首页> 外文期刊>Molecular Microbiology >The structure of the catalytic domain of Tannerella forsythia karilysin reveals it is a bacterial xenologue of animal matrix metalloproteinases.
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The structure of the catalytic domain of Tannerella forsythia karilysin reveals it is a bacterial xenologue of animal matrix metalloproteinases.

机译:Tannerella forsythia kallysin催化结构域的结构表明,它是动物基质金属蛋白酶的细菌异种。

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Metallopeptidases (MPs) are among virulence factors secreted by pathogenic bacteria at the site of infection. One such pathogen is Tannerella forsythia, a member of the microbial consortium that causes peridontitis, arguably the most prevalent infective chronic inflammatory disease known to mankind. The only reported MP secreted by T. forsythia is karilysin, a 52 kDa multidomain protein comprising a central 18 kDa catalytic domain (CD), termed Kly18, flanked by domains unrelated to any known protein. We analysed the 3D structure of Kly18 in the absence and presence of Mg(2+) or Ca(2+) , which are required for function and stability, and found that it evidences most of the structural features characteristic of the CDs of mammalian matrix metalloproteinases (MMPs). Unexpectedly, a peptide was bound to the active-site cleft of Kly18 mimicking a left-behind cleavage product, which revealed that the specificity pocket accommodates bulky hydrophobic side-chains of substrates as in mammalian MMPs. In addition, Kly18 displayed a unique Mg(2+) or Ca(2+) binding site and two flexible segments that could play a role in substrate binding. Phylogenetic and sequence similarity studies revealed that Kly18 is evolutionarily much closer to winged-insect and mammalian MMPs than to potential bacterial counterparts found by genomic sequencing projects. Therefore, we conclude that this first structurally characterized non-mammalian MMP is a xenologue co-opted through horizontal gene transfer during the intimate coexistence between T. forsythia and humans or other animals, in a very rare case of gene shuffling from eukaryotes to prokaryotes. Subsequently, this protein would have evolved in a bacterial environment to give rise to full-length karilysin that is furnished with unique flanking domains that do not conform to the general multidomain architecture of animal MMPs.
机译:金属肽酶(MPs)是由感染部位的病原细菌分泌的毒力因子之一。一种这样的病原体是连翘菌,它是引起牙周炎的微生物联盟的成员,牙周炎可以说是人类已知的最普遍的传染性慢性炎性疾病。连翘属植物分泌的唯一被报道的MP是karilysin,这是一种52 kDa的多域蛋白,包含一个称为Kly18的中央18 kDa催化域(CD),其侧翼是与任何已知蛋白质均不相关的域。我们分析了功能和稳定性所需的Mg(2+)或Ca(2+)缺失和存在下Kly18的3D结构,发现它证明了哺乳动物基质CD的大部分结构特征金属蛋白酶(MMP)。出乎意料的是,一个肽被绑定到Kly18的活性位点裂口,模仿了一个左侧的裂解产物,这揭示了特异性口袋像哺乳动物MMP一样容纳了基质的庞大疏水性侧链。此外,Kly18展示了一个独特的Mg(2+)或Ca(2+)结合位点,以及两个可以在底物结合中发挥作用的柔性片段。系统发育和序列相似性研究表明,与基因组测序项目发现的潜在细菌对应物相比,Kly18在进化上更接近有翅昆虫和哺乳动物MMP。因此,我们得出的结论是,在结构上从真核生物到原核生物的极少见的情况下,连翘在连翘属植物和人类或其他动物之间紧密共存的过程中,是通过水平基因转移而被选为第一种具有结构特征的非哺乳动物MMP。随后,该蛋白将在细菌环境中进化,从而产生全长的karallysin,该蛋白具有独特的侧翼结构域,与动物MMP的一般多结构域结构不符。

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