首页> 外文期刊>European Journal of Pharmacology: An International Journal >Inhibitory mechanism of anti-allergic peptides in RBL2H3 cells.
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Inhibitory mechanism of anti-allergic peptides in RBL2H3 cells.

机译:RBL2H3细胞中抗过敏肽的抑制机制。

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Here we report the identification and functional characterization of several anti-allergic peptides identified through biopanning of pooled sera of patients with various allergies. Several peptides, including LSYLLWRSRLP (LSY), LVAHVGAGGVL (LVA), RVSSCRGRNHIV (RVS), ETIGARWVRIE (ETI), TDGVTYTNDCL (TDG), RVVRYDADFWI (RVV), GFWCRRSGLVGV (GFW), were further characterized. These peptides inhibited the release of histamine from antigen-stimulated mast cells isolated from lung tissues of guinea pigs. Furthermore, the peptides inhibited calcium influx in ovalbumin-stimulated mast cells isolated from lung tissues of guinea pigs. Likewise, the peptides inhibited the release of beta-hexosaminidase from antigen-stimulated rat basophilic leukemia (RBL2H3) cells and decreased calcium influx and intracellular reactive oxygen species production as well. We found that the peptides significantly decreased phosphorylation of extracellular regulated kinase (ERK) and that this was responsible for the decreased calcium influx and beta-hexosaminidase in antigen-stimulated RBL2H3 cells, suggesting that ERK plays an important role in allergic reactions. The peptides identified in this study also affected upstream signaling of allergic inflammation. In other words, these peptides decreased phosphorylation of Lyn, PKCalpha, and -delta. Lyn and PKC are known to be responsible for the phosphorylation of FcepsilonRI, in response to receptor aggregation. The peptides inhibited interaction between IgE and FcepsilonRI, suggesting that these peptides exert anti-allergic effects by inhibiting receptor cross-linking. These peptides also inhibited interaction between FcepsilonRI and PKCdelta. Taken together, these data suggest that peptides exert anti-allergic effect through the inhibition of upstream signaling, involving receptor cross-linking, and downstream multiple signaling.
机译:在这里,我们报告了几种抗过敏肽的鉴定和功能表征,这些肽是通过对具有各种过敏反应的患者的合并血清进行生物淘选而鉴定的。进一步鉴定了几种肽,包括LSYLLWRSRLP(LSY),LVAHVGAGGVL(LVA),RVSSCRGRNHIV(RVS),ETIGARWVRIE(ETI),TDGVTYTNDCL(TDG),RVVRYDADFWI(RVV),GFWCRRSGLVGV(GFW)。这些肽抑制了从豚鼠肺组织分离的抗原刺激的肥大细胞中组胺的释放。此外,这些肽抑制了从豚鼠肺组织分离的卵清蛋白刺激的肥大细胞中的钙流入。同样,这些肽抑制了抗原刺激的大鼠嗜碱性白血病(RBL2H3)细胞中β-己糖胺酶的释放,并且还减少了钙内流和细胞内活性氧的产生。我们发现这些肽显着降低了细胞外调节激酶(ERK)的磷酸化,这是导致抗原刺激的RBL2H3细胞中钙流入和β-己糖胺酶减少的原因,这表明ERK在变态反应中起重要作用。在这项研究中鉴定的肽还影响了过敏性炎症的上游信号传导。换句话说,这些肽减少了Lyn,PKCalpha和-delta的磷酸化。响应受体聚集,已知Lyn和PKC负责FcepsilonRI的磷酸化。这些肽抑制了IgE和FcepsilonRI之间的相互作用,表明这些肽通过抑制受体交联而发挥了抗过敏作用。这些肽还抑制了FcepsilonRI和PKCdelta之间的相互作用。综上所述,这些数据表明肽通过抑制上游信号传导发挥抗过敏作用,涉及受体交联和下游多重信号传导。

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