Identifying The Role Of Cholesterol And The Cholesterol Transfer Protein, Ysp1-2, In Cell-Cell Fusion In Tetrahymena Thermophila,
2022
Rollins College
Identifying The Role Of Cholesterol And The Cholesterol Transfer Protein, Ysp1-2, In Cell-Cell Fusion In Tetrahymena Thermophila, Natasha D. Kusibab
Honors Program Theses
A cell’s shape directly affects how it behaves as one’s structure directly correlates to its function. The shape of cells and organelles is driven in part by the lipid bilayer that makes up their membranes. The process by which cells systematically adjust the types of lipids in membranes to facilitate changes in membrane shape remain uncertain. In our research, we aimed to address this issue by studying the role of lipid transfer proteins in the ciliate, Tetrahymena thermophilia. Specifically, we focus on the process of cell-cell fusion during mating in Tetrahymena as this requires a drastic change in membrane shape …
Cryo-Em Structure Of Transmembrane Aaa+ Protease Ftsh In The Adp State,
2022
Brookhaven National Laboratory
Cryo-Em Structure Of Transmembrane Aaa+ Protease Ftsh In The Adp State, Wu Liu, Martien Schoonen, Tong Wang, Sean Mcsweeney, Qun Liu
Advanced Science Research Center
AAA+ proteases regulate numerous physiological and cellular processes through tightly regulated proteolytic cleavage of protein substrates driven by ATP hydrolysis. FtsH is the only known family of membrane-anchored AAA+ proteases essential for membrane protein quality control. Although a spiral staircase rotation mechanism for substrate translocation across the FtsH pore has been proposed, the detailed conformational changes among various states have not been clear due to absence of FtsH structures in these states. We report here the cryo-EM structure for Thermotoga maritima FtsH (TmFtsH) in a fully ADP-bound symmetric state. Comparisons of the ADP-state structure with its apo-state and a substrate-engaged …
Protein Charge Parameters That Influence Stability And Cellular Internalization Of Polyelectrolyte Complex Micelles,
2022
Columbia University
Protein Charge Parameters That Influence Stability And Cellular Internalization Of Polyelectrolyte Complex Micelles, Rachel A. Kapelner, Rachel S. Fisher, Shana Elbaum-Garfinkle, Allie C. Obermeyer
Advanced Science Research Center
Proteins are an important class of biologics, but there are several recurring challenges to address when designing protein-based therapeutics. These challenges include: the propensity of proteins to aggregate during formulation, relatively low loading in traditional hydrophobic delivery vehicles, and inefficient cellular uptake. This last criterion is particularly challenging for anionic proteins as they cannot cross the anionic plasma membrane. Here we investigated the complex coacervation of anionic proteins with a block copolymer of opposite charge to form polyelectrolyte complex (PEC) micelles for use as a protein delivery vehicle. Using genetically modified variants of the model protein green fluorescent protein (GFP), …
Effects Of Azadirachta Indica Extract On Inhibition Of Glutamate-Induced Neuronal Cell Apoptosis Via Preventing Excessive Mitophagy Activation And Inhibiting Endoplasmic Reticulum Stress In Ht-22 Cells,
2022
Faculty of Allied Health Sciences
Effects Of Azadirachta Indica Extract On Inhibition Of Glutamate-Induced Neuronal Cell Apoptosis Via Preventing Excessive Mitophagy Activation And Inhibiting Endoplasmic Reticulum Stress In Ht-22 Cells, Kuljira Mongkolpobsin
Chulalongkorn University Theses and Dissertations (Chula ETD)
Neurodegenerative diseases (NDs) are the age-related diseases which represent a major cause of mortality in aging population nowadays. Previous studies have shown that glutamate, the most abundant excitatory neurotransmitter, significantly increases in extracellular fluid of the patient’s brain and is the cause of neurodegeneration in NDs. The increase of extracellular glutamate elevates reactive oxygen species (ROS) accumulation and calcium (Ca2+) which exacerbate mitochondrial function, followed by inducing MAPK pathway and endoplasmic reticulum (ER) stress, respectively. In addition, Ca2+ overload also triggers calpain, a Ca2+ dependent protease, activity which further stimulates Cdk5/p35/p25 signaling leading to neuronal apoptosis. Azadirachta indica A. Juss. …
Here, There, And Everywhere: Probing Ubiquitin-Cavitand Binding Via 15n-1h Hsqc,
2022
Claremont Colleges
Here, There, And Everywhere: Probing Ubiquitin-Cavitand Binding Via 15n-1h Hsqc, Julia Didziulis
Scripps Senior Theses
Ubiquitination and other post-translational modifications play a major role in the proliferation of many neurodegenerative diseases, developmental disorders, and cancers, and as such are subjects of recently increased biochemical interest. Expanding upon such research, this study confirmed a robust method of ubiquitin expression and purification, then used 15N-1H HSQC to analyze ubiquitin samples containing varying concentrations of a deep cavitand with affinity for lysine and arginine side chains. In the pure ubiquitin spectrum, arginine side chain chemical shifts were detected in the nitrogen 80-85 ppm range and lysine side chain signals were undetected. However, upon introduction of the cavitand, collection …
Simulation Of An Inflammatory Model Using Schwann Cells,
2022
Misericordia University
Simulation Of An Inflammatory Model Using Schwann Cells, Caitlyn E. Henry, Peyton Kimmel, Mackenzie Wilcox, Angela Asirvatham
SURF Posters 2022
Schwann cells are a type of glial cell in the peripheral nervous system that produce the myelin sheath surrounding neuronal axons. This myelin insulates the neurons and promotes the rapid conduction of electrical impulses throughout the body. Schwann cells have also been found to play a critical role in neuron repair following nerve injury. During nerve injury, the myelin sheath is damaged, stimulating Schwann cells to release cytokines, or inflammatory mediators, that recruit immune cells to the site of injury so that the myelin debris can be cleared, and repair can take place.1 Then neuronal growth is facilitated by heregulin …
An Integrative Investigation Of The Synechococcus A/B Clade During Adaptive Radiation At The Upper Thermal Limit Of Phototrophy,
2022
University of Montana, Missoula
An Integrative Investigation Of The Synechococcus A/B Clade During Adaptive Radiation At The Upper Thermal Limit Of Phototrophy, Christopher L. Pierpont
Graduate Student Theses, Dissertations, & Professional Papers
Thermophilic microorganisms have been scientifically observed since the early nineteenth century and have spurred many questions about the limits of life and the capacity of organisms to survive extreme conditions. Decades of research on thermophile proteins and genomes have yielded several proposed correlates of temperature that may contribute to adaptation of bacteria and archaea to high temperature. However, many of the generalizations reported are drawn from analyses of deeply divergent taxa or from individual case studies in isolation from mesophilic relatives. Members of the Synechococcus A/B (SynAB) group are the only cyanobacteria with members able to grow above 65 °C …
Genomic Instability At A Polypurine/Polypyrimidine Repeat Sequence,
2022
Wright State University
Genomic Instability At A Polypurine/Polypyrimidine Repeat Sequence, Nathen S. Zavada
Browse all Theses and Dissertations
Microsatellite repeat sequences have been shown to induce replication stalling, fork collapse, double-strand breaks (DSBs), and possibly stimulate break-induced replication. In this study we use a dual-fluorescent HeLa model that is designed to monitor recombination at an ectopic site through use of flow cytometry and inverse PCR with a microsatellite in the lagging strand for DNA synthesis. To test the stability of the 78 bp polypurine/pyrimidine repeat from the PDK1 locus, we subjected cells to replication stress drugs designed to induce DSBs and measure break-induced replication (BIR). The study revealed that polypurine repeat cells undergo endogenous stress contributing to instability …
Sequential Block Copolymers Of Polyisobutylene And Polyolefins,
2022
The University of Akron
Sequential Block Copolymers Of Polyisobutylene And Polyolefins, Manwel Labib
Williams Honors College, Honors Research Projects
A two-step approach will be utilized to synthesize random polyolefin multiblock-copolymers. This strategy takes advantage of a,w-terminated telechelic polyolefins. Polypropylene (iPP)/polyethylene (PE) are picked because of their strength, and polyisobutylene (PIB) because of its hemocompatibility. This copolymer is theorized to make for robust bio-inert plastic, which can be used for surgical mesh implants.
Mimicking The Namib Desert Beetle With Hydrophilic And Hydrophobic Surfaces,
2022
The University of Akron
Mimicking The Namib Desert Beetle With Hydrophilic And Hydrophobic Surfaces, Tyler Bracewell
Williams Honors College, Honors Research Projects
The Namib Desert beetle, Stenocara gracilipes, condenses fog that rolls in off the west coast of Namibia to provide itself with the water it needs for the day. By lifting its abdomen into the air to collect the water vapor, it condenses on hydrophilic bumps that are about 500μm in diameter and are spaced apart about 500-1500μm. Once the water reaches a critical size, the droplet rolls off the hydrophilic bump and onto the flat hydrophobic surface of the elytra. Since the beetle is angled with its abdomen in the air, the water rolls down to its mouth. A …
Characterizing The Post-Translational Modifications Of The Pro-Oncogenic Type Ii Transmembrane Serine Protease Tmprss13,
2022
Wayne State University
Characterizing The Post-Translational Modifications Of The Pro-Oncogenic Type Ii Transmembrane Serine Protease Tmprss13, Carly Elizabeth Martin
Wayne State University Dissertations
TMPRSS13, a type II transmembrane serine protease discovered at the turn of the century, has recently been shown to be significantly overexpressed in both breast cancer (BCa) and colorectal cancer (CRC), and to mediate chemoresistance in cell lines from both cancer types. Furthermore, loss of TMPRSS13 in a genetic model of mouse mammary carcinoma significantly reduced tumor burden and growth rate, and increased overall tumor-free survival. Its location on the cell surface as well as its low expression in normal breast and colon make TMPRSS13 an attractive candidate as an oncogenic biomarker and therapeutic target in cancer. However, little is …
Deconstructing Brown Adipocyte Neogenesis In Brown And White Adipose Tissue,
2022
Wayne State University
Deconstructing Brown Adipocyte Neogenesis In Brown And White Adipose Tissue, Rayanne Burl
Wayne State University Dissertations
Global incidence of Type 2 Diabetes (T2D) has reached epidemic proportions, and increasing evidence indicates that dysfunctional adipose tissue is an important contributor to the pathogenesis of T2D. Expanding brown adipocyte (BA) populations within adipose tissues through adrenergic activation improves energy balance and insulin sensitivity. In order to exploit this remodeling of adipose tissue for therapeutic benefit, we need to understand the mechanisms by which adrenergic signaling expand populations of BAs in vivo. These studies utilized single-cell RNA-sequencing and transgenic mouse models, in combination with single-molecule fluorescence in situ hybridization (smFISH) and immunoistochemical analysis, to study BA neogenesis in vivo. …
Fluorescent Cellular Assays For Kinase Inhibitors,
2022
Northern Illinois University
Fluorescent Cellular Assays For Kinase Inhibitors, Myar Mohamed
Graduate Research Theses & Dissertations
One of the most successful and fastest growing groups of kinase inhibitors are small molecules that compete with ATP binding. Kinase function is closely related to many diseases, specifically cancer. Kinases within living cells are essential elements in signaling cascades and post-translational modifications. However, actual kinase activity and the efficacy of its inhibitors in living systems are hard to evaluate. A way to assess inhibitor activity is through cellular assays that directly report the inhibitor’s engagement in native environments. Our goal is to develop a simple near-infrared (NIR) fluorescent HTS-compatible cellular assay for kinase inhibitor profiling in native cellular environments. …
Biodegradation Of Rubber Particles In Soil: Using Acclimated Bacteria Isolated From Kansas Soil To Degrade Cryogrinds In Slurry,
2022
The University of Akron
Biodegradation Of Rubber Particles In Soil: Using Acclimated Bacteria Isolated From Kansas Soil To Degrade Cryogrinds In Slurry, Shane Graham
Williams Honors College, Honors Research Projects
This study investigated the viability of bioremediating rubber cryogrind using enriched indigenous bacteria. To begin the experiment, soils from three highway roadside locations in Kansas, KS 96 and West, KS 400 and 143rd, and 199th, were collected and transported to the lab to be studied. An initial soil characterization was run on the soil samples using distilled (DI) water mixture and 0.01 M CaCl2 to assess conductivity. The soils were tested to gather a baseline of the relationship between pH and conductivity and the impact of its distance from the roadside. Bacteria were isolated from …
Synthesis Of Rna Nucleotides Under Probable Prebiotic Conditions,
2022
The University of Akron
Synthesis Of Rna Nucleotides Under Probable Prebiotic Conditions, Ryan Stimson
Williams Honors College, Honors Research Projects
RNA being composed of multiple covalently linked nucleotides is thought to have been a precursor to life circa 4.3-3.8 billion years ago. Non-enzymatically formed adenosine monophosphate (AMP), more specifically, is a vitally important subtopic of the self-assembly of the first RNA sequence. The goal of this study was to synthesize AMP non-enzymatically under benign conditions that are likely to have existed on early Earth. In this experiment, 3’,5’-cAMP was successfully formed using wet-dry cycles at 80°C paired with the minerals zeolite beta, hydroxyapatite, and aerosil 300 in the presence of adenosine, urea, and pyrophosphate. A nuclear magnetic resonance spectrometer was …
The Influence Of Hydrogen Peroxide On The Enrichment Of Fe(Iii) Reducing Bacteria From Acid Mine Drainage,
2022
The University of Akron
The Influence Of Hydrogen Peroxide On The Enrichment Of Fe(Iii) Reducing Bacteria From Acid Mine Drainage, Susami Seth
Williams Honors College, Honors Research Projects
It is hypothesized that the ocean of Europa, a Jupiter moon, hosts bacteria on its oceanic floor. Understanding how Fe(III) reducing bacteria (FeRB) from AMD utilize organic materials within its surrounding environment outlines how FeRB could thrive and tolerate extreme conditions. FeRB are known to tolerate metals and highly reactive oxidants species (ROS), but in this experiment, H2O2 was the experimental factor to further test FeRB tolerance. H2O2 is a common ROS and is damaging to living material such as proteins, DNA, and RNA. A range of H2O2 concentrations were fed …
The Role Of Shoc2 In Embryonic Development,
2022
University of Kentucky
The Role Of Shoc2 In Embryonic Development, Rebecca G. Norcross
Theses and Dissertations--Molecular and Cellular Biochemistry
The canonical ERK1/2 signaling cascade regulates cellular functions critical in vertebrate embryonic development such as proliferation, apoptosis, differentiation, and migration. Thus, its signals are controlled by a variety of mechanisms. Scaffold proteins are considered central to the mechanisms regulating the transmission of the ERK1/2 signals. Yet, their functions in development nor the molecular mechanisms by which they exert their control are not well understood.
This study focuses on the essential regulator of ERK1/2 signals during development – the scaffold protein Shoc2. Loss of Shoc2 leads to early embryonic lethality in mice and zebrafish. Germline mutations in the shoc2 gene result …
Structural Basis For Reversible Glucan Phosphorylation By Glucan Dikinases And Glucan Phosphatases,
2022
University of Kentucky
Structural Basis For Reversible Glucan Phosphorylation By Glucan Dikinases And Glucan Phosphatases, Tiantian Chen
Theses and Dissertations--Molecular and Cellular Biochemistry
Plants store glucose in the form of starch, an insoluble macromolecule that is synthesized and degraded diurnally. Glucan phosphatases play a critical role in starch breakdown, working with glucan dikinases in a cyclic phosphorylation and dephosphorylation. Herein, we present a novel glucan phosphatase Like SEX Four3 (LSF3) from Physcomitrella patens. Structural and enzymatic studies demonstrate that LSF3 is a dimeric glucan phosphatase that displays robust specific glucan phosphatase activity. Dimerization is shown to be essential for LSF3 stability and function. Structure-guided bioinformatic analysis shows that LSF3 is found in early land plants and green algae.
Building upon our understanding of …
Clinically Relevant Drug Interactions With Monoamine Oxidase Inhibitors.,
2022
Louisiana State University Health Science Center
Clinically Relevant Drug Interactions With Monoamine Oxidase Inhibitors., Amber N. Edinoff, Connor R. Swinford, Amira S. Odisho, Caroline R. Burroughs, Cain W. Stark, Walid A. Raslan, Elyse M. Cornett, Adam M. Kaye, Alan David Kaye
School of Pharmacy Faculty Articles
Monoamine oxidase inhibitors (MAOI) are a class of drugs that were originally developed for the treatment of depression but have since been expanded to be used in management of affective and neurological disorders, as well as stroke and aging-related neurocognitive changes. Ranging from irreversible to reversible and selective to non-selective, these drugs target the monoamine oxidase (MAO) enzyme and prevent the oxidative deamination of various monoamines and catecholamines such as serotonin and dopamine, respectively. Tyramine is a potent releaser of norepinephrine (NE) and is found in high concentrations in foods such as aged cheeses and meats. Under normal conditions, NE …
Instability And Extrachromosomal Circular Dna Formation At Microsatellites And Unstable Dna Sequences,
2022
Wright State University
Instability And Extrachromosomal Circular Dna Formation At Microsatellites And Unstable Dna Sequences, Matilyn M. Shanahan
Browse all Theses and Dissertations
We have previously documented our evidence of genetic instabilities at the (Pu/Py)78 and (ATTCT)47 sequences and our reasoning for identifying break-induced replication (BIR) as the mode of repair responsible for the mutations in the DNA flanking the unstable inserts. Now, as our lab investigates the protein mechanisms at play in the BIR pathway taking place at these sites, we are also expanding our knowledge of how this mechanism extends into the pathways responsible for forming extrachromosomal circular DNA (eccDNA) molecules. We have documented the phenomena posed as the driving factors for eccDNA formation in our systems containing (Pu/Py)78 and (ATTCT)47. …
