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首页> 外文期刊>The Journal of biological chemistry >Myroilysin Is a New Bacterial Member of the M12A Family of Metzincin Metallopeptidases and Is Activated by a Cysteine Switch Mechanism
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Myroilysin Is a New Bacterial Member of the M12A Family of Metzincin Metallopeptidases and Is Activated by a Cysteine Switch Mechanism

机译:Myroilysin是Metzincin Metallopeptidases M12A家族的新细菌成员,并被半胱氨酸转换机制激活

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Proteases play important roles in all living organisms and also have important industrial applications. Family M12A metalloproteases, mainly found throughout the animal kingdom, belong to the metzincin protease family and are synthesized as inactive precursors. So far, only flavastacin and myroilysin, isolated from bacteria, were reported to be M12A proteases, whereas the classification of myroilysin is still unclear due to the lack of structural information. Here, we report the crystal structures of pro-myroilysin from bacterium Myroides sp. cslb8. The catalytic zinc ion of pro-myroilysin, at the bottom of a deep active site, is coordinated by three histidine residues in the conserved motif HEXXHXXGXXH; the cysteine residue in the pro-peptide coordinates the catalytic zinc ion and inhibits myroilysin activity. Structure comparisons revealed that myroilysin shares high similarity with the members of the M12A, M10A, and M10B families of metalloproteases. However, a unique “cap” structure tops the active site cleft in the structure of pro-myroilysin, and this “cap” structure does not exist in the above structure-reported subfamilies. Further structure-based sequence analysis revealed that myroilysin appears to belong to the M12A family, but pro-myroilysin uses a “cysteine switch” activation mechanism with a unique segment, including the conserved cysteine residue, whereas other reported M12A family proteases use an “aspartate switch” activation mechanism. Thus, our results suggest that myroilysin is a new bacterial member of the M12A family with an exceptional cysteine switch activation mechanism. Our results shed new light on the classification of the M12A family and may suggest a divergent evolution of the M12 family.
机译:蛋白酶在所有生物中都起着重要的作用,并且在工业上也有重要的应用。 M12A族金属蛋白酶主要存在于动物界,属于metzincin蛋白酶家族,被合成为无活性的前体。到目前为止,据报道只有从细菌中分离出的弗拉伐他汀和髓鞘溶解素是M12A蛋白酶,而由于缺乏结构信息,髓鞘溶解素的分类仍然不清楚。在这里,我们报告了细菌Myroides sp。的前髓鞘溶素的晶体结构。 cslb8。在深度活性位点的底部,原myroilysin的催化锌离子与保守基序HEXXHXXGXXH中的三个组氨酸残基配位。前肽中的半胱氨酸残基与催化的锌离子配位并抑制髓鞘溶素的活性。结构比较显示,myroilysin与金属蛋白酶M12A,M10A和M10B家族成员具有高度相似性。但是,独特的“帽”结构位于促髓鞘溶素原结构的活性位点顶部,并且在上述结构报告的亚家族中不存在这种“帽”结构。进一步的基于结构的序列分析表明,myroilysin似乎属于M12A家族,但pro-myroilysin使用“半胱氨酸开关”激活机制具有独特的区段,包括保守的半胱氨酸残基,而其他报道的M12A家族蛋白酶使用“天冬氨酸”开关”激活机制。因此,我们的结果表明,myroilysin是M12A家族的一个新细菌,具有出色的半胱氨酸开关激活机制。我们的结果为M12A家族的分类提供了新的思路,并可能暗示了M12家族的不同发展。

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