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Extended Cleavage Specificity of Human Neutrophil Elastase Human Proteinase 3 and Their Distant Ortholog Clawed Frog PR3—Three Elastases With Similar Primary but Different Extended Specificities and Stability

机译:人类嗜中性粒细胞弹性蛋白酶人类蛋白酶3及其遥远的直系同源物爪蛙PR3的延伸切割特异性—三种具有相同主要但延伸特异性和稳定性不同的弹性蛋白酶

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摘要

Serine proteases are major granule constituents of several of the human hematopoietic cell lineages. Four proteolytically active such proteases have been identified in human neutrophils: cathepsin G (hCG), N-elastase (hNE), proteinase 3 (hPR-3), and neutrophil serine protease 4 (hNSP-4). Here we present the extended cleavage specificity of two of the most potent and most abundant of these enzymes, hNE and hPR-3. Their extended specificities were determined by phage display and by the analysis of a panel of chromogenic and recombinant substrates. hNE is an elastase with a relatively broad specificity showing a preference for regions containing several aliphatic amino acids. The protease shows self-cleaving activity, which results in the loss of activity during storage even at +4°C. Here we also present the extended cleavage specificity of hPR-3. Compared with hNE, it shows considerably lower proteolytic activity. However, it is very stable, shows no self-cleaving activity and is actually more active in the presence of SDS, possibly by enhancing the accessibility of the target substrate. This enables specific analysis of hPR-3 activity even in the presence of all the other neutrophil enzymes with addition of 1% SDS. Neutrophils are the most abundant white blood cell in humans and one of the key players in our innate immune defense. The neutrophil serine proteases are very important for the function of the neutrophils and therefore also interesting from an evolutionary perspective. In order to study the origin and functional conservation of these neutrophil proteases we have identified and cloned an amphibian ortholog, Xenopus PR-3 (xPR-3). This enzyme was found to have a specificity very similar to hPR-3 but did not show the high stability in the presence of SDS. The presence of an elastase in Xenopus closely related to hPR-3 indicates a relatively early appearance of these enzymes during vertebrate evolution.
机译:丝氨酸蛋白酶是几种人类造血细胞谱系的主要颗粒成分。在人的嗜中性粒细胞中已鉴定出四种具有蛋白水解活性的蛋白酶:组织蛋白酶G(hCG),N-弹性蛋白酶(hNE),蛋白酶3(hPR-3)和嗜中性丝氨酸丝氨酸蛋白酶4(hNSP-4)。在这里,我们介绍了两种最有效和最丰富的酶hNE和hPR-3的扩展切割特异性。通过噬菌体展示以及一组显色和重组底物的分析来确定它们的延伸特异性。 hNE是具有相对宽泛的特异性的弹性蛋白酶,显示出对含有几个脂族氨基酸的区域的偏好。蛋白酶显示出自裂解活性,即使在+ 4°C下保存过程中也会失去活性。在这里,我们还介绍了hPR-3的扩展切割特异性。与hNE相比,它显示出较低的蛋白水解活性。但是,它非常稳定,没有自我裂解活性,并且在存在SDS的情况下实际上更具活性,可能是通过增强目标底物的可及性来实现的。即使添加了1%SDS,即使在所有其他中性粒细胞酶的存在下,这也可以对hPR-3活性进行特异性分析。中性粒细胞是人类中最丰富的白细胞,也是我们先天免疫防御的关键角色之一。中性粒细胞丝氨酸蛋白酶对于中性粒细胞的功能非常重要,因此从进化的角度来看也很有趣。为了研究这些嗜中性粒细胞蛋白酶的起源和功能保守性,我们鉴定并克隆了两栖直系同源物非洲爪蟾PR-3(xPR-3)。发现该酶具有与hPR-3非常相似的特异性,但是在SDS存在下没有显示出高稳定性。与hPR-3密切相关的非洲爪蟾中存在一种弹性蛋白酶,表明这些酶在脊椎动物进化过程中相对较早出现。

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