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1 uster of genes called rpf (for regulation of pathogenicity factors).
2 uster of genes designated rpf (regulation of pathogenicity factors).
3 heir coding potentials by lacking a proposed pathogenicity factor.
4 mportant mechanism for its function as a HIV pathogenicity factor.
5 acyltransferase which may also contribute a pathogenicity factor.
6 EGLN gene suggesting that it is an important pathogenicity factor.
7 nd gram-positive bacteria, where they act as pathogenicity factors.
8 ique for the study of the evolution of plant pathogenicity factors.
9 which are overrepresented in genes encoding pathogenicity factors.
10 nally rapidly yet maintain their function as pathogenicity factors.
11 o evolve rapidly without loss of function as pathogenicity factors.
12 lights the sophisticated nature of microbial pathogenicity factors.
13 lexes that contain host defence proteins and pathogenicity factors.
14 conitase activity and the synthesis of these pathogenicity factors.
16 examinations will be necessary to determine pathogenicity factors and define the role of IFN-gamma i
18 The identification and characterization of pathogenicity factors are essential to an understanding
20 the first time that amoebapore is one of the pathogenicity factors by which trophozoites of E. histol
22 y children, can develop independently of the pathogenicity factors cagPAI and oipA, and is not correl
25 shmaniavirus (LRV1) has been implicated as a pathogenicity factor for leishmaniasis in rodent models
26 ococcal protein A (SpA) is a cell-wall-bound pathogenicity factor from the bacterium Staphylococcus a
27 he proteins encoded by the rpf (regulator of pathogenicity factor) gene cluster produce and sense a f
28 provides evidence that recent acquisition of pathogenicity factors goes beyond the toxin itself, and
29 Here, extensive data mining, including of pathogenicity factors, host regulatory proteins, enzymes
31 at Hfq plays a key role in the regulation of pathogenicity factors in B. burgdorferi and we hypothesi
32 ite our increasing knowledge of the specific pathogenicity factors in bacteria, the contribution of m
33 are similar to genes involved in delivery of pathogenicity factors in mammalian bacterial pathogens.
34 ic bacterium that controls the production of pathogenicity factors in part by a cluster of genes desi
38 winia amylovora was shown to secrete DspE, a pathogenicity factor of 198 kDa and a functional homolog
39 s an important chromosome-encoded urogenital pathogenicity factor of C. muridarum and the first with
41 Amoebapores have been proposed to be a major pathogenicity factor of the protozoan parasite Entamoeba
42 nol-soluble modulin (PSM) peptides are major pathogenicity factors of community-associated methicilli
44 in planta, and identified LesA as one of the pathogenicity factors of X. fastidiosa in grapevines tha
46 nzoic acid-containing peptide albicidin is a pathogenicity factor synthesized by Xanthomonas albiline
47 ndition susceptibility, many suppressors are pathogenicity factors that cause disease or developmenta
48 al galactosaminogalactan represent important pathogenicity factors that modulate platelet activity an
49 insecticola 5.15 encoded five categories of pathogenicity factors that were missing or inactivated i
50 st a function for the prototypical H. pylori pathogenicity factor, the T4SS, in the up-regulation of
51 olog TrkAH have been implicated as bacterial pathogenicity factors, the discovery of this functionall
52 duction system that couples the synthesis of pathogenicity factors to sensing of environmental signal
53 ch into identifying additional candidates as pathogenicity factors towards better understanding and m
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