Immunosuppressive Proteins Produced by Oral Pathogens
Project Number5R01DE014191-05
Contact PI/Project LeaderSHENKER, BRUCE J
Awardee OrganizationUNIVERSITY OF PENNSYLVANIA
Description
Abstract Text
DESCRIPTION (provided by applicant): Over the past several years, significant
progress has been made in understanding of the etiology and pathogenesis of
periodontal diseases. Nevertheless, the nature and contribution of the immune
system to these disorders remain unclear. The basic hypothesis is that the
immune system plays a primary role to minimize and/or prevent infection.
Furthermore, the application posits that immunoregulatory abnormalities
contribute to the pathogenesis of and susceptibility to periodontal disease. In
this regard, the prior investigations have demonstrated that Fusobacterium
nucleatum and Treponema denticola produce immunosuppressive proteins (ISPs).
The fundamental hypothesis of the proposed studies is that periodontal
pathogens produce ISPs that mediate local and/or systemic immunosuppression,
thereby enhancing their own virulence and/or that of other opportunistic
microorganisms. The plan is to focus this investigation on the F. nucleatum
(Fip) and T. denticola (Sip) ISP which has been shown to induce human
lymphocytes to arrest in the mid G 1 phase of the cell cycle. Moreover, the
preliminary studies determined each ISP is composed of two subunits. The
objectives of this application are to define the events responsible for
ISP-induced G1 arrest and to determine the relationship between structure and
function of the ISP subunits. The study is composed of four Specific Aims: 1)
To determine the molecular mechanism(s) responsible for F. nucleatum (Fip) and
7' denticola (Sip) ISP-induced G1 arrest in human lymphocytes; 2) To determine
if G1 arrest is irreversible resulting in activation of the G1 checkpoint and
the apoptotic cascade; 3) To determine if Fip exists and functions as a
heterodimer and examine the individual role of Fip A and Fip B in the induction
of G 1 arrest; and 4) To determine if the two peptides that comprise the ISP of
7' denticola (Sip) are encoded by separate genes and, if so, to determine the
functional role of each peptide.
Public Health Relevance Statement
Data not available.
NIH Spending Category
No NIH Spending Category available.
Project Terms
Fusobacterium nucleatumSDS polyacrylamide gel electrophoresisTreponemaapoptosisautoradiographybacterial proteinscell cyclecyclin dependent kinasedimerflow cytometryhigh performance liquid chromatographyhuman subjectimmunoprecipitationimmunosuppressivelaboratory mouselaboratory rabbitlymphocytep53 gene /proteinpathologic processperiodontium disorderproliferating cell nuclear antigenprotein structure functionterminal nick end labelingwestern blottings
National Institute of Dental and Craniofacial Research
CFDA Code
121
DUNS Number
042250712
UEI
GM1XX56LEP58
Project Start Date
01-May-2002
Project End Date
28-February-2008
Budget Start Date
01-March-2006
Budget End Date
28-February-2008
Project Funding Information for 2006
Total Funding
$309,551
Direct Costs
$195,300
Indirect Costs
$114,251
Year
Funding IC
FY Total Cost by IC
2006
National Institute of Dental and Craniofacial Research
$309,551
Year
Funding IC
FY Total Cost by IC
Sub Projects
No Sub Projects information available for 5R01DE014191-05
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