• 제목/요약/키워드: reversible inhibition

검색결과 104건 처리시간 0.024초

Relaxation Patterns of Human Gastric Corporal Smooth Muscle by Cyclic Nucleotides Producing Agents

  • Kim, Young-Chul;Choi, Woong;Sung, Ro-Hyun;Kim, Heon;You, Ra-Young;Park, Seon-Mee;Youn, Sei-Jin;Kim, Mi-Jung;Song, Young-Jin;Xu, Wen-Xie;Lee, Sang-Jin;Yun, Hyo-Yung
    • The Korean Journal of Physiology and Pharmacology
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    • 제13권6호
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    • pp.503-510
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    • 2009
  • To elucidate the mechanism of cyclic nucleotides, such as adenosine 3',5'-cyclic monophosphate (cAMP) and guanosine 3',5'-cyclic monophosphate (cGMP), in the regulation of human gastric motility, we examined the effects of forskolin (FSK), isoproterenol (ISO) and sodium nitroprusside (SNP) on the spontaneous, high $K^+$ and acetylcholine (ACh)-induced contractions of corporal circular smooth muscle in human stomach. Gastric circular smooth muscle showed regular spontaneous contraction, and FSK, ISO and SNP inhibited its phasic contraction and basal tone in a concentration-dependent manner. High $K^+$ (50 mM) produced sustained tonic contraction, and ACh $(10\;{\mu}M)$ produced initial transient contraction followed by later sustained tonic contraction with superimposed phasic contractions. FSK, ISO and SNP inhibited high $K^+$-induced tonic contraction and also ACh-induced phasic and tonic contraction in a reversible manner. Nifedipine $(1\;{\mu}M)$, inhibitor of voltage-dependent L-type calcium current $(VDCC_L)$, almost abolished ACh-induced phasic contractions. These findings suggest that FSK, ISO and SNP, which are known cyclic nucleotide stimulators, inhibit smooth muscle contraction in human stomach partly via inhibition of $VDCC_L$.

바이러스 유래 시스타틴 재조합 단백질의 곤충 면역 및 발육 억제효과 (Inhibitory Effects of a Recombinant Viral Cystatin Protein on Insect Immune and Development)

  • 김영태;엄성현;박지영;김용균
    • 한국응용곤충학회지
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    • 제53권4호
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    • pp.331-338
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    • 2014
  • 시스타틴(cystatin: CST)은 C1A류 시스테인 단백질분해효소에 대한 경쟁적 가역억제자로서 동식물류에서 파파인과 같은 캐셉신을 억제대상으로 작용하게 된다. 바이러스 유래 CST (CpBV-CST1)이 폴리드나바이러스의 일종인 CpBV (Cotesia plutellae bracovirus)에서 동정되었다. 기존 연구는 이 유전자의 과발현이 배추좀나방(Plutella xylostella) 유충의 면역 및 발육을 교란한다는 것을 보여 주었다. 본 연구는 이 유전자의 단백질 기능을 분석하기 위해 세균발현시스템을 이용하여 재조합단백질(rCpBV-CST1)을 형성하여 단백질분해효소에 대한 활성억제효과를 결정하고, 곤충의 면역과 발육에 대한 생리적 억제효과를 분석했다. 이 유전자 번역부위는 138 개 아미노산으로 약 15 kDa 크기의 단백질로 추정되었다. CpBV-CST1이 먼저 pGEX 발현벡터에 재조합되고, BL21 STAR (DE3) competent cells에 형질전환된 후 0.5 mM IPTG로 4 시간동안 과발현되었다. 분리된 재조합단백질은 파파인에 대한 뚜렷한 억제효과를 나타냈다. 이 재조합단백질은 파밤나방(Spodoptera exigua)에 대해서 혈구소낭형성의 세포성 면역반응을 억제하고, 경구로 처리할 때 배추좀나방의 유충발육을 처리 농도에 비례하여 제한시켰다. 이상의 결과는 CpBV-CST1이 해충 밀도 억제에 응용될 수 있음을 제시하고 있다.

Seven Days of Consecutive Shade during the Kernel Filling Stages Caused Irreparable Yield Reduction in Corn (Zea mays L.)

  • Kim, Sang Gon;Shin, Seonghyu;Jung, Gun-Ho;Kim, Seong-Guk;Kim, Chung-Guk;Woo, Mi-Ok;Lee, Min Ju;Lee, Jin-Seok;Son, Beom-Young;Yang, Woon-Ho;Kwon, Young-up;Shim, Kang-Bo
    • 한국작물학회지
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    • 제61권3호
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    • pp.196-207
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    • 2016
  • In monsoon climates, persistent shade is a troublesome weather condition with an impact on the growth and yield of corn (Zea mays L.). We imposed 7, 14, 21, and 28 days of consecutive shade (CS) on Gwangpyeongok and P3394 corn hybrids at the beginning of the kernel filling stages. Shade had little impact on leaf area and dry matter accumulation in the stem and leaves. However, dry matter accumulation in the ear was severely reduced by approximately 28% and 53% after 14 and 28 days of CS, respectively. For the components of grain yield, 7 and 14 days of shade did irreparable damage to the number of filled kernels, the kernel number per ear row, and the percent of filled kernels, but did little damage or reversible damage after removal of the shade to the 100-grain weight and the row number per ear. Shade significantly reduced the relative growth rate (RGR) due to a decrease in the net assimilation rate (NAR). These results suggest that source activity limitation by shade during the kernel filling stages leads to the inhibition of sink activity and size. The yield of biomass, ear, and grain logistically declined as the length of CS increased. Probit analysis revealed that the number of days of CS needed to cause 25% and 50% reductions in grain yield were 3.7 and 23.1, respectively. These results suggest that the plant yield loss induced by shade at the beginning of the kernel filling stages is mainly achieved within the first 7 days of consecutive shade.

LC15-0133, DPP IV 저해제: 여러 동물 모델에서의 효능 (LC15-0133, a DPP IV Inhibitor: Efficacy in Various Animal Models)

  • 임현주
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 2008년도 Proceedings of the Convention
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    • pp.5-20
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    • 2008
  • GLP 1 기반의 약(GLP-1 유도체와 DPP IV 저해제)과 인크레틴 유사체는 최근 가장 각광을 받는 2당뇨 치료제 계열 중 하나이다. GLP-1은 위장에서 분비되는 핍타이드 인크레틴 호르몬으로서 췌장으로부터의 당-의존적 인슐린 분비를 증진하고, 위장통과를 지연시키며, 췌장 베타세포의 증식을 촉진한다. DPP IV 저해제는 GLP-1 불활성화시키는 DPP IV 효소의 활성을 저해함으로써 인크레틴처럼 작용한다. LC15-0133은 경쟁적, 가역적 DPP IV 저해제 ($IC_{50}$ = 24 nM, Ki=0.247 nM)이며, DPP II, DPP 8, 엘라스타제, 트릴신, 유로키나제에 비해 DPPIV 에 대한 선택적 억제 효능이 우수하다. LC15-0133 랫과 개에서 긴 반감기와, 우수한 경구흡수율을 보였다. LC15-0133 랫과 개에서 각각 0.1 mg/kg 0.02 mg/kg 용량으로 경구투여하고 24시간이 지난 후에도 50%이상의 혈장 DPP IV 활성 억제효능을 유지하였다. C57BL/6 마우스에서 LC15-013301 경구당부하에 의한 혈당증가를 억제하는 최소유효용량은 0.01 mg/kg, 당에 의한 GLP-1 분비를 증가시키는 최소유효용량은 0.1 mg/kg 이다. Zucker 당뇨 랫에서 LC15-01331의 1개월간의 경구반복투여는 당뇨병으로의 진행을 지연시키고, 혈중 HbA1c 감소시켰다. 결론적으로, LC15-0133은 신규의 강력하고, 선택적인 경구 DPP IV 저해제이며, 여러가지 동물모델에서 탁월한 혈당강하효능을 보였다.

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근육세포 분화에 대한 TGF-β1과 OP-1의 억제 효과 (The Inhibitory Effect of TGF-β1 and OP-1 onto the Myogenic Differentiation)

  • 김병국;정성수
    • Journal of Oral Medicine and Pain
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    • 제26권1호
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    • pp.39-50
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    • 2001
  • In order to investigate the effect of Transforming growth factor ${\beta}1$(below TGF-${\beta}1$) and osteogenic protein-1(below Op-1) onto the myogenic differentiation, C2C12 satellite myoblastic cell line was cultured and treated with both growth factors. At first morphological changes with microscopical examination were examined, and isolated total RNA to analyse mRNA expression of bone marker proteins, muscle regulatory proteins, TGF-${\beta}$ receptor and their ligands by Northern blot analysis. And cellular proliferative inducibility of both growth factors was also tested to C2C12 cells. Incubating the cell with $5ng/m{\ell}$ of TGF-${\beta}1$ until 4 days almost inhibited multinucleated myotube formation expressing muscular regulatory proteins, and induced decreasing Id proteins. However, no osteoblastic phenotypes was induced by TGF-${\beta}1$ in C2C12 cells. The mRNA expression of TGF-${\beta}$ receptors with TGF-${\beta}1$ was conversed after 48 hours cultured. Type I TGF-${\beta}$ receptor was seemed to play a role in negative signalling for inhibition of myogenic differentiation. OP-1 dose dependently induced ALP activity, osteopontine production and bone sialoprotein production at concentrations above $100ng/m{\ell}$ and osteocalcin production at concentrations above $300ng/m{\ell}$. The concentration of OP-1 required to induce these osteoblastic phenotypes was the same as that required to almost completely inhibit myotube formation. Incubation with above $100ng/m{\ell}$ OP-1 suppressed the expression of mRNA for muscular egulatory proteins from 2 days after incubation. Expression of Id-1, 2, 3 mRNA were stimulated by OP-1 at concentration above $300ng/m{\ell}$. When C2C12 cells were treated with both growth factors, TGF-${\beta}1$ potentiated the inhibitory effect of OP-1 on myotube formation and expression of mRNA for myogenin at 12 days. And TGF-${\beta}1$ reduced osteocalcin and bone sialoprotein production induced by OP-1 at 12 days in C2C12 cells. Both growth factor had no mitogenic effect. These results indicate that OP-1 converts the differentiation pathway of C2C12 myoblasts into that of osteoblastic lineage cells and it's not heritable, but TGF-${\beta}1$ does not and has reversible inhibitory activity on the myogenic differentiation. TGF-${\beta}1$ and OP-1 play a role in myogenic differentiation via different mechanism between them.

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Regulation of $Ba^{2+}$-Induced Contraction of Murine Ureteral Smooth Muscle

  • Kim, Young-Chul;Lee, Moo-Yeol;Kim, Wun-Jae;Myung, Soon-Chul;Choi, Woong;Kim, Chan-Hyung;Xu, Wen-Xie;Kim, Seung-Ryul;Lee, Sang-Jin
    • The Korean Journal of Physiology and Pharmacology
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    • 제11권5호
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    • pp.207-213
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    • 2007
  • This study was designed to characterize ureteral smooth muscle motility and also to study the effect of forskolin(FSK) and isoproterenol(ISO) on smooth muscle contractility in murine ureter. High $K^+$(50 mM) produced tonic contraction by $0.17{\pm}0.06mN$(n=19). Neuropeptide and neurotransmitters such as serotonin($5{\mu}M$), histamine($20{\mu}M$), and carbarchol(CCh, $10{\sim}50{\mu}M$) did not produce significant contraction. However, CCh($50{\mu}M$) produced slow phasic contraction in the presence of 25 mM $K^+$. Cyclopiazonic acid(CPA, $10{\mu}M$), SR $Ca^{2+}$-ATPase blocker, produced tonic contraction(0.07 mN). Meanwhile, inhibition of mitochondria by protonophore carbnylcyanide m-chlorophenylhydrazone(CCCP) also produced weak tonic contraction(0.01 mN). The possible involvement of $K^+$ channels was also pursued. Tetraethyl ammonium chloride(TEA, 10 mM), glibenclamide($10{\mu}M$) and quinidine($20{\mu}M$) which are known to block $Ca^{2+}$-activated $K^+$ channels($K_{Ca}$ channel), ATP-sensitive $K^+$ channels($K_{ATP}$) and nonselective $K^+$ channel, respectively, did not elicit any significant effect. However, $Ba^{2+}$($1{\sim}2mM$), blocker of inward rectifier $K^+$ channels($K_{IR}$ channel), produced phasic contraction in a reversible manner, which was blocked by $1{\mu}M$ nicardipine, a blocker of dehydropyridine-sensitive voltage-dependent L-type $Ca^{2+}$ channels($VDCC_L$) in smooth muscle membrane. This $Ba^{2+}$-induced phasic contraction was significantly enhanced by $10{\mu}M$ cyclopiazonic acid(CPA) in the frequency and amplitude. Finally, regulation of $Ba^{2+}$-induced contraction was studied by FSK and ISO which are known as adenylyl cyclase activator and $\beta$-adrenergic receptor agonist, respectively. These drugs significantly suppressed the frequency and amplitude of $Ba^{2+}$-induced contraction(p<0.05). These results suggest that $Ba^{2+}$ produces phasic contraction in murine ureteral smooth muscle which can be regulated by FSK and $\beta$-adrenergic stimulation.

Effects of Ginsenoside Metabolites on GABAA Receptor-Mediated Ion Currents

  • Lee, Byung-Hwan;Choi, Sun-Hye;Shin, Tae-Joon;Hwang, Sung-Hee;Kang, Ji-Yeon;Kim, Hyeon-Joong;Kim, Byung-Ju;Nah, Seung-Yeol
    • Journal of Ginseng Research
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    • 제36권1호
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    • pp.55-60
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    • 2012
  • In a previous report, we demonstrated that ginsenoside Rc, one of major ginsenosides from Panax ginseng, enhances ${\gamma}$-aminobutyric acid (GABA) $receptor_A$ ($GABA_A$)-mediated ion channel currents. However, little is known about the effects of ginsenoside metabolites on $GABA_A$ receptor channel activity. The present study investigated the effects of ginsenoside metabolites on human recombinant $GABA_A$ receptor (${\alpha}_1{\beta}_1{\gamma}_{2s}$) channel activity expressed in Xenopus oocytes using a two-electrode voltage clamp technique. M4, a metabolite of protopanaxatriol ginsenosides, more potently inhibited the GABA-induced inward peak current ($I_{GABA}$) than protopanaxadiol (PPD), a metabolite of PPD ginsenosides. The effect of M4 and PPD on $I_{GABA}$ was both concentration-dependent and reversible. The half-inhibitory concentration ($IC_{50}$) values of M4 and PPD were 17.1${\pm}$2.2 and 23.1${\pm}$8.6 ${\mu}M$, respectively. The inhibition of $I_{GABA}$ by M4 and PPD was voltage-independent and non-competitive. This study implies that the regulation of $GABA_A$ receptor channel activity by ginsenoside metabolites differs from that of ginsenosides.

OKN을 유발하는 단축 Mesencephalic 구조에 GABA Antagonist를 미량 주입할 때의 닭의 OKN 방향적 불균형성에 관한 특수효과 (Specific Effects on Monocular OKN Directional Asymmetry of Unilateral Microinjections of GABA Antagonist into the Mesencephalic Structures in the Chicken)

  • 김명순
    • 한국동물학회지
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    • 제39권1호
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    • pp.1-11
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    • 1996
  • GABA antagonist인 SR 95531이 닭의 pretectum nuclei (nucleus Superficialis Synencephali nSS) 또는 nBOR (nucleus Ectomammilaris nEM)속에 미량 주입되었다. 단안의 optokinetic nystagmus는 한쪽 뇌의 내부에 약품을 주입하기 전후에 탐색 코일 테크닉에 의해서 기록되었다. 한쪽 nSS 또는 nEM 속에 SR 95531를 미량 주입하면 자극의 양방향에 대하여 반대쪽 눈에 의해서 유도된 단안의 OKN속도 게인이 가역적으로 증가하였다. 이때 nSS속에 주입하면 N-T 성분의 속도 게인보다 T-N 성분의 속도 게인을 더욱 강하게 증가시킴으로써 방향적 불균형성이 더욱 증가되었다. 한편 nEM 속에 약품을 주입하게 되면 T-N 성분의 속도 게인보다 N-T 성분의 속조 게인이 더욱 강하게 증가함으로써 방향적 불균형성을 제거했다. 이것으로부터 우리는 nSS 특히 N-T 자극에 방응에 단안의 OKN이 관련되어 있고, nEM은 N-T 자극에 대한 OKN 반응에 더욱 관련되어 있는 것으로 유추할 수 있었다. 이 결과는 그 약품이 중뇌 수준에서 OKN에 관련된 GABAergic 메카니즘의 억제작용을 제거한다는 것을 암시한다. 미량 주입된 핵에 대하여 같은쪽 눈에 의해서 유도된 OKN의 게인의 증가는 수평적 OKN에 관련된 이들 중뇌 구조들 사이에 강한 상호작용이 존재한다는 것으로 설명된다.

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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.

A Role for Leu247 Residue within Transmembrane Domain 2 in Ginsenoside-Mediated α7 Nicotinic Acetylcholine Receptor Regulation

  • Lee, Byung-Hwan;Choi, Sun-Hye;Pyo, Mi Kyung;Shin, Tae-Joon;Hwang, Sung-Hee;Kim, Bo-Ra;Lee, Sang-MoK;Lee, Jun-Ho;Lee, Joon-Hee;Lee, Hui Sun;Choe, Han;Han, Kyou-Hoon;Kim, Hyoung-Chun;Rhim, Hyewhon;Yong, Joon-Hwan;Nah, Seung-Yeol
    • Molecules and Cells
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    • 제27권5호
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    • pp.591-599
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    • 2009
  • Nicotinic acetylcholine receptors (nAChRs) play important roles in nervous system functions and are involved in a variety of diseases. We previously demonstrated that ginsenosides, the active ingredients of Panax ginseng, inhibit subsets of nAChR channel currents, but not ${\alpha}7$, expressed in Xenopus laevis oocytes. Mutation of the highly conserved Leu247 to Thr247 in the transmembrane domain 2 (TM2) channel pore region of ${\alpha}7$ nAChR induces alterations in channel gating properties and converts ${\alpha}7$ nAChR antagonists into agonists. In the present study, we assessed how point mutations in the Leu247 residue leading to various amino acids affect 20(S)-ginsenoside $Rg_3$ ($Rg_3$) activity against the ${\alpha}7$ nAChR. Mutation of L247 to L247A, L247D, L247E, L247I, L247S, and L247T, but not L247K, rendered mutant receptors sensitive to $Rg_3$. We further characterized $Rg_3$ regulation of L247T receptors. We found that $Rg_3$ inhibition of mutant ${\alpha}7$ nAChR channel currents was reversible and concentration-dependent. $Rg_3$ inhibition was strongly voltage-dependent and noncompetitive manner. These results indicate that the interaction between $Rg_3$ and mutant receptors might differ from its interaction with the wild-type receptor. To identify differences in $Rg_3$ interactions between wild-type and L247T receptors, we utilized docked modeling. This modeling revealed that $Rg_3$ forms hydrogen bonds with amino acids, such as Ser240 of subunit I and Thr244 of subunit II and V at the channel pore, whereas $Rg_3$ localizes at the interface of the two wild-type receptor subunits. These results indicate that mutation of Leu247 to Thr247 induces conformational changes in the wild-type receptor and provides a binding pocket for $Rg_3$ at the channel pore.