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体外和感染实验模型中 Paeniclostridium sordellii 金属蛋白酶-1 的特性研究。

Characterization of Paeniclostridium sordellii Metalloproteinase-1 in vitro and in an experimental model of infection.

机构信息

Veterans Affairs Medical Center, Boise, ID, 83702, USA; Idaho Veterans Research and Education Foundation, Boise, ID, 83702, USA.

Veterans Affairs Medical Center, Boise, ID, 83702, USA; Idaho Veterans Research and Education Foundation, Boise, ID, 83702, USA; University of Washington School of Medicine, Seattle, WA, 98195, USA.

出版信息

Anaerobe. 2022 Oct;77:102468. doi: 10.1016/j.anaerobe.2021.102468. Epub 2021 Oct 22.

Abstract

OBJECTIVE

Paeniclostridium sordellii is a pathogen that causes rapidly fatal infections characterized by severe edema, extreme leukemoid reaction and lack of an innate immune response. We recently identified a metalloproteinase of P. sordellii-1 (Mcs1) that cleaves human vascular cell adhesion molecule 1, an adhesion molecule important to hematopoietic precursor retention and leukocyte diapedesis. In the current study, we further characterize Mcs1 activity and investigate its role in pathogenesis.

METHODS

Mcs1 peptide cleavage sequence and activity conditions were identified using a semi-quantitative fluorescence-based reporter assay. Additional host targets for Mcs1 protease activity were tested and confirmed by gel electrophoreses and western blots. Finally, Mcs1 knock out (ΔMcs1) and complemented (cMcs1) strains were developed for assessment in our animal model of myonecrosis.

RESULTS

Data show that Mcs1 prefers aliphatic amino acid residues, I or L, especially when adjacent to negatively charged or noncharged-polar residues. In vitro, Mcs1 cleaved or partially cleaved human cell adhesion molecules, E-selectin and intracellular adhesion molecule-1 (ICAM-1), and mediators of innate immune infection defense, complement protein-3 and antimicrobial peptide LL-37. In vivo, infection with the ΔMcs1 P. sordellii strain had little effect on animal survival, tissue destruction or circulating white blood cell counts compared to wild type and cMcs1 strains.

CONCLUSIONS

Similar to proteolytic virulence factors from other pathogens, Mcs1 is a promiscuous protease that cleaves multiple human-host factors. Despite minimal impact of Mcs1 on the murine model of P. sordellii infection, it is worth considering its role in humans and other animal models.

摘要

目的

类产芽梭菌是一种病原体,可引起迅速致命的感染,其特征为严重水肿、极度类白血病反应和缺乏先天免疫反应。我们最近鉴定了类产芽梭菌-1(Mcs1)的一种金属蛋白酶,它可切割人血管细胞黏附分子 1,这是一种对造血前体细胞保留和白细胞渗出很重要的黏附分子。在本研究中,我们进一步研究了 Mcs1 的活性及其在发病机制中的作用。

方法

使用半定量荧光报告测定法鉴定 Mcs1 肽裂解序列和活性条件。通过凝胶电泳和 Western 印迹测试和确认 Mcs1 蛋白酶活性的其他宿主靶标。最后,开发了 Mcs1 敲除(ΔMcs1)和互补(cMcs1)菌株,用于评估我们的肌肉坏死动物模型。

结果

数据表明,Mcs1 偏爱脂肪族氨基酸残基,I 或 L,尤其是当与带负电荷或不带电荷的极性残基相邻时。在体外,Mcs1 可切割或部分切割人细胞黏附分子,E-选择素和细胞间黏附分子-1(ICAM-1),以及先天免疫感染防御的介质,补体蛋白-3 和抗菌肽 LL-37。在体内,与野生型和 cMcs1 菌株相比,感染ΔMcs1 类产芽梭菌菌株对动物存活率、组织破坏或循环白细胞计数几乎没有影响。

结论

与其他病原体的蛋白水解毒力因子相似,Mcs1 是一种混杂的蛋白酶,可切割多种人源宿主因子。尽管 Mcs1 对 P. sordellii 感染的小鼠模型影响很小,但值得考虑其在人类和其他动物模型中的作用。

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