Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Biochemistry, Biophysics, and Structural Biology (100)
- Medicine and Health Sciences (100)
- Molecular Biology (75)
- Biology (49)
- Medical Specialties (44)
-
- Biochemistry (42)
- Microbiology (42)
- Cancer Biology (40)
- Medical Sciences (40)
- Genetics and Genomics (39)
- Molecular Genetics (26)
- Laboratory and Basic Science Research (25)
- Diseases (23)
- Immunology and Infectious Disease (23)
- Oncology (21)
- Developmental Biology (20)
- Physiology (20)
- Chemicals and Drugs (19)
- Genetics (19)
- Biotechnology (17)
- Neuroscience and Neurobiology (15)
- Engineering (13)
- Physical Sciences and Mathematics (13)
- Biomedical Engineering and Bioengineering (11)
- Medical Cell Biology (11)
- Public Health (11)
- Cellular and Molecular Physiology (10)
- Institution
-
- University of Kentucky (25)
- University of Arkansas, Fayetteville (17)
- Rowan University (13)
- The Texas Medical Center Library (12)
- Roseman University of Health Sciences (9)
-
- University of Texas Rio Grande Valley (9)
- Chapman University (7)
- Dartmouth College (7)
- University of Dayton (7)
- Clemson University (6)
- Old Dominion University (6)
- University of Denver (6)
- University of Nebraska Medical Center (6)
- University of South Florida (5)
- Virginia Commonwealth University (5)
- City University of New York (CUNY) (4)
- Duquesne University (4)
- Thomas Jefferson University (4)
- Belmont University (3)
- Loyola University Chicago (3)
- Medical University of South Carolina (3)
- Missouri State University (3)
- University of South Carolina (3)
- Eastern Washington University (2)
- Georgia Southern University (2)
- Harrisburg University of Science and Technology (2)
- Louisiana State University (2)
- Munster Technological University (2)
- Murray State University (2)
- South Dakota State University (2)
- Keyword
-
- Cancer (9)
- Inflammation (7)
- College of Natural Science and Mathematics (6)
- Drosophila (6)
- Microscopy (6)
-
- Breast cancer (5)
- Immunotherapy (5)
- Mitochondria (5)
- Aging (4)
- Animals (4)
- Apoptosis (4)
- Biological Sciences (4)
- Biology (4)
- CRISPR (4)
- Cell Biology (4)
- Gene expression (4)
- Humans (4)
- Transcription factor (4)
- Calcium signaling (3)
- Cancer biology (3)
- Cell Membrane (3)
- Cell biology (3)
- Cell cycle (3)
- Chemotherapy (3)
- Cyclin C (3)
- Developmental Biology (3)
- Epigenetics (3)
- Fibrosis (3)
- Fluorescence (3)
- Genetics (3)
- Publication
-
- Markey Cancer Center Faculty Publications (17)
- Electronic Theses and Dissertations (12)
- Biology Faculty Publications (10)
- Annual Research Symposium (9)
- Dissertations and Theses (Open Access) (9)
-
- Dartmouth College Ph.D Dissertations (7)
- Research Symposium (7)
- Graduate School of Biomedical Sciences Theses and Dissertations (6)
- Theses & Dissertations (6)
- Theses and Dissertations (6)
- Biological Sciences Undergraduate Honors Theses (5)
- All Dissertations (4)
- Dissertations (4)
- Rowan-Virtua School of Osteopathic Medicine Departmental Research (4)
- Biology, Chemistry, and Environmental Sciences Faculty Articles and Research (3)
- Faculty, Staff and Student Publications (3)
- Graduate Theses and Dissertations (3)
- Graduate Theses/Dissertations (3)
- MUSC Theses and Dissertations (3)
- Master's Theses (3)
- Masters Theses (3)
- Molecular Biosciences Faculty Publications (3)
- Pharmacy Faculty Articles and Research (3)
- Rowan-Virtua Research Day (3)
- Saha Cardiovascular Research Center Faculty Publications (3)
- Undergraduate Research Posters (3)
- 2023 Symposium (2)
- All Theses (2)
- Biomedical Engineering Theses & Dissertations (2)
- College of Graduate Studies: Theses & Dissertations (2)
- Publication Type
- File Type
Articles 211 - 239 of 239
Full-Text Articles in Cell Biology
Best3-Mediated Mekk2/3 Activation: A Novel Therapeutic Target In Aortopathies, Tatiana Zyrianova, Benjamin Lopez, Kathlyn Zou, Charles Gu, Dayna Pham, Sriharsha Talapaneni, Christopher M. Waters, Riccardo Olcese, Andreas Schwingshackl
Best3-Mediated Mekk2/3 Activation: A Novel Therapeutic Target In Aortopathies, Tatiana Zyrianova, Benjamin Lopez, Kathlyn Zou, Charles Gu, Dayna Pham, Sriharsha Talapaneni, Christopher M. Waters, Riccardo Olcese, Andreas Schwingshackl
Saha Cardiovascular Research Center Faculty Publications
Influenza-A virus (IAV) infects yearly an estimated one billion people worldwide, resulting in 300,000–650,000 deaths. Preventive vaccination programs and antiviral medications represent the mainstay of therapy, but with unacceptably high morbidity and mortality rates, new targeted therapeutic approaches are urgently needed. Since inflammatory processes are commonly associated with measurable changes in the cell membrane potential (Em), we investigated whether Em hyperpolarization via TREK-1 (K2P 2.1) K þ channel activation can protect against influenza-A virus (IAV)-induced pneumonia. We infected mice with IAV, which after 5 days caused 10–15% weight loss and a decrease in spontaneous activity, representing a clinically relevant infection. …
Cellular Glycosphingolipid Imbalance Modulates Emt In Cancer Cells, Laura E. Clark, Amanda Dickinson, Santiago Lima
Cellular Glycosphingolipid Imbalance Modulates Emt In Cancer Cells, Laura E. Clark, Amanda Dickinson, Santiago Lima
Undergraduate Research Posters
Sphingolipids are key components of the plasma membrane and are regulators of complex biological processes often altered in cancer cells. In human tumors, genes of key enzymes that regulate levels of glucosylceramide and lactosylceramide are often amplified. However, it is unknown why these traits are positively selected in transformed cells. In this work, we used CRISPR-Cas9 to knockout two key enzymes amplified in tumors in HeLa and H1703 tumor-derived cell-lines. As expected, the knockout lines had dramatic accumulation of GlcCer and LacCer. However, unexpectedly, they showed significantly decreased in-vitro wound-healing capacity and an almost complete loss of in-vitro extra-cellular matrix …
Ros And Sfk Signaling Is Required For Development Of Hematopoietic Stem Cells In Zebrafish, Bradley Williams, Erich Damm
Ros And Sfk Signaling Is Required For Development Of Hematopoietic Stem Cells In Zebrafish, Bradley Williams, Erich Damm
Undergraduate Research Posters
ROS and SFK signaling is required for development of hematopoietic stem cells in zebrafish
Bradley Williams and Erich Damm
Background
Hematopoiesis is the process in which the myriad of mature blood cell types, including erythrocytes and leukocytes, develop from hematopoietic stem cells (HSCs) throughout the life of an organism. In vertebrates, HSCs originate from endothelial cells lining the floor of the dorsal aorta. This process is referred to as the endothelial to hematopoietic transition and is likely controlled in part by molecular signals from neighboring cells. Investigation into the molecular signaling mechanisms controlling the development of HSCs is critical to …
Evaluation Of Leishmanicidal Activities Of 4-Thiazolidinones Against Leishmania Major, The Causative Agent Of Human Cutaneous Leishmaniasis, Kiera Bush
All Master's Theses
The leishmaniases are a group of vector-borne parasitic diseases that affect many developing countries including parts of Africa, India, and the Middle East in addition to Southern Europe and the Americas. It is estimated that worldwide, there are about 3 million new cases of leishmaniases each year leading to as many as 50,000 fatalities annually. The parasites that cause leishmaniasis belong to the genus Leishmania spp and are transmitted by the female phlebotomine sand fly. There are three clinical forms of the infection: visceral, mucocutaneous, and cutaneous. However, the focus of this paper is on cutaneous leishmaniasis that causes skin …
Dissecting The Role Of Selenoprotein P And Thioredoxin Reductase In Pancreatic Cancer Metabolism, Alyssa A. Abbas
Dissecting The Role Of Selenoprotein P And Thioredoxin Reductase In Pancreatic Cancer Metabolism, Alyssa A. Abbas
Dissertations, Master's Theses and Master's Reports
Pancreatic ductal adenocarcinoma (PDAC), the fourth leading cause of US cancer-related deaths, has a stark 5-year survival rate of 9%, emphasizing an urgent need for effective therapies. A well-established characteristic of cancer, metabolic dysregulation, presents an opportunity for developing therapies that target specific metabolic susceptibilities inherent in cancer cells. Our recent studies have discovered a susceptibility in PDAC; deprivation of cystine or blocking its uptake by erastin (a cystine transport inhibitor) triggers significant lipid peroxidation, thereby inducing ferroptosis specifically in the mesenchymal subtype of PDAC, but not in the epithelial subtype. This study aims to elucidate the roles of Selenoprotein …
Modulatory Effects Of Deacetylated Sialic Acids On Breast Cancer Resistance Protein-Mediated Multidrug Resistance And Receptor Tyrosine Kinase-Targeted Therapy, Isaac Tuffour
Electronic Theses and Dissertations
Multidrug resistance (MDR) remains a major challenge in cancer treatment, accounting for over 90% of chemotherapeutic failures. Cancers utilize sugar residues to engage in multidrug resistance. The underlying mechanism of action involving glycans, specifically the glycan sialic acid (Sia) and its various functional group alterations, has not been explored. ATP-binding cassette (ABC) transporter proteins, key proteins utilized by cancers to engage in MDR pathways, contain Sias in their extracellular domains. Modulating the expression of acetylated-Sias on Breast Cancer Resistance Protein (BCRP), a significant ABC transporter implicated in MDR, in lung and colon cancer cells directly impacted the ability of cancer …
Cell Signaling And Stress Response In The Yeast Saccharomyces Cerevisiae: A Study Of Snf1, Scott E. Arbet Ii
Cell Signaling And Stress Response In The Yeast Saccharomyces Cerevisiae: A Study Of Snf1, Scott E. Arbet Ii
Graduate Theses, Dissertations, and Problem Reports (ETD)
Saccharomyces cerevisiae are yeast that are unicellular eukaryotic organisms that are well studied as a model organism for understanding fundamental cellular processes. The ability of yeast to sense nutrient availability is crucial for their survival, growth, and reproduction. Yeast cells use various mechanisms to sense and respond to nutrient availability, including transporter-mediated uptake, receptor-mediated signaling, and sensing of metabolites. The subcellular localization of nutrient-sensing components is crucial for yeast function in nutrient sensing and signaling. Protein complexes, such as the AMP-activated protein kinase (AMPK) pathway, in nutrient sensing and response, as well as the downstream effects of these pathways …
Unusual Chromosome Configurations: Evaluation Of Sex Univalent And Trivalent Chromosome Models, Ashley B. Borseth
Unusual Chromosome Configurations: Evaluation Of Sex Univalent And Trivalent Chromosome Models, Ashley B. Borseth
Master’s Theses
Aneuploidy, or abnormal number of chromosomes in a haploid set, in XY/XX organisms has consequences that can impede physical and cognitive development. To prevent aneuploidy, cellular division relies on the correct position of paired chromosomes and subsequent segregation in the meiotic program. If connections between paired chromosomes sever or errors in chromosome contraction towards spindle poles arise, aneuploidy occurs. Many arthropod species have chromosomes that naturally do not pair, or that pair differently than typical autosomes. Through the evaluation of such systems, novel insights into chromosomal coordination and positioning may be revealed. The objective of this study is twofold: (1) …
The Effects Of Sex On Zebrafish Bone Metabolism, Simon Bagatto
The Effects Of Sex On Zebrafish Bone Metabolism, Simon Bagatto
Williams Honors College, Honors Research Projects
I investigated the effects of diet and sex on zebrafish bone metabolism. Zebrafish were subjected to either a high-calorie or low-calorie diet over a five-week period. After this diet, zebrafish scales were used to measure alkaline phosphatase (ALP) and tartrate-resistant acid phosphatase (TRAP) enzyme activity with a fluorescent substrate. The enzyme activities were markers of the osteoblasts (ALP) and the osteoclasts (TRAP). These data were compared among sex and diet of the zebrafish using a repeated measures ANOVA statistical test. I also measured the number of resorption lacunae per scale (another indicator of osteoclast activity). The results showed higher TRAP …
Dual Mechanisms Contributing To Pyruvate Dehydrogenase Activity Deficiency In A Barth Syndrome Cell Model, Zhuqing Liang
Dual Mechanisms Contributing To Pyruvate Dehydrogenase Activity Deficiency In A Barth Syndrome Cell Model, Zhuqing Liang
Wayne State University Dissertations
Barth syndrome (BTHS) is a rare genetic disease that results from mutations in the TAFAZZIN gene, which encodes the cardiolipin (CL) remodeling enzyme tafazzin (Taz). The mechanisms linking perturbation of CL remodeling and the pathological features of BTHS are not understood. We have recently reported that intermediary metabolism is perturbed in BTHS, and activity of the metabolic gatekeeper enzyme pyruvate dehydrogenase (PDH) is deficient in BTHS models. The mechanism whereby PDH is regulated by Taz is unknown, and this knowledge gap represents an obstacle to the development of therapeutics to treat BTHS. Using an established C2C12 myoblast model of BTHS, …
Dimerization Of Dopamine (D2) And Adenosine (A2a) Receptors, Elena Vukovic, Jackson M. Macatol
Dimerization Of Dopamine (D2) And Adenosine (A2a) Receptors, Elena Vukovic, Jackson M. Macatol
Williams Honors College, Honors Research Projects
This experiment will aim to explore the heterodimerization of Dopamine (D2) and Adenosine (A2A) receptors in cells when bound to different ligands. Borroto-Escuela et al. (2018) investigated the dimerization of the A2AR-D2R in rats when administered with cocaine, and they found that disrupting the A2AR-D2R complex restores the cocaine reward system in rats. This was a strong influence as to why we chose to investigate A2AR-D2R dimerization in Chinese hamster ovary (CHO) cells.
One goal that we have for this experiment is to combine our current laboratory skills with new laboratory techniques. There are constantly new techniques in labs, and …
Metabolic Reprogramming Driven By Ezh2 Inhibition Depends On Cell–Matrix Interactions, Teresa W-M Fan, Jahid M. M. Islam, Richard M. Higashi, Penghui Lin, Christine F. Brainson, Andrew N. Lane
Metabolic Reprogramming Driven By Ezh2 Inhibition Depends On Cell–Matrix Interactions, Teresa W-M Fan, Jahid M. M. Islam, Richard M. Higashi, Penghui Lin, Christine F. Brainson, Andrew N. Lane
Markey Cancer Center Faculty Publications
EZH2 (Enhancer of Zeste Homolog 2), a subunit of Poly- comb Repressive Complex 2 (PRC2), catalyzes the trimethyla- tion of histone H3 at lysine 27 (H3K27me3), which represses expression of genes. It also has PRC2-independent functions, including transcriptional coactivation of oncogenes, and is frequently overexpressed in lung cancers. Clinically, EZH2 in- hibition can be achieved with the FDA-approved drug EPZ- 6438 (tazemetostat). To realize the full potential of EZH2 blockade, it is critical to understand how cell-cell/cell-matrix interactions present in 3D tissue and cell culture systems in- fluences this blockade in terms of growth-related metabolic functions. Here, we show that …
Bilirubin Levels Are Negatively Correlated With Adiposity In Obese Men And Women, And Its Catabolized Product, Urobilin, Is Positively Associated With Insulin Resistance, Zachary A. Kipp, Mei Xu, Evelyn A. Bates, Wang-Hsin Lee, Philip A. Kern, Terry D. Hinds Jr.
Bilirubin Levels Are Negatively Correlated With Adiposity In Obese Men And Women, And Its Catabolized Product, Urobilin, Is Positively Associated With Insulin Resistance, Zachary A. Kipp, Mei Xu, Evelyn A. Bates, Wang-Hsin Lee, Philip A. Kern, Terry D. Hinds Jr.
Markey Cancer Center Faculty Publications
Bilirubin levels in obese humans and rodents have been shown to be lower than in their lean counterparts. Some studies have proposed that the glucuronyl UGT1A1 enzyme that clears bilirubin from the blood increases in the liver with obesity. UGT1A1 clearance of bilirubin allows more conjugated bilirubin to enter the intestine, where it is catabolized into urobilin, which can be then absorbed via the hepatic portal vein. We hypothesized that when bilirubin levels are decreased, the urobilin increases in the plasma of obese humans, as compared to lean humans. To test this, we measured plasma levels of bilirubin and urobilin, …
Dysregulated Polycomb Repressive Complex 2 Contributes To Chronic Obstructive Pulmonary Disease By Rewiring Stem Cell Fate, Aria Byrd, Xufeng Qu, Alexsandr Lukyanchuk, Jinpeng Liu, Fan Chen, Kassandra J. Naughton, Tanner Ducote, Xiulong Song, Hannah Bowman, Yanming Zhao, Abigail R Edgin, Chi Wang, Jinze Liu, Christine Fillmore Brainson
Dysregulated Polycomb Repressive Complex 2 Contributes To Chronic Obstructive Pulmonary Disease By Rewiring Stem Cell Fate, Aria Byrd, Xufeng Qu, Alexsandr Lukyanchuk, Jinpeng Liu, Fan Chen, Kassandra J. Naughton, Tanner Ducote, Xiulong Song, Hannah Bowman, Yanming Zhao, Abigail R Edgin, Chi Wang, Jinze Liu, Christine Fillmore Brainson
Markey Cancer Center Faculty Publications
Aberrant lung cell differentiation is a hallmark of many lung diseases including chronic obstructive pulmonary disease (COPD). The EZH2-containing Polycomb Repressive Complex 2 (PRC2) regulates embryonic lung stem cell fate, but its role in adult lung is obscure. Histological analysis of patient tissues revealed that loss of PRC2 activity was correlated with aberrant bronchiolar cell differentiation in COPD lung. Histological and single-cell RNA-sequencing analyses showed that loss of EZH2 in mouse lung organoids led to lowered self- renewal capability, increased squamous morphological development, and marked shifts in progenitor cell populations. Evaluation of in vivo models revealed that heterozygosity of Ezh2 …
Extracellular Vesicle Distribution And Localization In Skeletal Muscle At Rest And Following Disuse Atrophy, Ahmed Ismaeel, Douglas W. Van Pelt, Zachary Hettinger, Xu Fu, Christopher I. Richards, Timothy A. Butterfield, Jonathan J. Petrocelli, Ivan J. Vechetti Jr., Amy L. Confides, Micah J. Drummond, Esther E. Dupont-Versteegden
Extracellular Vesicle Distribution And Localization In Skeletal Muscle At Rest And Following Disuse Atrophy, Ahmed Ismaeel, Douglas W. Van Pelt, Zachary Hettinger, Xu Fu, Christopher I. Richards, Timothy A. Butterfield, Jonathan J. Petrocelli, Ivan J. Vechetti Jr., Amy L. Confides, Micah J. Drummond, Esther E. Dupont-Versteegden
Markey Cancer Center Faculty Publications
Background Skeletal muscle (SkM) is a large, secretory organ that produces and releases myokines that can have autocrine, paracrine, and endocrine effects. Whether extracellular vesicles (EVs) also play a role in the SkM adaptive response and ability to communicate with other tissues is not well understood. The purpose of this study was to investigate EV biogenesis factors, marker expression, and localization across cell types in the skeletal muscle. We also aimed to investigate whether EV concentrations are altered by disuse atrophy.
Methods To identify the potential markers of SkM‑derived EVs, EVs were isolated from rat serum using density gradient ultracentrifugation, …
The Link Between Intracellular Calcium Signaling And Exosomal Pd-L1 In Cancer Progression And Immunotherapy, Rakibul Alam, Mizanur Rahman, Zhiguo Li
The Link Between Intracellular Calcium Signaling And Exosomal Pd-L1 In Cancer Progression And Immunotherapy, Rakibul Alam, Mizanur Rahman, Zhiguo Li
Markey Cancer Center Faculty Publications
Exosomes are small membrane vesicles containing microRNA, RNA, DNA fragments, and proteins that are transferred from donor cells to recipient cells. Tumor cells release exo- somes to reprogram the factors associated with the tumor microenvironment (TME) causing tu- mor metastasis and immune escape. Emerging evidence revealed that cancer cell-derived exosomes carry immune inhibitory molecule program death ligand 1 (PD-L1) that binds with re- ceptor program death protein 1 (PD-1) and promote tumor progression by escaping immune response. Currently, some FDA-approved monoclonal antibodies are clinically used for cancer treatment by blocking PD-1/PD-L1 interaction. Despite notable treatment outcomes, some pa- tients show …
Proposing An Rna Interference (Rnai)-Based Treatment For Human Immunodeficiency Virus (Hiv) By Analyzing The Post-Transcriptional Gene Targeting Of Sars-Cov-2, Hepatitis C Virus, And A549 Lung Cancer Cells, Arjun Jagdeesh
Undergraduate Research Posters
Human Immunodeficiency Virus (HIV) is a retrovirus that infects CD4+ T cell lymphocytes in humans, leading to the development of Acquired Immunodeficiency Syndrome (AIDS) if left untreated. While current treatment methods, including antiretroviral combination treatments, effectively limit HIV replication, HIV can evade these treatments due to its high mutation rate. Long-term antiretroviral treatment can also be toxic to patients, meaning patients would benefit from a new mechanism of HIV treatment. RNA interference (RNAi) is an antiviral pathway found in mammals, plants, and insects that involves a small-interfering RNA that is incorporated into a protein complex called the RNA-induced Silencing Complex …
Endogenous Antioxidant Response And Lipid Peroxidation Levels In Muscle Tissue Of The Cownose Ray (Rhinoptera Bonasus), Bailey Berry
Endogenous Antioxidant Response And Lipid Peroxidation Levels In Muscle Tissue Of The Cownose Ray (Rhinoptera Bonasus), Bailey Berry
College of Graduate Studies: Theses & Dissertations
Oxidative stress is the result of an imbalance between reactive oxygen species (ROS) and antioxidant response within cells. ROS generation is a natural consequence of ETC activity within the mitochondria and is associated with aerobic metabolism. Oxidative stress data on elasmobranch muscle is limited, with previous studies primarily focusing on mammalian and teleost muscle. Elasmobranch skeletal muscle is generally composed of large proportions of white muscle fibers (anaerobic), low proportions of red muscle fibers (aerobic), and low proportions of pink muscle fibers (anaerobic). The cownose ray, a benthopelagic batoid species, presents an interesting model of study because it contains relatively …
Conserved Novel Interactions Between Post-Replicative Repair And Mismatch Repair Proteins Have Differential Effects On Dna Repair Pathways, Anna K. Miller
Conserved Novel Interactions Between Post-Replicative Repair And Mismatch Repair Proteins Have Differential Effects On Dna Repair Pathways, Anna K. Miller
Theses and Dissertations--Toxicology and Cancer Biology
DNA mismatch repair (MMR) is the DNA repair mechanism that repairs base-base mispairs and small insertions and deletions remaining after replication. MMR is also required for apoptosis after certain types of exogenous DNA damage that result in damage-associated mispairs. The basic MMR mechanism is well understood; however, proteins associated with MMR continue to be identified. The roles of these interacting proteins in MMR are largely unknown. We have identified the yeast protein Rad5 as a novel interactor of the critical MMR proteins Msh2 and Mlh1. Rad5 is a DNA helicase and E3 ubiquitin ligase involved in post-replicative repair. However, to …
Elucidating The Functional Importance Of Peroxiredoxin Iv In Prostate Cancer And Its Secretion Mechanism, Na Ding
Theses and Dissertations--Toxicology and Cancer Biology
Prostate cancer is the most common and second leading cause of cancer death in men. Prevailing theories state that inflammation may drive prostate carcinogenesis via oxidative stress and the generation of reactive oxygen species (ROS) that induce somatic mutagenesis. Since high proliferating cells or cancer cells exhibit aberrant metabolism to satisfy the needs of energy for rapid cell proliferation, they also generate high levels of ROS which stimulates the expression of cellular antioxidants to overcome the dysregulation of redox homeostasis through the regulation of redox-sensitive transcription factors. Among different antioxidants, peroxiredoxin (Prx) family proteins are the highly conserved and mostly …
Sex-Dependent Effects Of Induced Acute Inflammation On Glucose Homeostasis And Rna Editing Enzymes, Christian A. Rivas
Sex-Dependent Effects Of Induced Acute Inflammation On Glucose Homeostasis And Rna Editing Enzymes, Christian A. Rivas
Graduate Theses/Dissertations
The first line of defense against bodily insults, like pathogen invasion, is the innate immune system. Innate immunity sets in motion countless cascades that result in inflammation. Inflammation simultaneously affects multiple biological processes like metabolism and gene expression. Males and females react differently to inflammation. To understand both molecular and physiological sex differences in inflammation, we examined how inflammation affects gene expression and glucose metabolism. Adenosine deaminase acting on RNA (ADAR1) is upregulated by inflammation and catalyzes RNA editing, a process where nucleotides encoded by the genome are modified. ADAR1 also controls the innate immune reaction by decreasing activity of …
Cul3 Negatively Regulates Nlrp12-Mediated Inhibition Of The Canonical Nf-Κb Signaling Pathway, Inyeong Lee
Cul3 Negatively Regulates Nlrp12-Mediated Inhibition Of The Canonical Nf-Κb Signaling Pathway, Inyeong Lee
Graduate Theses/Dissertations
Nod-like receptor family pyrin domain-containing protein 12 (NLRP12) is mainly known for its inhibitory function on NF-κB signaling in innate immune cells, and more recently, for its ability to regulate chemokine signaling and ubiquitination of the immune receptor RIG-I. Through a yeast 2-hybrid screen, the Lupfer lab previously discovered that NLRP12 interacts with other ubiquitin-associated proteins including Cullin 3 (CUL3) and RING finger protein 2 (RNF2). This research was conducted to mainly investigate the interaction between NLRP12 and CUL3 in human cells and examine the role in regulating NF-κB signaling. Previously, co-immunoprecipitation, followed by western blot analysis, and confocal microscopy …
Identification Of A Dna Polymerase Alpha Gene Sequence In Thermomyces Lanuginosus Fungus, Nathan Williams
Identification Of A Dna Polymerase Alpha Gene Sequence In Thermomyces Lanuginosus Fungus, Nathan Williams
Honors Program Theses
With cell growth being the main focus of our research, we chose to study DNA polymerase alpha. DNA polymerase alpha is likely to be involved in cell growth as it is the enzyme that starts DNA replication. Control of this enzyme might lead to decreased cell growth in cancer or increased cell growth in damaged spinal cord tissue. We chose the thermophilic fungus Thermomyces lanuginosus for the study of the enzyme due to the ability to compare the enzyme’s activity during fungal growth at different temperatures. Thermomyces exhibits rapid growth at high temperatures and slow growth at low temperatures. Studying …
Identification Of Proteins Involved In Cell Membrane Permeabilization By Nanosecond Electric Pulses (Nsep), Giedre Silkuniene, Uma Mangalanathan, Alessandra Rossi, Peter A. Mollica, Andrei G. Pakhomov, Olga N. Pakhomova
Identification Of Proteins Involved In Cell Membrane Permeabilization By Nanosecond Electric Pulses (Nsep), Giedre Silkuniene, Uma Mangalanathan, Alessandra Rossi, Peter A. Mollica, Andrei G. Pakhomov, Olga N. Pakhomova
Bioelectrics Publications
The study was aimed at identifying endogenous proteins which assist or impede the permeabilized state in the cell membrane disrupted by nsEP (20 or 40 pulses, 300 ns width, 7 kV/cm). We employed a LentiArray CRISPR library to generate knockouts (KOs) of 316 genes encoding for membrane proteins in U937 human monocytes stably expressing Cas9 nuclease. The extent of membrane permeabilization by nsEP was measured by the uptake of Yo-Pro-1 (YP) dye and compared to sham-exposed KOs and control cells transduced with a non-targeting (scrambled) gRNA. Only two KOs, for SCNN1A and CLCA1 genes, showed a statistically significant reduction in …
Tgif1 Physiological Levels Limit Β-Cell Distress And Neonatal Diabetes, Creighton J. Friend
Tgif1 Physiological Levels Limit Β-Cell Distress And Neonatal Diabetes, Creighton J. Friend
Theses and Dissertations
TGIF1 belongs to the superfamily of homeodomain proteins, which regulate a wide variety of biological functions, including cell stemness and specification of cell fate during early development. Perhaps surprisingly, we found that enforced expression in pancreatic progenitor cells during embryogenesis resulted in severe diabetes, hinting at the possibility that TGIF1 might regulate pancreas development. Subsequent genetic experiments targeting β-cells showed that TGIF1 affected β-cell function and homeostasis. Transcriptomic analysis revealed that TGIF1 expression inhibits the expression of essential components of UPR signaling, underscoring a potential mechanism in which TGIF1 disrupts protein folding and secretion. Congruently, TGIF1 expression led to a …
Development Of A Chemical Biology Approach To Uncover The Influence Of Sequence Variations On Ces1 Activity In Live Cells, Samuel James Knebel
Development Of A Chemical Biology Approach To Uncover The Influence Of Sequence Variations On Ces1 Activity In Live Cells, Samuel James Knebel
Masters Theses
Drug metabolism is the biochemical process of modifying drugs to detoxify and remove them through enzymatic transformations. These biotransformation’s occur primarily in the liver and are critical to understanding how pharmaceutical compounds are chemically altered inside the human body. Human carboxylesterases (CESs) catalyze the hydrolysis of esters, amides, thioesters, and carbamates. CES-mediated hydrolysis plays an important role in the metabolism of many drugs including the first FDA approved antiviral treatment for COVID-19, remdesivir (Veklury), the seizure control medication rufinamide (Banzel), and the flu antiviral drug oseltamivir (Tamiflu). CES activity is known to be influenced by a variety of factors including …
Investigating Changes In Er-To-Golgi Protein Transport Following A Short Calcium Pulse: Roles Of Alg-2 And Peflin, Alaa Mohammed Yosri Shaheen
Investigating Changes In Er-To-Golgi Protein Transport Following A Short Calcium Pulse: Roles Of Alg-2 And Peflin, Alaa Mohammed Yosri Shaheen
Graduate Student Theses, Dissertations, & Professional Papers
The ER-Golgi interface is a very dynamic environment that involves the movement of protein-loaded vesicles forward and backward. The movement of COPII-coated vesicles from the ER to the Golgi is the initial step in the movement of secreted, organellar, and cell surface proteins toward their final destinations. Many factors can regulate this step, including cytosolic calcium increases. In this study, we examined the effect of a transient calcium pulse on recruitment to ER exit sites of cargo proteins for ER export, the calcium-sensitive regulatory proteins apoptosis-linked gene 2 (ALG-2) and peflin, and the COPII outer coat subunits Sec31A and Sec13. …
How To Build A Cortex: Coordinated Assembly Of Cortical Septins And Actomyosin In The Leader Bleb, Asia Marie Paguntalan
How To Build A Cortex: Coordinated Assembly Of Cortical Septins And Actomyosin In The Leader Bleb, Asia Marie Paguntalan
Master's Theses
In confined spaces, migrating cells can undergo mesenchymal-to-amoeboid transitions by altering their cortical dynamics and adhesion with the environment. Septins frequently associate with cortical actin and non-muscle myosin (NMII), but the functional nature of these interactions remains unclear. Upon non-adhesive confinement and NMII enrichment, fibroblasts can switch to a fast, leader bleb-based mode of motility, characterized by the absence of adhesions and stress fibers and formation of a single, elongated leader bleb. During this transition, cortical actin remodeling and polarized NMII contractility drive leader bleb stabilization by generating long-range cortical flows, in coordination with changes in septin localization and assembly …
Measuring How Kinetochore-Microtubule Detachment Contributes To Chromosome Movement And The Correction Of Attachment Errors, Melissa K. Parks
Measuring How Kinetochore-Microtubule Detachment Contributes To Chromosome Movement And The Correction Of Attachment Errors, Melissa K. Parks
Dartmouth College Ph.D Dissertations
The goal of mitosis is to achieve faithful chromosome segregation; ensuring that the daughter cells inherit equal numbers of chromosomes. This is vital to cell health and viability and if mis-regulated can result in birth defects and disease such as cancer. There are many intricately regulated processes that occur throughout mitosis to achieve proper chromosome segregation, and one such example is the dynamic attachments formed between cytoskeletal structures, known as microtubules, and chromosomes, the carriers of genetic material. These attachments occur at structures called kinetochores, and the microtubules attached here are referred to as kinetochore-microtubules (k-MTs). These k-MTs are inherently …