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Identification of high molecular weight serine-proteases in Loxosceles intermedia (brown spider) venom

机译:中间蛇纹(棕蜘蛛)毒液中高分子量丝氨酸蛋白酶的鉴定

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High molecular weight serine-proteases have been identified in Loxosceles intermedia (brown spider) venom. The mechanism by which Loxosceles spp venoms cause dermonecrotic injury (a hallmark of loxoscelism) is currently under investigation, but it seems to be molecularly complex and in some instance proteases might be expected to play a role in this skin lesion. In the present investigation, when we submitted L. intermedia venom to linear gradient 3-20% SDS-PAGE stained by a monochromatic silver method we detected a heterogeneous protein profile in molecular weight, ranging from 850- to 5-kDa. In an attempt to detect zymogen molecules of proteolytic enzymes, venom aliquots were treated with several exogenous proteases. Among them, trypsin activated two gelatinolytic molecules of 85- and 95-kDa in the venom. In experiments of hydrolysis inactivation using different protease inhibitors for four major class of proteases, we detected that only serine-type protease inhibitors were able to inactivate the 85- and 95-kDa enzymes in the venom. An examination of the 85- and 95-kDa gelatinolytic activities as a function of pH showed that these proteases had no apparent activities at pH below 5.0 and higher than 9.0 and displayed little activity at pH 6.0, with the optimal pH for their activities ranging from 7.0 to 8.0. Evaluation of the functional specificities of the 85- and 95-kDa venom proteases showed that these proteases efficiently degrade gelatin (denatured collagen) but have no proteolytic activity on hemoglobin, immunoglobulin, albumin, fibrinogen or laminin, suggesting specificity of their proteolytic actions. We describe here two serine-proteases activities in L. intermedia venom probably involved in the harmful effects of the venom. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 31]
机译:在中间Loxosceles intermedia(棕色蜘蛛)毒液中已鉴定出高分子量丝氨酸蛋白酶。目前正在研究食蟹猴属蛇毒引起的皮肤坏死性损伤(食尸症的标志)的机制,但它似乎是分子复杂的,在某些情况下,蛋白酶可能在这种皮肤病变中起作用。在本研究中,当我们将中间乳酸杆菌毒液呈线性梯度(通过单色银法染色)的3-20%SDS-PAGE染色时,我们检测到分子量范围从850kDa至5kDa的异质蛋白谱。为了检测蛋白水解酶的酶原分子,用几种外源蛋白酶处理了毒液等分试样。其中,胰蛋白酶激活了毒液中两个分别为85kDa和95kDa的明胶分解分子。在对四种主要蛋白酶使用不同蛋白酶抑制剂的水解失活实验中,我们检测到只有丝氨酸型蛋白酶抑制剂才能使毒液中的85-和95-kDa酶失活。考察85kDa和95kDa的明胶分解酶活性与pH的关系,结果表明这些蛋白酶在pH低于5.0且高于9.0时无明显活性,在pH 6.0时几乎没有活性,最佳pH值范围为7.0至8.0。对85-kDa和95-kDa毒液蛋白酶的功能特异性的评估表明,这些蛋白酶可有效降解明胶(变性胶原蛋白),但对血红蛋白,免疫球蛋白,白蛋白,纤维蛋白原或层粘连蛋白没有蛋白水解活性,表明它们的蛋白水解作用具有特异性。我们在这里描述了中间乳杆菌毒液中的两种丝氨酸蛋白酶活性,这可能与毒液的有害作用有关。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:31]

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