Thymidine Phosphorylase Is A Promising Target In Sars-Cov-2 Spike Protein-Enhanced Thrombosis,
2024
Marshall University
Thymidine Phosphorylase Is A Promising Target In Sars-Cov-2 Spike Protein-Enhanced Thrombosis, Renat Roytenberg
Theses, Dissertations and Capstones
Thrombosis, as an underlying mechanism in cardiovascular diseases, is the leading global cause of death in the 21st century. Infection is a risk factor for thrombosis, and the coronavirus disease 2019 (COVID-19) pandemic has led to a rise in the incidence of thrombosis, thereby increasing mortality. In comparison to previous severe coronavirus outbreaks, rates of thrombosis in COVID-19 have been unprecedented. COVID-19 is caused by the novel coronavirus, severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). The SARS-CoV-2 spike protein (SP), the key used to enter host cells, is implicated in thrombosis pathology, though mechanisms are not fully understood. The SARS-CoV-2 …
The Effects Of Bisphenol S On Glial Cells Of The Peripheral Nervous System,
2024
Misericordia University
The Effects Of Bisphenol S On Glial Cells Of The Peripheral Nervous System, Madeline Solomon, Rachael Sennett, Angela Asirvatham
Student Research Poster Presentations 2024
Schwann cells are glial cells in the peripheral nervous system that maintain nerve function and myelination. Peripheral nerve myelination is dependent on intact Schwann cell proliferation. Schwann cell proliferation can be adversely affected by environmental pollutants such as Bisphenol A (BPA). BPA is an endocrine-disrupting chemical found in plastic water bottles, receipt paper, containers, and many everyday products. Studies on BPA exposure showed that it stimulated cellular proliferation in neural stem cells. A commonly used manufactured derivative of BPA, Bisphenol S (BPS), has posed similar concerns. Previous research has found that BPS promotes the proliferation of MCF-7 breast cancer cells …
The Effects Of Bpf On Rt4 Schwannoma Cancer Cells,
2024
Misericordia University
The Effects Of Bpf On Rt4 Schwannoma Cancer Cells, Rachael Sennett, Madeline Solomon, Angela Asirvatham
Student Research Poster Presentations 2024
Bisphenol A is a harmful compound common in plastics that causes negative health and environmental effects. Due to these effects, new guidelines have been made to limit exposure to BPA. However, modified versions of these compounds, including Bisphenol-F, are being used as a replacement. Exposure to BPF, which is comparable in structure to BPA, has similar effects as BPA on many organ systems with some being unknown. As there is not much known about BPF, especially in the peripheral nervous system, the aim of this research is to analyze proliferation rates in BPF-treated Schwann cells. It was hypothesized that with …
Assessing The Role Of Kmt2b Knockdown In Rhabdoid Tumorigenesis Utilizing Crispri,
2024
Belmont University
Assessing The Role Of Kmt2b Knockdown In Rhabdoid Tumorigenesis Utilizing Crispri, Karah Edmonds, Andrea Florian Phd
Science University Research Symposium (SURS)
An aggressive blood cancer commonly observed in pediatric patients, Mixed Lineage Leukemia (MLL), has a regulatory MLL complex that promotes histone methyltransferation. Modifying histones utilizing histone methyltransferases like KMT2B (MLL2), is essential for gene expression by regulating transcription. Loss of function and inhibition of KMT2B leads to dysregulation of transcription and therefore promotes MLL tumorigenesis. To improve cancer-targeted therapies, we will use CRISPR interference (CRISPRi) to knock down the expression of KMT2B and measure levels of Rhabdoid tumor cell proliferation and apoptosis. Previous research surrounding the MLL complex suggests that decreased expression of KMT2B will lead to increased levels of …
A New Model For Polar Growth In Mycobacteria: The Role Of Wag31 And Mmpl3 In Cell Wall Synthesis,
2024
University of Texas at Arlington
A New Model For Polar Growth In Mycobacteria: The Role Of Wag31 And Mmpl3 In Cell Wall Synthesis, Neda Habibi Arejan
Biology Dissertations - Archive
The disease Tuberculosis (TB) is caused by the pathogen Mycobacterium tuberculosis and was the cause of over one million deaths worldwide in 2023 (World Health Organization, 2023). TB treatment is difficult due to antibiotic tolerance and emerging resistance in Mtb strains. Mycobacterial cells have different regulatory mechanisms that allow them to adjust to myriad environmental stressors: these responses often lead to antibiotic tolerance. Therefore, studying responses to stress will lead to insights about antibiotic tolerance and treatment failure. Here, we specifically study two essential mycobacterial proteins, Wag31 and MmpL3, involved in cell wall metabolism. We show that Wag31 has distinct …
Osteohistological Assessment Of Edmontosaurus Radii From The Liscomb Bonebed, Prince Creek Formation, North Slope, Alaska,
2024
Misericordia University
Osteohistological Assessment Of Edmontosaurus Radii From The Liscomb Bonebed, Prince Creek Formation, North Slope, Alaska, Emma Griffin
Student Research Poster Presentations 2024
Hadrosaurs were one of the most diverse dinosaur groups in the Late Cretaceous period and are known for their numerous articulated skeletons and monodominant bonebeds (Wosik et al., 2020). They are more commonly known as duck-billed dinosaurs and are found globally including latitudinal extremes such as the artic and Antarctica. Edmontosaurus, a genus of hadrosaur, are herbivores and are very large growing up to 8,000 pounds. Edmontosaurus were known to travel in herds as a defense mechanism and were one of the last non-avian dinosaurs living during the late Campanian stage through the end of the Maastrichtian stage, right up …
Why Should Early-Career Scientists Publish In Society Journals,
2024
Clemson University
Why Should Early-Career Scientists Publish In Society Journals, Stephen K. Dolan, Lori D. Banks, Wenqi Yu
Molecular Biosciences Faculty Publications
In this editorial, written by early-career scientists, we advocate for the invaluable role of society journals in our scientific community. By choosing to support these journals as authors, peer reviewers, and as editors, we can reinforce our academic growth and benefit from their re-investment back into the scientific ecosystem. Considering the numerous clear merits of this system for future generations of microbiologists and more broadly, society, we argue that early-career researchers should publish our high-quality research in society journals to shape the future of science and scientific publishing landscape.
The Inaugural Mbio Junior Editorial Board—Lessons Learned And The Path Forward Toward Improving The Peer Review Process,
2024
University of Cape Coast
The Inaugural Mbio Junior Editorial Board—Lessons Learned And The Path Forward Toward Improving The Peer Review Process, Cynthia Ayefoumi Adinortey, Stephen K. Dolan, Sarah Doore, Rebeccah Lijek, Diana Priscila Pires, Wenqi Yu, Elizabeth B. Draganova, Lennart Schada Von Borzyskowski
Molecular Biosciences Faculty Publications
The inaugural Junior Editorial Board (JEB) of mBio consisted of 64 early-career researchers active from 2022 to 2023. The goal of the JEB was to train early-career researchers in the art of peer review under the guidance of experienced editors. JEB members gained hands-on experience in peer review by participating in modules detailing the publishing process through the lenses of the journal, editor, and reviewer. Ultimately, JEB members applied this new knowledge by reviewing mBio manuscripts. Here, we summarize the background, the mission, and the achievements of the first mBio JEB. We also include possible trajectories for the future editions …
The Effects Of Secretion Regulators, Α-Synuclein And Cysteine String Protein-Α, In Thrombosis And Hemostasis,
2024
University of Kentucky
The Effects Of Secretion Regulators, Α-Synuclein And Cysteine String Protein-Α, In Thrombosis And Hemostasis, Alexis N. Smith
Theses and Dissertations--Molecular and Cellular Biochemistry
Platelets play many critical roles in the vasculature ensuring proper hemostasis and maintaining vascular integrity. They can mediate these different processes via the release of different cargo molecules from granules. Cargo release from the granules is mediated by a family of proteins called Soluble NSF Attachment Protein Receptors (SNAREs). This process is complex and is regulated by several protein-protein interactions that are not completely characterized. SNARE chaperones have been identified for the t-SNAREs such as Munc18b/STXBP2 for Syntaxin-11, but none have been identified for the VAMPs and SNAP proteins. Proteins of interest as potential chaperones for VAMPs and SNAP proteins …
Revolutionizing Our Understanding Of Specific Platelet-Pathogen Interactions,
2024
University of Kentucky
Revolutionizing Our Understanding Of Specific Platelet-Pathogen Interactions, Hammodah Rawhi Hammodah Alfar
Theses and Dissertations--Molecular and Cellular Biochemistry
Aside from their classical role in maintaining hemostasis, platelets are considered first-line vascular guardians that influence both the innate and adaptive immune systems. This is mediated by either direct interactions with immune cells or through the release of pre-stored cytokines and chemokines upon interacting with pathogens such as viruses. While this establishes platelets as potential players in the response to pathogens, it remains unclear what platelets can do with pathogens and how important that is to immune responses, especially against viruses. Most systemic viremias, such as HIV-1, present with mild thrombocytopenia, which is mediated through several mechanisms such as a …
Calcium And Proteasomal Regulation Of Er-To-Golgi Protein Transport In Neurons,
2024
The University Of Montana
Calcium And Proteasomal Regulation Of Er-To-Golgi Protein Transport In Neurons, Samuel A. Galindo
Undergraduate Theses, Professional Papers, and Capstone Artifacts
Regulatory mechanisms of protein trafficking from the endoplasmic reticulum (ER) are critical to understand since neurodegenerative diseases involve defects in this process leading to chronic ER stress and cell death. This study aimed to better understand the calcium regulatory mechanisms of ER-to-Golgi trafficking in hybrid neuroglioblastoma cells (NG108). Specifically, we asked whether proteasomal degradation of transport machinery was involved in the previously demonstrated upregulation of ER-to-Golgi transport evoked by calcium signaling. Based upon previous literature, we believe that the calcium induced increase in transport is due to the activation of the calcium sensitive regulatory protein apoptosis linked gene 2 (ALG-2) …
Corals In Crisis: A Transcriptomic Investigation Of Stony Coral Tissue Loss Disease,
2024
University of Texas at Arlington
Corals In Crisis: A Transcriptomic Investigation Of Stony Coral Tissue Loss Disease, Kelsey M. Beavers
Biology Dissertations - Archive
Coral reefs face existential threats due to climate change and human activities. The combined effects of ocean warming, overfishing, pollution, and habitat destruction have fundamentally altered the functionality of coral reefs and are driving a drastic increase in the prevalence and severity of coral disease outbreaks. Stony coral tissue loss disease (SCTLD) has emerged one of the most devastating disturbances to Caribbean reef ecosystems on record. Despite notable progress, the cellular mechanisms driving SCTLD pathogenesis remain poorly understood. To address this issue, my dissertation investigates the gene expression, histopathology, immune protein activity, and symbiont community dynamics involved in SCTLD progression …
Multiple Variables Influence The Finely Calibrated Antioxidant Defenses Of Clostridioides Difficile,
2024
Old Dominion University
Multiple Variables Influence The Finely Calibrated Antioxidant Defenses Of Clostridioides Difficile, Erin B. Purcell
Chemistry & Biochemistry Faculty Publications
The obligate anaerobe Clostridioides difficile encodes multiple reductases to detoxify molecular oxygen and reactive oxygen species. Caulat and colleagues have characterized the activity and regulation of four such reductases (L. C. Caulat, A. Lotoux, M. C. Martins, N. Kint, et al., mBio 15:e01591-24, 2024, https://doi.org/10.1128/mbio.01591-24). Each proved critical for clostridial survival in a different range of oxygen concentrations; together, they ameliorate a broad range of oxidative stress levels. Moreover, two previously uncharacterized regulators were found to control reductase gene expression in response to oxidative stress. The genetic repressor Rex and the reductase FdpF are both sensitive to the NAP …
Reprogramming Of Rat And Human Hepatoma Cells With Fibroblast-Specific Transcription Factors Msx1 And Pura,
2024
Eastern Illinois University
Reprogramming Of Rat And Human Hepatoma Cells With Fibroblast-Specific Transcription Factors Msx1 And Pura, Merve Diler
Masters Theses
Despite all cells within an organism sharing the same genetic information, they develop into different tissues, each with a distinct gene expression profile required for tissue specialization. Understanding gene expression and the processes that regulate the expression, is crucial for understanding cell differentiation and tissue specialization, as these procedures are governed by unique gene expression and regulation patterns.
Whole genome microarray analyses identified several candidate genes that may be coding important transcription factors that play role in fibroblast identity such as Prrx1, Snai2, Shox2, Twist1, c-Fos, Msx1, Pdx1 (Idx1) and Pura (Pur1). The goal of this project is to determine …
Sphingosine Kinase 2 Depletion Dysregulates Hepatic Redox Metabolism And Enhances Inflammation In Early Metabolic Dysfunction-Associated Steatohepatitis (Mash),
2024
Virginia Commonwealth University
Sphingosine Kinase 2 Depletion Dysregulates Hepatic Redox Metabolism And Enhances Inflammation In Early Metabolic Dysfunction-Associated Steatohepatitis (Mash), Kaitlyn Georgene Jackson
Theses and Dissertations
Metabolic dysfunction-associated steatotic liver disease (MASLD) currently affects one in three people worldwide; its prevalence is growing alongside other cardiometabolic disorders. Aberrations to redox and sphingolipid metabolism contribute to MASLD pathologic progression. Sphingosine-1-phosphate (S1P) is an active lipid, meaning that S1P participates in biochemical processes within the cell. S1P is generated by two distinct isoenzymes, sphingosine kinase (SphK)1 and SphK2. The localization of the SphK enzyme dictates S1P function. While cytosolic SphK1-generated S1P is well-characterized, nuclear and mitochondrial SphK2-generated S1P is less known. Moreover, SphK2 depletion effects on cellular redox processes and inflammation are not well-defined.
This study defines the …
Assessing Lipid Composition Of Cell Membrane In Escherichia Coli Under Aerobic And Anaerobic Conditions,
2024
University of Montana
Assessing Lipid Composition Of Cell Membrane In Escherichia Coli Under Aerobic And Anaerobic Conditions, Isabelle Johnson
Undergraduate Theses, Professional Papers, and Capstone Artifacts
Escherichia coli is a highly studied model organism that is tightly tied to the mammalian gastrointestinal system. This microorganism has the capability to be a beneficial gut microbe or a life-threatening pathogen. In this study, the lipid membrane of Escherichia coli was investigated using Matrix-Assisted Laser Desorption/Ionization-Time of Flight Mass Spectrometry (MALDI-TOF MS) to observe the change in its composition in aerobic and anaerobic conditions. Evidence of desaturation was discovered in the spectra, though more investigation is needed to understand the metabolic processes and drives that result in this change. Elucidation of these pathways in the future could result in …
Elucidation Of Mismatch Repair Regulation By Abl1: Advantages/Disadvantages Of Tyrosine Kinase Inhibitor Treatment,
2024
University of Kentucky
Elucidation Of Mismatch Repair Regulation By Abl1: Advantages/Disadvantages Of Tyrosine Kinase Inhibitor Treatment, Hannah Daniels
Theses and Dissertations--Toxicology and Cancer Biology
DNA mismatch repair (MMR) is a critical repair process necessary for not only repairing mispairs incorporated into the DNA during replication, but also for inducing apoptosis in response to certain types of DNA damage. MMR is required for maintaining genomic integrity and due to the importance of this pathway, any impairment of its function can lead to increased mutation frequency, which is well known to be a driving force of cancer development, progression, and resistance. Despite extensive studies involving the proteins involved in the MMR pathway, the regulation of those proteins remains relatively unknown. Regulation of MLH1, a protein necessary …
Kif3a Tail Domain Phosphorylation Is Not Required For Ciliogenesis In Mouse Embryonic Fibroblasts,
2024
Illinois State University
Kif3a Tail Domain Phosphorylation Is Not Required For Ciliogenesis In Mouse Embryonic Fibroblasts, Ayoola Fasawe, Jessica M. Adams, Martin Engelke
Faculty Publications – Biological Sciences
Primary cilia are essential signaling organelles that protrude from most cells in the body. Heterodimeric kinesin-2 (KIF3A/KIF3B/KAP3) powers several intracellular transport processes, including intraflagellar transport (IFT), essential for ciliogenesis. A long-standing question is how a motor protein is differentially regulated for specific cargos. Since phosphorylation of the KIF3A tail domain was suggested to regulate the activity of kinesin-2 for ciliogenesis, similarly as for the cytosolic cargo N-Cadherin, we set out to map the phosphosites involved in this regulation. Using well-characterized Kif3a−/−; Kif3b−/− mouse embryonic fibroblasts, we performed ciliogenesis rescue assays with a library of phosphomimetic mutants comprising all …
Functional Analyses Of The Polycomb-Group Genes In Sea Lamprey Embryos Undergoing Programmed Dna Loss,
2024
University of Kentucky
Functional Analyses Of The Polycomb-Group Genes In Sea Lamprey Embryos Undergoing Programmed Dna Loss, Cody Saraceno
Theses and Dissertations--Biology
During early embryonic development, the sea lamprey (Petromyzon marinus) undergoes programmatic elimination of DNA from somatic progenitor cells in a process termed programmed genome rearrangement (PGR). Eliminated DNA eventually becomes condensed into micronuclei, which are then physically degraded and permanently lost from the cell. Previous studies indicated that many of the genes eliminated during PGR have mammalian homologs that are bound by polycomb repressive complex (PRC) in embryonic stem cells. To test whether PRC components play a role in the faithful elimination of germline-specific sequences, we used a combination of CRISPR/Cas9 and lightsheet microscopy to investigate the impact …
Abl1/2 And Ddr1 Cooperate To Stabilize Braf/Craf To Drive Erk1/2 Reactivation And Promote Mek Inhibitor Resistance In Nras-Mutant Melanomas,
2024
University of Kentucky
Abl1/2 And Ddr1 Cooperate To Stabilize Braf/Craf To Drive Erk1/2 Reactivation And Promote Mek Inhibitor Resistance In Nras-Mutant Melanomas, Anastasia Lyon
Theses and Dissertations--Pharmacology and Nutritional Sciences
This study addresses the escalating incidence of NRAS-mutant melanomas, a type of skin cancer lacking FDA-approved targeted therapies. Despite ongoing research targeting the RAF/MEK/ERK pathway, existing drugs fail to enhance progression-free survival due to acquired resistance. This project identifies a novel role for ABL1/2 and DDR1 kinases in driving drug resistance and proliferation of NRAS-mutant melanoma cells. ABL1/2 and DDR1 cooperate to promote RAF homodimerization and protein stability in order to reactivate MEK/ERK signaling to drive MEK1/2 inhibitor (MEKi) resistance and promote survival of resistant cells. By targeting ABL1/2 and DDR1 with nilotinib, a FDA-approved anti-leukemic inhibitor, we …
