首页> 外文期刊>Insect Biochemistry and Molecular Biology >Re-examination of a alpha-chymotrypsin-solubilized laccase in the pupal cuticle of the silkworm, Bombyx mori: Insights into the regulation system for laccase activation during the ecdysis process
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Re-examination of a alpha-chymotrypsin-solubilized laccase in the pupal cuticle of the silkworm, Bombyx mori: Insights into the regulation system for laccase activation during the ecdysis process

机译:家蚕Bo表皮中α-胰凝乳蛋白酶溶解的漆酶的重新检测:洞察过程中对漆酶激活调控系统的见解

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The laccase in the pupal cuticle of the silkworm, Bombyx mori, is thought to accumulate as an inactive precursor that can be activated stage-dependently. In this study we isolated an 81-kDa laccase from cuticular extract of B. mori that was prepared by digestion of the pupal cuticles with alpha-chymotrypsin. The mass spectrometric analysis of the purified protein indicates that this 81-kDa laccase is a product of the Bombyx laccase2 gene. The purified 81-kDa laccase (alpha-chymotrypsin-solubilized Bombyx laccase2: Bm-clac2) has an N-terminal sequence of RNPADS that corresponds to Arg(146) to Ser(151) of the deduced protein sequence of Bmlaccase2 cDNA, indicating that Bm-clac2 lacks the N-terminal part upstream from residue Arg(146). Bm-clac2 shows enzymatic activity, but its specific activity is increased around 17-fold after treatment with trypsin, which involves cleavage of peptide bonds at the C-terminal region. We also found that the activity of Bm-clac2 is increased in the presence of isopropanol. In previous reports, proteolytic processing has been hypothesized as a system for laccase activation in vivo, but the present result implies that this type of processing is not the only way to convert Bm-clac2 to the high-activity enzyme. (C) 2014 Elsevier Ltd. All rights reserved.
机译:家蚕的cut表皮中的漆酶被认为是可以作为阶段性活化的无活性前体而积累的。在这项研究中,我们从桑蚕的表皮提取物中分离出了一个81 kDa的漆酶,该漆酶是用α-胰凝乳蛋白酶消化the的表皮而制备的。纯化蛋白的质谱分析表明,该81 kDa漆酶是Bombyx laccase2基因的产物。纯化的81-kDa漆酶(α-胰凝乳蛋白酶溶解的Bombyx漆酶2:Bm-clac2)具有RNPADS的N端序列,对应于Bmlaccase2 cDNA推导的蛋白质序列的Arg(146)至Ser(151)。 Bm-clac2在残基Arg(146)的上游缺少N端部分。 Bm-clac2具有酶促活性,但是用胰蛋白酶处理后其比活性增加了约17倍,这涉及C端区域的肽键断裂。我们还发现在异丙醇存在下,Bm-clac2的活性增加。在以前的报道中,蛋白水解加工被假设为体内漆酶激活的系统,但是目前的结果表明这种加工不是将Bm-clac2转化为高活性酶的唯一途径。 (C)2014 Elsevier Ltd.保留所有权利。

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