首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A Crystallin Fold in the Interleukin-4-inducing Principle of Schistosoma mansoni Eggs (IPSE/α-1) Mediates IgE Binding for Antigen-independent Basophil Activation
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A Crystallin Fold in the Interleukin-4-inducing Principle of Schistosoma mansoni Eggs (IPSE/α-1) Mediates IgE Binding for Antigen-independent Basophil Activation

机译:曼氏血吸虫卵白介素4诱导原理中的Crystallin折叠(IPSE /α-1)介导IgE结合用于抗原独立的嗜碱性粒细胞活化。

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摘要

The IL-4-inducing principle from Schistosoma mansoni eggs (IPSE/α-1), the major secretory product of eggs from the parasitic worm S. mansoni, efficiently triggers basophils to release the immunomodulatory key cytokine interleukin-4. Activation by IPSE/α-1 requires the presence of IgE on the basophils, but the detailed molecular mechanism underlying activation is unknown. NMR and crystallographic analysis of IPSEΔNLS, a monomeric IPSE/α-1 mutant, revealed that IPSE/α-1 is a new member of the βγ-crystallin superfamily. We demonstrate that this molecule is a general immunoglobulin-binding factor with highest affinity for IgE. NMR binding studies of IPSEΔNLS with the 180-kDa molecule IgE identified a large positively charged binding surface that includes a flexible loop, which is unique to the IPSE/α-1 crystallin fold. Mutational analysis of amino acids in the binding interface showed that residues contributing to IgE binding are important for IgE-dependent activation of basophils. As IPSE/α-1 is unable to cross-link IgE, we propose that this molecule, by taking advantage of its unique IgE-binding crystallin fold, activates basophils by a novel, cross-linking-independent mechanism.
机译:曼氏血吸虫卵(IPSE /α-1)的IL-4诱导原理是寄生虫曼氏梭菌卵的主要分泌产物,可有效触发嗜碱性粒细胞释放免疫调节关键细胞因子白介素-4。通过IPSE /α-1进行激活需要在嗜碱性粒细胞上存在IgE,但是激活背后的详细分子机制尚不清楚。对单体IPSE /α-1突变体IPSEΔNLS的NMR和晶体分析表明,IPSE /α-1是βγ-晶状蛋白超家族的新成员。我们证明该分子是对IgE具有最高亲和力的一般免疫球蛋白结合因子。 IPSEΔNLS与180kDa分子IgE的NMR结合研究确定了一个大的带正电的结合表面,该表面带有一个柔性环,这对于IPSE /α-1晶状体折叠是唯一的。结合界面中氨基酸的突变分析表明,有助于IgE结合的残基对于嗜碱性粒细胞的IgE依赖性激活非常重要。由于IPSE /α-1无法交联IgE,因此我们建议该分子通过利用其独特的IgE结合结晶蛋白折叠,通过一种新的,独立于交联的机制激活嗜碱性粒细胞。

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