Department of Molecular Biosciences, University of Kansas, Lawrence, Kansas, USA.
University of Saint Mary, Leavenworth, Kansas, USA.
J Bacteriol. 2020 Aug 10;202(17). doi: 10.1128/JB.00063-20.
is an opportunistic pathogen capable of causing infections, including endocarditis and urinary tract infections (UTI). One of the well-characterized quorum-sensing pathways in involves coordination of the conjugal transfer of pheromone-responsive plasmids by PrgX, a member of the RRNPP protein family. Members of this protein family in various have also been shown to contribute to numerous cellular processes, including sporulation, competence, conjugation, nutrient sensing, biofilm formation, and virulence. As PrgX is a plasmid-encoded RRNPP family member, we surveyed the genome of the multidrug-resistant strain V583 for additional RRNPP homologs using computational searches and refined those identified hits for predicted structural similarities to known RRNPP family members. This led us to investigate the contribution of the chromosomally encoded RRNPP homologs to biofilm processes and pathogenesis in a catheter-associated urinary tract infection (CAUTI) model. In this study, we identified five such homologs and report that 3 of the 5 homologs, EF0073, EF1599, and EF1316, affect biofilm formation as well as outcomes in the CAUTI model. causes health care-associated infections and displays resistance to a variety of broad-spectrum antibiotics by acquisition of resistance traits as well as the ability to form biofilms. Even though a growing number of factors related to biofilm formation have been identified, mechanisms that contribute to biofilm formation are still largely unknown. Members of the RRNPP protein family regulate a diverse set of biological reactions in low-G+C Gram-positive bacteria (). Here, we identify three predicted structural homologs of the RRNPP family, EF0073, EF1599, and EF1316, which affect biofilm formation and CAUTI pathogenesis.
是一种机会性病原体,能够引起感染,包括心内膜炎和尿路感染(UTI)。 涉及到的一种特征明确的群体感应途径是 PrgX 协调聚酮体反应型质粒的共轭转移,PrgX 是 RRNPP 蛋白家族的成员。 不同 中的该蛋白家族成员也被证明有助于许多细胞过程,包括孢子形成、感受态、共轭、营养感应、生物膜形成和毒力。 由于 PrgX 是一种质粒编码的 RRNPP 家族成员,我们使用计算搜索调查了多药耐药菌株 V583 的基因组,以寻找其他 RRNPP 同源物,并对鉴定出的命中物进行了预测结构与已知 RRNPP 家族成员的相似性。 这导致我们研究了染色体编码的 RRNPP 同源物对导管相关尿路感染(CAUTI)模型中的生物膜过程和发病机制的贡献。 在这项研究中,我们鉴定了 5 个这样的同源物,并报告说 5 个同源物中的 3 个,EF0073、EF1599 和 EF1316,影响生物膜形成以及 CAUTI 模型中的结果。 会引起与医疗保健相关的感染,并通过获得耐药性和形成生物膜的能力对各种广谱抗生素产生耐药性。 尽管已经确定了越来越多与生物膜形成相关的因素,但导致生物膜形成的机制在很大程度上仍不清楚。 RRNPP 蛋白家族的成员调节低 G+C 革兰氏阳性菌()中的一系列不同的生物学反应。 在这里,我们鉴定了 RRNPP 家族的三个预测结构同源物 EF0073、EF1599 和 EF1316,它们影响生物膜形成和 CAUTI 发病机制。