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The Study on Rough Colony Type Mutant of Pseudomoms mori(Boyer et Lambert) Stevens, caused Mulberry Bacterial Blight: Pathogenicity and General Characteristics (뽕나무 세균성위축병균 Pseudomonas mori (Boyer et Lambert) STEVENS의 Rough Colony Type Mutant에 관한 연구 ; 병원성 및 일반적 성질)

  • Yi Young Keun;Kim Jong Wan;Cho Yong Sup
    • Korean journal of applied entomology
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    • v.16 no.1 s.30
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    • pp.21-31
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    • 1977
  • The study has been carried out to compare the pathogenicity, physiological characteristics and genetic reliability between rough colony type strain and smooth colony type strains of Pseudomonas mori (Boyer et Lambert) Stevens which were isolated from diseased plant parts in 5 different areas throughout country. The results are summarized as follow. 1. The rough colony type strain showed more agressive reactions to tested host plant varieties than smooth colony type strains though there was no differences in the appearence of lesion types caused by both strains. 2. Both colony types were differentiated morphologically in that the rough colony type strain was having more than 200r long filamentous body without flagella where as the smooth colony type strains have short rods with one or several polar flagella. 3. The colony of smooth type strains was circular, entire, smooth and opaque, while the rough type strain shelved endulated, irregular margin, rough and wrinkled colony on nutrient agar media. 4. There were no differences between both colony types in the physiological and serological test. 5. Both of smooth and rough colony type strains showed genetic reliability through more than 100 succeeding cultures on the media, and were stable to various chemicals such as 1 to 3 percent of NaCl, 5 kinds of organic acid and 4 kinds of antibiotics.

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Nitroxergic Nerve Relaxes Rat Gastric Smooth Muscle by NO-cGMP Pathway

  • Yoon, Yoong-Sam;Choi, Hyoung-Chul;Jung, Young-Sook;Kim, Jong-Ho;Lee, Kwang-Youn;Sohn, Uy-Dong;Ha, Jeoung-Hee;Kim, Won-Joon
    • The Korean Journal of Physiology and Pharmacology
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    • v.4 no.5
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    • pp.369-378
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    • 2000
  • This study was undertaken to investigate an involvement of nitroxergic innervation in gastric smooth muscle of rat. Isometric tension study, the measurement of single cell length, NADPH diaphorase stain of smooth muscle layers and neuronal nitric oxide synthase (nNOS) western blotting were performed. Sodium nitroprusside (SNP), a nitric oxide donor, relaxed the muscle strips precontracted by acetylcholine (ACh) in a concentration-dependent manner. Pretreatment of L-arginine decreased the contraction induced by electric field stimulation (EFS). Pretreatment of $N^G-nitro-L-arginine$ methyl ester (L-NAME), a NOS inhibitor, increased the EFS-induced contractions. LY 83583, a guanylate cyclase (GC) inhibitor, reversed the inhibitory actions of L-arginine on the muscle contractions. The effects of L-Arginine, L-NAME and LY 83583 on ACh-induced contractions were not significant. L-arginine reduced the EFS-induced contraction in circular muscle, whereas L-NAME enhanced the EFS-induced contraction in longitudinal strips. By EFS, the phasic contractions appeared approximately $20{\sim}25$ seconds later. L-NAME significantly shortened the delay time to about $2{\sim}3$ seconds. In single cell study, ACh contracted gastric smooth muscle cells, SNP relaxed the cells, and the latter also inhibited the ACh-induced contraction. LY 83583 enhanced the ACh-induced contraction and antagonized SNP-induced relaxation. NADPH diaphorase activity was assessed by a histochemistry, nitroblue tetrazolium (NTB) staining. Positive staining was observed in both circular and longitudinal muscle layers. L-arginine increased the staining, while L-NAME decreased the staining. Western blotting for nNOS proved the presence of nNOS in rat gastric smooth muscle. EFS and additional $Ca^{2+}$ increased nNOS protein expression. These results suggest that in rat stomach, both circular and longitudinal muscle layers are innervated with nitroxergic nerves which relax the gastric smooth muscle via NO-cGMP pathway.

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c-Jun N-terminal Kinase Contributes to Norepinephrine-Induced Contraction Through Phosphorylation of Caldesmon in Rat Aortic Smooth Muscle

  • Lee, Youn-Ri;Lee, Chang-Kwon;Park, Hyo-Jun;Kim, Hyo-Jin;Kim, Jung-Hwan;Kim, Jae-Heung;Lee, Keun-Sang;Lee, Yun-Lyul;Min, Kyung-Ok;Kim, Bo-Kyung
    • Journal of Korean Physical Therapy Science
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    • v.13 no.2
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    • pp.129-135
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    • 2006
  • Vascular smooth muscle contraction is mediated by activation of extracellular signal-regulated kinase (ERK) 1/2, an isoform of mitogen-activated protein kinase (MAPK). However, the role of stress-activated protein kinase/c-Jun N-terminal kinase (JNK) in vascular smooth muscle contraction has not been defined. We investigated the role of JNK in the contractile response to norepinephrine (NE) in rat aortic smooth muscle. NE evoked contraction in a dose-dependent manner, and this effect was inhibited by the JNK inhibitor SP600125. NE increased the phosphorylation of JNK, which was greater in aortic smooth muscle from hypertensive rats than from normotensive rats. NE-induced JNK phosphorylation was significantly inhibited by SP600125 and the conventional-type PKC (cPKC) inhibitor Go6976, but not by the Rho kinase inhibitor Y27632 or the phosphatidylinositol 3-kinase inhibitor LY294002. Thymeleatoxin, a selective activator of cPKC, increased JNK phosphorylation, which was inhibited by $G{\ddot{o}}6976$. SP600125 attenuated the phosphorylation of caldesmon, an actin-binding protein whose phosphorylation is increased by NE. These results show that JNK contributes to NE-mediated contraction through phosphorylation of caldesmon in rat aortic smooth muscle, and that this effect is regulated by the PKC pathway, especially cPKC.

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Role of LPS-activated Macrophages in the Differentiation of Mesenchymal Stem Cells into Smooth Muscle Cells (중간엽 줄기세포의 평활근 세포로의 분화에서 LPS에 의해 활성화된 대식세포의 역할)

  • Lee, Mi Jeong;Do, Eun Kyoung;Kim, Jae Ho
    • Journal of Life Science
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    • v.23 no.1
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    • pp.137-142
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    • 2013
  • Human adipose-derived mesenchymal stem cells (hMSCs) are highly useful for vascular regeneration of injured or inflamed tissue. Lipopolysaccharide (LPS) is a potent activator of macrophages and stimulates macrophages to release inflammatory cytokines. In the present study, we explored the role of LPS-activated macrophages in the differentiation of hMSCs to smooth muscle cells (SMCs). We demonstrated that conditioned medium from LPS-induced macrophages (LPS CM) stimulates differentiation of hMSCs to SMCs, as evidenced by increased expression of smooth muscle-specific markers, including alpha-smooth muscle actin (${\alpha}$-SMA), smooth muscle-myosin heavy chain, and calponin. LPS induced the secretion of $PGF2{\alpha}$ from macrophages, and $PGF2{\alpha}$ treatment stimulated expression levels of SMC-specific markers in hMSCs. Furthermore, small interfering RNA-mediated silencing of the $PGF2{\alpha}$ receptor inhibited LPS CM-stimulated ${\alpha}$-SMA expression. These results suggest that LPS-activated macrophages promote differentiation of hMSCs to SMCs through a $PGF2{\alpha}$-dependent mechanism.

Influence of the Epithelium on the Contraction of Guinea Pig Isolated Tracheal Smooth Muscle (Guinea Pig 기도상피세포가 기도 평활근 수축에 미치는 영향)

  • Kwon, O.J.;Cho, S.H.;Park, I.W.;Kim, Y.W.;Han, S.K.;Shim, Y.S.;Kim, K.Y.;Han, Y.C.;Seoh, S.H.;Kim, K.W.
    • Tuberculosis and Respiratory Diseases
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    • v.38 no.1
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    • pp.8-15
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    • 1991
  • It has been well known that the integrity of airway epithelium is important in development of bronchial hyperreactivity and bronchial asthma. But the mechanisms involved are still unclear. To evaluate that airway epithelium is able to modulate the contraction of guinea pig tracheal smooth muscle, we investigated the responsiveness of intact and epithelium-denuded tracheal strips to histamine and acetylcholine. And to evaluate whether cyclooxgenase products play a role in this modulatory mechanism, we also investigated the effect of indomethacin pretreatment on the tracheal responsiveness to histamine. Results were as follows: 1) In guinea pig tracheal smooth muscle the presence of airway epithelium significantly reduced the response to histamine. 2) In the presence of indomethacin dose-response curves and $EC_{50}$ values were similar between intact and epithelium-denuded tracheal strips, that is, indomethacin abolished the influence of epithelium on the contracion of tracheal smooth muscle. 3) The response of tracheal smooth muscle to acetylcholine was similar both in the presence and absence of epithelium. These results suggest that airway epithelium of guinea pig may generate an inhibitory signal to decrease the response of tracheal smooth muscle to histamine and cyclooxygenase products may contrbute to the modulation of airway epithelium on the contracion of tracheal smooth muscle.

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Pharmacological Activities of Flavonoids (V): Spasmolytic Activities of Flavones and Flavonols on Rat Ileal Smooth Muscle Contraction Induced by Electrical Stimulation and Anaphylactic Reaction (Flavonoids의 약리작용(V) - 전기자극 및 과민반응으로 유발된 흰쥐 회장의 평활근수축에서 Flavones 및 Flavonols의 진경효과 -)

  • Ahn, Hong-Zick;Lee, Ji-Yun;Kim, Soo-Jeong;Kim, Jung-Min;Park, Ju-Hyun;Park, Sung-Hun;Sim, Sang-Soo;Kim, Chang-Jong
    • YAKHAK HOEJI
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    • v.51 no.2
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    • pp.150-156
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    • 2007
  • Some flavonoids have spasmolytic activities in various smooth muscles, but structure-activity relationships on their spasmolytic activity and its mechanism are unclear. In this study, effects of flavones (flavone and apigenin) and flavonols (quercetin and rutin) on the rat ileal smooth muscle contraction were studied in vitro and in vitro. In the electric stimulation-induced contraction, all of four flavonoids inhibited concentration-dependently the rat ileal smooth muscle contraction induced by electric stimulation (10 mV, 0.1 cps, 0.1 msec duration), IC$_{50}$ of quercetin, apigenin, flavone and rutin were 0.98${\times}$10$^{-5}$, 1.20${\times}$10$^{-5}$, 1.55${\times}$10$^{-5}$ and 1.85${\times}$10$^{-5}$ M, respectively. Flavonoids at a concentration of 2${\times}$10$^{-5}$ M also significantly inhibited the anaphylactic contraction and decreased concentration-dependently the mast cell degranulation by anaphylactic reaction, IC$_{50}$ of quercetin, apigenin, flavone and rutin were 4.0${\times}$10$^{-5}$, 7.5${\times}$10$^{-5}$, 8.0${\times}$10$^{-5}$ and 9.5${\times}$10$^{-5}$ M, respectively. These results indicated that flavones and flavonols inhibited the rat ileal smooth muscle contraction induced by electric stimulation because of their antagonism against acetylcholine and have spasmolytic activities on anaphylactic contraction which may be due to their mast cell-stabilizing activities. Furthermore, double bond of C$_{2,3}$ in benzene ring of flavonoids may be important in the their antispasmodic activities on the rat ileal smooth muscle contraction induced by electric stimulation and anaphylactic reaction.

The Modulation of Motility of Pyloric Antral Smooth Muscles of Rat by Melatonin

  • Han, Sang-Hoon;Lee, Da-Woon;Cho, Soo-Hyun;Kim, June-Sun
    • Biomolecules & Therapeutics
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    • v.18 no.2
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    • pp.166-170
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    • 2010
  • Recently some researches have established that the melatonin, secreted by pineal gland, may evoke the changes of contractile responses on smooth muscles. We examined the effects of melatonin on the motility of rat pyloric antrum and which mechanism might be involved in the effects. Pyloric antral strips from the stomach of 20 Sprague-Dawley rats were prepared for isometric tension recording in organ bath. The strips were precontracted by acetylcholine and high-KCl solutions. In precontracted conditions the tensions were increased by accumulative application of melatonin ($10^{-8}-10^{-4}$ M) dose-dependently, even in resting states. And the effects were almost disappeared when the concentrations of ACh were over than 10 ${\mu}M$. The effects of melatonin were inhibited by pretreatment of 10 mM TEA and/or 10 ${\mu}M$ 4-AP and rarely affected by pretreatment of 1 mM TEA, 10 ${\mu}M$ glibenclamide and 10 ${\mu}M$ verapamil respectively. From these results it is concluded that the contractile responses of smooth muscles of rat pyloric antrum were enhanced by melatonin application and the mechanism might be concerned with the inhibition of some voltage-dependent potassium channels.

Effects of Butanol Fraction of Crataegi Fructus on the Translocation of PKC $\alpha$ and Myosin Phosphatase Subnits in Vascular Smooth Muscle

  • Lee Heon Jae;Choi Ho Jeong;Kim Gil Whon;Shin Heung Mook
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.16 no.5
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    • pp.1060-1065
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    • 2002
  • LC20 phosphorylation and PKC α play an important role in modulation of contractile activity of smooth muscle. Besides, myosin phosphatase is also related with smooth muscle contraction in signaling pathways. We previously demonstrated that Crataegi Fructus inhibited phenylephrine-induced contraction and which might be implicated in nitrite formation(Son et al., 2002). In this study, we investigated the effects of butanol fraction of Crataegi Fructus(BFFC) on the localization of α-protein kinease C(PKC α) and myosin phosphatase subnits(MPs) in freshly isolated single ferret potal vein cells, and phosphorylation of LC20 during phenylephrine stimulation. In PKC α and MPs localization, BFFC blocked its translocation from the cytosol to the cell membrane by treatment of phenylephrine. BFFC have also dephosphorylated LC20 phosphorylation by phenylephrine stimulation under basal level, but no significant. These results indicate that the relaxation effect of BFFC is associated with inhibition of PKC α activation and MPs dissociation, and thus myosin phosphatase activity may be increased.