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Full-Text Articles in Biochemistry, Biophysics, and Structural Biology

The Effects Of Cinnamaldehyde On Tetrahymena Thermophila, Sydney Kurland May 2026

The Effects Of Cinnamaldehyde On Tetrahymena Thermophila, Sydney Kurland

Publications and Research

In addition to their common use as spices in cooking and baking, cinnamon plants, Cinnamomum zeylanicum and Cinnamomum cassia for example, have long been used in herbal remedies worldwide. Cinnamon contains many vital oils and active compounds including cinnamaldehyde (CMD). Numerous studies looking at potential therapeutic effects of cinnamon have demonstrated its antioxidant, anti-inflammatory, and antimicrobial properties (1, 2, 3).   Therefore, it is important to continue studying the efficacy, benefits, and mechanisms of action of cinnamon and CMD to have a complete understanding of its full potential. Tetrahymena thermophila is a ciliated protozoan commonly used as a model organism to …


Mapping Mgmt Methylation Sites That May Predict Chemotherapy Success In Glioblastoma, Kennedy Bueno Apr 2026

Mapping Mgmt Methylation Sites That May Predict Chemotherapy Success In Glioblastoma, Kennedy Bueno

Celebrating Scholarship and Creativity Day (2018-)

Glioblastoma is the most common malignant primary brain tumor in adults, with a median survival of 15 months post-diagnosis. Resistance to standard temozolomide (TMZ) chemotherapy is common and is strongly influenced by O6-methylguanine-DNA methyltransferase (MGMT), a DNA repair enzyme that reverses TMZ induced DNA damage. Reduced MGMT expression is associated with greater TMZ sensitivity and improved survival. Although MGMT promoter cytosine-phosphate-guanine dinucleotide (CpG) methylation is linked to treatment response, the individual CpG sites responsible for MGMT silencing remain unclear. This research aims to identify which sites are necessary to suppress MGMT expression and increase TMZ sensitivity. This project will map …


Creating A Unique Hemoglobin-Based Oxygen Carrier, Clayton Fuller Apr 2026

Creating A Unique Hemoglobin-Based Oxygen Carrier, Clayton Fuller

Celebrating Scholarship and Creativity Day (2018-)

The purpose of this thesis is to explain the current state of alternative oxygen carriers and propose a new hemoglobin-based oxygen carrier (HBOC) as a blood substitute/ blood therapeutic. Blood donation has drawbacks: risk of spread of infection, short storage time, and blood typing, and the current shortage. There are several possible modifications for hemoglobin to create a carrier (HBOC) which address specific issues related to allowing free hemoglobin to exist extra cellularly. One issue to address is vasoconstriction caused by nitric oxide scavenging, which has been solved by increasing the molecular weight of the HBOC via (co)polymerization, or by …


Identification Of Covalent Catechin Adducts Of Enoyl-Acp Reductase (Fabi) From E. Coli Using Mass Spectrometry, Francisco G. Atwi, P. M. Joyner, Rustin Ghidari Apr 2026

Identification Of Covalent Catechin Adducts Of Enoyl-Acp Reductase (Fabi) From E. Coli Using Mass Spectrometry, Francisco G. Atwi, P. M. Joyner, Rustin Ghidari

Seaver College Research And Scholarly Achievement Symposium

Enoyl-ACP reductase (FabI), an enzyme which is inhibited by catechin, is essential for lipid biosynthesis in bacteria (E. coli). Another FabI inhibitor, triclosan, has strong antibacterial effects,1 but overuse can be detrimental to the environment. Flavonoids, a class of dietary compounds, are known to have potent inhibitory effects on FabI and other kinases.2,3,4 Adducts form as a result of the biochemical reaction between flavonoids and cysteine, a modification which can be verified by m/z shifts on the mass spectra.5 Samples of E. coli protein with overexpressed FabI are utilized: the wild type with ordinary primary structure, and mutant type lacking …


3d Printing Protein-Rrna Mutations In The Ribosome, Abigail Wilson May 2025

3d Printing Protein-Rrna Mutations In The Ribosome, Abigail Wilson

Senior Honors Projects

Sometimes conveying research can be difficult through two-dimension models. In my project, I aimed to highlight the significance of three-dimensional visualization in science, thereby enhancing the understanding of complex biomedical concepts. Through my work in Dr. Steven Gregory’s lab, I have been studying the ribosome – the macromolecular machine that utilizes messenger RNA and transfer RNA to link together amino acids thereby synthesizing proteins. Proteins are critical for most processes that occur within every cell. I specifically focus on the interactions between ribosomal proteins and ribosomal RNA (rRNA) at the peptidyl transferase center – the active site where amino acids …


Innovation Scholars Program, Lauren Voll, Olivia Latour, Owen Montreuil, Kaennae Mortimer May 2025

Innovation Scholars Program, Lauren Voll, Olivia Latour, Owen Montreuil, Kaennae Mortimer

Celebrating Scholarship and Creativity Day (2018-)

The innovations scholar program spans roughly five months and included two trips to Mayo Clinic Rochester. The team of four undergraduate students and an MBA student worked with Mayo Clinic ventures to assess the viability of a few patents. The project included a 40-page comprehensive paper as well as a 30-minute presentation. The specific details are protected under an NDA agreement however our key takeaways are shared on the poster.


Structure Disorder And Magnetic Behavior Of An Olivine-Type Cathode Material, Hamida Hassan, Madalynn Marshall Apr 2025

Structure Disorder And Magnetic Behavior Of An Olivine-Type Cathode Material, Hamida Hassan, Madalynn Marshall

Symposium of Student Scholars

Our research investigates the structure disorder and magnetic behavior of Li(Mn,Fe)PO₄, an olivine-type material relevant for lithium-ion battery applications. Using single-crystal neutron diffraction at Oak Ridge National Laboratory, we precisely determined Mn and Fe occupancy, revealing a 56% Fe and 44% Mn distribution at the atomic 4c site within the Pnma space group. Additionally, we observed significant lithium site vacancies (78% occupied), influencing the material's electrochemical and magnetic properties. The varying Mn/Fe ratio affected spin reorientation transitions, shifting from antiferromagnetic alignment along the a-axis to the b-axis. Our findings provide crucial insights for optimizing olivine-based cathodes, enhancing energy …


Designing An Attachment Assay For Epidermal Cell-To-Cell Attachment, Tiala Ortega '26, Colleen L. Doçi Oct 2024

Designing An Attachment Assay For Epidermal Cell-To-Cell Attachment, Tiala Ortega '26, Colleen L. Doçi

Annual Student Research Poster Session

Cell adhesion includes various processes and is essential in cell communication and regulation. The mechanical interactions between a cell and its extracellular matrix control the behavior and function of a cell. In this project, we are studying cell attachment in different ways. The epidermal monostrato layer is a vertical and horizontal interaction and is not accounted for in usual assay protocols so I wanted to investigate this by creating an assay including multiple cell layers, a monolayer and an attached layer, to further develop a protocol for optimal cell-to-cell attachment. I hypothesized that the number of cell attachments to the …


Upregulation Of The Predominant Cystic Fibrosis Causing Mutation Df508-Cftr By Triazole Compounds In Epithelial Cells, Maggie Taylor Apr 2024

Upregulation Of The Predominant Cystic Fibrosis Causing Mutation Df508-Cftr By Triazole Compounds In Epithelial Cells, Maggie Taylor

Undergraduate Research Conference

Cystic fibrosis is a common genetic disease that is caused by a mutation in the plasma membrane protein CFTR, which stands for Cystic Fibrosis Transmembrane-conductance Regulator. When this membrane protein is mutated, it impairs its chloride ion channel function, blocking the movement of chloride ions that travel in and out of the cell. Previous studies have demonstrated that the most prevalent CFTR mutation, ∆F508-CFTR, can be partially reversed using small molecules (Heda and Marino, BBRC, 271:659-664, 2000). In this study, I have investigated the effects of several triazole compounds known to bind and transport chloride ions in cultured cells, on …


Detecting Interactions Between Mps3 In Linc Complex And Ndj1 In Nuclear Pore Complex In Mechanically Stressed Yeast, Dean Boecher, Rebecca Adams Jan 2024

Detecting Interactions Between Mps3 In Linc Complex And Ndj1 In Nuclear Pore Complex In Mechanically Stressed Yeast, Dean Boecher, Rebecca Adams

[Archive] Belmont University Research Symposium (BURS)

The mechanisms of how mechanical stress is translated into cellular action and structural reorganization within the nuclear envelope are largely unexplored. The Linker of Nucleoskeleton and Cytoskeleton (LINC) complex is a transmembrane protein complex that connects the actin cytoskeleton to the lamin nucleoskeleton, enabling mechanical forces to be translated between the cytoplasm and the nucleus. A better understanding of the translation of physical forces into cell responses can be gained through confirming the existence of interactions between LINC complex proteins and nuclear pore complexes (NPCs), which control the exchange of biochemical signals and macromolecules in and out of the nucleus …


Study Of Protein Extraction Techniques For M. Foliorum Phages, Lola Sibaud, Anna Elgersma Apr 2023

Study Of Protein Extraction Techniques For M. Foliorum Phages, Lola Sibaud, Anna Elgersma

Student Academic Conference

Characterizing phages is becoming increasingly important in biochemistry and biotechnology due to their potential to treat bacterial infections without need for antibiotics. Last year, students attempted to isolate proteins from Microbacterium foliorum infecting phages Babydotz and Rosadiaz. Proteins were successfully extracted; however, after further analysis it was shown that the obtained proteins belonged to the host bacteria and not the phages. The purpose of this study was to find a method to separate phage from host bacterial debris to successfully isolate phage proteins and analyze them later. Isolating phage proteins could help us characterize more phages and know more about …


Locomotor Biomechanics In Stream Gobies, Rhinogobius Sp.: Functional Performance Of Waterfall-Climbing Behavior, Ernest W. Murphy Apr 2023

Locomotor Biomechanics In Stream Gobies, Rhinogobius Sp.: Functional Performance Of Waterfall-Climbing Behavior, Ernest W. Murphy

Student Scholar Showcase

Gobiidae is the taxonomic classification of a large fish family comprising over 2,000 species. A few goby species have the unique ability of scaling waterfalls using pelvic fins that are fused into a suction disc (pelvic sucker) located on the ventral side of the body, aiding them in upstream migration to freshwater feeding and reproduction locations. This study aimed to investigate the locomotor biomechanics of Rhinogobius goby fish due to the lack of literature in the area. In particular, climbing performance variables (pressure differential, force, endurance, and kinematics of attachment), pelvic sucker fatigability, and ontogenetic patterns of physical development and …


Casein Kinases Are Required For The Stability Of The Glucose Sensing Receptor Rgt2 In Yeast, Danny Bloor Apr 2022

Casein Kinases Are Required For The Stability Of The Glucose Sensing Receptor Rgt2 In Yeast, Danny Bloor

Liberty University Research Week

Undergraduate

Basic


Endogenous Cftr Expression In Human Epithelial Cell Lines, Zithlaly Amezquita Mar 2022

Endogenous Cftr Expression In Human Epithelial Cell Lines, Zithlaly Amezquita

Undergraduate Research Conference

CFTR (Cystic Fibrosis Transmembrane-conductance Regulator) is a plasma membrane protein that functions as a chloride ion channel on many epithelial cells. There are over 1000 mutations that affect the function of this protein; however, the most common mutation is DF508. CFTR mutations target many secretory organs like pancreas and lungs causing the genetic disease cystic fibrosis (CF), common among Caucasians of northern European origin. Detection of endogenous CFTR expression is possible by a difficult and costly immunoprecipitation method but not by the most used western blotting method. Therefore, the goal of this project was to detect the endogenous CFTR expression …


Niche Partitioning And Utilization Of Different Nitrogen Sources By Marine Cyanobacteria Synechococcus, Angel Bui, Anne W. Thompson Aug 2021

Niche Partitioning And Utilization Of Different Nitrogen Sources By Marine Cyanobacteria Synechococcus, Angel Bui, Anne W. Thompson

McNair Symposium

The Cyanobacterium Synechococcus plays a major role in the ocean’s biochemical processes and is responsible for a significant amount of primary production, especially around coastal areas. Synechococcus has a wide geographical distribution that includes both polar and high-nutrient waters. Within the genus, there are defined subpopulations that are ecologically distinct that allow them to niche partition the dynamic oceans. To further explore niche partitioning of Synechococcus, this project combines a bioinformatic and culture-based approach. I examined data along the North Pacific Subtropical Front (NSPF) to analyze the community structure. This analysis demonstrated that a particular ecotype identified as clade II …


Cd40l And Tnf-Alpha Levels After Traumatic Injury, Queen Revollido, Martin Schreiber Aug 2021

Cd40l And Tnf-Alpha Levels After Traumatic Injury, Queen Revollido, Martin Schreiber

McNair Symposium

The biomarkers CD40 ligand and TNF-alpha are proteins that exhibit proinflammatory and prothrombotic effects. A small clinical study has shown that soluble CD40 ligand may have a role in early coagulopathy and inflammatory complications in severely injured patients. It is known that a CD40 ligand increases the production of cytokines such as TNF-alpha, thus, the current study aims to investigate the kinetics of these biomarkers and the extent of upregulation after traumatic injury. Frozen samples collected from baseline, 8, 24, and 48 hours after admission will be used. CD40 ligand and TNF-alpha levels will be quantified using Luminex that will …


Morph- And Sex-Specific Differences In Corticosterone Of The Arizona Tiger Salamander (Ambystoma Mavortium Nebulosum), Megan Zerger Mar 2021

Morph- And Sex-Specific Differences In Corticosterone Of The Arizona Tiger Salamander (Ambystoma Mavortium Nebulosum), Megan Zerger

Scholars Week

Life history morph, sex, and body condition are traits that may influence stress within salamander populations because of differences in physiology and environmental conditions. Given widespread declines and the effects chronic stress can have on amphibian health, it is important to understand within-population drivers of stress and how population level variation may influence population viability. Thus, the objective of our study was to assess how corticosterone varies within the Arizona tiger salamander (Ambystoma mavortium nebulosum) population at the Mexican Cut Nature Preserve. We used a non-invasive skin swabbing method to collect baseline and elevated corticosterone from paedomorph (aquatic …


Insights Into Viral Genome Function Through Comparative Structural Analysis, Lydia Phillips Mar 2021

Insights Into Viral Genome Function Through Comparative Structural Analysis, Lydia Phillips

UNO Student Research and Creative Activity Fair

Enteroviruses are single stranded RNA viruses which have caused many public health concerns, particularly in children. These viruses are responsible for polio, hand, foot, and mouth disease, many polio-like neurological diseases, and the common cold. The enterovirus called Coxsackievirus B3 (CVB3), a close relative to poliovirus, has been shown responsible for severe human disease, including pancreatitis, myocarditis, and type 1 diabetes. A unique advantage of studying CVB3 is the existence of a naturally occurring strain (CVB3/GA) which displays no known pathogenicity. Earlier comparative genomic studies have shown that the primary difference between avirulent CVB3/GA and the virulent strains of CVB3 …


Improvement In 14-3-3 Binding Site Prediction, Katherine K. Mccormack Jan 2021

Improvement In 14-3-3 Binding Site Prediction, Katherine K. Mccormack

ScholarsArchive Data

The 14-3-3 family of phospho-binding proteins regulate a variety of major cellular processes through interaction with a network of dynamic proteins. Deregulation of the 14-3-3 interaction network contributes to a variety of degenerative disorders and cancers. Our lab focuses on identifying novel 14-3-3 interactions and understanding how 14-3-3 binding regulates protein function. A major gap in this process is that identifying the phospho-site where 14-3-3 docks on a given protein is time- and resource-consuming. Prediction algorithms have been developed to predict canonical 14-3-3 binding sites, however, there are many non-canonical sites that existing software is unable to predict. To fill …


Two And Three-Dimensional Radiographic Imaging Of Contrast Agents In Heterogeneous Live Cell Media To Understand Contrast-Induced Toxicity, Fahaneda Hassan, Aldona Gjoni, Subhendra Sarkar Oct 2020

Two And Three-Dimensional Radiographic Imaging Of Contrast Agents In Heterogeneous Live Cell Media To Understand Contrast-Induced Toxicity, Fahaneda Hassan, Aldona Gjoni, Subhendra Sarkar

Publications and Research

Radiographic imaging was done using low and high energy radiography equipment. The test hypothesis that macromolecular aggregation changes sample noise in imaging samples for optical imaging methods. Inorganic complexes scatter radiation at the molecular level and may increase the sample noise locally. At high and low photon energies in various x-ray machines, sample and background noise were gathered and compared with those from mammography systems from mammography researchers. The samples with high macromolecular aggregates were prepared using various animal cell compositions and imaged under different conditions that produced different macromolecular dynamics within the samples and thus different image-based sample noise. …


Progress Presentation On The Proposed Function Of Protein 4diu Through Bioinformatics Analyses, Melissa Hoff Apr 2020

Progress Presentation On The Proposed Function Of Protein 4diu Through Bioinformatics Analyses, Melissa Hoff

Biochemistry and Molecular Biology Presentations

The BASIL project is a scientific inquiry project that aims to determine the function of a protein from its structure. Biochemistry students completed wet lab work, while structural biology students worked in silico. The purpose of this study was to determine the function of the protein with PDB ID: 4DIU. Bioinformatics analyses were completed using several databases: BLAST, Dali, Pfam, and Moltimate, and imaging of the protein was completed using PyMOL software. The BLAST database aligned the primary sequence with known protein sequences. The Dali database compared protein structure with known structures through global alignment. The Pfam database matched our …


The Classification Of An Unknown Protein 3h04, Britney Dyszel Apr 2020

The Classification Of An Unknown Protein 3h04, Britney Dyszel

Biochemistry and Molecular Biology Presentations

An unclassified protein in the Protein Data Bank, 3H04, was selected as a protein of interest. Research was performed in silico to gain key information on the structure, sequence, and homology of protein 3H04. This research was guided using the BASIL Project’s protocols on in silico research. Several databases were utilized to study protein 3H04. Based on the data gathered, unclassified protein 3H04 is an aminopeptidase that cleaves prolyl-dipeptidyl peptide bonds through alpha beta hydrolase function.


Synthesis Of Ether Alcohols With Varying Catalysts, Hannah Grady, Frida Li, Jeffrey A. Hansen Oct 2019

Synthesis Of Ether Alcohols With Varying Catalysts, Hannah Grady, Frida Li, Jeffrey A. Hansen

Annual Student Research Poster Session

It has previously been found that acids and bases are effective catalysts in the opening of epoxides into ether alcohols. Our first goal for this summer was to determine which of the acids and bases available were the most effective. After figuring out which of the acids and bases are the optimal catalysts, our second goal was producing ether alcohols in the shortest amount of time with higher yields. Our final goal was to see how biologically reactive the ether alcohols we produced were.


Opening Of An Epoxide Ring Using Azide To Form A Triazole, Emily Hufnagel, Jeffrey A. Hansen Oct 2019

Opening Of An Epoxide Ring Using Azide To Form A Triazole, Emily Hufnagel, Jeffrey A. Hansen

Annual Student Research Poster Session

The purpose of this research project is to identify and synthesize biologically active compounds that could potentially aid in pharmaceutical research. Once a compound is correctly identified and purified, the sample can be diluted and added to a Brine Shrimp Lethality Assay in order to determine the toxicity of the compound. This experiment was designed using an epoxide compound to form an azide that would eventually form a triazole. In carrying out this project, two main procedures were used in order to create two different compounds that would eventually create the final result. The triazole was not successful in the …


Targeted Therapy For The Future: The Use Of Novel Antimicrobial Peptides Against P. Aeurginosa, Matthew Froid Mar 2019

Targeted Therapy For The Future: The Use Of Novel Antimicrobial Peptides Against P. Aeurginosa, Matthew Froid

UNO Student Research and Creative Activity Fair

Pathogenic bacteria, such as the gram-negative bacterium Pseudomonas aeruginosa, are becoming resistant to our current arsenal of antibiotics at an alarming rate. P. aeruginosa is a leading cause of nosocomial acquired infections and is a primary co-morbidity in patients with compromised immune systems. One potential source of new antibiotic agents is antimicrobial peptides. Antimicrobial peptides (AMPs) are small proteins, and some have shown a high degree of efficacy and broad-spectrum activity against both Gram-positive and Gram-negative bacteria. An experimental AMP that has been developed by Dr. Wang at UNMC, DASamp2, has shown to be effective against virulent bacteria, including P. …


Data Analytics Pipeline For Rna Structure Analysis Via Shape, Quinn Nelson Mar 2019

Data Analytics Pipeline For Rna Structure Analysis Via Shape, Quinn Nelson

UNO Student Research and Creative Activity Fair

Coxsackievirus B3 (CVB3) is a cardiovirulent enterovirus from the family Picornaviridae. The RNA genome houses an internal ribosome entry site (IRES) in the 5’ untranslated region (5’UTR) that enables cap-independent translation. Ample evidence suggests that the structure of the 5’UTR is a critical element for virulence. We probe RNA structure in solution using base-specific modifying agents such as dimethyl sulfate as well as backbone targeting agents such as N-methylisatoic anhydride used in Selective 2’-Hydroxyl Acylation Analyzed by Primer Extension (SHAPE). We have developed a pipeline that merges and evaluates base-specific and SHAPE data together with statistical analyses that provides confidence …


Large Scale Dynamical Model Of Macrophage/Hiv Interactions, Matthew M. Froid Mar 2019

Large Scale Dynamical Model Of Macrophage/Hiv Interactions, Matthew M. Froid

UNO Student Research and Creative Activity Fair

Properties emerge from the dynamics of large-scale molecular networks that are not discernible at the individual gene or protein level. Mathematical models - such as probabilistic Boolean networks - of molecular systems offer a deeper insight into how these emergent properties arise. Here, we introduce a non-linear, deterministic Boolean model of protein, gene, and chemical interactions in human macrophage cells during HIV infection. Our model is composed of 713 nodes with 1583 interactions between nodes and is responsive to 38 different inputs including signaling molecules, bacteria, viruses, and HIV viral particles. Additionally, the model accurately simulates the dynamics of over …


A Crispr Platform For Rapid And Inducible Genome Editing In Human Non-Small Cell Lung Cancer Cells, Lloyd Bartley Nov 2018

A Crispr Platform For Rapid And Inducible Genome Editing In Human Non-Small Cell Lung Cancer Cells, Lloyd Bartley

Posters-at-the-Capitol

Non-small cell lung cancer (NSCLC) accounts for about 85% of lung cancer, which is the leading cause of cancer death in the world. High mortality rate associated with NSCLC is partially attributed to the limited understanding of NSCLC as well as ineffective therapeutic treatments. The initiation and progression of NSCLC involves genetic changes leading to alterations in the control of tissue development and homeostatic maintenance. Better knowledge about these genetic abnormalities is imperative for developing new chemotherapeutic drugs for NSCLC. Recent research demonstrates that the expression of paraoxonase 2 (PON2), a lactonase/arylesterase with anti-oxidant properties, are markedly enhanced in cancer …


Development Of A Pd-L1 Pet Imaging Biomarker, Caleb Jack Bridgwater Nov 2018

Development Of A Pd-L1 Pet Imaging Biomarker, Caleb Jack Bridgwater

Posters-at-the-Capitol

Immunotherapy strategies are very promising treatments for cancer patients. Specifically, Immune checkpoint inhibitor therapy focusing on the PD-1/PD-L1 pathway shows long-lasting positive results in many cancer patients. Unfortunately, not all the patients can benefit from this highly effective treatment. Hence, there is a great need for predictive biomarkers. Immunohistochemical (IHC) staining has been used as a way of predicting patient response, yet shows many problems. For example, IHC utilizes an invasive biopsy and sample fixing, which creates an incomplete and delayed picture of the patient’s biochemistry and the tumor microenvironment, consequently ignoring metastases.

The purpose of this study is to …


Elemental Analysis Of Beer Manufactured In Virginia Satellite Breweries, Jennifer Wiliams Apr 2018

Elemental Analysis Of Beer Manufactured In Virginia Satellite Breweries, Jennifer Wiliams

Student Scholar Showcase

Financial incentives from the state and wider distribution potential have lured many west coast brewers to open satellite breweries in Virginia. Quality control is crucial for any brewery and especially important in satellite breweries that need to imitate the standard set by the parent brewery. Zinc, magnesium, iron, sodium manganese, and calcium are trace elements found in wort and are essential for enzymes that catalyze fermentation reactions. These elements protect against cell stress, play a crucial role in flocculation, and can affect the flavoring and coloration of beer. Barley, water, and hops are the sources of these elements in beer. …