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首页> 外文期刊>Infection and immunity >An Extracellular Protease of Streptococcus gordonii Hydrolyzes Type IV Collagen and Collagen Analogues
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An Extracellular Protease of Streptococcus gordonii Hydrolyzes Type IV Collagen and Collagen Analogues

机译:戈登链球菌的胞外蛋白酶水解IV型胶原蛋白和胶原蛋白类似物

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Streptococcus gordonii is a frequent cause of infective bacterial endocarditis, but its mechanisms of virulence are not well defined. In this study, streptococcal proteases were recovered from spent chemically defined medium (CDM) and fractionated by ammonium sulfate precipitation and by ion-exchange and gel filtration column chromatography. Three proteases were distinguished by their different solubilities in ammonium sulfate and their specificities for synthetic peptides. One of the enzymes cleaved collagen analogs Gly-Pro 4-methoxy-β-naphthylamide, 2-furanacryloyl-Leu-Gly-Pro-Ala (FALGPA), and p-phenylazobenzyloxycarbonyl-Pro-Leu-Gly-Pro-Arg (pZ-peptide) and was released from the streptococci while complexed to peptidoglycan fragments. Treatment of this protease with mutanolysin reduced its 180- to 200-kDa mass to 98 kDa without loss of enzymatic activity. The purified protease cleaved bovine gelatin, human placental type IV collagen, and the Aα chain of fibrinogen but not albumin, fibronectin, laminin, or myosin. Enzyme activity was inhibited by phenylmethylsulfonyl fluoride, indicating that it is a serine-type protease. Maximum production of the 98-kDa protease occurred during growth of S. gordonii CH1 in CDM containing 0.075% total amino acids at pH 7.0 with minimal aeration. Higher initial concentrations of amino acids prevented the release of the protease without reducing cell-associated enzyme levels, and the addition of an amino acid mixture to an actively secreting culture stopped further enzyme release. The purified protease was stored frozen at ?20°C for several months or heated at 50°C for 10 min without loss of activity. These data indicate that S. gordonii produces an extracellular gelatinase/type IV collagenase during growth in medium containing minimal concentrations of free amino acids. Thus, the extracellular enzyme is a potential virulence factor in the amino acid-stringent, thrombotic, valvular lesions of bacterial endocarditis.
机译:戈登链球菌是细菌性细菌性心内膜炎的常见病因,但其毒力机制尚不明确。在这项研究中,链球菌蛋白酶从废化学成分确定的培养基(CDM)中回收,并通过硫酸铵沉淀,离子交换和凝胶过滤柱色谱法进行分离。三种蛋白酶的区别在于它们在硫酸铵中的溶解度不同以及它们对合成肽的特异性。一种酶裂解了胶原类似物Gly-Pro 4-甲氧基-β-萘酰胺,2-呋喃丙烯酰基-Leu-Gly-Pro-Ala(FALGPA)和 p -苯基偶氮苄氧基羰基-Pro-Leu-Gly -Pro-Arg(pZ-肽),并与链聚糖片段复合时从链球菌中释放出来。用变溶菌素处理该蛋白酶可将其180-200kDa的质量减少到98kDa,而不会损失酶活性。纯化的蛋白酶切割牛明胶,人胎盘IV型胶原和纤维蛋白原的Aα链,但不切割白蛋白,纤连蛋白,层粘连蛋白或肌球蛋白。苯甲基磺酰氟抑制了酶的活性,表明它是一种丝氨酸型蛋白酶。 98 kDa蛋白酶的最大产量出现在 S的生长过程中。 CDM中的戈登氏CH1含有0.075%的总氨基酸,pH 7.0时通气最少。较高的初始氨基酸浓度会阻止蛋白酶的释放,而不会降低细胞相关酶的水平,并且向主动分泌的培养物中添加氨基酸混合物会阻止酶的进一步释放。纯化的蛋白酶在约20°C下冷冻保存数月,或在50°C加热10分钟而不会失去活性。这些数据表明 S。戈登氏菌在含有最低浓度的游离氨基酸的培养基中生长期间会产生细胞外明胶酶/ IV型胶原酶。因此,细胞外酶是细菌性心内膜炎的氨基酸严格,血栓形成,瓣膜病变中的潜在毒力因子。

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