Ureaplasma spp. colonize many healthy persons, yet they may also cause invasive diseases. Reasons they are commensals in some instances and produce systemic infections in others are unknown. There is increasing evidence that some Ureaplasma serovars may have a greater pathogenic potential than others. However, proof of this concept is incomplete. Prior attempts to study pathogenesis were hampered by imprecise typing methods, cross-reactions, lack of commercial reagents, and the fact that multiple serovars may be present simultaneously. Contradictory findings regarding differential pathogenicity of the 2 Ureaplasma species and individual serovars also suggests the possibility there may be virulence factors that were not detected using older, less discriminatory techniques. We hypothesize that differential pathogenicity of Ureaplasma spp. may be explained by analyzing clinical isolates and 14 serovars genotypically to identify genetic differences and possibly dissimilar expression of virulence factors. This research will examine Ureaplasma spp. from persons with invasive infections and compare them with others from persons without these conditions.
Our Specific Aims are to: (1) Determine occurrence of Ureaplasma species and serovars in clinical isolates from a variety of different conditions and in commensal organisms using PCR; (2) Refine and further develop pulsed field gel electrophoresis (PFGE) and restriction fragment length polymorphism for use in determining genetic relatedness between Ureaplasma serovars and within serovars of pathogenic versus commensal isolates; (3) Compare the size and number of tandem amino acid repeats in multiple banded antigens of pathogenic versus commensal isolates a means to assess this characteristic as a predictor of disease; (4) Identify genes that encode potential virulence factors lgA1 protease and phospholipase A1, A2, and C activities using global transposon mutagenesis and comparative genomic analysis of all 14 serovars and selected clinical isolates to search for likely candidates for these genes, followed by cloning and expressing the genes to determine if their presence or expression correlates with pathogenic outcome. Identification of distinctive features of invasive strains may guide development of diagnostic tools and guide future studies to improve understanding of diseases affecting vulnerable populations including pregnant women and their infants, preventive strategies, and management. ? ? ?

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
1R01AI072577-01
Application #
7190660
Study Section
Clinical Research and Field Studies of Infectious Diseases Study Section (CRFS)
Program Officer
Hiltke, Thomas J
Project Start
2007-03-15
Project End
2011-02-28
Budget Start
2007-03-15
Budget End
2008-02-29
Support Year
1
Fiscal Year
2007
Total Cost
$460,917
Indirect Cost
Name
University of Alabama Birmingham
Department
Pathology
Type
Schools of Medicine
DUNS #
063690705
City
Birmingham
State
AL
Country
United States
Zip Code
35294
Lal, Charitharth V; Xu, Xin; Jackson, Patricia et al. (2017) Ureaplasma infection-mediated release of matrix metalloproteinase-9 and PGP: a novel mechanism of preterm rupture of membranes and chorioamnionitis. Pediatr Res 81:75-79
Grigsby, Peta L; Novy, Miles J; Sadowsky, Drew W et al. (2012) Maternal azithromycin therapy for Ureaplasma intraamniotic infection delays preterm delivery and reduces fetal lung injury in a primate model. Am J Obstet Gynecol 207:475.e1-475.e14
Xiao, Li; Crabb, Donna M; Duffy, Lynn B et al. (2011) Mutations in ribosomal proteins and ribosomal RNA confer macrolide resistance in human Ureaplasma spp. Int J Antimicrob Agents 37:377-9
Sung, Tae-Jung; Xiao, Li; Duffy, Lynn et al. (2011) Frequency of ureaplasma serovars in respiratory secretions of preterm infants at risk for bronchopulmonary dysplasia. Pediatr Infect Dis J 30:379-83
Okogbule-Wonodi, Adora C; Gross, George W; Sun, Chen-Chih J et al. (2011) Necrotizing enterocolitis is associated with ureaplasma colonization in preterm infants. Pediatr Res 69:442-7
Novy, Miles J; Duffy, Lynn; Axthelm, Michael K et al. (2009) Ureaplasma parvum or Mycoplasma hominis as sole pathogens cause chorioamnionitis, preterm delivery, and fetal pneumonia in rhesus macaques. Reprod Sci 16:56-70