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Sulfur mustard-stimulated proteases and their inhibitors in a cultured normal human epidermal keratinocytes model: A potential approach for anti-vesicant drug development

机译:正常人表皮角质形成细胞模型中硫芥子刺激的蛋白酶及其抑制剂:抗皱纹药物开发的潜在方法

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摘要

Protease stimulation in cultured normal human epidermal keratinocytes (NHEK) due to sulfur mustard (SM) exposure is well documented. However, the specific protease(s) stimulated by SM and the protease substrates remain to be determined. In this study, we observed that SM stimulates several proteases and the epidermal-dermal attachment protein laminin-5 is one of the substrates. We propose that following SM exposure of the skin, laminin-5 degradation causes the detachment of the epidermis from the dermis and, therefore, vesication. We utilized gelatin zymography, Western blotting, immuno-fluorescence staining, and real-time polymerase chain reaction (RT-PCR) analyses to study the SM-stimulated proteases and laminin-5 degradation in NHEK. Two major protease bands (64 kDa and 72 kDa) were observed by zymography in SM-exposed cells. Addition of serine protease inhibitor (aprotinin, 100 μM), or the metalloprotease inhibitor (amastatin, 100 μM) to NHEK cultures prior to SM exposure decreased the SM-stimulated protease bands seen by zymography. These inhibitors completely or partially prevented SM-induced laminin-5 γ2 degradation as seen by Western blotting as well as immuno-fluorescence staining. Our results from Western blotting and RT-PCR studies also indicated that the membrane-type matrix metalloproteinase-1 (MT-MM-1) may be involved in SM-induced skin blistering.To summarize, our results in the NHEK model indicate the following: (a) SM stimulates multiple proteases including serine protease(s), and metalloproteases; (b) SM decreases the level of laminin-5 γ2, which is prevented by either a serine protease inhibitor or a metalloprotease inhibitor and (c) MT-MMP-1 maybe one of the proteases that is involved in skin blistering due to SM exposure.
机译:充分证明了由于硫芥子油(SM)暴露,培养的正常人表皮角质形成细胞(NHEK)中的蛋白酶刺激作用。然而,由SM和蛋白酶底物刺激的一种或多种特定蛋白酶仍有待确定。在这项研究中,我们观察到SM刺激了几种蛋白酶,而表皮-表皮附着蛋白层粘连蛋白5是底物之一。我们建议在皮肤接触SM后,层粘连蛋白5降解会导致表皮从真皮上脱离,从而引起囊泡。我们利用明胶酶谱,Western印迹,免疫荧光染色和实时聚合酶链反应(RT-PCR)分析来研究SM刺激的蛋白酶和层粘连蛋白5在NHEK中的降解。通过酶切法在暴露于SM的细胞中观察到两个主要的蛋白酶带(64 kDa和72 kDa)。在SM暴露之前向NHEK培养物中添加丝氨酸蛋白酶抑制剂(抑肽酶100μM)或金属蛋白酶抑制剂(amastatin,100μM)会降低酶法观察到的SM刺激的蛋白酶带。这些抑制剂可完全或部分阻止SM诱导的层粘连蛋白5γ2降解,如Western印迹和免疫荧光染色所示。我们的Western印迹和RT-PCR研究结果还表明,膜型基质金属蛋白酶-1(MT-MM-1)可能与SM诱导的皮肤起泡有关。总而言之,我们在NHEK模型中的结果表明以下几点:(a)SM刺激多种蛋白酶,包括丝氨酸蛋白酶和金属蛋白酶; (b)SM降低了层粘连蛋白5γ2的水平,丝氨酸蛋白酶抑制剂或金属蛋白酶抑制剂可防止这种情况;(c)MT-MMP-1可能是由于暴露于SM而导致皮肤起泡的蛋白酶之一。

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