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Design, Synthesis, And Nmr-Guided Characterization Of A Targeted Covalent Inhibitor-Like Molecule Against Ivyp1 From P. Aeruginosa, Samuel Taylor Moore 2024 Kennesaw State University

Design, Synthesis, And Nmr-Guided Characterization Of A Targeted Covalent Inhibitor-Like Molecule Against Ivyp1 From P. Aeruginosa, Samuel Taylor Moore

Master's Theses

Multi-drug resistance poses a serious threat to future generations and historical antibiotic pipelines; consequently, the medical and economic burdens associated with treating multidrug-resistant bacteria are substantiated. In this context, P. aeruginosa (PA) emerges as one of the most significant healthcare challenges, being a leading cause of resistance-associated mortality worldwide. Despite modern efforts to combat these poor outcomes, drug-resistant cases continue to rise, and the need for novel antibiotic treatment is apparent. To this end, we investigated relevant resistance mechanisms and past antibiotic targets within PA, and in doing so, we identified relationships between peptidoglycan biology and a periplasmic protein, Inhibitor …


D101n: A Unique And Ill-Understood Familial Als-Related Sod1 Mutant, Analisa Lott 2024 St. Mary's University

D101n: A Unique And Ill-Understood Familial Als-Related Sod1 Mutant, Analisa Lott

Honors Program Theses and Research Projects

Background: Amyotrophic Lateral Sclerosis (ALS) is a fatal neurodegenerative disease, with 90% of documented cases considered sporadic and about 10% showing a hereditary link; such cases are deemed as familial ALS (fALS). Superoxide dismutase (SOD), a copper-zinc binding enzyme that protects cells from damaging free radicals, has been linked to fALS with certain toxic gain of function mutations, such as the D101N mutant. The human SOD1 D101N mutant has been shown to be associated with rapidly progressing neurodegeneration yet is less prone to aggregation than similar mutants, but its deviation from wild-type (WT) SOD1 remains misunderstood.

Objective: Although the D101N …


Cross-Interactions Of Amyloid Proteins: Implications For Aggregation Dynamics And Disease Pathology, Zhiyuan Song 2024 Clemson University

Cross-Interactions Of Amyloid Proteins: Implications For Aggregation Dynamics And Disease Pathology, Zhiyuan Song

All Dissertations

Amyloid aggregation is a pervasive form of protein misfolding implicated in the pathology of several prominent human diseases, including Alzheimer’s disease (AD), Parkinson’s disease (PD), and type 2 diabetes (T2D). These diseases are marked by the accumulation of amyloid fibrils and toxic oligomers, which are highly dynamic and heterogeneous, posing challenges for understanding their roles in disease progression. Despite significant advances in the diagnosis and management of these conditions, no definitive cure is available. We investigate amyloid aggregation and cross-seeding, with a focus on amyloid-beta (Aβ), tau, alpha-synuclein (αS), and human islet amyloid polypeptide (IAPP) through discrete molecular dynamics (DMD) …


Phagolysosomes Break Down The Membrane Of A Non-Apoptotic Corpse Independent Of Macroautophagy, Shruti Kolli, Cassidy J. Kline, Kimya M. Rad, Ann M. Wehman 2024 University of Denver

Phagolysosomes Break Down The Membrane Of A Non-Apoptotic Corpse Independent Of Macroautophagy, Shruti Kolli, Cassidy J. Kline, Kimya M. Rad, Ann M. Wehman

Biological Sciences: Faculty Scholarship

Cell corpses must be cleared in an efficient manner to maintain tissue homeostasis and regulate immune responses. Ubiquitin-like Atg8/LC3 family proteins promote the degradation of membranes and internal cargo during both macroautophagy and corpse clearance, raising the question how macroautophagy contributes to corpse clearance. Studying the clearance of non-apoptotic dying polar bodies in Caenorhabditis elegans embryos, we show that the LC3 ortholog LGG-2 is enriched inside the polar body phagolysosome independent of autophagosome formation. We demonstrate that ATG-16.1 and ATG-16.2, which promote membrane association of lipidated Atg8/LC3 proteins, redundantly promote polar body membrane breakdown in phagolysosomes independent of their role …


Impact Of Chytrid Fungal Infection On Muscle Structure In Amphibians, Esther Hassan, Chisom Ukachukwu 2024 Belmont University

Impact Of Chytrid Fungal Infection On Muscle Structure In Amphibians, Esther Hassan, Chisom Ukachukwu

Science University Research Symposium (SURS)

Many fungal infections affect a wide variety of ecosystems. They cause numerous negative consequences, one in particular being the disruption of biodiversity. disrupting biodiversity and leading to numerous negative consequences. A previous study in the Kinsey lab focused on a chytrid fungal disease, Batrachochytrium dendrobatidis (Bd), a species of chytrid fungus. This disease poses a major threat to amphibian populations worldwide. The Bd zoospores infect the epidermis impacting essential systems. This leads to electrolyte transport that is conducted through the epidermis from the environment has now become disrupted and the ions required for daily functions are diminished. Eventually, these lack …


"Deep Learning For Microscope Image Denoising", Nasreen Buhn, Sriya Adunur, Guy Hagen, Jonathan Ventura 2024 California Polytechnic State University, San Luis Obispo

"Deep Learning For Microscope Image Denoising", Nasreen Buhn, Sriya Adunur, Guy Hagen, Jonathan Ventura

College of Engineering Summer Undergraduate Research Program

In order to avoid damaging live cells, optical microscope imaging must be conducted under low-excitation light intensity and/or short exposure times, resulting in low signal-to-noise ratios (SNR). Deep learning methods offer an effective solution for removing microscope noise, utilizing algorithms that are able to reconstruct finer features in low SNR images. This research explores the denoising capability of several deep learning methods based on PSNR and SSIM. Tested methods include traditional approaches (BMED), supervised learning (CARE and Restormer), and unsupervised methods (Noise2Fast, N2V, SSD-Unsupervised, and SASSID). The Restormer model, which employs an encoder-decoder transformer architecture and progressive learning, stood out …


Mechanistic Study Of Dna Ligase Iv-Mediated Double-Strand Break Repair In Non-Homologous End Joining, Tasmin Naila, Alan E. Tomkinson 2024 University of New Mexico - Main Campus

Mechanistic Study Of Dna Ligase Iv-Mediated Double-Strand Break Repair In Non-Homologous End Joining, Tasmin Naila, Alan E. Tomkinson

Biomedical Sciences ETDs

Non-homologous end joining (NHEJ) is a crucial double-strand break repair pathway in mammalian cells, resolving DNA damage from ionizing radiation and during V(D)J recombination. Although DNA Ligase IV is the only mammalian DNA ligase involved in NHEJ, it functions as a single-turnover enzyme in vitro. Recent cryo-electron microscopy (cryo-EM) studies revealed two LigIV molecules at the NHEJ synapse, supporting the hypothesis that two ligase molecules are needed for DSB repair by NHEJ. This study aims to validate this hypothesis by providing evidence for coordinated ligation at optimal distance and polarity preference for catalytic activity by LigIV. We determined that coordination …


Voltage Set Points For Sodium Channel Inactivation: Intrinsic And Modulatory Mechanisms, Akshay Sharma 2024 CUNY Graduate Center

Voltage Set Points For Sodium Channel Inactivation: Intrinsic And Modulatory Mechanisms, Akshay Sharma

Dissertations, Theses, and Capstone Projects

During an action potential, voltage-gated sodium channels (VGSC) control sodium ion flow into the cytoplasm of cells by using membrane voltage to alter channel conformation. These membrane proteins exhibit three main functional conformations: closed, open, and fast-inactivated, with transitions between these states dependent on membrane voltage and kinetics. The channels open within 1 millisecond and swiftly transition from open to fast-inactivated within 1-2 milliseconds following membrane depolarization. Subsequent membrane repolarization resets the channels to the closed state. Notably, even at mildly depolarized potentials that preclude channel opening, VGSCs can undergo transitions between the closed and inactivated states, known as closed-state …


Unraveling The Role Of Hid-1: Insights Into Sgii Regulation, Breanna L. Sellers 2024 University of Denver

Unraveling The Role Of Hid-1: Insights Into Sgii Regulation, Breanna L. Sellers

Electronic Theses and Dissertations

The regulated secretory pathway is important for the secretion of hormones and neuropeptides from large dense core vesicles (LDCVs). Dysregulation of the biogenesis of LDCVs can result in metabolic and neurological diseases. Recent studies have suggested that the peripheral membrane protein HID-1 plays a role in the sorting and storage of granins which contribute to LDCV biogenesis. To further understand how HID-1 influences the regulation of granins, we investigated potential HID-1 interactors. We determined that while HID-1 is likely functioning in the same pathway as USP25, a deubiquitinating enzyme (DUB), the cause of reduced cellular SgII levels is likely not …


Cryo-Em Reconstruction Of Oleate Hydratase Bound To A Phospholipid Membrane Bilayer, Michael L. Oldham, M. Zuhaib Qayyum, Ravi C. Kalathur, Charles O. Rock, Christopher D. Radka 2024 St. Jude Children's Research Hospital

Cryo-Em Reconstruction Of Oleate Hydratase Bound To A Phospholipid Membrane Bilayer, Michael L. Oldham, M. Zuhaib Qayyum, Ravi C. Kalathur, Charles O. Rock, Christopher D. Radka

Markey Cancer Center Faculty Publications

Oleate hydratase (OhyA) is a bacterial peripheral membrane protein that catalyzes FAD-dependent water addition to membrane bilayer-embedded unsaturated fatty acids. The opportunistic pathogen Staphylococcus aureus uses OhyA to counteract the innate immune system and support colonization. Many Gram-positive and Gram-negative bacteria in the microbiome also encode OhyA. OhyA is a dimeric flavoenzyme whose carboxy terminus is identified as the membrane binding domain; however, understanding how OhyA binds to cellular membranes is not complete until the membrane-bound structure has been elucidated. All available OhyA structures depict the solution state of the protein outside its functional environment. Here, we employ liposomes to …


Computational Modelling And Design Of Antibodies: Benefits From Analysis Of Their Unique Structural Motifs, Katherine M. McCoy 2024 Dartmouth College

Computational Modelling And Design Of Antibodies: Benefits From Analysis Of Their Unique Structural Motifs, Katherine M. Mccoy

Dartmouth College Ph.D Dissertations

The complexes that antibodies make with their binding partners, or antigens, are especially valuable to be able to predict and modify due to their unique role in the immune system. Yet, they present significant challenges to computational methods of both modelling and design. Antibodies are unlike most other proteins in that they are composed of a scaffold region, which is a highly conserved structure that is largely the same between antibodies of the same class, and Complementary Determining Regions (CDRs), which are comprised of hypervariable loops that largely determine their binding motifs. Additionally, antibodies and their antigens do not co-evolve …


Defining A Dynamic Architecture Of Protein Tyrosine Phosphatases, Colin L. Welsh 2024 Medical University of South Carolina

Defining A Dynamic Architecture Of Protein Tyrosine Phosphatases, Colin L. Welsh

MUSC Theses and Dissertations

Protein tyrosine phosphatases (PTPs), a critical class of signaling enzymes, are principally responsible for balancing the actions of kinases through the dephosphorylation of tyrosine residues on substrate proteins. As such, this family is involved in myriad pathways and individual members are able to perform both oncogenic and tumor-suppressing roles. However, while clinical success has been achieved in targeting kinases, PTPs have remained therapeutically challenging. Orthosteric inhibition is limited in PTPs due to their highly conserved fold, leading to off-target effects, and their highly charged active site, requiring highly polar molecules with poor bioavailability. These challenges posit the allosteric inhibition of …


Structural Analysis Of Dj-1 Glyoxalase Activity By Mix-And-Inject Serial Synchrotron Crystallography, Coleman Dolamore 2024 University of Nebraska-Lincoln

Structural Analysis Of Dj-1 Glyoxalase Activity By Mix-And-Inject Serial Synchrotron Crystallography, Coleman Dolamore

Department of Biochemistry: Dissertations, Theses, and Student Research

Observing enzyme structures while they are catalyzing a reaction has been a major goal of both enzymology and structural biology for decades. With the advent of time-resolved serial X-ray crystallography using X-ray free electron lasers (XFELs) and synchrotron sources, enzyme reactions can be monitored in real time in crystallo. Here, we use two different approaches to study related enzymes involved in methylglyoxal detoxification. For human DJ-1, we used pink beam mix-and-inject serial crystallography (MISC) at the Advanced Photon Source (BioCARS 14-ID) to probe the controversial mechanism of DJ-1’s action on methylglyoxal by using serial Laue diffraction. The high flux …


A Structural Role For Tryptophan In Proteins, And The Ubiquitous Trp CΔ1—H&Centerdot;&Centerdot;&Centerdot;O=C (Backbone) Hydrogen Bond, Michal Szczygiel, Urszula Derewenda, Steve Scheiner, Wladek Minor, Zygmunt S. Derewenda 2024 University of Virginia

A Structural Role For Tryptophan In Proteins, And The Ubiquitous Trp CΔ1—H&Centerdot;&Centerdot;&Centerdot;O=C (Backbone) Hydrogen Bond, Michal Szczygiel, Urszula Derewenda, Steve Scheiner, Wladek Minor, Zygmunt S. Derewenda

Chemistry and Biochemistry Faculty Publications

Tryptophan is the most prominent amino acid found in proteins, with multiple functional roles. Its side chain is made up of the hydrophobic indole moiety, with two groups that act as donors in hydrogen bonds: the Nε—H group, which is a potent donor in canonical hydrogen bonds, and a polarized Cδ1—H group, which is capable of forming weaker, noncanonical bonds. Due to adjacent electron-withdrawing moieties, C—H···O hydrogen bonds are ubiquitous in macromolecules, albeit contingent on the polarization of the donor C—H group. Consequently, Cα groups (adjacent to the carbonyl and amino groups of flanking peptide …


Towards A New Role Of Mitochondrial Hydrogen Peroxide In Synaptic Function, Cliyahnelle Z. Alexander 2024 CUNY Bernard M Baruch College

Towards A New Role Of Mitochondrial Hydrogen Peroxide In Synaptic Function, Cliyahnelle Z. Alexander

Student Theses and Dissertations

Aerobic metabolism is known to generate damaging ROS, particularly hydrogen peroxide. Reactive oxygen species (ROS) are highly reactive molecules containing oxygen that have the potential to cause damage to cells and tissues in the body. ROS are highly reactive atoms or molecules that rapidly interact with other molecules within a cell. Intracellular accumulation can result in oxidative damage, dysfunction, and cell death. Due to the limitations of H2O2 (hydrogen peroxide) detectors, other impacts of ROS exposure may have been missed. HyPer7, a genetically encoded sensor, measures hydrogen peroxide emissions precisely and sensitively, even at sublethal levels, during …


Omani Camels From A Cultural And Genomics Perspective, AL MUATASIM AL ZADJALI 2024 Duquesne University

Omani Camels From A Cultural And Genomics Perspective, Al Muatasim Al Zadjali

Electronic Theses and Dissertations

The Dromedarian camel, Camelus dromedarius, is native to the Arabian Peninsula, including the Sultanate of Oman. These camels are used for food, milk, as well as show and racing competitions. Despite their economic and cultural importance research on camels in Oman is limited. The goal of this study was to examine their genomic variation, relationship with camels in other parts of the Arabian Peninsula, and to determine if selective breeding has led to the establishment of distinct breeds in Oman. Information was compiled from multiple sources to produce a comprehensive review on the breeding, management, economic and cultural use, …


Understanding The Non-Canonical Regulation Of Srebp In Aspergillus Fumigatus, Muhammad Abubakar Khan 2024 Dartmouth College

Understanding The Non-Canonical Regulation Of Srebp In Aspergillus Fumigatus, Muhammad Abubakar Khan

Dartmouth College Ph.D Dissertations

Aspergillus fumigatus is an opportunistic fungal pathogen causing invasive pulmonary aspergillosis (IPA), with high mortality rates in immunocompromised individuals. Adaptation to the hypoxic microenvironment of IPA is crucial for fungal virulence. The transcription factor SrbA, a Sterol Regulatory Element-Binding Protein (SREBP) homolog, plays a key role in this hypoxic response and regulates genes involved in hypoxic growth, sterol biosynthesis, and azole resistance, making it an attractive therapeutic target.

However, SrbA activation in A. fumigatus lacks critical components of the canonical SREBP pathway, such as SCAP, Site-1 protease (S1P), and Site-2 protease (S2P). Instead, the rhomboid protease RbdB, signal peptide peptidase …


Establishing An Objective, Quantifiable Method For Detecting Erosive Tooth Wear, Camille Kita 2024 University of Arkansas, Fayetteville

Establishing An Objective, Quantifiable Method For Detecting Erosive Tooth Wear, Camille Kita

Biological Sciences Undergraduate Honors Theses

This study aims to monitor and evaluate erosive tooth wear (ETW) by measurement of enamel surface thickness and texture in a clinical setting. The objective approach is fundamentally different from the standard subjective visual assessment that professionals in the dental field using the Basic Erosive Wear Evaluation (BEWE) method.

Twenty-nine hyposalivation and three control subjects were used in this longitudinal study, for a total of 597 samples (only 577 teeth were eligible for surface texture analysis) evaluated in a longitudinal study including both baseline and 12 month follow up surfaces. Each participant’s buccal surface of the tooth was first analyzed …


Using Artificial (Ai) To Predict A Structure Of Protein Complex, Yiqing Zang 2024 Fort Hays State University

Using Artificial (Ai) To Predict A Structure Of Protein Complex, Yiqing Zang

SACAD: Scholarly Activities

Proteins play pivotal roles in essential life processes and elucidating their three-dimensional (3D) structures is crucial for understanding their functions. AlphaFold2, an advanced artificial intelligence-based method developed by Google DeepMind, has emerged as a promising tool for predicting protein structures. In this study, we evaluated the predictive capabilities of AlphaFold2. Our findings highlight AlphaFold2's efficacy in providing valuable insights into protein structure prediction, albeit with certain limitations. While AlphaFold2 represents a significant advancement in the field, its utility is best realized when integrated with complementary experimental approaches. Consequently, combining the strengths of AlphaFold2 with experimental validation remains essential for achieving …


Expression And Purification Of Domain 1 Of The Cards Toxin, Dylan Andrews, Allison Woods, Ahmad Galaleldeen 2024 St. Mary's University

Expression And Purification Of Domain 1 Of The Cards Toxin, Dylan Andrews, Allison Woods, Ahmad Galaleldeen

Posters - 2024

Mycoplasma pneumoniae (Mp) is an atypical bacterium that is linked to various respiratory diseases such as walking pneumonia and asthma. Upon infection, Mp produces a 591-aa virulence factor known as Community Acquired Respiratory Distress Syndrome Toxin (CARDS TX). The crystal structure of this 591-aa cytotoxin reveals a triangular molecule comprised of an N-terminal ADP-ribosylating domain and a Cterminal tandem β-trefoil domain that is responsible for vacuolation of the host’s cells. Based on structural and sequence homology to other ADP ribosylating toxins, the NAD+ binding site has been predicted, yet none of the published structures of the CARDS toxin contain NAD+. …


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