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新物种金氏金葡菌的基因组学:诊断问题和 RTX 毒素编码基因座的鉴定。

Genomics of the new species Kingella negevensis: diagnostic issues and identification of a locus encoding a RTX toxin.

机构信息

Institute of Microbiology, University Hospital of Lausanne, Lausanne, Switzerland.

Institute of Microbiology, University Hospital of Lausanne, Lausanne, Switzerland.

出版信息

Microbes Infect. 2017 Nov;19(11):546-552. doi: 10.1016/j.micinf.2017.08.001. Epub 2017 Aug 10.

Abstract

Kingella kingae, producing the cytotoxic RTX protein, is a causative agent of serious infections in humans such as bacteremia, endocarditis and osteoarticular infection, especially in young children. Recently, Kingella negevensis, a related species, has been isolated from the oral cavity of healthy children. In this study, we report the isolation of K. negevensis strain eburonensis, initially misidentified as K. kingae with MALDI-TOF MS, from a vaginal specimen of a patient suffering of vaginosis. The genome sequencing and analysis of this strain together with comparative genomics of the Kingella genus revealed that K. negevensis possesses a full homolog of the rtx operon of K. kingae involved in the synthesis of the RTX toxin. We report that a K. kingae specific diagnostic PCR, based on the rtxA gene, was positive when tested on K. negevensis strain eburonensis DNA. This cross-amplification, and risk of misidentification, was confirmed by in silico analysis of the target gene sequence. To overcome this major diagnostic issue we developed a duplex real-time PCR to detect and distinguish K. kingae and K. negevensis. In addition to this, the identification of K. negevensis raises a clinical issue in term of pathogenic potential given the production of a RTX hemolysin.

摘要

金氏金菌(Kingella kingae),产生细胞毒性 RTX 蛋白,是人类严重感染的病原体,如菌血症、心内膜炎和骨关节炎感染,尤其是在幼儿中。最近,相关物种金氏奈瑟菌(Kingella negevensis)已从健康儿童的口腔中分离出来。在这项研究中,我们报告了从患有阴道炎的患者的阴道标本中分离出的金氏奈瑟菌菌株 eburonensis,该菌株最初被 MALDI-TOF MS 错误鉴定为金氏金菌。对该菌株的基因组测序和分析以及金氏菌属的比较基因组学研究表明,金氏奈瑟菌拥有与金氏金菌的 rtx 操纵子完全同源的基因,该操纵子参与 RTX 毒素的合成。我们报告称,基于 rtxA 基因的金氏金菌特异性诊断 PCR 在测试金氏奈瑟菌菌株 eburonensis DNA 时呈阳性。通过对靶基因序列的计算机分析,证实了这种交叉扩增和错误鉴定的风险。为了克服这个主要的诊断问题,我们开发了一种用于检测和区分金氏金菌和金氏奈瑟菌的双重实时 PCR。此外,金氏奈瑟菌的鉴定引发了一个临床问题,因为它产生了一种 RTX 溶血素,具有潜在的致病性。

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