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Pseudomonas aeruginosa AES-1 Exhibits Increased Virulence Gene Expression during Chronic Infection of Cystic Fibrosis Lung

机译:铜绿假单胞菌AES-1慢性囊性纤维化肺部感染过程中显示增加毒力基因表达。

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摘要

Pseudomonas aeruginosa, the leading cause of morbidity and mortality in people with cystic fibrosis (CF), adapts for survival in the CF lung through both mutation and gene expression changes. Frequent clonal strains such as the Australian Epidemic Strain-1 (AES-1), have increased ability to establish infection in the CF lung and to superimpose and replace infrequent clonal strains. Little is known about the factors underpinning these properties. Analysis has been hampered by lack of expression array templates containing CF-strain specific genes. We sequenced the genome of an acute infection AES-1 isolate from a CF infant (AES-1R) and constructed a non-redundant micro-array (PANarray) comprising AES-1R and seven other sequenced P. aeruginosa genomes. The unclosed AES-1R genome comprised 6.254Mbp and contained 6957 putative genes, including 338 not found in the other seven genomes. The PANarray contained 12,543 gene probe spots; comprising 12,147 P. aeruginosa gene probes, 326 quality-control probes and 70 probes for non-P. aeruginosa genes, including phage and plant genes. We grew AES-1R and its isogenic pair AES-1M, taken from the same patient 10.5 years later and not eradicated in the intervening period, in our validated artificial sputum medium (ASMDM) and used the PANarray to compare gene expression of both in duplicate. 675 genes were differentially expressed between the isogenic pairs, including upregulation of alginate, biofilm, persistence genes and virulence-related genes such as dihydroorotase, uridylate kinase and cardiolipin synthase, in AES-1M. Non-PAO1 genes upregulated in AES-1M included pathogenesis-related (PAGI-5) genes present in strains PACS2 and PA7, and numerous phage genes. Elucidation of these genes' roles could lead to targeted treatment strategies for chronically infected CF patients.
机译:铜绿假单胞菌是囊性纤维化(CF)患者发病和死亡的主要原因,它通过突变和基因表达变化来适应CF肺中的生存。常见的克隆毒株,例如澳大利亚流行病株1(AES-1),具有在CF肺中建立感染以及叠加和替换罕见克隆毒株的能力。关于支撑这些特性的因素知之甚少。由于缺乏包含CF菌株特异性基因的表达阵列模板,分析受到阻碍。我们对来自CF婴儿(AES-1R)的急性感染AES-1分离物的基因组进行了测序,并构建了包含AES-1R和七个其他测序的铜绿假单胞菌基因组的非冗余微阵列(PANarray)。尚未公开的AES-1R基因组包含6.254Mbp,包含6957个推定基因,其中338个在其他七个基因组中未发现。 PANarray包含12,543个基因探针点;包含12,147个铜绿假单胞菌基因探针,326个质量控制探针和70个非P探针。铜绿基因包括噬菌体和植物基因。我们在经过验证的人工痰培养液(ASMDM)中生长了10.5年后从同一患者身上摘下来的AES-1R及其同基因对AES-1M,并在经过验证的人工痰培养基(ASMDM)中未根除,并使用PANarray进行了比较,比较了两者的基因表达。在AES-1M中,等基因对之间有675个基因差异表达,包括藻酸盐,生物膜,持久性基因和毒力相关基因(如二氢乳清酶,尿酸苷激酶和心磷脂合酶)的上调。在AES-1M中上调的非PAO1基因包括菌株PACS2和PA7中存在的与病程相关的(PAGI-5)基因,以及许多噬菌体基因。阐明这些基因的作用可以导致针对慢性感染的CF患者的靶向治疗策略。

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