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首页> 外文期刊>Immunobiology: Zeitschrift fur Immunitatsforschung >An MBL-like protein may interfere with the activation of the proPO-system, an important innate immune reaction in invertebrates
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An MBL-like protein may interfere with the activation of the proPO-system, an important innate immune reaction in invertebrates

机译:MBL样蛋白可能会干扰proPO系统的激活,proPO系统是无脊椎动物的重要先天免疫反应

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摘要

An important characteristic of the innate immune systems of crayfish and other arthropods is the activation of a serine proteinase cascade in the hemolymph, which results in the activation of prophenoloxidase and subsequently leading to the formation of toxic quinones and melanin. Although no true complement homologues have been detected in crayfish or crustaceans, several proteins with similarities to vertebrate pattern recognition receptors (PRRs), which are involved in the lectin pathway of complement activation in vertebrates, are present. One is a C-type lectin, a mannose-binding lectin (Pl-MBL), which is secreted from granular hemocytes. Here we report that Pl-MBL has LPS-binding capacity and is dependent upon high Ca2+ for its solubility and Pl-MBL interferes with proPO activation in vitro when HLS is prepared at high Ca2+. The proPO-activating system is efficiently activated by microbial polysaccharides and it has to be neatly regulated to avoid activation in places where it is inappropriate and the active enzyme PO should be prevented from spreading throughout the body of the animal. This may be particularly important during molting when proPO is involved in hardening of a new cuticle and the animal is vulnerable to microbes. The presence of high amount of Pl-MBL in the granular hemocytes may play a role in this process. Since a hemocyte lysate supernatant (HLS) prepared at 100mM Ca2+ could become activated when the concentration of LPS was increased up to 3mg/ml, this may indicate that Pl-MBL acts as a scavenger for LPS to prevent spreading of LPS in the hemolymph to avoid further activation of the proPO-system. ? 2012 Elsevier GmbH.
机译:小龙虾和其他节肢动物的先天免疫系统的重要特征是血淋巴中丝氨酸蛋白酶级联反应的激活,这导致了原酚氧化酶的激活,并随后导致了毒性醌和黑色素的形成。尽管在小龙虾或甲壳类动物中未检测到真正的补体同源物,但存在与脊椎动物模式识别受体(PRR)相似的几种蛋白质,这些蛋白质参与脊椎动物补体激活的凝集素途径。一种是从粒状血细胞分泌的C型凝集素,即甘露糖结合凝集素(P1-MBL)。在这里,我们报道Pl-MBL具有LPS结合能力,并且依赖于高Ca2 +的溶解度,而在高Ca2 +下制备HLS时,Pl-MBL会干扰proPO的体外活化。 proPO激活系统可被微生物多糖有效激活,必须对其进行整齐的调节,以避免在不合适的地方激活,并应防止活性酶PO扩散到整个动物体内。当proPO参与新表皮的硬化并且动物易受微生物侵害时,这在蜕皮过程中尤其重要。粒状血细胞中大量P1-MBL的存在可能在此过程中起作用。由于当LPS的浓度增加到3mg / ml时,在100mM Ca2 +处制备的血细胞裂解物上清液(HLS)可能被激活,这可能表明Pl-MBL充当LPS的清除剂,以防止LPS在血淋巴中扩散至避免进一步激活proPO系统。 ? 2012 Elsevier GmbH。

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