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1 in the etiological agent of epidemic typhus, Rickettsia prowazekii, a slowly growing obligate intracy
2 anscriptional regulation was demonstrated in Rickettsia prowazekii, an obligate intracytoplasmic bact
3 e the genomes of the intracellular parasites Rickettsia prowazekii and Mycobacterium leprae.
4  report the crystal structures of PKMT1 from Rickettsia prowazekii and PKMT2 from Rickettsia typhi, b
5          Typhus group rickettsiae, including Rickettsia prowazekii and R. typhi, produce visible plaq
6 l demonstration of genetic transformation of Rickettsia prowazekii and represents the initial step in
7 cells revealed the typhus group rickettsiae, Rickettsia prowazekii and Rickettsia typhi, to have no a
8 ensis, Brucella spp., Burkholderia spp., and Rickettsia prowazekii) and tested by RT-PCR-ESI-MS.
9 an-disease pathogens Treponema palladium and Rickettsia prowazekii, and the extremely radioresistant
10 unique insertions in the gene coding for the Rickettsia prowazekii ATP/ADP translocase (Tlc) was gene
11 he determination of membrane topology of the Rickettsia prowazekii ATP/ADP translocase (Tlc).
12  transmembrane regions I, II, and III of the Rickettsia prowazekii ATP/ADP translocase to the structu
13 ribution of transmembrane region VIII of the Rickettsia prowazekii ATP/ADP translocase to the structu
14  We have determined the accessibility of the Rickettsia prowazekii ATP/ADP translocase transmembrane
15        Recent studies have demonstrated that Rickettsia prowazekii can regulate transcription of sele
16 many with significant similarity to those of Rickettsia prowazekii, genes predicted to encode differe
17           An invasion gene homolog, invA, of Rickettsia prowazekii has recently been identified to en
18         The obligate intracellular bacterium Rickettsia prowazekii has recently been shown to transpo
19                                              Rickettsia prowazekii is an obligate intracellular patho
20                                              Rickettsia prowazekii is an obligate intracytosolic path
21  to determine which of the selected genes of Rickettsia prowazekii mediate the escape process.
22       The obligate intracytoplasmic pathogen Rickettsia prowazekii relies on the transport of many es
23 exposed in vitro to trimethyltransferases of Rickettsia prowazekii RP027-028 and of R. typhi RT0101 a
24               Here we have characterized the Rickettsia prowazekii RP534 protein, a homologue of the
25 a (Mycobacterium leprae, Yersinia pestis and Rickettsia prowazekii) show how an organism can undergo
26 recognized by rabbit hyperimmune antisera to Rickettsia prowazekii SPA.
27                                              Rickettsia prowazekii, the causative agent of epidemic t
28                                              Rickettsia prowazekii, the causative agent of epidemic t
29                                              Rickettsia prowazekii, the causative agent of epidemic t
30                                              Rickettsia prowazekii, the causative agent of epidemic t
31 he genetic mechanism of membrane assembly in Rickettsia prowazekii, the causative agent of epidemic t
32                                              Rickettsia prowazekii, the etiologic agent of epidemic t
33                                              Rickettsia prowazekii, the etiologic agent of epidemic t
34                                              Rickettsia prowazekii, the etiological agent of epidemic
35 the obligate endosymbiont and human pathogen Rickettsia prowazekii, the plant pathogen Agrobacterium
36 e (NOS) pathway in inhibiting the ability of Rickettsia prowazekii to initially infect (invade) mouse
37  group (TG) rickettsiae Rickettsia typhi and Rickettsia prowazekii were characterized by chemical ana

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