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首页> 外文期刊>Journal of Leukocyte Biology: An Official Publication of the Reticuloendothelial Society >A group IIA-secreted phospholipase A2 from snake venom induces lipid body formation in macrophages: the roles of intracellular phospholipases A2 and distinct signaling pathways.
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A group IIA-secreted phospholipase A2 from snake venom induces lipid body formation in macrophages: the roles of intracellular phospholipases A2 and distinct signaling pathways.

机译:蛇毒中IIA类分泌的磷脂酶A2诱导巨噬细胞中脂质体的形成:细胞内磷脂酶A2的作用和独特的信号通路。

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We investigated the ability of the sPLA(2), known as MT-III, isolated from the viperid snake Bothrops asper, to induce LB formation in macrophages and the major cellular signaling pathways involved in this process. The effects of MT-III on ADRP localization and expression and macrophage ultrastructure were assessed. Our results showed that this sPLA(2) induced a marked increase in LB numbers in macrophages, induced the recruitment of ADRP in macrophages, and up-regulated ADRP expression. Ultrastructural analysis showed the presence of weakly and strongly osmiophilic LBs in sPLA(2)-stimulated cells. Enlargement of the ER and Golgi cisterns was also observed. Pretreatment of cells with H7 or staurosporine (PKC inhibitors), LY294002 or wortmannin (PI3K inhibitors), SB202190 or PD98059 (p38(MAPK) and ERK1/2 inhibitors, respectively), or Pyr-2 or Bel (cPLA(2) and iPLA(2) inhibitors, respectively) significantly reduced sPLA(2)-induced LB formation. Herbimycin (a PTK inhibitor) and indomethacin or etoricoxib (COX inhibitors) failed to alter sPLA(2)-induced effects. In conclusion, our results show for the first time the ability of a venom sPLA(2) to induce the formation of LBs and the expression of ADRP in macrophages. Venom PLA(2)-induced LB formation is dependent on PKC, PI3K, p38(MAPK), ERK1/2, cPLA(2), and iPLA(2) signaling pathways but not on PTK, COX-1, or COX-2 pathways. Activation of the ER and Golgi complex may play an important role in the formation of LBs induced by this sPLA(2) in macrophages.
机译:我们调查了sPLA(2),称为MT-III,从蛇类蛇Basprops asper分离出来的能力,以诱导巨噬细胞中的LB形成以及参与该过程的主要细胞信号通路。评估了MT-III对ADRP定位和表达以及巨噬细胞超微结构的影响。我们的结果表明,此sPLA(2)诱导巨噬细胞中LB数量显着增加,诱导巨噬细胞中ADRP募集,并上调ADRP表达。超微结构分析显示在sPLA(2)刺激的细胞中存在弱和强渗透性的LB。还观察到ER和高尔基水箱的扩大。用H7或星形孢菌素(PKC抑制剂),LY294002或渥曼青霉素(PI3K抑制剂),SB202190或PD98059(分别为p38(MAPK)和ERK1 / 2抑制剂),或Pyr-2或Bel(cPLA(2)和iPLA (2)分别抑制剂)大大减少sPLA(2)诱导的LB形成。除草霉素(PTK抑制剂)和消炎痛或依托考昔(COX抑制剂)未能改变sPLA(2)诱导的作用。总之,我们的结果首次显示了毒sPLA(2)诱导巨噬细胞中LBs的形成和ADRP表达的能力。毒液PLA(2)诱导的LB形成取决于PKC,PI3K,p38(MAPK),ERK1 / 2,cPLA(2)和iPLA(2)信号通路,但不依赖于PTK,COX-1或COX-2途径。 ER和高尔基体复合物的激活可能在此sPLA(2)在巨噬细胞中诱导的LB形成中起重要作用。

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