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Legacy Theses & Dissertations (2009 - 2024)

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Articles 1 - 30 of 49

Full-Text Articles in Microbiology

Implicating North American Lizards In The Borrelia Burgdorferi Sensu Stricto Sylvatic Cycle, Tristan Anthony Nowak May 2024

Implicating North American Lizards In The Borrelia Burgdorferi Sensu Stricto Sylvatic Cycle, Tristan Anthony Nowak

Legacy Theses & Dissertations (2009 - 2024)

Borrelia burgdorferi sensu lato (B. burgdorferi s.l.) spirochetes are the causative agents of Lyme disease (LD, Lyme borreliosis), the leading cause of tick-borne illness in North America (NA), Europe, and throughout temperate zones of the Holarctic region. Ixodes ticks are the only competent genus that permit acquisition, maintenance, and successful transmission of LD bacteria to subsequent hosts. LD spirochetes are unable to effectively pass through transovarial barriers, from adults to eggs, and therefore, next generation larvae are Lyme borreliae-free. Instead, B. burgdorferi s.l. are reliant on maintenance in both vertebrate and arthropod hosts to perpetuate high prevalence in nature. Of …


Vircy-Seq : A Protocol For Characterizing Viral Activity, Tyler James Dion Dec 2022

Vircy-Seq : A Protocol For Characterizing Viral Activity, Tyler James Dion

Legacy Theses & Dissertations (2009 - 2024)

The main purpose of pharmaceutical production is to produce safe effective medicine for patient use. In an effort to ensure patient safety constant surveillance for viruses takes place. The detection of a viral nucleic acid in a pharmaceutical production setting results in investigations to assess its infectious potential. This is an intensive, expensive process that entails many tests such as the observation of hemadsorption, cytopathic effects (CPE), and more. These tests are typically specific and only capture certain viruses, as factors like CPE can only be observed in some viral species. A new investigational method that is effective on all …


Characterizing And Epitope Mapping Single-Domain Antibodies On Borrelia Burgdorferi Protein Ospa, Saiful Basir Dec 2022

Characterizing And Epitope Mapping Single-Domain Antibodies On Borrelia Burgdorferi Protein Ospa, Saiful Basir

Legacy Theses & Dissertations (2009 - 2024)

Epitope mapping a protein that enables pathogenesis is crucial for the development of therapies and prophylactics that can inhibit the pathogen’s function and its transmission of disease. The lipoprotein OspA enables Lyme Disease etiologic pathogen, Borrelia burgdorferi, to inhabit the tick midgut until transmission occurs. Anti-OspA mAbs and their smaller VHH counterparts are highly specific and tailored to bind proteins such as OspA, reproducibly, at established binding sites or epitopes. Previous studies found an array of mAbs that successfully bound OspA and have already been used in epitope mapping. To our knowledge, this is the first use of VHHs in …


Characterization Of The Role Of The Replicase And Quasispecies Diversity In Flaviviral Evolution And Host Adaptation, Haley Caldwell May 2022

Characterization Of The Role Of The Replicase And Quasispecies Diversity In Flaviviral Evolution And Host Adaptation, Haley Caldwell

Legacy Theses & Dissertations (2009 - 2024)

Flaviviruses include several emerging and re-emerging arboviruses that cause millions of infections each year. Although relatively well-studied, much remains unknown regarding the mechanisms and means by which these viruses adapt to different hosts and rapidly alternate between hosts. Different aspects of flaviviral biology impact host switching, viral fitness, and the generation of viral diversity during genome replication by the NS3 and NS5 proteins. Together these factors may impact host plasticity.


Inhibition Of Lysine Acetyltransferases Kat 3a/3b And Its Effect On Poliovirus Proliferation, Eduards Norkvests Jan 2022

Inhibition Of Lysine Acetyltransferases Kat 3a/3b And Its Effect On Poliovirus Proliferation, Eduards Norkvests

Legacy Theses & Dissertations (2009 - 2024)

Ribosomes have been traditionally viewed as invariable machinery, but in recent years more and more evidence for their heterogeneity has emerged. Core ribosomal proteins, ribosomal-associated proteins, and post-translational modifications all contribute to the variations found within these crucial subcellular components.In our research, we focused on lysine acetylation – a post translational modification found on many ribosomal proteins. We used a chemical inhibitor of acetyltransferases KAT 3A and KAT 3B to observe the effect that inhibiting acetylation may have in the context of translation. By using poliovirus to shut off conventional cellular translation, we were able to look at a narrow …


Mechanisms By Which Protective Human Outer Surface Protein A Antibodies Block Transmission Of Borrelia Burgdorferi, Amber M. Frye Jan 2022

Mechanisms By Which Protective Human Outer Surface Protein A Antibodies Block Transmission Of Borrelia Burgdorferi, Amber M. Frye

Legacy Theses & Dissertations (2009 - 2024)

Borrelia burgdorferi (B. burgdorferi) is the causative agent of Lyme disease in the United States and Europe, which remains a major threat to public health. While currently no human Lyme disease vaccine is available, a previously licensed OspA-based vaccine was shown to effectively prevent transmission of B. burgdorferi from ticks to mammalian hosts. Concerning the vaccines mechanism of action, OspA antibodies enter the bloodmeal of a feeding tick and engage with B. burgdorferi producing OspA on their outer surface in a manner that impairs migration of the spirochete to the host; however exact antibody-spirochete interaction is unknown, despite the importance …


Genomic Epidemiology Of Clinical Salmonella Enterica In New Hampshire, 2017-2020, Madison R. Turcotte Jan 2022

Genomic Epidemiology Of Clinical Salmonella Enterica In New Hampshire, 2017-2020, Madison R. Turcotte

Legacy Theses & Dissertations (2009 - 2024)

Antimicrobial resistance in Salmonella enterica remains a challenging public health threat. We aim to characterize the population structure and evolutionary history of 394 genomes of S. enterica isolates recovered from human clinical cases in New Hampshire, USA from 2017 to 2020. The population is phylogenetically diverse, consisting of 78 STs and 67 serotypes. We detected 61 genes associated with resistance to14 different antimicrobial classes. Rather than a single multidrug resistant clone expanding in the state, we found multiple lineages carrying different combinations of independently acquired resistance determinants. New or emerging lineages can therefore rapidly spread over relatively short timeframes. In …


Elucidating The Relationship Between Recombination Frequency And Antibiotic Resistance In Staphylococcus Aureus, Joseph R. Matthews Aug 2021

Elucidating The Relationship Between Recombination Frequency And Antibiotic Resistance In Staphylococcus Aureus, Joseph R. Matthews

Legacy Theses & Dissertations (2009 - 2024)

Staphylococcus aureus is a common commensal and opportunistic pathogen of humans. It causes a variety of diseases, ranging from skin and soft infections to life-threatening invasive diseases. Many strains of S. aureus have developed resistance to a variety of antibiotic classes, including many beta-lactams. The evolution and dissemination of antibiotic resistance in S. aureus lay in large part to its remarkable ability of acquiring DNA from other organisms through horizontal gene transfer and recombination. In this study, I elucidated the relationship between frequencies of recombination events and horizontally acquired antibiotic resistant genes in a population of S. aureus sampled from …


Pseudo-Dumbbell And Dumbbell Rna Structures : Modulators Of Zika Virus Translation And Replication, Marissa Eileen Louis May 2021

Pseudo-Dumbbell And Dumbbell Rna Structures : Modulators Of Zika Virus Translation And Replication, Marissa Eileen Louis

Legacy Theses & Dissertations (2009 - 2024)

Upon its discovery in 1947, Zika virus has remained in the shadows until its re-emergence in 2015, where Zika virus wreaked havoc on the lives of mothers and their infants around the world. The pathologies related to this virus range from neurological defects, such as Guillain-Barré syndrome, and congenital birth defects, such as Congenital Zika Syndrome, spontaneous miscarriages and fetal demise.Since 2015, this virus has been largely studied, but secondary structure and function of RNA structures at the end of the 3’UTR, namely the pseudo-dumbbell and the dumbbell (DB) structures, remains elusive. Thus, this dissertation addresses several questions pertaining to …


Isolating Oral Bacterial Species From A Single Donor Through A Multi-Step Detection Method, Khalid Al-Lakhen May 2021

Isolating Oral Bacterial Species From A Single Donor Through A Multi-Step Detection Method, Khalid Al-Lakhen

Legacy Theses & Dissertations (2009 - 2024)

The human oral microbiome is one of the most complex microbiome communities in the human body and its role in maintaining health is not fully understood. Previous research shows that the transition from health to disease is accompanied by changes in community abundance and structure. To fully understand the symbiotic relationship formed between bacterial species that leads to the formation of a functional healthy biofilm structure, we must study the various structural relationships and subsequent molecular interactions among individual species within the biofilm. In this thesis, I have isolated a pure bacteria species from a single donor's dental plaque and …


Characterization Of A Putative Helicase In Rifampicin Resistance Of Mycobacterium Abscessus:, Aavrati Saxena May 2021

Characterization Of A Putative Helicase In Rifampicin Resistance Of Mycobacterium Abscessus:, Aavrati Saxena

Legacy Theses & Dissertations (2009 - 2024)

Mycobacterium abscessus (Mab), a non-tuberculous environmental mycobacterium is one of the emerging pathogens. The number of Mab infections has doubled in the past decade. It is also an opportunistic pathogen usually infecting immunocompromised individuals and causing numerous skin and soft tissue infections. It commonly causes lung infections in people who are already infected with one or other lung infections such as tuberculosis. The treatment of Mab infections is difficult because of its intrinsic resistance to most of the antibiotics available. This project studies Rifampicin (RIF) resistance in Mab, as RIF is a well-established treatment for other mycobacterial infections including tuberculosis, …


Passive Immunization Against Invasive Salmonella Enterica, Angelene Richards Jan 2021

Passive Immunization Against Invasive Salmonella Enterica, Angelene Richards

Legacy Theses & Dissertations (2009 - 2024)

The Gram-negative bacterium, Salmonella enterica is a prominent etiologic agent of both diarrheal disease and enteric fever that encompasses over 2500 serovars, including S. Typhimurium (STm) and S. Typhi (STy). S. enterica is transmitted through contaminated food and water and, following ingestion, invades the gastrointestinal (GI) mucosa. The bacterium uses flagellar-based motility to target microfold (M) cells overlying gut-associated lymphoid tissues known as Peyer’s patches in the small intestine. Entry into Peyer’s patch tissues is a pivotal step in the infection process, as the bacterium can then disseminate systemically in the host. Given the rise in antibiotic resistance amongst S. …


Host Factors Affecting Group Ii Intron Retrotransposition, Justin Michael Waldern Jan 2021

Host Factors Affecting Group Ii Intron Retrotransposition, Justin Michael Waldern

Legacy Theses & Dissertations (2009 - 2024)

Group II introns are self-splicing mobile elements that are thought to be the evolutionary ancestors of eukaryotic retrotransposons, the spliceosome, and spliceosomal introns. Yet, little is known about how group II introns have coevolved within their native hosts or about the corresponding host biology.Using the Ll.LtrB intron in its native host, Lactococcus lactis, I first sought to identify host factors that influence retrotransposition. Since retrotransposition can be costly to the host organism, group II introns must achieve a delicate balance between self-proliferation and host preservation. By utilizing the native host organism, my goal was to unearth retrotransposition-related mechanisms that have …


The Role Of Conserved Poly(A) Sequences In The 3'Utr Of Zika Virus Gene Expression, Kristen Kaytes Jan 2021

The Role Of Conserved Poly(A) Sequences In The 3'Utr Of Zika Virus Gene Expression, Kristen Kaytes

Legacy Theses & Dissertations (2009 - 2024)

Following its discovery in 1947, Zika virus garnered little attention in the global stage until 2015, when a rapidly spreading epidemic brought the virus, and its devastating clinical manifestations to light. Zika virus pathologies include Congenital Zika Syndrome, a known causative of microcephaly, as well as spontaneous miscarriages and the development of Guillain Barré syndrome. Despite recent advances in research, the molecular biology of Zika virus is largely unknown.


Retrotransposon-Mediated Transduction Of An Environmental Cue To Regulate Centrosome Fate, Shawn Patrick Murphy Jan 2021

Retrotransposon-Mediated Transduction Of An Environmental Cue To Regulate Centrosome Fate, Shawn Patrick Murphy

Legacy Theses & Dissertations (2009 - 2024)

In 1969, the enrichment of mobile element repeat sequences led Britton and Davidson to propose the hypothesis that gene expression in higher eukaryotes is regulated through the exaptation of mobile elements. In this work, I have explored the hypothesis that mobile elements can also be harnessed by the host to regulate asymmetric cell division, thereby determining cell fate. Retrotransposons are ubiquitous eukaryotic mobile elements that transpose through an RNA intermediate. They are often active in cell types that divide asymmetrically to yield daughter cells with different fates, such as embryonic stem cells, germline stem cells, neuronal stem cells and the …


The Phosphodiesterase, Rv0805, Is An Unheralded Component Of Tb Complex Mycobacterial Physiology In And Beyond Camp Homeostasis, James R. Mcdowell Jan 2021

The Phosphodiesterase, Rv0805, Is An Unheralded Component Of Tb Complex Mycobacterial Physiology In And Beyond Camp Homeostasis, James R. Mcdowell

Legacy Theses & Dissertations (2009 - 2024)

Phosphodiesterases (PDEs) are integral components of 3’,5’-cyclic adenosine monophosphate (cAMP) signaling pathways by degrading cAMP to modulate the concentration, duration, and localization of the cAMP signal which maintains the specificity of cAMP pathways. The human pathogen, Mycobacterium tuberculosis (Mtb) has a unique cAMP network architecture with at least 15 adenylyl cyclases (ACs) that generate cAMP, but only one characterized PDE, Rv0805, which is found exclusively in pathogenic mycobacteria. Rv0805 can influence Mtb cAMP levels but the absence of Rv0805 orthologs in non-pathogenic mycobacteria and apparent separation of Rv0805 from cAMP directed roles led to numerous questions surrounding PDE function in …


Rna Modifications As A Novel Mediator Of Viral Infection, Rachel Netzband Jan 2021

Rna Modifications As A Novel Mediator Of Viral Infection, Rachel Netzband

Legacy Theses & Dissertations (2009 - 2024)

Viral epitranscriptomics is a novel field of RNA biology. Chemical groups are appended to RNA nucleotides under different conditions in cells, and I examine these changes using a mass spectrometry-based approach. Various changes are found to occur in post-transcriptional modifications (PTMs) during viral infection. The field primarily studies a small number of PTMS, such as m6A, while I explore a variety of novel modifications and their impact on viral infection. Hepatitis C virus (HCV) infection induces a variety of modification changes, including the novel presence of dimethylcytosine (m5Cm/m44C). One Writer enzyme for this modification is determined to likely be METTL15, …


Adaptation Of Vibrio Cholerae O1 To Protective, Lipopolysaccharide-Specific Antibodies In The Intestinal Lumen, Danielle Elizabeth Baranova Jan 2020

Adaptation Of Vibrio Cholerae O1 To Protective, Lipopolysaccharide-Specific Antibodies In The Intestinal Lumen, Danielle Elizabeth Baranova

Legacy Theses & Dissertations (2009 - 2024)

The outer membrane (OM) of Gram-negative enteric pathogens like Vibrio cholerae is a barrier against host defense factors, as well as a sensor of physical and chemical stimuli that the bacteria encounter in the gastrointestinal tract. The OM is also the primary target of the mucosal immune response, which consists of secretory antibodies primarily directed against lipopolysaccharide (LPS). ZAC-3 is a monoclonal antibody (MAb) that targets the conserved core/lipid A region of LPS of the pandemic V. cholerae O1 serotype. In a neonatal mouse model, passively administered ZAC-3 IgG has been shown to reduce the ability of V. cholerae to …


Molecular Mechanisms Shaping Host Range Of A Vector-Borne Pathogen, Thomas Macgregor Hart Jan 2020

Molecular Mechanisms Shaping Host Range Of A Vector-Borne Pathogen, Thomas Macgregor Hart

Legacy Theses & Dissertations (2009 - 2024)

Vector-borne diseases, such as Lyme disease caused by Borrelia burgdorferi sensu lato (Bbsl), have narrow host ranges and are apt models to study host-microparasite coevolution. Some species and strains of Lyme borreliae (LB) are specialists, infecting only mammalian or only avian hosts (ex. Borrelia afzelii and B. garinii, respectively), while others are generalists and infect both hosts (ex. B. burgdorferi). Such host tropisms are hypothesized to be partially shaped by the ability of these pathogens evade host immune defenses, such as complement. Complement is a first line host defense against invading pathogens that kills LB in vitro and inhibits spirochete …


Development Of Small Molecule Antibiotics Against A Conserved Rna Gene Regulatory Element In Gram-Positive Bacteria, Ville Yrjö Petteri Väre Jan 2020

Development Of Small Molecule Antibiotics Against A Conserved Rna Gene Regulatory Element In Gram-Positive Bacteria, Ville Yrjö Petteri Väre

Legacy Theses & Dissertations (2009 - 2024)

Bacterial infections and the rise of antibiotic resistance, especially multidrug resistant strains, have generated a clear need for discovery of novel therapeutics. Most antibiotics in use today are derivatives of previous antibiotics to which resistance mechanisms already exist, and traditionally they have a single target: either a protein or rRNA. Gram-positive bacteria regulate the expression of several essential genes or operons using a mechanism called the T-box. The T-box is a structurally conserved riboswitch-like gene regulator in the 5’-untranslated region (UTR) of numerous essential genes of Gram-positive bacteria. T-boxes are stabilized by cognate, unacylated tRNA ligands, allowing the formation of …


Regulation Of Gene Expression Through Ribosome-Associated Proteins, Clare Margaret Miller Jan 2020

Regulation Of Gene Expression Through Ribosome-Associated Proteins, Clare Margaret Miller

Legacy Theses & Dissertations (2009 - 2024)

Translation is a crucial mechanism for generating proteins to carry out cellular processes and for ensuring proper cell functions. Ribosomes are at the center of translation and are complex pieces of machinery. They consist of at least 80 core eukaryotic ribosomal proteins, which are conserved from prokaryotes, and four ribosomal RNAs (rRNAs): 18S, 28S, 5,8A 5S. In addition, numerous translation factors aid the ribosome in protein production. While ribosomes are typically described by these core features, they are known to exist in a heterogenous pool with variations in protein composition, modifications of rRNA, and an assortment of non-ribosomal proteins that …


Post-Translational Modifications And Functional Studies Of Dksa In Escherichia Coli, Andrew Charles Isidoridy Jan 2019

Post-Translational Modifications And Functional Studies Of Dksa In Escherichia Coli, Andrew Charles Isidoridy

Legacy Theses & Dissertations (2009 - 2024)

DksA is a bacterial gene regulator that functions synergistically with the stress alarmone ppGpp to mediate the stringent response. DksA also functions independently of ppGpp to regulate transcription of a number of genes. DksA function is dependent on its binding affinity to RNA polymerase and requires specific interactions between RNAP and catalytic amino acids located on the coiled coil tip, D74 and A76. While much of the previous work on DksA has focused on understanding the mechanisms of action and the numerous gene targets for transcriptional regulation, little is known about the mechanisms by which DksA expression and function may …


Transcriptional Regulation Of Dksa In E. Coli, Daniel Thomas Woods Jan 2019

Transcriptional Regulation Of Dksa In E. Coli, Daniel Thomas Woods

Legacy Theses & Dissertations (2009 - 2024)

DksA is a global transcription factor that binds RNAP directly to regulate the expression of many genes and operons, including ribosomal RNA, in a ppGpp-dependent or ppGpp–independent manner. It is also involved in facilitating the process of DNA replication by removing stalled transcription elongation complexes that could block the progress of the replication fork. In addition, DksA is important for colonization, establishment of biofilms, and pathogenesis. In order to sustain these various functions, an adequate level of cellular DksA is required. This work tested the hypothesis that the E. coli dksA is substantially regulated at the level of transcription. Using …


Premature Rho-Dependent Transcription Termination In Escherichia Coli : Link To Translation And Gene Regulation, Gabriele Baniulyte Jan 2019

Premature Rho-Dependent Transcription Termination In Escherichia Coli : Link To Translation And Gene Regulation, Gabriele Baniulyte

Legacy Theses & Dissertations (2009 - 2024)

Transcription termination factor Rho is an essential protein in Escherichia coli and related bacteria. The primary function of Rho is to clear unproductive RNA polymerases from the DNA template to minimize negative effects associated with uncontrolled transcription. Although most of the Rho termination events are constitutive, premature Rho-mediated termination was observed at 3% of all affected transcripts indicating active regulation of Rho activity. In this work, we investigated the regulatory mechanism behind premature Rho-dependent transcription termination in two unrelated genes: suhB and topAI. We show that in both cases transcription is terminated inside the coding gene as a consequence of …


Contrasting Roles Rna Binding Proteins G3bp1 And Hur Influence Zika Virus And A Proposed Mechanism By Which Zika Virus Induces Neurological Complications, Gaston Bonenfant Jan 2019

Contrasting Roles Rna Binding Proteins G3bp1 And Hur Influence Zika Virus And A Proposed Mechanism By Which Zika Virus Induces Neurological Complications, Gaston Bonenfant

Legacy Theses & Dissertations (2009 - 2024)

Globalization and climate change have contributed to the rampant spread of mosquitos from tropical and subtropical climates into more moderate climates, and thus also the spread of a number of vector-borne viruses. As of 2016, the World Health Organization (WHO) estimates that of all human infections world-wide, 16% result from vectors such as flies, ticks, and mosquitos. The spread of such viruses has encouraged expedient evolutionary pressures resulting in more pathogenic viruses that continually pose a serious threat to public health. First discovered in 1947, Zika virus (ZIKV) has only recently presented as a detriment to public health. The importance …


Cyclic Adenosine Monophosphate Signaling In Mycobacterium Tuberculosis : New Insights Into A Universal Second Messenger, Richard Mcpherson Johnson Jan 2018

Cyclic Adenosine Monophosphate Signaling In Mycobacterium Tuberculosis : New Insights Into A Universal Second Messenger, Richard Mcpherson Johnson

Legacy Theses & Dissertations (2009 - 2024)

Despite being the focus of intense research for many years Mycobacterium tuberculosis (Mtb), the causative agent of tuberculosis (TB), remains the deadliest bacterial pathogen plaguing mankind today. Humans are the sole host and reservoir for Mtb, and Mtb has coevolved closely with its human host for thousands of years. Mtb currently infects over two billion people worldwide and over 1.5 million people die from TB each year, arguably making Mtb the most successful bacterial pathogen on the planet.


Investigation Of The Ms2 Bacteriophage Capsid As An Mri-Capable, Brain-Targeted Nanoparticle Platform, Stephanie M. Curley Jan 2018

Investigation Of The Ms2 Bacteriophage Capsid As An Mri-Capable, Brain-Targeted Nanoparticle Platform, Stephanie M. Curley

Legacy Theses & Dissertations (2009 - 2024)

Novel methods are needed to traverse the blood-brain barrier (BBB) and deliver drugs to specific targets in the brain. To this end, MS2 bacteriophage was explored as a multifunctional transport and targeting vector. The MS2 capsid exterior was modified with two different targeting moieties for delivery across the BBB and targeting specific regions of interest in the brain. Successful modification of MS2 capsids with a brain targeting peptide and NMDAR2D-targeting antibody was confirmed by immunoblotting and fluorescence detection. To measure transport efficiency of MS2 particles across an in vitro BBB model, a highly sensitive RT-qPCR protocol was developed and implemented. …


Profiling Resistance To P450-Activated Food Carcinogens Using Toxicogenomic Approaches In Budding Yeast, Nicholas Stjohn Jan 2017

Profiling Resistance To P450-Activated Food Carcinogens Using Toxicogenomic Approaches In Budding Yeast, Nicholas Stjohn

Legacy Theses & Dissertations (2009 - 2024)

The human response to environmental carcinogens, some of which require metabolic activation, is highly variable. Factors such as environment, lifestyle, and genetics all influence the rates of exposure to and ultimate bioactivation of these compounds. Genetic factors include mutations to cell-cycle regulation, cell proliferation, and DNA repair genes; however, epidemiological studies may lack significance due to inadequate patient numbers. We used budding yeast as a model organism to determine genetic susceptibility to food-associated carcinogens, including aflatoxin (AFB1) and heterocyclic aromatic amines (HAAs). Budding yeast does not contain P450s that activate these compounds, so expression vectors were induced that contain human …


Novel Approaches To Mitigating Bacterial Biofilm Formation And Intercellular Communication, Stephen Kasper Jan 2017

Novel Approaches To Mitigating Bacterial Biofilm Formation And Intercellular Communication, Stephen Kasper

Legacy Theses & Dissertations (2009 - 2024)

Long thought of as solitary single-cell organisms, it is now widely accepted that bacteria can act and cooperate as social organisms. Phenomena such as biofilm formation and quorum sensing (QS) are two intimately intertwined cooperative behaviors that significantly contribute to the pathogenesis of many bacteria. Biofilms are surface associated communities of bacteria encased in a secreted extracellular matrix, which provides several advantages over an individualized lifestyle, such as increased protection from antimicrobial agents as well as enhanced opportunity for the exchange of genetic material. Bacterial QS is a system of population-based communication through the production, sensing, and response to chemical …


Structural And Functional Characterization Of An Unusual Camp Responsive Transcription Factor, Cmr, In Tb Complex Mycobacteria, Sridevi Ranganathan Jan 2017

Structural And Functional Characterization Of An Unusual Camp Responsive Transcription Factor, Cmr, In Tb Complex Mycobacteria, Sridevi Ranganathan

Legacy Theses & Dissertations (2009 - 2024)

Mycobacterium tuberculosis (Mtb), the causative agent of tuberculosis in humans, is an intracellular pathogen that infects millions of people every year. Mtb can survive inside the host for extended periods of time by sensing and adapting to the host environmental stressors. Transcriptional gene regulation plays a critical role in this adaptation. This dissertation focuses on understanding the structural and functional aspects of one such transcriptional regulatory unit, Cmr (Rv1675c), in Mtb.