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Articles 1 - 8 of 8
Full-Text Articles in Pathogenic Microbiology
Coxiella Burnetii Manipulation Of Membrane Contact Sites In The Intracellular Niche, Margaret F. Sladek
Coxiella Burnetii Manipulation Of Membrane Contact Sites In The Intracellular Niche, Margaret F. Sladek
Theses & Dissertations
Coxiella burnetii is a highly infectious and environmentally persistent bacterium that causes the disease Q Fever. Its intracellular home, the Coxiella-Containing Vacuole (CVV), is formed from fusion of host-derived vesicles and is rich in sterols - yet cholesterol accumulation in the CCV is bacteriolytic. Our lab’s goal is to understand how Coxiella manages intracellular cholesterol levels and survives within the host. One way Coxiella may modulate CCV cholesterol is through membrane contact sites (MCS), areas where molecular complexes bridge two organelles and exchange lipids. This thesis explores how Coxiella uses both a mammalian lipid transfer protein and bacterially-encoded effector …
Eating The Fat Of The Land: The Work Of Coxiella Burnetii To Traverse Intracellular Lipid Landscapes, Charlie Porto
Eating The Fat Of The Land: The Work Of Coxiella Burnetii To Traverse Intracellular Lipid Landscapes, Charlie Porto
Theses & Dissertations
Coxiella burnetii is an obligate intracellular pathogen and the causative agent of Q fever in humans. With primary hosts in livestock ruminants, C. burnetii is endemic globally, presenting significant health risks to agricultural workers and herd health at large. Numerous wild animal reservoirs exist, increasingly threatened by expanding livestock ranges. Furthermore, with a low infectious dose through aerosol transmission, the CDC considers C. burnetii a potential bioweapon, though in humans a large amount of infections persist subclinically, occasionally progressing to pneumonia and hepatitis with chronic infections leading to endocarditis.
The parasitic life cycle of C. burnetii is biphasic, a small …
Synergetic Signaling Between The Chlamydia Secreted Effectors Tarp And Tmea Regulates Actin Kinetics And Efficient Entry, Matthew Romero
Synergetic Signaling Between The Chlamydia Secreted Effectors Tarp And Tmea Regulates Actin Kinetics And Efficient Entry, Matthew Romero
Theses & Dissertations
Chlamydia trachomatis is both the leading cause of non-congenital preventable blindness in developing nations and the leading source of bacterial sexually transmitted infections. As an obligate intracellular pathogen, Chlamydia has an absolute requirement on gaining entry into its host, which is accomplished by manipulating the host actin cytoskeleton to assemble engulfment structures that drive pathogen entry. In support of this, Chlamydia secretes the effectors TarP and TmeA via a type-III secretion system, whose respective signaling outputs operate synergistically to generate rapid actin kinetics and efficient pathogen engulfment. Rapid actin recruitment characteristic of invading Chlamydia is derived from a collaborative interaction …
A Critical Assessment Of The Role Of Clpxp-Mediated Proteolysis In The Development And Differentiation Of Chlamydia Trachomatis, Nicholas A. Wood
A Critical Assessment Of The Role Of Clpxp-Mediated Proteolysis In The Development And Differentiation Of Chlamydia Trachomatis, Nicholas A. Wood
Theses & Dissertations
Chlamydia trachomatis, an obligate intracellular human pathogen, is the etiological agent of the most commonly reported bacterial sexually transmitted infection and the leading cause of preventable infectious blindness worldwide. In adapting to an intracellular niche, Chlamydia has evolved to eliminate superfluous genes from its chromosome. Despite its highly reduced genome, Chlamydia undergoes a complex developmental cycle in which the bacteria differentiate between two functionally and morphologically distinct forms: the infectious, non-replicative elementary body (EB) and the non-infectious, replicative reticulate body (RB). An EB initiates infection by binding to and inducing uptake into a host cell. Within the cell, the EB …
Crispr Technology As An Antiviral In Dsdna And Ssrna Viruses, Cathryn Mayes
Crispr Technology As An Antiviral In Dsdna And Ssrna Viruses, Cathryn Mayes
Theses & Dissertations
The COVID-19 pandemic highlights the necessity of emergency response and pandemic preparedness, especially for emerging viral threats. Currently, virus-specific vaccines and antivirals are the primary tools to combat viral diseases; however, broad-spectrum antivirals that target more than one virus species could provide additional protection from emerging and re-emerging viral diseases (Andersen et al. 2020; Zhu et al. 2015; Hickman et al. 2022).
Clustered regulatory interspaced short palindromic repeat (CRISPR)-associated endonucleases have become recently utilized as potential antiviral strategies due to their high specificity, efficacy, and versatility (Najafi et al. 2022). While CRISPR-based antivirals have previously been used to target specific …
Role And Regulation Of Staphylococcal Cell Death, Abdulelah Ahmed Alqarzaee S
Role And Regulation Of Staphylococcal Cell Death, Abdulelah Ahmed Alqarzaee S
Theses & Dissertations
The transition from growth to stationary phase is a natural response of bacteria to starvation and stress. When stress is alleviated and more favorable growth conditions return, bacteria resume proliferation without a significant loss in fitness. Although specific adaptations that enhance persistence and survival of bacteria in stationary phase have been identified, mechanisms that help maintain the competitive fitness potential of non-dividing bacterial populations have remained obscure. This dissertation demonstrates that staphylococci entering stationary phase following growth in excess glucose undergo regulated cell death to maintain the competitive fitness potential of the population. Upon a decrease in extracellular pH, the …
Insights Into The Chlamydial Niche: The Dynamic Roles Of Inclusion Membrane (Inc) Proteins In Chlamydia Trachomatis Development, Macy G. Wood
Theses & Dissertations
Chlamydia trachomatis (Ctr) is the leading cause of bacterial sexually transmitted infections. Ctr, an obligate intracellular bacterium, develops within a membrane-bound vacuole called an inclusion. The inclusion membrane is modified by chlamydial inclusion membrane (Inc) proteins, the functions of which are poorly characterized. Bacterial two-hybrid analyses found some Incs (e.g., IncF) interacted with numerous Incs while others (e.g., IncA) did not. We hypothesize that some Incs organize the inclusion through Inc-Inc interactions whereas other Incs promote chlamydial-host interactions by binding eukaryotic proteins. To test our hypothesis, we implemented the ascorbate peroxidase proximity labeling system (APEX2), which labels proximal proteins with …
Francisella Tularensis Insertion Sequence Elements Contribute To Differential Gene Expression, Amanda M. Bartling
Francisella Tularensis Insertion Sequence Elements Contribute To Differential Gene Expression, Amanda M. Bartling
Theses & Dissertations
This abstract is under embargo until April 26, 2020.