grant

Systematic Functional Genomics Analysis of the Oral Pathogen Streptococcus Mutans

Organization ARKANSAS STATE UNIVERSITYLocation STATE UNIVERSITY, UNITED STATESPosted 24 Sept 2024Deadline 24 Sept 2027
NIHUS FederalResearch GrantFY20240-11 years old21+ years oldAccelerationAdultAdult HumanAreaArkansasBacteriaBacterial ModelBiochemicalBiomedical ResearchBuccal CavityBuccal Cavity Head and NeckCariesCausalityCavitas OrisCell-Extracellular MatrixCenters for Disease ControlCenters for Disease Control and PreventionCenters for Disease Control and Prevention (U.S.)ChildChild YouthChildren (0-21)CommunitiesComplexDataDental DecayDental EnamelDental cariesDevelopmentDiseaseDisorderECMEnamelEtiologyExtracellular MatrixGeneralized GrowthGenesGeneticGenetic DeterminismGenetic ScreeningGenetic studyGoalsGrantGrowthHumanInfectionIntentionKnowledgeLaboratoriesLibrariesMediatingMedicalMicrobial BiofilmsMicroscopyModelingModern ManMolecularMouthOral cavityOral healthPathogenesisPathogenicityQOLQuality of lifeResearchResearch ResourcesResourcesS mutansS. mutansSaccharoseStreptococcusStreptococcus mutansSucroseTestingTherapeuticTissue GrowthTn-seqTnseqTooth LossTranslatingUnited StatesUnited States Centers for Disease ControlUnited States Centers for Disease Control and PreventionVirulenceadulthoodbiofilmburden of diseaseburden of illnesscausationcomparativedemineralizationdental agentdental healthdevelopmentaldisease burdendisease causationfunctional genomicsgene manipulationgenetic determinantgenetic elementgenetic manipulationgenetically manipulategenetically perturbgraduate studentimprovedin vivoinfancyinfantilekidsmembermutantnew approachesnovelnovel approachesnovel strategiesnovel strategyontogenyoral bacteriaoral floraoral pathogenpathogentooltooth decaytooth enameltraining opportunitytraittransposon insertion sequencingtransposon sequencingundergradundergraduateundergraduate studentyoungster
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Full Description

Project Summary
In this project we will construct a powerful new tool to systematically identify infection-relevant genes in the

dental caries pathogen Streptococcus mutans. Sequence-defined arrayed mutant libraries are available for

several medical and model bacterial species. These tools have greatly accelerated the pace of genetic screens

and the identification of important pathogenic genetic determinants. We will construct an arrayed transposon

mutant library in the model laboratory strain UA159 and use a sequencing approach to determine the identity

of each mutant. After constructing the library, we will use it to study genetic determinants of sucrose-mediated

biofilm formation, which is a critical virulence trait of S. mutans. We will also use a comparative transposon

sequencing (Tn-seq) approach to identify genes that provide a selective advantage in biofilms. The results of

this research will include the following: 1) construction of an arrayed and sequence defined transposon mutant

resource for the S. mutans research community, 2) an improved understanding of the genetic determinants of

sucrose-mediated biofilm formation both in monoculture and in complex communities, and 3) we expect this

knowledge to contribute to the development of new approaches to target and reduce S. mutans colonization of

the oral cavity. This project will also provide training opportunities for undergraduate and graduate students

from Arkansas, an area that is underrepresented in biomedical research.

Grant Number: 1R15DE034550-01
NIH Institute/Center: NIH

Principal Investigator: Mohammad Alam

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