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Articles 16801 - 16830 of 24787
Full-Text Articles in Entire DC Network
Structural And Functional Insights Into Influenza A Virus Ns1-Mediated Rig-I Antagonism, Alexander Jureka
Structural And Functional Insights Into Influenza A Virus Ns1-Mediated Rig-I Antagonism, Alexander Jureka
All ETDs from UAB
The influenza virus non-structural protein 1 is well known to antagonize the host innate immune response through its interaction with the innate immune sensor, retinoic acid induc-ible gene I (RIG-I). While the complete mechanism of the NS1:RIG-I interaction remains unclear, we were the first to demonstrate a direct interaction between the NS1 RNA-binding domain (NS1RBD) from the 1918H1N1 influenza virus and the second caspase activa-tion and recruitment domain (CARD2) of RIG-I using NMR. In addition, we also identi-fied that mutation of Arg 21 in the 1918H1N1 NS1RBD to Gln (R21Q) completely abrogated the NS1:CARD2 interaction. Given that CARD2 plays a …
Marcks Effector Domain: Functions In Glioblastoma Progression And Novel Cytolytic Therapy, Nicholas James Eustace
Marcks Effector Domain: Functions In Glioblastoma Progression And Novel Cytolytic Therapy, Nicholas James Eustace
All ETDs from UAB
Glioblastoma (GBM; grade IV astrocytoma) is the most common primary adult brain malignancy and remains incurable despite tremendous advances in our understanding of this heterogeneous disease. In this dissertation, we explore the challenges encountered in the treatment of GBM and discuss a promising new therapeutic approach gleaned from studies of the phospholipid binding “effector” domain (ED) of the protein Myristoylated alanine-rich protein C kinase substrate (MARCKS). Following an introduction to central nervous system (CNS) tumors and the grading of diffuse gliomas, we explain how recent advancements to our understanding of the cellular and molecular composition of CNS tu-mors, and the …
Regulation Of St6gal-I In Cancer: Sox2 Identified As Novel Driver Of St6gal-I Expression, Kaitlyn Alexandra Dorsett
Regulation Of St6gal-I In Cancer: Sox2 Identified As Novel Driver Of St6gal-I Expression, Kaitlyn Alexandra Dorsett
All ETDs from UAB
ST6Gal-I is a sialyltransferase that functions to add an 2-6 linked sialic acid to N-linked glycoproteins. The expression of ST6Gal-I is upregulated in many cancers at both the mRNA and protein levels. ST6Gal-I has also been shown to promote cancer stem cell (CSC) characteristics including chemoresistance, tumor-initiating potential, and spheroid growth. However, the transcriptional drivers of ST6Gal-I expression in stem-like cells remain largely unknown. Herein we highlight that SOX2 and ST6GAL1 are both located on one of the most commonly amplified chromosomal segments in cancer, amplicon 3q26. Copy number gains in both SOX2 and ST6GAL1 are observed in roughly 25% …
Identification Of Two Spop-Mediated Pathways In Prostate Cancer Progression, Joshua Fried
Identification Of Two Spop-Mediated Pathways In Prostate Cancer Progression, Joshua Fried
All ETDs from UAB
Prostate cancer is one of the most common malignancies and causes of cancer related death in men. Morbidity is primarily attributed to late-stage and metastatic disease. Re-cent genomic screening studies have revealed that the Speckle type Poz Protein (SPOP) is the most frequently altered gene by missense mutations in prostate cancer. Interestingly, all of the identified mutations were located in the substrate binding domain of SPOP. Here, two pathways highlighting the impact of SPOP mutation on prostate cancer are pre-sented. First, evidence showing that one of the naturally occurring SPOP mutations, ser-ine 119 to asparagine (S119N), induces radiosensitivity and an …
The Role Of Nudc In Rod Photoreceptor Cell Maintenance: A New Function For An Old Protein, Evan Boitet
The Role Of Nudc In Rod Photoreceptor Cell Maintenance: A New Function For An Old Protein, Evan Boitet
All ETDs from UAB
The overall health and maintenance of rod photoreceptors depends on directed vectorial transport of rhodopsin from its synthesis within the inner segment to its target destination the outer segment disk membranes. Numerous proteins are known to be involved in molecular interactions with rhodopsin during transport, including the interaction of nuclear distribution protein C (nudC) with rhodopsin that was first described in Xenopus laevis. We found that the interaction of nudC and rhodopsin is conserved in mammalian retina. This interaction is direct and aberrant expression of nudC results in subcellular localization of rhodopsin. We show for the first time that nudC …
Early Life Stress And Immune Responses In Adult Rat Kidneys, Ijeoma E. Obi
Early Life Stress And Immune Responses In Adult Rat Kidneys, Ijeoma E. Obi
All ETDs from UAB
Globally, human studies show overwhelming associations between adverse childhood experiences and cardiovascular disease (CVD) and CVD risks throughout adult life. As early as 6 years old, there are significant associations between childhood adversity and inflammation, and those association are observed throughout adult life as well. Over a decade ago, rodent models were used to establish the importance of the immune cells in hypertension, which is the major risk factor in developing CVD. Although these associations in humans are important, they pose several limitations that can be overcome by the use of animal models to study the molecular mechanisms that are …
Dysregulation In The Central Nervous System Upon Mcmv Infection In Newborn Mice, Cathy Yea Won Sung
Dysregulation In The Central Nervous System Upon Mcmv Infection In Newborn Mice, Cathy Yea Won Sung
All ETDs from UAB
Human cytomegalovirus (HCMV) infection is a major cause of morbidity in infants and children throughout the world. Between 0.2-1.2% of all live births is infected with HCMV in the United States. Approximately 5-15% of these newborn babies will develop long-term neurological damage resulting in motor disorders, mental retardation, and sensorineural hearing loss. Although the neurological sequelae associated with congenital HCMV infections are well characterized, little is known about the pathogenesis of the damage to the central nervous system (CNS). To study the pathogenesis of congenital HCMV infection, we have developed a mouse model in which newborn mice are infected intraperitoneally …
Therapeutic Mechanisms In Sickle Cell Nephropathy, Crystal Taylor
Therapeutic Mechanisms In Sickle Cell Nephropathy, Crystal Taylor
All ETDs from UAB
Sickle cell disease (SCD) is a commonly inherited genetic blood disorder that causes hypoxia-induced polymerization of mutant hemoglobin resulting in erythrocyte sickling, transient microvascular occlusion, ischemic injury, and end-organ damage. Systemic endothelial dysfunction and vaso-occlusive episodes observed in SCD are particularly deleterious to the kidney, where the hypoxic, hyperosmotic environment of the medulla makes it particularly susceptible to ischemic injury. Over recent decades, chronic kidney disease has emerged as a significant contributor to mortality and morbidity in SCD patients. Despite a growing interest in the importance of sickle cell nephropathy (SCN), therapeutic options are limited and much remains undiscovered regarding …
The Role Of Protein O-Glcnacylation In Regulating Mitochondrial Function, Jalessa Nicole Wright
The Role Of Protein O-Glcnacylation In Regulating Mitochondrial Function, Jalessa Nicole Wright
All ETDs from UAB
The attachment of O-linked-N-acetylglucosamine (O-GlcNAc) to the serine/threonine residues of proteins has emerged as an important regulatory mechanism in transcriptional regulation, protein activation as well as cell survival. Several studies have reported that elevated O-GlcNAc levels have adverse effects on mitochondrial function. These negative effects have been linked to O-GlcNAc modification of mitochondrial proteins that are integral across multiple metabolic cell processes i.e. VDAC, NDUFA9 and DRP-1. Mitochondrial complexes I, III and IV all contain subunit proteins that are O-GlcNAc modified and increased O-GlcNAcylation of these proteins is associated with deficits in oxidative phosphorylation in these models. Conversely, it has …
Synthesis And Bioevaluation Of Methionine Depletion Agents, Houssine Ikhlef
Synthesis And Bioevaluation Of Methionine Depletion Agents, Houssine Ikhlef
Electronic Theses and Dissertations
The native polyamines (putrescine, spermidine, and spermine) are low molecular weight amines that exist as polycations at physiological pH. These polycations interact with DNA, RNA, and influence many cellular processes. Intracellular polyamine levels are maintained via a balance of polyamine biosynthesis, catabolism, and transport. Ornithine, an amino acid obtained from L-arginine, is decarboxylated by ornithine decarboxylase (ODC) to form putrescine. The biosynthesis of the higher polyamines, spermidine and spermine, requires the addition of an amino-propyl group donated by decarboxylated S-adenosylmethionine (dc-SAM), which itself is derived from the amino acid L-methionine (Met). Tumor cells are heavily reliant on methionine because it …
It Takes Two To Tango: The Toxin-Chaperone Relationship, Alisha Kellner
It Takes Two To Tango: The Toxin-Chaperone Relationship, Alisha Kellner
Electronic Theses and Dissertations
Cholera toxin (CT) enters the cell via receptor-mediated endocytosis and travels in a retrograde fashion to the endoplasmic reticulum (ER). The catalytic A1 subunit (CTA1) is then displaced from the rest of the holotoxin, unfolds, and is exported to the cytosol where it regains an active conformation for the ADP-ribosylation of its G-protein target. We have shown that the cytosolic chaperones Hsp90 and Hsc70 are required for CTA1 translocation to the cytosol. We have also shown that both are able to independently bind and refold CTA1. Using libraries of CTA1-derived peptides, we have identified a single Hsc70 binding site, YYIYVI …
Studies Of Oxidative Damage, Brain Proteome, And Neurochemical Metabolites In Cognitive And Neurodegenerative Disorders: (1) Chemotherapy-Induced Cognitive Impairment; (2) Parkinson Disease Rat Model, Xiaojia Ren
Theses and Dissertations--Chemistry
The rate of cancer patients is increasing as the development of science and technology. Twenty million cancer survivors are estimated living in the United States by 2025. However, many cancer survivors show cognitive dysfunction, negatively affecting the quality of life. These cognitive impairments are recognized as chemotherapy-induced cognitive impairment (CICI), also called "chemo brain" by cancer survivors, including the diminished ability of memory and learning, hard to concentrate and focus, as well as diminution of executive function and processing speed. The etiologies and pathologies of CICI are complicated, especially in most cases the anti-cancer drug cannot cross the blood-brain barrier …
Best Practices In Patellar Tendinopathy Management: An Evidence To Practice Review, Christopher J. Burcal, Adam B. Rosen, Tony Taylor, Mike Nicola
Best Practices In Patellar Tendinopathy Management: An Evidence To Practice Review, Christopher J. Burcal, Adam B. Rosen, Tony Taylor, Mike Nicola
Clinical Practice in Athletic Training
Patellar tendinopathy (PT) is a degenerative condition that is common in sporting populations due to the loads placed on the tendon during dynamic activity. PT often occurs in overtraining situations; however, it may also occur in conjunction with and/or worsen through poor biomechanics, persistent inflammation, and altered movement patterns. Although sports medicine practitioners have evidence to support the prevalence of this injury, we do not have a strong base of evidence surrounding the contributing factors and pathophysiology that lead the pain and disability reported in patients with PT. The purpose of this evidence to practice review was to summarize a …
Regulation Of Intestinal Innate Lymphoid Cells In Acute And Chronic Inflammation, Sarah Dulson
Regulation Of Intestinal Innate Lymphoid Cells In Acute And Chronic Inflammation, Sarah Dulson
All ETDs from UAB
The Innate Lymphoid Cell (ILC) population encompasses five subpopulations that are increasingly appreciated to participate in immune responses to inflammation and injury as well as directly influence homeostasis in tissues throughout the body. ILCs are enriched at mucosal surfaces, such as the gastrointestinal tract, where they are transcriptionally poised for rapid activation. Therefore, ILCs contribute significantly to protective responses to infection, and can exacerbate inflammation and disease when dysregulated. Herein, we demonstrate two pathways that regulate intestinal ILC phenotype and function and delineate the impact of these pathways on both protective and pathogenic roles of ILCs. Using a murine model …
Bet Bromodomain Inhibition As An Approach For Treatment Of Cholangiocarcinoma, Samuel Charles Fehling
Bet Bromodomain Inhibition As An Approach For Treatment Of Cholangiocarcinoma, Samuel Charles Fehling
All ETDs from UAB
Cholangiocarcinoma (CCA) is a highly aggressive neoplasm which arises from the epithelial layer of the biliary tract. It is the second most common primary hepatic malignancy. As CCA is typically diagnosed at late disease stage, the current standard of care, resection followed by gemcitabine with cisplatin, is not effective. Further, up to 90% of CCA patients are ineligible for resection. Of those eligible for resection, postoperative chemotherapy does not prolong overall survival leading to a 5-year survival of ~30%. Previously, mutations have been identified in KRAS (17% of CCA cases), TP53 (44%) and SMAD4 (17%) but none have been recognized …
Baf Chromatin Landscaping During Bone Formation And Maintenance, Tanner Cole Godfrey
Baf Chromatin Landscaping During Bone Formation And Maintenance, Tanner Cole Godfrey
All ETDs from UAB
Bone loss is a worldwide problem resulting in increased risk of fracture. Osteoblasts are responsible for bone synthesis; therefore, treatments promoting osteoblast differentiation and/or activity would result in increased bone formation. The regulation of DNA accessibility is a key mechanism controlling gene expression and cellular differentiation. BAF (BRG1 Associated Factor) mediated chromatin remodeling increases DNA accessibility by sliding or ejecting nucleosomes. This process can occur in a cell type specific manner based on the composition of BAF. In many tissue types, a unique combination of BAF subunits has been identified to be responsible for the maintenance or differentiation of that …
The Impact Of Redox Stress In Primary Hyperoxaluria Type 1, Brianna Buchalski
The Impact Of Redox Stress In Primary Hyperoxaluria Type 1, Brianna Buchalski
All ETDs from UAB
Primary Hyperoxaluria (PH) is a family of three inborn errors of glyoxylate metabolism resulting in endogenous oxalate overproduction. PH1 is the most common and most severe form of the disorder when compared to PH2 and PH3. PH1 can result in systemic oxalosis or end stage renal disease, and there is currently no cure for this disorder. The only curative treatment is combined liver/kidney transplant. The difficulty in defining a cure for the disorder arises from poor knowledge of the sources of endogenous oxalate and a lack of understanding in the underlying pathophysiology of the disorder. For these reasons, we have …
Receptor Sialylation By St6gal-I Promotes Tumor Progression By Enhancing Tumor Cell Survival And Epithelial To Mesenchymal Transition, Colleen Maeve Britain
Receptor Sialylation By St6gal-I Promotes Tumor Progression By Enhancing Tumor Cell Survival And Epithelial To Mesenchymal Transition, Colleen Maeve Britain
All ETDs from UAB
The upregulation of a certain subset of glycosyltransferases was an early marker for cancer development. Specifically, ST6Gal-I, which adds an α2-6 linked sialic acid to N-glycans on proteins bound for the plasma membrane or secretion, is selectively upregulated upon malignant transformation. Our laboratory has shown that ST6Gal-I is implicated in many facets of tumor biology and is an important mediator of tumorigenesis. For example, ST6Gal-I activity promotes the survival of cells when challenged with hypoxia, FasL, or TNFα, confers resistance to chemotherapeutics, enhances tumor cell migration and invasion, and fosters a cancer stem cell phenotype. The work presented in this …
Context Fear Memory Formation Is Regulated By Hippocampal Lncrna-Mediated Histone Methylation Changes, Anderson Alan Butler
Context Fear Memory Formation Is Regulated By Hippocampal Lncrna-Mediated Histone Methylation Changes, Anderson Alan Butler
All ETDs from UAB
The post-translational modification of histones regulates gene expression and is critical for the formation and maintenance of hippocampus-dependent long-term memories. Changes in gene-specific expression of various epigenetic marks during the aging pro-cess are sufficiently consistent as to be used as an aging landmark or epigenetic clock in both humans and other species; however, the molecular mechanisms which govern the application of these marks aging are poorly explored. Recently, long noncoding RNAs (lncRNAs) have been implicated as regulators of histone methyltransferases and other chromatin-modifying enzymes (CMEs). Despite the relevance of such mechanisms to both aging and memory formation, the behavioral relevance …
Mechanisms Of Acute Kidney Injury: The Role Of Ferritin Heavy Chain In Renal Heme-Unology, Laurence Marie Black
Mechanisms Of Acute Kidney Injury: The Role Of Ferritin Heavy Chain In Renal Heme-Unology, Laurence Marie Black
All ETDs from UAB
The kidneys are complex, multi-faceted organs that are responsible for regulatory processes, such as fluid homeostasis, hormone production, blood pressure regulation, and systemic toxin removal. Sudden disruption of these processes by acute kidney injury (AKI) causes rapid decline in renal function as well as significant morbidity and mortality. AKI is a significant clinical concern, affecting up to 13.3 million people globally each year and has the propensity to progress to chronic kidney disease (CKD), though the mechanism remains undefined. One reason for this is due to the lack of understanding of models used to study both AKI and CKD, hindering …
Characterization Of Chemical Uptake And Aryl Hydrocarbon Receptor Mutations In Zebrafish, Jaclyn Paige Souder
Characterization Of Chemical Uptake And Aryl Hydrocarbon Receptor Mutations In Zebrafish, Jaclyn Paige Souder
All ETDs from UAB
In a society driven by technology and industry, we must be increasingly aware of how changes to our environment impact our health. This is especially true concerning embryonic development, which is easily influenced by extra-embryonic factors, including environmental contaminants. Determining how exogenous compounds are absorbed, which receptors they act through, and how these receptors act endogenously is important to fully understand to what extent developmental exposures impact fetal and adult health. I have used the zebrafish model system to address these questions for two classes of environmentally-relevant chemicals—estrogens and dioxins. First, I developed an assay to measure the uptake of …
Acetylcholine Signaling In Glioblastoma Invasion And Peritumoral Hyperexcitability, Emily Grace Thompson
Acetylcholine Signaling In Glioblastoma Invasion And Peritumoral Hyperexcitability, Emily Grace Thompson
All ETDs from UAB
Glioblastomas are the most common and deadly form of primary brain cancer in adults. Current treatment strategies are aggressive, including a combination of surgical resection, radiotherapy, and chemotherapy. However, median patient survival has remained stagnant at 12 to 15 months for the last several decades. This dismal patient outcome has prompted efforts to understand the unique characteristics of these tumors, since traditional therapeutics have not been efficacious. Extensive invasion is a salient feature of glioblastomas that significantly diminishes the effectiveness of current treatment strategies and is ultimately the cause of tumor recurrence within 2 years in approximately 80% of patients. …
The Anti-Tumor Effects Of Hur Inhibition In Glioblastoma, Jiping Wang
The Anti-Tumor Effects Of Hur Inhibition In Glioblastoma, Jiping Wang
All ETDs from UAB
Glioblastomas (GBMs) are the most malignant primary brain tumor. GBMs represent 14.7% of total primary CNS tumors and 47.7% of malignant CNS tumors. The median survival of GBM is 18-20 months, while five-year survival rate is only 5.6%. GBMs are maintained by glioma stem cells (GSCs), and poor treatment outcomes are linked to the high resistance of GSCs to radiation and chemotherapy, and the immunosuppressive tumor microenvironment. The mRNA binding protein HuR is a key regulator of tumor growth and development based upon the fact that HuR targets mRNAs that are broadly involved in tumorigenesis. We have previously shown that …
Characterization Of The Tgfb Pathway And Its Role In Prostaglandin Metabolism In C. Elegans, Muhan Hu
Characterization Of The Tgfb Pathway And Its Role In Prostaglandin Metabolism In C. Elegans, Muhan Hu
All ETDs from UAB
Cell to cell communication is fundamental to all life processes, from fertilization to death. The TGFß superfamily is a large family of proteins that is involved in a wide array of physiological and pathological processes, including development, wound healing, immune system function, cancer, and reproduction. This group of signaling peptides is well conserved across many organisms, from basic nematode to humans. While many studies have aimed to delineate the functions of TGFß, they have also unveiled the complexity of this multifunctional family of ligands. In this thesis, I take advantage of the simple C. elegans model system to study the …
The Role Of The St6gal-I Sialyltrasferase In Protecting Tumor Cells From Hypoxic Stress, Robert Brent Jones
The Role Of The St6gal-I Sialyltrasferase In Protecting Tumor Cells From Hypoxic Stress, Robert Brent Jones
All ETDs from UAB
An emerging concept in cancer biology is that surface glycosylation can play important roles in the regulation of cancer development and progression. Our group and others have shown that ST6Gal-I, a sialyltransferase that adds α2-6-linked sialic acids to N-glycosylated proteins, is upregulated in many cancers. Furthermore, data has indicated that ST6Gal-I acts as a pro-survival factor in a variety of settings, including resistance to chemotherapeutic drugs, radiotherapy resistance, and serum deprivation. The work presented in this dissertation adds to this understanding of ST6Gal-I’s role as a potent pro-survival factor and explores ST6Gal-I’s function in aiding tumor cells to survive hypoxic …
Bk Polyomavirus Activates The Dna Damage Response To Hijack Host Cell Cycle Control, Joshua L. Justice
Bk Polyomavirus Activates The Dna Damage Response To Hijack Host Cell Cycle Control, Joshua L. Justice
All ETDs from UAB
BK Polyomavirus (BKPyV) is a DNA tumor virus that latently infects the >90% of humanity. BKPyV infection is inconsequential in healthy individuals; however, the immunocompromised carry increased risk of viral reactivation that can lead to a number of genitourinary diseases. Overall, BKPyV reactivation is a major risk factor for kidney dysfunction and failure following solid organ transplantation. There are no approved therapeutics to treat BKPyV infection, therefore studies have focused on understanding the host/virus interactions that drive infection to identify therapeutic targets. The PyV genome is small and does not encode a polymerase. Cellular transformation by the viral oncogene, T …
Structural And Functional Insights Into The Influenza A Virus Non-Structural Protein 1 Effector Domain, Alex Kleinpeter
Structural And Functional Insights Into The Influenza A Virus Non-Structural Protein 1 Effector Domain, Alex Kleinpeter
All ETDs from UAB
The influenza A virus (IAV) non-structural protein 1 (NS1) is a highly multifunctional viral protein responsible for antagonizing the type-I interferon (IFN) response to infection. NS1 has therefore been identified as a potentially effective target for the development of novel anti-influenza compounds. Furthermore, it is important to understand the molecular underpinnings driving NS1 function to more effectively elucidate antiviral targets. In this dissertation, we have contributed significant insight into NS1’s potential as an antiviral target, and the structure-function relationships driving its activity in an infected cell. First, we structurally characterized the binding of two known influenza inhibitors (A9 and A22) …
Structural Studies Of Some Proteins Responsible For Bacterial Pathogenesis, Kartik Manne
Structural Studies Of Some Proteins Responsible For Bacterial Pathogenesis, Kartik Manne
All ETDs from UAB
A wide range of infections is attributed to the pathogenesis of Gram-positive bacteria. The emergence of multi-drug-resistant Gram-positive pathogens has been a significant health concern and present serious therapeutic challenges globally. Some of the common Gram-positive bacterial species like Streptococcus pneumonia, Group B Streptococcus, and Staphylococcus aureus are infectious by employing several virulence factors for initial adhesion, colonization, biofilm initiation and dispersion, complement evasion, nutrient acquisition, and infection. The structural insights into these virulence factors are essential for understanding their mode of action, and also for developing a new class of antibiotics; a significant interest of many researchers. Pneumococcal adhesive …
The Reductive Stress Reducto-Mir: Emerging Insight Into Microrna-671, Justin Michael Quiles
The Reductive Stress Reducto-Mir: Emerging Insight Into Microrna-671, Justin Michael Quiles
All ETDs from UAB
Excessive accumulation of reactive oxygen and nitrogen species (ROS/RNS) promotes cardiac pathophysiology. Although extreme oxidative burden is cytotoxic, ROS/RNS are continually generated within multiple domains of cardiac myocytes, and these species play fundamental roles in signal transduction through reversible thiol oxidation. Nuclear factor, erythroid 2 Like 2 (Nfe2l2/NRF2) is activated by ROS/RNS and binds cis regulatory antioxidant response elements (AREs) to induce the expression of a host of thiol oxidoreductases which regulate signaling events at the post-translational, transcriptional and epigenetic levels. Although oxidative stress has been linked to cardiac disease, adaptive processes in the heart require reduction-oxidation (redox) reactions as …
Determination Of The Role Of Smu_833 In The Fitness And Virulence Of Cariogenic Streptococcus Mutans, Katherine Lynn Rainey
Determination Of The Role Of Smu_833 In The Fitness And Virulence Of Cariogenic Streptococcus Mutans, Katherine Lynn Rainey
All ETDs from UAB
Dental caries, commonly known as tooth decay, is the most common infectious disease worldwide. The main etiological agent of dental caries is Streptococcus mutans which can readily form a biofilm on the surface of teeth and produce acids through the metabolism of dietary sugars, which is largely responsible for the demineralization and subsequent destruction of tooth enamel. In addition, S. mutans synthesizes extracellular glucosyltransferases (Gtfs) capable of breaking apart dietary sucrose and polymerizing the glucose subunits into the sticky glucan matrix of the biofilm, imperative for the formation of robust, three-dimensional biofilms. Currently used caries therapies are not species-specific and …