首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >Structure of the catalytic domain of the Tannerella forsythia matrix metallopeptidase karilysin in complex with a tetrapeptidic inhibitor
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Structure of the catalytic domain of the Tannerella forsythia matrix metallopeptidase karilysin in complex with a tetrapeptidic inhibitor

机译:与四肽抑制剂配合的丹氏菌连翘基质金属肽酶加里净的催化结构域

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摘要

Karilysin is the only metallopeptidase identified as a virulence factor in the odontopathogen Tannerella forsythia owing to its deleterious effect on the host immune response during bacterial infection. The very close structural and sequence-based similarity of its catalytic domain (Kly18) to matrix metallo­proteinases suggests that karilysin was acquired by horizontal gene transfer from an animal host. Previous studies by phage display identified peptides with the consensus sequence XWFPXXXGGG (single-letter amino-acid codes; X represents any residue) as karilysin inhibitors with low-micromolar binding affinities. Subsequent refinement revealed that inhibition comparable to that of longer peptides could be achieved using the tetrapeptide SWFP. To analyze its binding, the high-resolution crystal structure of the complex between Kly18 and SWFP was determined and it was found that the peptide binds to the primed side of the active-site cleft in a substrate-like manner. The catalytic zinc ion is clamped by the α-amino group and the carbonyl O atom of the serine, thus distantly mimicking the general manner of binding of hydroxamate inhibitors to metallopeptidases and contributing, together with three zinc-binding histidines from the protein scaffold, to an octahedral-minus-one metal-coordination sphere. The tryptophan side chain penetrates the deep partially water-filled specificity pocket of Kly18. Together with previous serendipitous product complexes of Kly18, the present results provide the structural determinants of inhibition of karilysin and open the field for the design of novel inhibitory strategies aimed at the treatment of human periodontal disease based on a peptidic hit molecule.
机译:由于在细菌感染过程中它对宿主免疫反应具有有害作用,因此,加里叶菌素是唯一被鉴定为牙本质病原单胞菌连翘中毒力因子的金属肽酶。其催化结构域(Kly18)与基质金属蛋白酶的结构和基于序列的相似性非常接近,表明通过从动物宿主中进行水平基因转移获得了karysin。噬菌体的先前研究显示了具有共有序列XWFPXXXGGG(单字母氨基酸代码; X代表任何残基)的肽,是具有低微摩尔结合亲和力的卡里辛抑制剂。随后的改进表明,使用四肽SWFP可以实现与更长肽相当的抑制作用。为了分析其结合,测定了Kly18和SWFP之间的复合物的高分辨率晶体结构,发现该肽以底物样方式结合至活性部位裂口的引发侧。催化性锌离子被丝氨酸的α-氨基和羰基O原子夹住,因此远距离模仿了异羟肟酸酯抑制剂与金属肽酶的一般结合方式,并与蛋白质支架中的三种锌结合组氨酸一起,共同形成了八面体减一金属配位球。色氨酸侧链穿透Kly18的深处部分充满水的特异性口袋。连同先前的Kly18的偶然产物复合物,目前的结果提供了抑制karysin的结构决定因素,并为设计新型的基于肽命中分子的人牙周疾病的抑制策略设计开辟了领域。

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