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首页> 外文期刊>Pathogens and disease[electronic] >CNF1-like deamidase domains: common Lego bricks among cancer-promoting immunomodulatory bacterial virulence factors
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CNF1-like deamidase domains: common Lego bricks among cancer-promoting immunomodulatory bacterial virulence factors

机译:CNF1-like脱酰胺酶域:常见的乐高积木在促进免疫调节细菌毒力因子

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摘要

Alterations of the cellular proteome over time due to spontaneous or toxin-mediated enzymatic deamidation of glutamine (Gin) and asparagine (Asn) residues contribute to bacterial infection and might represent a source of aging-related diseases. Here, we put into perspective what is known about the mode of action of the CNF1 toxin from pathogenic Escherichia coil, a paradigm of bacterial deamidases that activate Rho GTPases, to illustrate the importance of determining whether exposure to these factors are risk factors in the etiology age-related diseases, such as cancer. In particular, through in silico analysis of the distribution of the CNF1-like deamidase active site Gly-Cys-(Xaa)n-His sequence motif in bacterial genomes, we unveil the wide distribution of the super-family of CNF-like toxins and CNF-like deamidase domains among members of the Enterobacteriacae and in association with a large variety of toxin delivery systems. We extent our discussion with recent findings concerning cellular systems that control activated Rac1 GTPase stability and provide protection against cancer. These findings point to the urgency for developing holistic approaches toward personalized medicine that include monitoring for asymptomatic carriage of pathogenic toxin-producing bacteria and that ultimately might lead to improved public health and increased lifespans.
机译:随着时间的推移改变细胞的蛋白质组自发或toxin-mediated酶脱氨基的谷氨酰胺(杜松子酒)和天冬酰胺(Asn)残留导致细菌感染和可能代表体内的来源疾病。知道CNF1毒素的作用方式致病性大肠杆菌的范式细菌脱酰胺酶激活ρgtpase,为了说明决定的重要性是否风险暴露于这些因素因素的病因与年龄相关的疾病,比如癌症。CNF1-like的分布分析(脱酰胺酶活性部位Gly-Cys) - Xaa他序列主题在细菌基因组,我们推出的宽CNF-like super-family的分布毒素和CNF-like脱酰胺酶域之间Enterobacteriacae和成员与各种各样的毒素交付系统。最近发现关于蜂窝系统激活Rac1 GTPase稳定和控制提供预防癌症。指出开发整体的紧迫性方法对个性化医疗包括运输监测无症状产生毒素致病细菌最终可能导致改善公共卫生并增加寿命。

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