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本文引用的文献

1
Regulation of SpeB in Streptococcus pyogenes by pH and NaCl: a model for in vivo gene expression.pH值和氯化钠对化脓性链球菌中SpeB的调控:体内基因表达模型
J Bacteriol. 2006 Jan;188(2):399-408. doi: 10.1128/JB.188.2.399-408.2006.
2
Structure, regulation, and putative function of the arginine deiminase system of Streptococcus suis.猪链球菌精氨酸脱亚胺酶系统的结构、调控及假定功能
J Bacteriol. 2006 Jan;188(2):361-9. doi: 10.1128/JB.188.2.361-369.2006.
3
Central role of a bacterial two-component gene regulatory system of previously unknown function in pathogen persistence in human saliva.一种功能未知的细菌双组分基因调控系统在病原体于人类唾液中持续存在方面的核心作用。
Proc Natl Acad Sci U S A. 2005 Nov 1;102(44):16037-42. doi: 10.1073/pnas.0505839102. Epub 2005 Oct 25.
4
P-Ser-HPr--a link between carbon metabolism and the virulence of some pathogenic bacteria.磷酸化丝氨酸-磷酸化组氨酸-丙酮酸——某些致病细菌碳代谢与毒力之间的一种联系。
Biochim Biophys Acta. 2005 Dec 30;1754(1-2):118-25. doi: 10.1016/j.bbapap.2005.07.029. Epub 2005 Sep 12.
5
D-alanylation of teichoic acids promotes group a streptococcus antimicrobial peptide resistance, neutrophil survival, and epithelial cell invasion.磷壁酸的D-丙氨酰化促进A组链球菌对抗菌肽的抗性、中性粒细胞存活及上皮细胞侵袭。
J Bacteriol. 2005 Oct;187(19):6719-25. doi: 10.1128/JB.187.19.6719-6725.2005.
6
Identification of group A Streptococcus antigenic determinants upregulated in vivo.鉴定在体内上调的A组链球菌抗原决定簇。
Infect Immun. 2005 Sep;73(9):6026-38. doi: 10.1128/IAI.73.9.6026-6038.2005.
7
Specific C-terminal cleavage and inactivation of interleukin-8 by invasive disease isolates of Streptococcus pyogenes.化脓性链球菌侵袭性疾病分离株对白细胞介素-8的特异性C末端切割与失活作用
J Infect Dis. 2005 Sep 1;192(5):783-90. doi: 10.1086/432485. Epub 2005 Jul 18.
8
Evolutionary origin and emergence of a highly successful clone of serotype M1 group a Streptococcus involved multiple horizontal gene transfer events.血清型M1 A组链球菌一个高度成功克隆株的进化起源与出现涉及多个水平基因转移事件。
J Infect Dis. 2005 Sep 1;192(5):771-82. doi: 10.1086/432514. Epub 2005 Jul 29.
9
The MicrobesOnline Web site for comparative genomics.用于比较基因组学的微生物在线网站。
Genome Res. 2005 Jul;15(7):1015-22. doi: 10.1101/gr.3844805.
10
Longitudinal analysis of the group A Streptococcus transcriptome in experimental pharyngitis in cynomolgus macaques.食蟹猴实验性咽炎中A组链球菌转录组的纵向分析。
Proc Natl Acad Sci U S A. 2005 Jun 21;102(25):9014-9. doi: 10.1073/pnas.0503671102. Epub 2005 Jun 14.

A组链球菌在小鼠软组织感染中的转录组分析。

Analysis of the transcriptome of group A Streptococcus in mouse soft tissue infection.

作者信息

Graham Morag R, Virtaneva Kimmo, Porcella Stephen F, Gardner Donald J, Long R Daniel, Welty Diane M, Barry William T, Johnson Claire A, Parkins Larye D, Wright Fred A, Musser James M

机构信息

Laboratory of Human Bacterial Pathogenesis, Rocky Mountain Veterinary Branch, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Hamilton, MT, USA.

出版信息

Am J Pathol. 2006 Sep;169(3):927-42. doi: 10.2353/ajpath.2006.060112.

DOI:10.2353/ajpath.2006.060112
PMID:16936267
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1698835/
Abstract

Molecular mechanisms mediating group A Streptococcus (GAS)-host interactions remain poorly understood but are crucial for diagnostic, therapeutic, and vaccine development. An optimized high-density microarray was used to analyze the transcriptome of GAS during experimental mouse soft tissue infection. The transcriptome of a wild-type serotype M1 GAS strain and an isogenic transcriptional regulator knockout mutant (covR) also were compared. Array datasets were verified by quantitative real-time reverse transcriptase-polymerase chain reaction and in situ immunohistochemistry. The results unambiguously demonstrate that coordinated expression of proven and putative GAS virulence factors is directed toward overwhelming innate host defenses leading to severe cellular damage. We also identified adaptive metabolic responses triggered by nutrient signals and hypoxic/acidic conditions in the host, likely facilitating pathogen persistence and proliferation in soft tissues. Key discoveries included that oxidative stress genes, virulence genes, genes related to amino acid and maltodextrin utilization, and several two-component transcriptional regulators were highly expressed in vivo. This study is the first global analysis of the GAS transcriptome during invasive infection. Coupled with parallel analysis of the covR mutant strain, novel insights have been made into the regulation of GAS virulence in vivo, resulting in new avenues for targeted therapeutic and vaccine research.

摘要

介导A组链球菌(GAS)与宿主相互作用的分子机制仍知之甚少,但对于诊断、治疗和疫苗开发至关重要。使用优化的高密度微阵列分析实验性小鼠软组织感染期间GAS的转录组。还比较了野生型M1血清型GAS菌株和同基因转录调节因子敲除突变体(covR)的转录组。通过定量实时逆转录聚合酶链反应和原位免疫组织化学验证阵列数据集。结果明确表明,已证实和推定的GAS毒力因子的协调表达旨在压倒先天性宿主防御,导致严重的细胞损伤。我们还确定了宿主中营养信号和缺氧/酸性条件引发的适应性代谢反应,这可能促进病原体在软组织中的持续存在和增殖。主要发现包括氧化应激基因、毒力基因、与氨基酸和麦芽糖糊精利用相关的基因以及几种双组分转录调节因子在体内高度表达。这项研究是对侵袭性感染期间GAS转录组的首次全面分析。结合对covR突变菌株的平行分析,对体内GAS毒力的调节有了新的认识,为靶向治疗和疫苗研究开辟了新途径。