首页> 外文OA文献 >Cleavage of human complement component C5 by cysteine proteinases from Porphyromonas (Bacteroides) gingivalis. Prior oxidation of C5 augments proteinase digestion of C5.
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Cleavage of human complement component C5 by cysteine proteinases from Porphyromonas (Bacteroides) gingivalis. Prior oxidation of C5 augments proteinase digestion of C5.

机译:人牙龈卟啉单胞菌的半胱氨酸蛋白酶切割人补体成分C5。 C5的预先氧化可增强C5的蛋白酶消化。

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摘要

Since severe periodontitis is characterized by an acute inflammatory response with cellular infiltration and microbial overgrowth, plasma proteins could be exposed to both proteinases and oxidants released from the granulocytes, as well as to proteinases from the microorganisms. When human complement component C5 was digested by cysteine proteinases (i.e. gingipain-R and gingipain-K) from Porphyromonas gingivalis, limited cleavage of the C5 molecule was observed. If C5 was first oxidized by hydroxyl radicals, these gingipains converted modified C5 to fragments that exhibited significantly greater pro-inflammatory activity than did digests of unmodified C5. After cleavage of oxidized C5 by gingipain-R, the digest exhibited measurably greater neutrophil enzyme release and chemotaxis of human polymorphonuclear leukocytes (PMNs) compared with the activities of unoxidized C5 digests. Gingipain-K generates virtually no polarization or chemotactic activity of human PMNs from C5, nor is enzyme release stimulated by these C5 digests. However, when oxidized C5 was digested by gingipain-K, human PMNs were stimulated for polarization, chemotaxis and enzyme release indicating that an active fragment had been generated. Proteolysis of oxidized C5 evokes greater neutrophil activation than does proteolysis of unoxidized protein, a fact which supports the hypothesis that oxidation and proteolysis may be coupled to enhance the destructive effects of the inflammatory process. These results, in which digests of both oxidized and unmodified complement component C5 were evaluated, support the general concept that oxidation and proteolysis may participate cooperatively in amplifying both the severity and duration of the inflammatory reaction.
机译:由于严重的牙周炎的特征是伴随细胞浸润和微生物过度生长的急性炎症反应,血浆蛋白可能既暴露于粒细胞释放的蛋白酶和氧化剂,也暴露于微生物的蛋白酶。当人牙龈卟啉单胞菌的半胱氨酸蛋白酶(即gingipain-R和gingipain-K)消化人补体成分C5时,观察到C5分子的裂解有限。如果C5首先被羟基自由基氧化,则这些姜黄素将修饰的C5转化为片段,与未修饰的C5的消化物相比,片段具有明显更高的促炎活性。与未氧化的C5消化物的活性相比,在由gingipain-R切割氧化的C5后,消化物显示出人多形核白细胞(PMN)的中性粒细胞酶释放和趋化性明显增加。 Gingipain-K几乎不会从C5产生人类PMN的极化或趋化活性,也不会受到这些C5消化物刺激的酶释放。然而,当氧化的C5被gingipain-K消化时,人类PMN受到极化,趋化性和酶释放的刺激,表明已经生成了活性片段。氧化的C5的蛋白水解比未氧化的蛋白的蛋白水解引起更大的嗜中性粒细胞活化,这一事实支持以下假设:氧化和蛋白水解可能结合以增强炎症过程的破坏性作用。这些结果评估了氧化和未修饰的补体成分C5的消化,支持了氧化和蛋白水解可以协同参与放大炎症反应的严重程度和持续时间的一般概念。

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