• Title/Summary/Keyword: Secretory Phospholipase $A_2$

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Role and Action Mechanism of Secretory phospholipase $A_2$ in Macrophage Activation

  • Baek, Suk-Hwan
    • Proceedings of the PSK Conference
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    • 2002.10a
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    • pp.179-180
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    • 2002
  • The phospholipase $A_2$($PLA_2$) family represents a diverse group of enzymes that hydrolyze sn-2 fatty acid from the cell membrane. Several mammalian cytosolic $PLA_2$ and secretory $PLA_2$(s$PLA_2$) have been characterized and classified into different families. At present, 12 distinct sPLA$_2$s have been identified in mammals and classified into different groups, depending on their primary structures as characterized by the number and position of cysteine residues. (omitted)

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The Role of Oxygen Free Radicals and Phospholipase $A_2$ in Ischemia-reperfusion Injury to the Liver

  • Park, Mee-Jung;Cho, Tai-Soon;Lee, Sun-Mee
    • Archives of Pharmacal Research
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    • v.18 no.3
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    • pp.189-194
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    • 1995
  • The focus of this study was to investigate the influences of enzymatic scavengers of active oxygen metabolites and phospholipase $A_2$ inhibitor on hepatic secretory and microsomal function during hepatic ischemia/reperfusion. Rats were pretreated with free radical scavengers such as superoxide dismutase (SOD), catalase, deferoxamine and phospholipase $A_2$ inhibitor such as quinacrine and then subjected to 60 min. no-flow hepatic ischemia in vivo. After 1, 5 hr of reperfusion, bile was collected, blood was obtained from the abdominal aorta, and liver microsomes were isolated. Serum aminotransferase (ALT) level was increased at 1 hr and peaked at 5 hr. The increase in ALT was significantly attenuated by SOD plus catalase, deferoxamine and quinacrine especially at 5 hr of reperfusion. The wet weight-to-dry weight ratio of the liver was significantly increased by ischemia/reperfusion. SOD and catalase treatment minimized the increase in this ratio. Hepatic lipid peroxidiltion was elevated by ischemia/reperfusion, and this elevation was inhibited by free radical scavengers and quina crine. Bile flow and cholate output, but not bilirubin output, were markedly decreased by ischemia/reperfusion and quinacrine restored the secretion. Cytochrome $P_{450}$ content was decreased by ischemia/reperfusion and restored by free radical scavengers and quinacrine to the level of that of the sham operated group. Aminopyrine N-demethylase activity was decreased and aniline p-hydroxylase was increased by ischemia/reperfusion. The changes in the activities of the two enzymes were prevented by free radical scavengers and quinacrine. Our findings suggest that ischemia/reperfusion diminishes hepatic secretory functions as well as microsomal drug metabolizing systems by increasing lipid peroxidation, and in addition to free radicals, other factors such as phospholipase $A_2$ are involved in pathogenes of hepatic dysfunction after ischemia/reperfusion.

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Inhibitory Activity of Amentoflavone on Arachidonic Acid Releasing Enzyme, Phopholipase $A_2$ and Inhibition of Histamine Release from Mast Cells (Amentoflavone의 아라키돈산 유리효소인 phopholipase $A_2$에 대한 저해활성 및 비만세포에서 histamine 유리 억제효과)

  • Moon, Tae-Chul;Lee, Eun-Kyung;Lee, Sung-Ho;Son, Kun-Ho;Kim, Hyun-Pyo;Kang, Sam-Sik;Chang, Hyeun-Wook
    • Korean Journal of Pharmacognosy
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    • v.33 no.1 s.128
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    • pp.49-52
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    • 2002
  • Amentoflavone, naturally occurring biflavonoid, isolated from the leaves of Ginko biloba, selectively inhibited human seceretory phospholipase $A_2$. This compound potently and irreversibly inhibited human group IIA in a dose dependent manner with an $IC_50$ about $3\;{\mu}M$. Amentoflavone inhibited phospholipase $A_2$ by a noncompetitive manner with the apparent Ki value of $1{\times}10^{-5}M$. In addition, the inhibitory activity of amentoflavone is rather specific against group IIA phospholipase $A_2$ than group IB phospholipase $A_2$. Furthermore, this compound strong inhibit histamine release from $A_{23187}$ treated rat peritoneal mast cells. These results indicate naturally occurring biflavonoid represents a novel anti-inflammatory agent.

Inhibitory effects of antithrombin on the expression of secretory group IIA phospholipase A2 in endothelial cells

  • Kim, Tae-Hoon;Bae, Jong-Sup
    • BMB Reports
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    • v.43 no.9
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    • pp.604-608
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    • 2010
  • Tumor necrosis factor-$\alpha$ (TNF-$\alpha$) mediates proinflammatory responses in primary human umbilical vein endothelial cells (HUVECs), and it upregulates the expression of secretory group IIA phospholipase $A_2$ ($sPLA_2$-IIA). $sPLA_2$-IIA plays a pivotal role in inflammation, and antithrombin (AT) possesses properties that are beneficial to endothelial cells. Therefore, we investigated the effects of AT on the expression of $sPLA_2$-IIA in TNF-$\alpha$-stimulated HUVECs. TNF-$\alpha$ potently upregulated the expression of $sPLA_2$-IIA, and prior treatment of cells with AT inhibited the expression of $sPLA_2$-IIA in HUVECs. Also, antibodies or siRNA for syndecan-4 blocked the protective effect of AT. Furthermore, PI3-kinase and the AKT pathway are significantly involved in the AT-mediated inhibition of the expression of $sPLA_2$-IIA. These results show that AT effectively suppresses the upregulated $sPLA_2$-IIA expression, which might contribute to the cytoprotective effects of AT in the treatment of severe inflammatory diseases.

D609, an Inhibitor of Phosphatidylcholine-specific Phospholipase C, Inhibits Group IV Cytosolic Phospholipase A2

  • Kang, Mi Sun;Jung, Sung Yun;Jung, Kwang Mook;Kim, Seok Kyun;Ahn, Kyong Hoon;Kim, Dae Kyong
    • Molecules and Cells
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    • v.26 no.5
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    • pp.481-485
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    • 2008
  • As an inhibitor of phosphatidylcholine-specific phospholipase C (PC-PLC), D609 has been widely used to explain the role of PC-PLC in various signal transduction pathways. This study shows that D609 inhibits group IV cytosolic phospholipase $A_2$ ($cPLA_2$), but neither secretory $PLA_2$ nor a $Ca^{2+}$-dependent $PLA_2$. Dixon plot analysis shows a mixed pattern of noncompetitive and uncompetitive inhibition with $K_i=86.25{\mu}M$ for the $cPLA_2$ purified from bovine spleen. D609 also time- and dose-dependently reduces the release of arachidonic acid from a $Ca^{2+}$- ionophore A23187-stimulated MDCK cells. In the AA release experiment, $IC_{50}$ of D609 was ${\sim375}{\mu}M$, suggesting that this reagent may not enter the cells easily. The present study indicates that the inhibitory effects of D609 on various cellular responses may be partially attributable to the inhibition of $cPLA_2$.

Identification of a novel $Ca^{2+}$-independent Phospholipase $A_2$ in Bovine Brain

  • Jeong, Eui-Man;Jun, Hyung-Jin;Kim, Ha-Dong;Lee, Ho-Sup;Min, Pil-Gi;Jo, Dong-Hwan;Jung, Sung-Yun;Kim, Dea-Kyong
    • Proceedings of the PSK Conference
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    • 2003.10b
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    • pp.102.1-102.1
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    • 2003
  • Phospholipase A$_2$(PLA$_2$) catalyzes the hydrolysis of the sn-2 position of membrane glycerophospholipids to liberate arachidonic acid(AA), a precursor of eicosanoids including prostaglandins(PGs) and leukotrienes (LTs). The same reaction also produces lyso-phospholipids. So far, at least 19 enzymes that possess PLA2 activity have been identified, consists of low-molecular-weight, Ca$\^$2+/-requiring, secretory enzymes that have been implicated in a number of biological processes, such as modification of eicosanoid generation, inflammation, host defense, and atherosclerosis. (omitted)

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Screening of Arachidonic Acid Cascade Related Enzymes Inhibitors from Korean Indigenous Plants (2) (한국 자생식물로부터 아라키돈산 대사계 효소 저해제 검색 (2))

  • 정혜진;문태철;이은경;손건호;김현표;강삼식;배기환;안인파;권동렬
    • YAKHAK HOEJI
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    • v.47 no.2
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    • pp.69-77
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    • 2003
  • Arachidonic acid (AA), which is stored in membrane glycerophospholipids, is liberated by phospholipase $A_2$ (PLA$_2$) enzymes and is sequentially converted to cyclooxygenases (COXs) and lipoxygenases (LOXs) then to various bioactive PGs, and LTs. In order to find the specific inhibitors of AA metabolism especially PLA$_2$, COX-2, 5-LO and lyso PAF acetyltransferase, 120 Korean residential plants extracts were evaluated for their inhibitory activity on PGD$_2$, LTC$_4$ production from cytokine-induced mouse bone marrow-derived mast cells (BMMC) and arachidonic acid released from phospholipid and PAF production from lyso PAF. From this screening procedure, methanol extract of ten indigenous plant such as Salix gracilistyla, Sedum kamtschaticum, Cirsium chanroenicum, Hypericum ascyron, Astilbe chinensis, Agrimonia pilosa, Aristolochia manshuriensis, Vodia daniellii, Pyrola japonica, Styrax obassia were found to inhibit production of inflammatory mediators in vitro assay system.

Moxifloxacin Ameliorates Oleic Acid-induced Acute Lung Injury by Modulation of Neutrophilic Oxidative Stress in Rats (Moxifloxacin의 Secretory $PLA_2$억제가 올레인 산으로 유도된 호중구성 급성 폐손상에 미치는 영향)

  • Kim, Byung-Yong;Lee, Young-Man
    • Tuberculosis and Respiratory Diseases
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    • v.68 no.6
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    • pp.334-344
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    • 2010
  • Background: Based on the known immunoregulatory functions of moxifloxacin on phagocytes, the therapeutic effect of moxifloxacin on oleic acid (OA)-induced acute lung injury (ALI) was investigated. Methods: Moxifloxacin (10 mg/kg) was given to male Sprague-Dawley rats that had been given oleic acid (OA, $30{\mu}L$) intravenously. Five hours after OA injection, parameters demonstrating ALI were assessed to measure the effects of moxifloxacin on acute lung injury. Results: The pathological findings of OA-induced ALI's was diminished by moxifloxacin. Through ultrastructural and $CeCl_3$ EM histochemistry, moxifloxacin was confirmed to be effective in decreasing oxidative stress in the lung as well. Indices of ALI, such as lung weight/body weight ratio, protein content in bronchoalveolar lavage fluid, and lung myeloperoxidase were decreased by moxifloxacin. In diaminobenzidine immunohistochemistry, fluorescent immunohistochemistry, and Western blotting of the lung, moxifloxacin had decreased the enhanced expression of secretory phospholipase $A_2$ ($sPLA_2$) by OA. Conclusion: We concluded that moxifloxacin was effective in lessening acute inflammatory pulmonary edema caused by OA, by inhibiting the neutrophilic respiratory burst, which was initiated by the activation of $sPLA_2$.

Morinda citrifolia Inhibits Both Cytosolic $Ca^{2+}$-dependent Phospholipase $A_2$ and Secretory $Ca^{2+}$-dependent Phospholipase $A_2$

  • Song, Ho-Sun;Park, Sung-Hun;Ko, Myoung-Soo;Jeong, Jae-Min;Sohn, Uy-Dong;Sim, Sang-Soo
    • The Korean Journal of Physiology and Pharmacology
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    • v.14 no.3
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    • pp.163-167
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    • 2010
  • This study investigated the effects of the methanol extracts of Morinda citrifolia containing numerous anthraquinone and iridoid on phospholipase $A_2$ ($PLA_2$) isozyme. $PLA_2$ activity was measured using various $PLA_2$ substrates, including 10-pyrene phosphatidylcholine, 1-palmitoyl-2-[$^{14}C$]arachidonyl phosphatidylcholine ([$^{14}C$]AA-PC), and [$^3H$]arachidonic acid (AA). The methanol extracts suppressed melittin-induced [$_3H$]AA release in a concentration-dependent manner in RAW 264.7 cells, and inhibited $cPLA_2/sPLA_2$-induced hydrolysis of [$^{14}C$]AA-PC in a concentration- and time-dependent manner. A Dixon plot showed that the inhibition by methanol extracts on $cPLA_2$ and $sPLA_2$ appeared to be competitive with inhibition constants ($K_i$) of $3.7{\mu}g/ml$ and $12.6{\mu}g/ml$, respectively. These data suggest that methanol extracts of Morinda citrifolia inhibits both $Ca^{2+}$-dependent $PLA_2$ such as, $cPLA_2$ and $sPLA_2$. Therefore, Morinda citrifolia may possess anti-inflammatory activity secondary to $Ca^{2+}$-dependent $PLA_2$ inhibition.