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首页> 外文期刊>FEBS Letters >Formation of a covalent Hg‐Cys‐bond during mercurial activation of PMNL procollagenase gives evidence of a cysteine‐switch mechanism
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Formation of a covalent Hg‐Cys‐bond during mercurial activation of PMNL procollagenase gives evidence of a cysteine‐switch mechanism

机译:在汞激活PMNL前胶原酶的过程中共价Hg-Cys键的形成提供了半胱氨酸转换机制的证据

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摘要

>A common method for the activation of mammalian matalloproteinases is the use of mercurial compounds. Activation of PMNL procollagenase by soluble mercurials takes place as a three-step mechanism with a final intermolecular loss of the PRCGVPD autoinhibitor region. In this study covalently bound mercury in the form of mercurial agarose was chosen to probe activation of PMNL procollagenase. Activation was not achieved, since the final intermolecular cleavage with removal of the PRCGVPD motif could not take place. An intermediate form of the enzyme was bound to the column. Its N-terminal sequence determination proved cleavage of the Asp64-Met65 peptide bond leaving the cysteine of the propeptide domain for covalent attachment to the mercurial agarose. This gives further evidence of a cysteine-switch mechanism involving Cys71.
机译:激活哺乳动物金属蛋白酶的常用方法是使用汞化合物。可溶性汞对PMNL前胶原酶的激活是一个三步机制,最终分子间丢失了PRCGVPD自抑制剂区域。在这项研究中,选择了以汞琼脂糖形式共价结合的汞来探测PMNL前胶原酶的激活。激活未实现,因为最终的分子间切割无法去除PRCGVPD基序。酶的中间形式与柱结合。其N端序列确定证明Asp 64 -Met 65 肽键的裂解使前肽结构域的半胱氨酸共价附接至汞琼脂糖上。这进一步证明了涉及Cys 71 的半胱氨酸转换机制。

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