Transcriptome of Salmonella enterica serovar Typhi within macrophages revealed through the selective capture of transcribed sequences

被引:127
作者
Faucher, SP
Porwollik, S
Dozois, CM
McClelland, M
Daigle, F
机构
[1] Univ Montreal, Dept Microbiol & Immunol, Montreal, PQ H3C 3J7, Canada
[2] Sidney Kimmel Canc Ctr, San Diego, CA 92121 USA
[3] Inst Armand Frappier, Inst Natl Rech Sci, Laval, PQ H7V 1B7, Canada
关键词
microarrays; in vivo bacterial gene expression; host-pathogen interaction;
D O I
10.1073/pnas.0509183103
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The cDNA obtained by selective capture of transcribed sequences is a complex mixture that can be used in conjunction with microarrays to determine global gene expression by a pathogen during infection. We used this method to study genes expressed by Salmonella enterica serovar Typhi, the etiological agent of typhoid fever, within human macrophages. Global expression profiles of Typhi grown in vitro and within macrophages at different time points were obtained and compared. Known virulence factors, such as the SPI-1- and SPI-2-encoded type III secretion systems, were found to be expressed as predicted during infection by Salmonella, which validated our data. Typhi inside macrophages showed increased expression of genes encoding resistance to antimicrobial pepticles, used the glyoxylate bypass for fatty acid utilization, and did not induce the SOS response or the oxidative stress response. Genes coding for the flagellar apparatus, chemotaxis, and iron transport systems were down-regulated in vivo. Many cDNAs corresponding to genes with unknown functions were up-regulated inside human macrophages and will be important to consider for future studies to elucidate the intracellular lifestyle of this human-specific pathogen. Real-time quantitative PCR was consistent with the microarray results. The combined use of selective capture of transcribed sequences and microarrays is an effective way to determine the bacterial transcriptome in vivo and could be used to investigate transcriptional profiles of other bacterial pathogens without the need to recover many nanograms of bacterial mRNA from host and without increasing the multiplicity of infection beyond what is seen in nature.
引用
收藏
页码:1906 / 1911
页数:6
相关论文
共 61 条
[1]   Breaking through the acid barrier: An orchestrated response to proton stress by enteric bacteria [J].
Audia, JP ;
Webb, CC ;
Foster, JW .
INTERNATIONAL JOURNAL OF MEDICAL MICROBIOLOGY, 2001, 291 (02) :97-106
[2]   The Salmonella typhi melittin resistance gene pqaB affects intracellular growth in PMA-differentiated U937 cells, polymyxin B resistance and lipopolysaccharide [J].
Baker, SJ ;
Gunn, JS ;
Morona, R .
MICROBIOLOGY-SGM, 1999, 145 :367-378
[3]   Identification of genes transcribed by Actinobacillus pleuropneumoniae in necrotic porcine lung tissue by using selective capture of transcribed sequences [J].
Baltes, N ;
Gerlach, GF .
INFECTION AND IMMUNITY, 2004, 72 (11) :6711-6716
[4]   The PhoP/PhoQ system controls the intramacrophage type three secretion system of Salmonella enterica [J].
Bijlsma, JJE ;
Groisman, EA .
MOLECULAR MICROBIOLOGY, 2005, 57 (01) :85-96
[5]   The Salmonella selC locus contains a pathogenicity island mediating intramacrophage survival [J].
BlancPotard, AB ;
Groisman, EA .
EMBO JOURNAL, 1997, 16 (17) :5376-5385
[6]   Differences in gene content among Salmonella enterica serovar Typhi isolates [J].
Boyd, EF ;
Porwollik, S ;
Blackmer, F ;
McClelland, M .
JOURNAL OF CLINICAL MICROBIOLOGY, 2003, 41 (08) :3823-3828
[7]   Mig-14 is an inner membrane-associated protein that promotes Salmonella typhimurium resistance to CRAMP, survival within activated macrophages and persistent infection [J].
Brodsky, IE ;
Ghori, N ;
Falkow, S ;
Monack, D .
MOLECULAR MICROBIOLOGY, 2005, 55 (03) :954-972
[8]   mig-14 is a Salmonella gene that plays a role in bacterial resistance to antimicrobial peptides [J].
Brodsky, IE ;
Ernst, RK ;
Miller, SI ;
Falkow, S .
JOURNAL OF BACTERIOLOGY, 2002, 184 (12) :3203-3213
[9]   Precise excision of the large pathogenicity island, SP17, in Salmonella enterica serovar Typhi [J].
Bueno, SM ;
Santiviago, CA ;
Murillo, AA ;
Fuentes, JA ;
Trombert, AN ;
Rodas, PI ;
Youderian, P ;
Mora, GC .
JOURNAL OF BACTERIOLOGY, 2004, 186 (10) :3202-3213
[10]   Microarray-based detection of Salmonella enterica serovar typhimurium transposon mutants that cannot survive in macrophages and mice [J].
Chan, K ;
Kim, CC ;
Falkow, S .
INFECTION AND IMMUNITY, 2005, 73 (09) :5438-5449