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三效溶菌酶治疗耐药及细胞内金黄色葡萄球菌感染

Triple-acting Lytic Enzyme Treatment of Drug-Resistant and Intracellular Staphylococcus aureus.

作者信息

Becker Stephen C, Roach Dwayne R, Chauhan Vinita S, Shen Yang, Foster-Frey Juli, Powell Anne M, Bauchan Gary, Lease Richard A, Mohammadi Homan, Harty William J, Simmons Chad, Schmelcher Mathias, Camp Mary, Dong Shengli, Baker John R, Sheen Tamsin R, Doran Kelly S, Pritchard David G, Almeida Raul A, Nelson Daniel C, Marriott Ian, Lee Jean C, Donovan David M

机构信息

ARS, USDA, 10300 Baltimore Ave, Beltsville, MD, USA.

Biology, Univ. North Carolina, Charlotte, Charlotte, NC, USA.

出版信息

Sci Rep. 2016 Apr 28;6:25063. doi: 10.1038/srep25063.

Abstract

Multi-drug resistant bacteria are a persistent problem in modern health care, food safety and animal health. There is a need for new antimicrobials to replace over used conventional antibiotics. Here we describe engineered triple-acting staphylolytic peptidoglycan hydrolases wherein three unique antimicrobial activities from two parental proteins are combined into a single fusion protein. This effectively reduces the incidence of resistant strain development. The fusion protein reduced colonization by Staphylococcus aureus in a rat nasal colonization model, surpassing the efficacy of either parental protein. Modification of a triple-acting lytic construct with a protein transduction domain significantly enhanced both biofilm eradication and the ability to kill intracellular S. aureus as demonstrated in cultured mammary epithelial cells and in a mouse model of staphylococcal mastitis. Interestingly, the protein transduction domain was not necessary for reducing the intracellular pathogens in cultured osteoblasts or in two mouse models of osteomyelitis, highlighting the vagaries of exactly how protein transduction domains facilitate protein uptake. Bacterial cell wall degrading enzyme antimicrobials can be engineered to enhance their value as potent therapeutics.

摘要

多重耐药菌在现代医疗保健、食品安全和动物健康领域一直是个难题。需要新型抗菌药物来取代过度使用的传统抗生素。在此,我们描述了工程化的三效葡萄球菌溶菌肽聚糖水解酶,其中来自两种亲本蛋白的三种独特抗菌活性被组合成一种单一融合蛋白。这有效地降低了耐药菌株产生的发生率。在大鼠鼻腔定植模型中,该融合蛋白减少了金黄色葡萄球菌的定植,其效果超过了任一亲本蛋白。用蛋白转导结构域修饰三效溶菌构建体,显著增强了生物膜清除能力以及杀死细胞内金黄色葡萄球菌的能力,这在培养的乳腺上皮细胞和金黄色葡萄球菌乳腺炎小鼠模型中得到了证实。有趣的是,在培养的成骨细胞或两种骨髓炎小鼠模型中,减少细胞内病原体并不需要蛋白转导结构域,这凸显了蛋白转导结构域促进蛋白摄取的确切机制的变幻莫测。细菌细胞壁降解酶类抗菌药物可以通过工程改造来提高其作为有效治疗药物的价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fc6/4848530/8ddf0c7ceeb5/srep25063-f1.jpg

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