Applications Of Machine Learning In Microbial Forensics,
2021
Michigan Technological University
Applications Of Machine Learning In Microbial Forensics, Ryan B. Ghannam
Dissertations, Master's Theses and Master's Reports
Microbial ecosystems are complex, with hundreds of members interacting with each other and the environment. The intricate and hidden behaviors underlying these interactions make research questions challenging – but can be better understood through machine learning. However, most machine learning that is used in microbiome work is a black box form of investigation, where accurate predictions can be made, but the inner logic behind what is driving prediction is hidden behind nontransparent layers of complexity.
Accordingly, the goal of this dissertation is to provide an interpretable and in-depth machine learning approach to investigate microbial biogeography and to use micro-organisms as …
On The Structure And Function Of Mitochondrial Uncoupling Proteins: The Case Of Ucp2,
2021
Wilfrid Laurier University
On The Structure And Function Of Mitochondrial Uncoupling Proteins: The Case Of Ucp2, Afshan Ardalan
Theses and Dissertations (Comprehensive)
Uncoupling proteins (UCPs) are regulated proton transporters of the mitochondrial inner membrane. UCP-mediated proton leak negatively impacts the rate of ATP synthesis. Despite the importance of their physiological role(s) in certain tissues, molecular aspects of UCPs’ structure-function relationships are not fully understood. The current study explores the tertiary and quaternary structure of UCP2, as well as its proton transport mechanism in lipid membranes. The proteins were expressed in the E. coli inner membrane, purified and reconstituted into liposomes. Proteins were characterized by semi-native SDS-PAGE. Circular dichroism spectroscopy (CD) and fluorescence quenching assays were utilized to study the conformation of proteins …
Molecular Mechanism Of Cyanobacteria Circadian Clock Oscillator And Effect Of Co Factors On Its Oscillation,
2020
New Jersey Institute of Technology
Molecular Mechanism Of Cyanobacteria Circadian Clock Oscillator And Effect Of Co Factors On Its Oscillation, Manpreet Kaur
Dissertations
The circadian rhythms arise as an adaptation to the environmental 24-hour day and night cycle due to Earth's rotation. These rhythms prepare organisms to align their internal biological activities and day to day behavior or events with the environmental change of the 24-hour day and night cycle. Circadian rhythms are found widely in all living kingdoms of life on Earth. Cyanobacteria are photosynthetic prokaryotes which first used to study these circadian rhythms. Among cyanobacterial species, Synechococcus elongatus PCC 7942 (henceforth, S. Elongatus) is the simplest organism with a durable and sturdy circadian clock and is study as a model organism. …
Quantifying Anticancer Drug Doxorubicin Binding To Dna Using Optical Tweezers,
2020
Bridgewater State University
Quantifying Anticancer Drug Doxorubicin Binding To Dna Using Optical Tweezers, Zachary Ells
Honors Program Theses and Projects
Doxorubicin is a successful anticancer drug approved for use in the 1970s and is considered to be one of the most effective cancer treatment methods today. Although Doxorubicin has positive survival statistics it has very negative side effects in many cases. Bleeding from the soles of the palms and feet, along with excruciating pain is often exhibited through the administration of this drug. Based on the preliminary findings utilizing optical tweezers we anticipate that this study will provide critical information about the drug binding mechanism. Single molecule biophysics techniques have provided useful insight into the DNA-binding mechanisms of small molecules. …
Rna Structure And Function: Biological Relevance In Neurodegenerative And Infectious Disease Pathogenesis,
2020
Duquesne University
Rna Structure And Function: Biological Relevance In Neurodegenerative And Infectious Disease Pathogenesis, Joshua Imperatore
Electronic Theses and Dissertations
The studies outlined in this dissertation encompass a broad focus, relating to the pathogenesis of neurological disorders such as Alzheimer’s disease, fragile X syndrome, and amyotrophic lateral sclerosis, as well as a novel infectious disease, COVID-19. However, all four studies detailed within this dissertation contain similar elements, namely, the coordinated role of RNA structure and function in essential molecular mechanisms. The results of these investigations allow us to speculate on various disease- related mechanisms, including dysregulated microRNA processing pathways, nucleocytoplasmic shuttling via distinct RNA-protein interactions, and fine-tuned molecular switches controlling genomic dimerization and viral hijacking of host cellular microRNAs. Taken …
Let-Dependent Low Dose And Synergistic Inhibition Of Human Angiogenesis By Charged Particles: Validation Of Mirnas That Drive Inhibition,
2020
Universities Space Research Association, NASA Ames Research Center
Let-Dependent Low Dose And Synergistic Inhibition Of Human Angiogenesis By Charged Particles: Validation Of Mirnas That Drive Inhibition, Amber M. Paul, Yen-Ruh Wuu, Burong Hu, Hazeem Okunola, Elizabeth A. Blaber, Margareth Cheng-Campbell, Afshin Beheshti, Peter Grabham
Publications
Space radiation inhibits angiogenesis by two mechanisms depending on the linear energy transfer (LET). Using human 3D micro-vessel models, blockage of the early motile stage of angiogenesis was determined to occur after exposure to low LET ions (/AMU), whereas inhibition of the later stages occurs after exposure to high LET ions (>8 KeV/AMU). Strikingly, the combined effect is synergistic, detectible as low as 0.06 Gy making mixed ion space radiation more potent. Candidates for bystander transmission are microRNAs (miRNAs), and analysis on miRNA-seq data from irradiated mice shows that angiogenesis would in theory be downregulated. Further analysis of three …
Identification Of Clonal Evolution Pattern And Mutation Event Associated With Relapsed/Refractory Diffuse Large B-Cell Lymphoma Using Next-Generation Sequencing,
2020
University of Nebraska Medical Center
Identification Of Clonal Evolution Pattern And Mutation Event Associated With Relapsed/Refractory Diffuse Large B-Cell Lymphoma Using Next-Generation Sequencing, Cheng Wang
Theses & Dissertations
Diffuse large B-cell lymphoma (DLBCL) is an aggressive lymphoid malignancy. About 30% of DLBCL cases respond poorly to initial treatment and eventually relapse. For these patients, the current treatment regimen is quite limited, and the prognosis is poor. Gene mutations and genetic alterations play an important role in lymphomagenesis. However, the genetic alterations or gene mutations underlying the disease resistance/relapse in DLBCL are still unknown. The clonal evolution during the process of disease progression is elusive as well. Our goal is to study the genetic alterations in DLBCL, particularly paired diagnostic and relapsed/refractory DLBCL, to better understand the mutation landscape …
Characterizing The Critical Role Of Metabolic And Redox Homeostasis In Colorectal Cancer,
2020
University of Nebraska Medical Center
Characterizing The Critical Role Of Metabolic And Redox Homeostasis In Colorectal Cancer, Danielle Frodyma
Theses & Dissertations
Metabolic alterations are a hallmark of cancer and the mechanism by which these adaptations sustain cancer cell growth are complex and dependent on tissue type. In colon cancer, Peroxisome Proliferator Activated Receptor γ Coactivator 1 β(PGC1��) and Estrogen-Related Receptor α (ERR��) are overexpressed and contribute to tumor growth. Previous studies have shown that PGC1�� and ERR�� regulate many metabolic processes by controlling vital gene expression. Here, we show that PGC1�� and ERR�� drive oxidative phosphorylation and glycolysis in colon cancer cell lines and we evaluated downstream effectors and processes.
A dysfunction in the reductive and oxidative capacity of the cell …
Mechanisms By Which Mnte-2-Pyp Suppresses Prostate Cancer Cell Growth,
2020
University of Nebraska Medical Center
Mechanisms By Which Mnte-2-Pyp Suppresses Prostate Cancer Cell Growth, Yuxiang Zhu
Theses & Dissertations
Prostate cancer patients are often treated with radiotherapy. MnTE-2-PyP, is a superoxide dismutase (SOD) mimic and a known radioprotector of normal tissues. Our recent work demonstrates that MnTE-2-PyP also inhibits prostate cancer progression with radiotherapy; however, the mechanisms remain unclear. In this thesis, we identified that MnTE-2-PyP-induced intracellular H2O2 levels are critical in inhibiting growth of prostate cancer cells. We found that MnTE-2-PyP induced protein oxidations in PC3 cells and one major group of oxidized protein targets were involved in energy metabolism. The oxidative phosphorylation rates were significantly enhanced in both PC3 and LNCaP cells with MnTE-2-PyP treatment, but mitochondrial …
Elucidating The Role Of Ecdysoneless In Mrna Processing,
2020
University of Nebraska Medical Center
Elucidating The Role Of Ecdysoneless In Mrna Processing, Irfana Saleem
Theses & Dissertations
The mammalian orthologue of the evolutionarily conserved Ecdysoneless (ECD) protein is required for embryogenesis, cell cycle progression and mitigation of ER stress. However, the molecular mechanisms of ECD function in mammalian cells remain unclear. Here, using mass spectrometry analysis of the mammalian ECD interactome, we identified several components of the mRNA export complexes as binding partners of ECD and then characterized the functional interaction of ECD with key mRNA export-related DEAD BOX protein helicase DDX39A and its associated partners. FISH analysis of Poly-A-tailed mRNAs revealed that ECD depletion/deletion blocks the mRNA export from the nucleus to the cytoplasm. We have …
Single-Fluorophore Sensors For Mechanical Force In Living Cells,
2020
University of Connecticut
Single-Fluorophore Sensors For Mechanical Force In Living Cells, Sarah Kricheff
Honors Scholar Theses
Mechanotransduction is the process by which a mechanical stimulus is converted to a cellular signal. This process is heavily influential of cell morphology, differentiation, and behavior. However, altered levels of mechanical stimuli are also found in many pathological contexts. For example, cancerous cells have stiffer surrounding tissue than healthy cells, and research suggests that this alters cell behavior and promotes metastasis. Despite these findings, the cellular processes behind these signaling alterations remain widely unknown. Understanding these cascades is critical, as involved proteins can give us a deeper understanding of the role of mechanotransduction, and certain proteins can potentially be targeted …
Dissecting Regulation Mechanism Of Interdomain Electron Transfer In Nitric Oxide Synthases,
2020
University of New Mexico
Dissecting Regulation Mechanism Of Interdomain Electron Transfer In Nitric Oxide Synthases, Huayu Zheng
Chemistry and Chemical Biology ETDs
Nitric oxide (NO) is generated by one of the three isoforms of mammalian NO synthases (NOSs), neuronal, endothelial and inducible NOS (nNOS, eNOS, and iNOS, respectively). Dysregulated NOS is implicated in pathologies of numerous severe diseases including Alzheimer and Parkinson’s diseases. Molecular mechanisms of NOS regulation, once fully understood, are potentially key targets for development of selective new pharmaceuticals for treating these diseases that currently lack effective treatments.
Despite recent developments, there are significant gaps in current understanding of the regulation mechanism of the FMN-heme interdomain electron transfer (IET), an essential step in NOS, by its key regulators such as …
Impact Of Cd82 Expression On Acute Myeloid Leukemia Chemosensitivity And Quiescence,
2020
University of New Mexico
Impact Of Cd82 Expression On Acute Myeloid Leukemia Chemosensitivity And Quiescence, Muskan Floren
Biomedical Sciences ETDs
Acute Myeloid Leukemia (AML) patients respond favorably to induction chemotherapy, however, long-term outcomes remain poor due to a high rate of chemoresistance and bone marrow minimal residual disease. To improve long-term patient outcomes, it’s critical to identify regulators of chemotherapy resistance in AML and develop therapies that are directed towards bone marrow resident AML cells. In Chapter 2, we uncover the impact of CD82 expression in AML response to chemotherapeutic treatment and the contribution of Protein Kinase C α (PKCα) and β1 integrin signaling in promoting p38 MAPK activation to support CD82-mediated AML cell survival. In Chapter 3, we …
Fluorescence Spectroscopic And Molecular Modelling Studies On The Molecular Interaction Mechanism Of Bromodeoxyuridine With Human Serum Albumin,
2020
Universiti Malaya
Fluorescence Spectroscopic And Molecular Modelling Studies On The Molecular Interaction Mechanism Of Bromodeoxyuridine With Human Serum Albumin, Amira Adlin Roslan
Student Works (2020-2029)
The interaction of a nucleoside analogue, bromodeoxyuridine (BrdU) with human serum albumin (HSA) was studied to investigate the binding phenomenon and analyze the protein conformation upon BrdU binding. Multiple spectroscopic techniques, viz. intrinsic and three-dimensional (3-D) fluorescence, ultraviolet-visible (UV-Vis) absorption and circular dichroism (CD) spectroscopy along with molecular docking were used. A decrease in the Stern-Volmer constant (Ksv) with the increase in temperature suggested BrdU-induced quenching of protein fluorescence as static quenching and thus implied BrdU−HSA complex formation. This was also supported by UV-Vis absorption spectral results, showing hyperchromism in the absorption spectrum of HSA upon BrdU addition. Intermediate binding …
Unconventional Constituents And Shared Molecular Architecture Of The Melanized Cell Wall Of C. Neoformans And Spore Wall Of S. Cerevisiae,
2020
CUNY City College
Unconventional Constituents And Shared Molecular Architecture Of The Melanized Cell Wall Of C. Neoformans And Spore Wall Of S. Cerevisiae, Christine Chrissian, Coney Pei-Chin Lin, Emma Camacho, Arturo Casadevall, Aaron M. Neiman, Ruth E. Stark
Publications and Research
The fungal cell wall serves as the interface between the cell and the environment. Fungal cell walls are composed largely of polysaccharides, primarily glucans and chitin, though in many fungi stress-resistant cell types elaborate additional cell wall structures. Here, we use solid-state nuclear magnetic resonance spectroscopy to compare the architecture of cell wall fractions isolated from Saccharomyces cerevisiae spores and Cryptococcus neoformans melanized cells. The specialized cell walls of these two divergent fungi are highly similar in composition. Both use chitosan, the deacetylated derivative of chitin, as a scaffold on which a polyaromatic polymer, dityrosine and melanin, respectively, is assembled. …
Not Too Hot, Not Too Cold, But Moderately Variable: The Influence Of Environmental Variability On Coral Thermal Tolerance,
2020
Old Dominion University
Not Too Hot, Not Too Cold, But Moderately Variable: The Influence Of Environmental Variability On Coral Thermal Tolerance, Courtney Nicole Klepac
Biological Sciences Theses & Dissertations
Anthropogenic climate change is causing an increase in the frequency and severity of marine heat waves, resulting in declining health of coral reef ecosystems worldwide. Coral bleaching events – the breakdown in symbiosis between the coral host and their intracellular photosynthetic algae – are increasingly common in recent years and contribute to widespread losses in coral cover. However, bleaching and heat stress responses vary across spatial scales both within and among coral species. Coral populations native to highly variable environments can have greater bleaching resistance than corals from more stable habitats and corals transplanted into these variable reef sites can …
Drivers Of Rickettsial Pathogen Transmission And Spillover In Local Tick Populations In Southeastern Virginia,
2020
Old Dominion University
Drivers Of Rickettsial Pathogen Transmission And Spillover In Local Tick Populations In Southeastern Virginia, Alexandra Cumbie
Biomedical Sciences Theses & Dissertations
Cases of spotted fever group rickettsiosis are becoming more prevalent in the United States. In Virginia, there are three human-biting ticks which are largely responsible for the spread of rickettsial pathogens and the increase in disease cases. These species include Dermacentor variabilis, Amblyomma americanum, and Amblyomma maculatum; all of which are vectors of rickettsial agents to vertebrate hosts. These species are sympatric as adults and have the potential to share large and small mammal hosts. Their interactions on and off host and their associated rickettsiae were the focus of this dissertation work. Amblyomma americanum is the vector …
Implications Of Lysine Acetylation On The Enzymes Of The Tca Cycle,
2020
University of Arkansas, Fayetteville
Implications Of Lysine Acetylation On The Enzymes Of The Tca Cycle, Sumana Venkat
Graduate Theses and Dissertations
The tricarboxylic acid (TCA) cycle is a central route for the energy production via oxidative phosphorylation and is ubiquitous throughout nature. Apart from playing a major role in energy provision, it is also essential for a wide range of physiological functions in any organism. Although an increasing emphasis is laid on the interlinking role of the cycle, its regulation and control are less very less understood. As the field progresses, the consequences of TCA cycle anomalies are shown to be tied to various cancers and other disorders. The matter becomes more complex when considering the varying functions of the isozymes …
Design Of Hfgf1 Variant(S) With Increased Stability And Enhanced Bioactivity,
2020
University of Arkansas, Fayetteville
Design Of Hfgf1 Variant(S) With Increased Stability And Enhanced Bioactivity, Shilpi P. Agrawal
Graduate Theses and Dissertations
Fibroblast growth factors (FGFs) are involved in various cellular processes such as cell growth,proliferation, differentiation, migration, angiogenesis, wound healing and embryonic development. Human acidic fibroblast growth factor (hFGF1) binds non-selectively to all the four FGF-receptors and is therefore considered as a powerful mitogen with broadest specificity. However, pharmacological applications of hFGF1 are restricted due to the low thermal stability of the growth factor. hFGF1 has low thermodynamic stability under physiological temperatures which leads to impairment of cellular signaling process thereby preventing its potential mitogenic properties. hFGF1 has a heparin binding pocket at the C-terminus which comprises of positively charges residues. …
Calcium Dyshomeostasis In Neurodegeneration,
2020
The University of Texas MD Anderson Cancer Center UTHealth Graduate School of Biomedical Sciences
Calcium Dyshomeostasis In Neurodegeneration, Nicholas Emanuel Karagas
Dissertations and Theses (Open Access)
Neurodegenerative diseases, despite constituting a major and growing cause of mortality globally, have few effective treatments. In order to develop novel therapeutics to combat neurodegeneration, a better understanding of the molecular mechanisms underlying these diseases is needed. Neurons rely on Ca2+ to mediate many of their unique functions, and aberrant Ca2+ signaling has been broadly implicated in neurodegeneration. The goal of this dissertation is to delineate specific examples of Ca2+ dyshomeostasis that I have uncovered in Drosophila models of neurodegeneration.
I first define the role a neurodegeneration-associated mutation plays in perturbing presynaptic [Ca2+], which is …
