • Diabetes carries an increased risk of atherosclerotic disease that is not fully explained by known car-diovascular risk factors. There is accumulating evidence that advanced glycation of structural proteins, and oxidation and glycation of circulating lipoproteins, are implicated in the pathogenesis of diabetic ather-osclerosis. Reactions involving glycation and oxidation of proteins and lipids are believed to contribute to atherogenesis. Glycation, the nonenzymatic binding of glucose to protein molecules, can increase the ather-ogenic potential of certain plasma constituents, including low density lipoptotein(LDL). Glycation of LDL is significant increased in diabetic patients compared with normal subjects, even in the presence of good glycemic control. Metabolic abnormalities associated with glycation of LDL include diminished recognition of LDL by the classic LDL receptor; increased covalent binding of LDL in vessel walls ; enhanced uptake of LDL by the macrophages, thus stimulating foam cell formation ; increased platelet aggregation; formation of LDL-immune complexes ; and generation of oxygen free radicals, resulting on oxidative damage to both the lipid and protein components of LDL and to any nearby macromolecules. Oxidized lipoproteins are characterzied by cytotoxicity, potent stimulation of foam cell formation by macrophages, and procoagulant effects. Combined glycation and oxidation, "glycoxidation" occurs when oxidative reactions affect the initial products of glycation, and results in irreversible structural alterations of proteins. Glycoxidation is of greatest significance in long lived proteins such as collagen. In these proteins, glycoxidation products, believed to be atherogenic, accumulate with advancing age : in diabetes, their rate of accumulate is accelerated. Inhibition of glycation, oxidation and glycoxidation may form the basis of future antiaterogenic strategies in both diabetic and nondiabetic individuals.dividuals.

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신장상피세포(腎臟上皮細胞)에서 호도약침액(胡桃藥鍼液)이 t-Butylhydroperoxide에 의한 세포막물질이동계(細胞膜物質移動系)의 장애(障碍)에 미치는 영향(影響) (Effect of Juglans sinensis Dode aquacupuncture(JS) on t-butylhydroperoxide-induced alterations in membrane transport function in renal epithelial cells)

  • 남상필;조태성;김철홍;윤현민;장경전;송춘호;안창범
    • Journal of Acupuncture Research
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    • 제20권6호
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    • pp.128-139
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    • 2003
  • Juglans sinensis Dode has been reported to have antioxidant activity. However, the effect of Juglans sinensis Dode aquacupuncture(JS) on reactive oxygen species(ROS)-induced alterations in membrane transport function in renal tubular cells. This study was performed to evaluate the effect of JS on the organic hydroperoxide t-butylhydroperoxide(tBHP)-induced inhibition of $Na^+$-dependent phosphate($Na^+$-Pi) uptake in opossum kidney (OK) cells, an established renal proximal epithelial cell line. tBHP inhibited $Na^+$-Pi uptake in a time-dependent manner. The inhibitory effect of tBHP was prevented by JS over concentration range of 0.05-1mg/100ml in a dose-dependent manner. Kinetic studies showed that tBHP caused an decrease in Vmax for $Na^+$-Pi uptake without any a significant change in Km. $Na^+$-dependent phosphonoformic acid binding, a irreversible inhibitor of renal $Na^+$-Pi uptake, was decreased by tBHP treatment. The reduction in Vmax and phosphonoformic acid binding by tBHP was prevented by JS. tBHP induced lipid peroxidation and its effect was completely inhibited by JS and antioxidant N,N'-diphenyl-p-phenylenediamine. These data suggest that the oxidant inhibits phosphate uptake by a reduction in the number of active carrier across the membrane. JS may prevent oxidant-induced inhibition of membrane transport function by a mechanism similar to antioxidants in renal epithelial cells. Although the precise constituents remain to be explored, JS may be employed as a useful candidate herb for drug development to prevent and treat oxidant-mediated renal failure.

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Porphyromonas gingivalis 추출물이 마우스 두개골 일차 조골세포의 기능에 미치는 효과 (Effects of Porphyromonas gingivalis extracts on the function of mouse calvarial primary osteoblastic cells)

  • 윤정호;최성호;조규성;채중규;김종관;김창성
    • Journal of Periodontal and Implant Science
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    • 제33권4호
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    • pp.585-597
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    • 2003
  • Porphyromonas gingivalis has been implicated as an important periodontophathic bacterium in the etiology and progression of periodontal diseases. It has been reported that P.gingivalis may mediate periodontal destruction not only directly through its virulence factors, but also indirectly by including complex host mediated inflammatory reponses. The purpose of this study was t o evaluate the effects of P.gingivalis on the bone formation and resorption by osteoblasts. For this purpose, after determining the concentration below which sonicated P.gingivalis extracts (SPEs) have no cytotoxicity on mouse calvarial primary osteoblastic (POB) cells, we investigated the effects of SPEs on the alkaline phosphatase (ALP) activity, matrix metalloproteinase (MMP) expression (MMP-2, -9, 13), and prostaglandin $E_2$ ($PGE_2$) release in POB cells by treatment with SPEs below that concentration. The results were as follows; 1. SPEs showed no cytotoxic effect on POB cells up to a concentration of 1 ${\mu}m$/ml. 2. The treatment with SPEs reduced ALP activity in a dose-dependent manner in POB cells, In addition, when we investigated the effect of SPEs (1 ${\mu}m$/ml) on ALP activity for different exposure periods, statistically significant inhibition of ALP activity was shown at 2 days of exposure, and further significant inhibition occurred by extending the periods of exposure. 3. The treatment with SPEs stimulated the gene expression of MMP-9 in POB cells. 4. The pre-treatment with SPEs increased the amount of $PGE_2$ released in POB cells. In summary, the present study shows that P.gingivalis could inhibit osteogenesis and stimulate bone resorption not only by reducing ALP activity but also by increasing MMP-9 mRNA expression in osteoblasts, possibly through an endogenous $PGE_2$ pathway. In addition, our results suggest that if P.gingivalis affects osteoblasts in early differentiation stage, such effects by P. gingivalis could be irreversible.

제초제(除草劑) 약해발생(藥害發生) 양상(樣相)과 경감대책(輕減對策) (Crop Injury (Growth Inhibition) Induced by Herbicides and Remedy to Reduce It)

  • 김길웅
    • 한국잡초학회지
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    • 제12권3호
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    • pp.261-270
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    • 1992
  • Many herbicides that are applied at the soil before weed emergence inhibit plant growth soon after weed germination occurs. Plant growth has been known as an irreversible increase in size as a result of the processes of cell divison and cell enlargement. Herbicides can influence primary growth in which most new plant tissues emerges from meristmatic region by affecting either or both of these processes. Herbicides which have sites of action during interphase($G_1$, S, $G_2$) of cell cycle and cause a subsequent reduction in the observed frequency of mitotic figures can be classified as an inhibitor of mitotic entry. Those herbicides that affect the mitotic sequence(mitosis) by influencing the development of the spindle apparatus or by influencing new cell plate formation should be classified as causing disruption of the mitotic sequence. Sulfonylureas, imidazolinones, chloroacetamides and some others inhibit plant growth by inhibiting the entry of cell into mitosis. The carbamate herbicides asulam, carbetamide, chlorpropham and propham etc. reported to disrupt the mitotic sequence, especially affecting on spindle function, and the dinitroaniline herbicides trifluralin, nitralin, pendimethalin, dinitramine and oryzalin etc. reported to disrupt the mitotic sequence, particularly causing disappearence of microtubles from treated cells due to inhibition of polymerization process. An inhibition of cell enlargement can be made by membrane demage, metabolic changes within cells, or changes in processes necessary for cell yielding. Several herbicides such as diallate, triallate, alachlor, metolachlor and EPTC etc. reported to inhibit cell enlargement, while 2, 4-D has been known to disrupt cell enlargement. One potential danger inherent in the use of soil acting herbicides is that build-up of residues could occur from year to year. In practice, the sort of build-up that would be disastrous is unikely to occur for substances applied at the correct soil concentration. Crop injury caused by soil applied herbicides can be minimized by (1) following the guidance of safe use of herbicides, particularly correct dose at correct time in right crop, (2) by use of safeners which protect crops against injury without protecting any weed ; interactions between herbicides and safeners(antagonists) at target sites do occur probably from the following mechanisms (1) competition for binding site, (2) circumvention of the target site, and (3) compensation of target site, and another mechanism of safener action can be explained by enhancement of glutathione and glutathione related enzyme activity as shown in the protection of rice from pretilachlor injury by safener fenclorim, (3) development of herbicide resistant crops ; development of herbicide-resistant weed biotypes can be explained by either gene pool theory or selection theory which are two most accepted explanations, and on this basis it is likely to develop herbicide-resistant crops of commercial use. Carry-over problems do occur following repeated use of the same herbicide in an extended period of monocropping, and by errors in initial application which lead to accidental and irregular overdosing, and by climatic influence on rates of loss. These problems are usually related to the marked sensitivity of the particular crops to the specific herbicide residues, e.g. wheat/pronamide, barley/napropamid, sugarbeet/ chlorsulfuron, quinclorac/tomato. Relatively-short-residual product, succeeding culture of insensitive crop to specific herbicide, and greater reliance on postemergence herbicide treatments should be alternatives for farmer practices to prevent these problems.

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프루텔고치벌 브라코바이러스(Cotesia plutellae Bracovirus) 유래 $I_{k}B$ 유전자 구조와 피기생 배추좀나방(Plutella xylostella) 체내 발현 패턴 (Gene Structure of Cotesia plutellae Bracovirus (CpBV)-$I_{k}B$ and Its Expression Pattern in the Parasitized Diamondback Moth, Plutella xylostella)

  • 김용균;;;배성우
    • 한국응용곤충학회지
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    • 제45권1호
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    • pp.15-24
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    • 2006
  • 프루텔고치벌(Cotesia plutellae)은 내부기생봉이고 kB억제자 (IkB)와 유사한 유전자가 이 기생봉의 절대 공생바이러스(C. plutellae bracovirus: CpBV) 게놈에서 발견되었다. 이 유전자의 발현 부위는 417 br의 크기이며 138개 아미노산 서열 정보를 포함하였다. 이 단백질은 4개의 ankyrin 반복영역을 지니고 있었으며, 알려진 다른 폴리드나바이러스 유래 IkB 유전자와 높은 상동성을 보였다. 초파리 Cactus 단백질을 통해 대상 기주 IkB와 비교하여 보면, IkB 신호수신영역이 부재하는 구조를 보여, CpBV-IkB는 NFkB 신호전달체계의 비가역적 억제 인자로 작용할 것으로 추정되었다. CpBV-IkB는 프루텔고치 벌에 기생된 배추좀나방에서만 발현되었다. 정량적 RT-PCR 방법으로 CpBV-IkB의 발현량을 조사하여 보면, 기생 첫날부터 발현을 보이기 시작하여 뚜렷한 발현량을 기생 전체 기간동안 유지하는 양상을 보였다. 이 CpBV-IkB의 기능 분석이 간접적으로 이뤄졌으며, 이 유전자 발현물이 대상 기주 항바이러스 억제 인자로 작용할 것이라는 가설을 제시하였다.

Effects of Organotin Compounds on Follicular Steroidogenesis in Frogs

  • Kwon, Hyuk-Bang;Kim, Seung-Chang;Kim, An-Na;Lee, Sung-Ho;Ahn, Ryun-Sup
    • 한국발생생물학회지:발생과생식
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    • 제13권3호
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    • pp.163-172
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    • 2009
  • Some organotin compounds such as butyltins and phenyltins are known to induce impo-sex in various marine animals and are considered to be endocrine disruptors. In this study, the effect of organotins on follicular steroidogenesis in amphibians was examined using ovarian follicles of Rana dybowskii and Rana catesbeiana. Isolated follicles were cultured for 6 or 18 h in the presence and absence of frog pituitary homogenate (FPH) or various steroid precursors, and the levels of product steroids in the culture media oassay. Among the butyltin compounds, tributyltin (TBT) strongly and dose-dependently inhibited the FPH-induced synthesis of pregnenolone ($P_5$) and progesterone ($P_4$) by the follicles. TBT also strongly suppressed the conversion of cholesterol to $P_5$ and partially suppressed the conversion of $P_5$ to $P_4$. A high concentration of dibutyltin (DBT) also inhibited steroidogenesis by the follicles while monobutyltin and tetrabutyltin had negligible effects. The toxic effect of TBT or DBT was irreversible and a short time of exposure (30 min) was enough to suppress steroidogenesis. All the phenyltin compounds significantly inhibited FPH-induced $P_5$ synthesis by the follicles. The effective dose of 50% inhibition by diphenyltin was $0.04\;{\mu}M$ and those of monophenyltin and triphenyltin were $0.24\;{\mu}M$ and $0.3\;{\mu}M$, respectively. However, none of the phenyltin compounds significantly suppressed the conversion of $P_4$ to $17{\alpha}$-hydroxyprogesterone ($17{\alpha}$-OHP) (by $17{\alpha}$-hydroxylase), $17{\alpha}$-OHP to androstenedione (AD) (by $C_{17-20}$ lyase), or AD to testosterone by the follicles. Taken together, the data show that among the steroidogenic enzymes, P450scc in the follicles is the most sensitive to organotin compounds and that an amphibian follicle culture system can be a useful screening model for endocrine disruptors.

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CHP-100 Ewing′s 육종세포에서 5-fluorouracil에 의한 G1 arrest 유도 및 apoptosis 유발에 관한 연구 (Induction of G1 Phase Cell Cycle Arrest and Apoptotic Cell Death by 5-Fluorouracil in Ewing′s Sarcoma CHP-100 Cells)

  • 김성옥;최영현
    • 생명과학회지
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    • 제26권9호
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    • pp.1015-1021
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    • 2016
  • Pyrimidine 유도체의 일종인 5-fluorouracil (5-FU)은 광범위하게 사용되는 항암제의 일종으로, thymidylate synthase의 활성을 억제시켜 핵산의 합성 및 대사기능 자애 유발 물질이다. 본 연구에서는 Ewing′s 육종 CHP-100 세포에서 5-FU의 증식억제와 연관된 기전 해석으로 시도하였다. 본 연구의 결과에 의하면, 5-FU 처리 시간의 경과에 따른 CHP-100 세포의 증식억제가 세포주기 G1 arrest 유발에 따른 것임을 알 수 있었다. 5-FU에 의한 CHP-100 세포의 G1 arrest는 retinoblastoma protein (pRB)의 탈인산화에 따른 전사인자 E2F-1 및 E2F-4와의 결합 촉진과 연관성이 있었다. 비록 5-FU 처리가 cyclin-dependent kinases의 발현에는 크게 영향을 주지 않았으나, 정상배지에서 배양된 대조군에 비하여 cyclin A 및 B의 발현이 5-FU 처리 시간 의존적으로 억제되었다. 또한 5-FU에 의한 CHP-100 세포의 G1 arrest는 apoptosis 유도와 연관이 있음을 핵 내 염색질의 응축에 따른 apoptotic body의 형성증가, poly (ADP-ribose) polymerase의 단편화 및 annexin V 염색 등을 통하여 확인하였다. 아울러 5-FU는 pro-apoptotic Bax 단백질의 발현 증가 및 anti-apoptotic Bcl-2의 발현 감소를 통한 mitochondrial membrane potential의 소실을 촉진시켰으며, 이로 인하여 미토콘드리아에서 세포질로의 cytochrome c 유리가 증가시켰음을 알 수 있었다. 따라서 본 연구의 결과는 5-FU에 의한 CHP-100 세포의 증식억제와 연관된 G1 arrest 및 apoptosis 유도에는 pRB의 인산화 억제 및 미토콘드리아 기능의 손상이 최소한 관여하고 있음을 의미하는 것이다.

멜론 분홍빛썩음병과 포도 흰얼룩병의 원인균인 Trichothecium Roseum에 대한 Bacillus Subtilis HK2의 항균활성 (Antifungal Activity of Bacillus Subtilis HK2 against Trichothecium Roseum Causing Pink Rot of Melon and White Stain Symptom on Grape)

  • 오소영;이은영;남기웅;윤덕훈
    • 한국자원식물학회지
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    • 제29권1호
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    • pp.39-45
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    • 2016
  • 2012년부터 2013년에 걸쳐 식물체 근권과 비근권 토양을 수집하였다. 수집한 토양을 희석평판법을 이용하여 총 782개의 세균을 분리하였고, 분리한 세균을 실험실내에서 Trichothecium roseum과의 대치배양을 통해 균사생장억제율이 80% 내외로 우수한 길항력을 나타내는 균주를 선발하였다. I-plate에서 HK2균주와 T. roseum두 균을 격리하여 밀폐배양 시 모두 균사생장억제 효과는 없기 때문에 휘발 물질은 아닌 것으로 판단되었다. NB배지에 길항균주와 T. roseum을 액체배양 한 결과 88% 이상 균사생장억제 효과를 보였다. HK2균주를 동정하기 위해 16S rDNA 염기서열분석과 API 50 CHB Kit (BioMerieux, France)를 이용하여 생화학적 특성을 분석한 결과 Bacillus subtilis로 동정되었다. HK2 균주가 생산한 항진균물질을 butanol로 추출한 후 flash column chromatography를 이용하여 항진균물질을 정제한 결과 methanol 80%의 조건에서 잘 분리되었으며 향후 분리 순화를 통한 화학구조분석이 필요하다.

암모니아와 glutamine에 의한 Rhodopseudomonas sphaeroides의 질소 고정 효소활성에 미치는 Methionine Sulfoximine의 영향 (Effect of Methionine Sulfoximine in nitrogenase activity by ammonia and glutamine in Rhodopseudomonas sphaeroides)

  • 이혜주
    • 미생물학회지
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    • 제26권3호
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    • pp.215-222
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    • 1988
  • 광합성 세균인 Rhodopsedomonas sphaeroides의 질소 고정 효소 활성에 미치는 암모니아와 glutamine의 영향을 조사하였다. 그 결과 RP. sphaeroides의 질소 고정 효소 활성은 암모니아와 glutamine에 의해 저해를 받았으며, 이들의 저해는 암모니아와 glutamine이 다 사용된 후에는 질소 고정 효소의 활성이 되살아나는 가역적인 반응이었다. glutamine synthetase의 활성을 비가역적으로 저해하는 methionine sulfoximine (MSX)를 사용하여 암모니아와 glutamine이 직접 질소 고정 효소의 활성을 저해하는지를 일아보았다. 암모니아에 의한 질소 고정 효소의 switch-off에 미치는 MSX의 영향은 균의 배양 시기에 의존함을 알 수 있었다 . 12시간 배양한 경우, $500{\mu}M$ NH,Cl에 의해 질소 고정 효소는 저해를 받았으며, $500{\mu}M$의 MSX를 주가로 처리하였을 경우, GS는 21% 저해를 받았으며, 이때 유리된 암모니아의 량은 감소하였고, 질소 고정 효소의 활성은 회복되지 않았다. 그러나 20시간 배양한 경우, $500{\mu}M$ NH,CI을 처리한 후 $100{\mu}M$ MSX플 첨가하면, GS의 활성은 완전히 저해되고, 유리된 암모니아의 량은 약간 증가하였으나 질소 고정 효소의 활성의 저해는 MSX에 의해 회복되었다. 따라서 Rp. sphaeroides의 경우, in vivo 상태에서 암모니아에 의한 질소 고정 효소의 활성 저해는 암모니아 자체에 의한 것이 아니라 암모니아 동화산물에 의한 것임을 알 수 있었다.

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Saprolegnia parasitica Isolated from Rainbow Trout in Korea: Characterization, Anti-Saprolegnia Activity and Host Pathogen Interaction in Zebrafish Disease Model

  • Shin, Sangyeop;Kulatunga, D.C.M.;Dananjaya, S.H.S.;Nikapitiya, Chamilani;Lee, Jehee;De Zoysa, Mahanama
    • Mycobiology
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    • 제45권4호
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    • pp.297-311
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    • 2017
  • Saprolegniasis is one of the most devastating oomycete diseases in freshwater fish which is caused by species in the genus Saprolegnia including Saprolegnia parasitica. In this study, we isolated the strain of S. parasitica from diseased rainbow trout in Korea. Morphological and molecular based identification confirmed that isolated oomycete belongs to the member of S. parasitica, supported by its typical features including cotton-like mycelium, zoospores and phylogenetic analysis with internal transcribed spacer region. Pathogenicity of isolated S. parasitica was developed in embryo, juvenile, and adult zebrafish as a disease model. Host-pathogen interaction in adult zebrafish was investigated at transcriptional level. Upon infection with S. parasitica, pathogen/antigen recognition and signaling (TLR2, TLR4b, TLR5b, NOD1, and major histocompatibility complex class I), pro/anti-inflammatory cytokines (interleukin $[IL]-1{\beta}$, tumor necrosis factor ${\alpha}$, IL-6, IL-8, interferon ${\gamma}$, IL-12, and IL-10), matrix metalloproteinase (MMP9 and MMP13), cell surface molecules ($CD8^+$ and $CD4^+$) and antioxidant enzymes (superoxide dismutase, catalase) related genes were differentially modulated at 3- and 12-hr post infection. As an anti-Saprolegnia agent, plant based lawsone was applied to investigate on the susceptibility of S. parasitica showing the minimum inhibitory concentration and percentage inhibition of radial growth as $200{\mu}g/mL$ and 31.8%, respectively. Moreover, natural lawsone changed the membrane permeability of S. parasitica mycelium and caused irreversible damage and disintegration to the cellular membranes of S. parasitica. Transcriptional responses of the genes of S. parasitica mycelium exposed to lawsone were altered, indicating that lawsone could be a potential anti-S. parasitica agent for controlling S. parasitica infection.