State Key Laboratory of Oral Diseases, National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Department of Periodontics, Sichuan University, Chengdu, China.
Front Cell Infect Microbiol. 2022 Nov 2;12:1012316. doi: 10.3389/fcimb.2022.1012316. eCollection 2022.
Periodontitis is an inflammatory disease of the supporting tissues of the teeth, with polymicrobial infection serving as the major pathogenic factor. As a periodontitis-related keystone pathogen, can orchestrate polymicrobial biofilm skewing into dysbiosis. Some metatranscriptomic studies have suggested that modulation of potassium ion uptake might serve as a signal enhancing microbiota nososymbiocity and periodontitis progression. Although the relationship between potassium transport and virulence has been elucidated in some bacteria, less is mentioned about the periodontitis-related pathogen. Herein, we centered on the virulence modulation potential of TrkA, the potassium uptake regulatory protein of , and uncovered TrkA as the modulator in the heme acquisition process and in maintaining optimal pathogenicity in an experimental murine model of periodontitis. Hemagglutination and hemolytic activities were attenuated in the case of gene loss, and the entire transcriptomic profiling revealed that the gene can control the expression of genes in relation to electron transport chain activity and translation, as well as some transcriptional factors, including , the regulator of the heme uptake system hmuYR. Collectively, these results link the heme acquisition process to the potassium transporter, providing new insights into the role of potassium ion in pathogenesis.
牙周炎是一种牙齿支持组织的炎症性疾病,多种微生物感染是主要的致病因素。作为一种与牙周炎相关的关键病原体,可以协调多种微生物生物膜的失衡,导致微生态失调。一些宏转录组学研究表明,钾离子摄取的调节可能作为增强微生物共生和牙周炎进展的信号。虽然一些细菌中已经阐明了钾离子转运与毒力之间的关系,但关于牙周炎相关病原体的相关信息较少。本文以 TrkA 为中心,TrkA 是 的钾离子摄取调节蛋白,研究了其在毒力调节中的潜在作用,并揭示了 TrkA 作为血红素获取过程中的调节剂,以及在牙周炎实验小鼠模型中维持最佳致病性的调节剂。在 基因缺失的情况下,血凝和溶血活性减弱,整个转录组谱分析表明, 基因可以控制与电子传递链活性和翻译相关的基因的表达,以及一些转录因子的表达,包括血红素摄取系统 hmuYR 的调节因子 。总之,这些结果将血红素获取过程与钾离子转运体联系起来,为钾离子在 致病机制中的作用提供了新的见解。