首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Lipopolysaccharide causes Sp1 protein degradation by inducing a unique trypsin-like serine protease in rat lungs
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Lipopolysaccharide causes Sp1 protein degradation by inducing a unique trypsin-like serine protease in rat lungs

机译:脂多糖通过在大鼠肺中诱导独特的胰蛋白酶样丝氨酸蛋白酶而导致Sp1蛋白降解

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摘要

We have previously demonstrated that challenge of rat or mice with lipopolysaccharide (LPS) in vivo promotes Sp1 protein degradation. The protease responsible for the LPS-induced Sp1 degradation has not been identified. In this study, we have identified, characterized and partially purified an LPS-inducible Sp1-degrading enzyme (LISPIDE) activity from rat lungs. LISPIDE activity selectively degraded Sp1, but not nuclear protein, C-fos, p65, I-kappa B alpha and protein actin. Nuclear extract contains approximately 14-fold of the LISPDE activity as that detected in cytoplasmic extract, suggesting that LISPDE is predominantly a nuclear protease. Using biochemical reagents, protease inhibitors and peptide substrates, we have characterized the LISPDE activity. Based on biochemical characteristics, inhibitor profile, and substrate specificity, we have shown that LISPDE activity is not 26S proteasome, caspase or cathepsin-like activity, but is a trypsin-like serine protease activity. Using soybean trypsin inhibitor (SBTI)-sepharose affinity column, we have partially purified the LISPDE protein, which has an estimated molecular mass of 33 kDa and selectively degrades native Sp1 protein. We mapped the initial site for proteolytic cleavage of Sp1 by LISPDE to be located within the region between amino acids 181-328. We conclude that LPS causes Sp1 degradation by inducing a unique trypsin-like serine protease, LISPDE. (c) 2006 Elsevier B.V. All rights reserved.
机译:我们以前已经证明,在体内用脂多糖(LPS)攻击大鼠或小鼠会促进Sp1蛋白降解。尚未确定负责LPS诱导的Sp1降解的蛋白酶。在这项研究中,我们从大鼠肺中鉴定,表征并部分纯化了LPS诱导的Sp1降解酶(LISPIDE)活性。 LISPIDE活性选择性降解Sp1,但不降解核蛋白,C-fos,p65,I-κB alpha和蛋白肌动蛋白。核提取物包含的LISPDE活性约为在细胞质提取物中检测到的14倍,这表明LISPDE主要是核蛋白酶。使用生化试剂,蛋白酶抑制剂和肽底物,我们表征了LISPDE的活性。基于生化特征,抑制剂谱和底物特异性,我们已经证明LISPDE活性不是26S蛋白酶体,半胱天冬酶或组织蛋白酶样活性,而是胰蛋白酶样丝氨酸蛋白酶活性。使用大豆胰蛋白酶抑制剂(SBTI)-琼脂糖亲和柱,我们已部分纯化LISPDE蛋白,该蛋白的估计分子量为33 kDa,并选择性降解天然Sp1蛋白。我们绘制了由LISPDE进行Sp1蛋白水解切割的初始位点,位于氨基酸181-328之间。我们得出结论,LPS通过诱导独特的胰蛋白酶样丝氨酸蛋白酶LISPDE导致Sp1降解。 (c)2006 Elsevier B.V.保留所有权利。

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