Hassan A A, Maldonado Rita F, Dos Santos Sandra C, Di Lorenzo Flaviana, Silipo Alba, Coutinho Carla P, Cooper Vaughn S, Molinaro Antonio, Valvano Miguel A, Sá-Correia Isabel
Department of Bioengineering, Institute for Bioengineering and Biosciences, Instituto Superior Técnico, Universidade de LisboaLisboa, Portugal.
Department of Chemical Sciences, University of Napoli Federico II Complesso Universitário Monte SantangeloNapoli, Italy.
Front Microbiol. 2017 Jun 8;8:1027. doi: 10.3389/fmicb.2017.01027. eCollection 2017.
is an opportunistic pathogen associated with chronic lung infections and increased risk of death in patients with cystic fibrosis (CF). In this work, we investigated the lipopolysaccharide (LPS) of clinical variants of that were collected from a CF patient over a period of 3.5 years, from the onset of infection until death by necrotizing pneumonia (cepacia syndrome). We report the chemical structure of the LPS molecule of various sequential isolates and the identification of a novel hybrid O-antigen (OAg) biosynthetic cluster. The OAg repeating unit of the LPS from IST439, the initial isolate, is a [→2)-β-D-Rib-(1→4)-α-D-GalNAc-(1→] disaccharide, which was not previously described in . The IST439 OAg biosynthetic gene cluster contains 7 of 23 genes that are closely homologous to genes found in , another member of the complex. None of the subsequent isolates expressed OAg. Genomic sequencing of these isolates enabled the identification of mutations within the OAg cluster, but none of these mutations could be associated with the loss of OAg. This study provides support to the notion that OAg LPS modifications are an important factor in the adaptation of to chronic infection and that the heterogeneity of OAgs relates to variation within the OAg gene cluster, indicating that the gene cluster might have been assembled through multiple horizontal transmission events.
是一种机会致病菌,与慢性肺部感染以及囊性纤维化(CF)患者死亡风险增加有关。在本研究中,我们调查了从一名CF患者身上在3.5年时间里(从感染开始直至因坏死性肺炎死亡,即洋葱伯克霍尔德菌综合征)收集的该菌临床变体的脂多糖(LPS)。我们报告了不同连续分离株的LPS分子的化学结构,并鉴定出一个新的杂合O抗原(OAg)生物合成簇。初始分离株IST439的LPS的OAg重复单元是一个[→2)-β-D-核糖-(1→4)-α-D-氨基半乳糖-(1→]二糖,此前在该菌中未被描述过。IST439的OAg生物合成基因簇包含23个基因中的7个,这些基因与在洋葱伯克霍尔德菌复合体的另一个成员中发现的基因密切同源。后续分离株均未表达OAg。对这些分离株的基因组测序使得能够鉴定出OAg簇内的突变,但这些突变均与OAg的缺失无关。本研究支持了以下观点:OAg LPS修饰是该菌适应慢性感染的一个重要因素,并且OAg的异质性与OAg基因簇内的变异有关,这表明该基因簇可能是通过多次水平传播事件组装而成的。