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Articles 721 - 750 of 13692
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
Mechanistic Insights Of Translational Readthrough To Suppress Nonsense Mutations, Kari Thrasher
Mechanistic Insights Of Translational Readthrough To Suppress Nonsense Mutations, Kari Thrasher
All ETDs from UAB
A nonsense mutation is a point mutation in DNA that gives rise to a premature termination codon (PTC) in the open reading frame of the transcribed mRNA. Translation of this PTC-containing transcript terminates prematurely, leading to the creation of truncated non-functional protein. Translational readthrough is one therapeutic option being explored to suppress nonsense mutations that cause disease. Here, we further elucidate amino acid incorporation and the functional consequences of readthrough of nonsense mutations that cause cystic fibrosis. Additionally, we reveal the molecular mechanisms activated by a recently described small molecule readthrough agent, SRI- 41315. Finally, we discuss the various therapeutic …
Characterization Of The Roles Of U1-70k In Alternative Splicing And Nuclear Speckle Formation, Trenton Myers Paul
Characterization Of The Roles Of U1-70k In Alternative Splicing And Nuclear Speckle Formation, Trenton Myers Paul
All ETDs from UAB
RNA-binding proteins (RBPs) play critical roles in RNA processing and regulation. Among these RBPs, U1-70K is a key protein involved in RNA processing, nuclear speckle formation, and has implications in neurodegenerative diseases such as Alzheimer's. Despite its significance in transcription, RNA processing, nuclear speckle formation, and nonsense-mediated decay, studies on U1-70K have been limited primarily to its well-structured N-terminal domain due to challenges in solubilizing and expressing the full-length protein. In this dissertation, we address these challenges by optimizing cell strain and co expressing DnaK and DnaJ, enabling the successful expression, solubilization, and purification of full-length U1-70K. Using fluorescence polarization …
Controlled By Disorder: Modifications To An Unstructured C-Terminal Region Alter Srsf1'S Intramolecular Interactions And Tendency To Phase Separate, Talia Fargason
All ETDs from UAB
The protein Serine-Arginine-rich Splicing Factor 1 (SRSF1) is essential in multiple stages of the mRNA lifecycle, including alternative splicing, nonsense-mediated decay, and nuclear export. SRSF1’s dysfunction is linked to cancers, viral evasion, and developmental disorders. Its function depends on interactions between structured and unstructured regions, modulated by phosphorylation. However, the unstructured regions, while critical for regulation, contribute to protein insolubility, hindering full-length studies. Prior to the work presented here, structural studies of SRSF1 were limited to analysis of its isolated domains. This dissertation develops new techniques to characterize SRSF1, focusing on its intermolecular interactions driving phase separation and intramolecular interactions …
Unraveling The Kinetic Mechanisms Of Protein Unfolding And Translocation Catalyzed By Hsp100 Unfoldases, Jaskamaljot Kaur Banwait
Unraveling The Kinetic Mechanisms Of Protein Unfolding And Translocation Catalyzed By Hsp100 Unfoldases, Jaskamaljot Kaur Banwait
All ETDs from UAB
Escherichia coli ClpB and Saccharomyces cerevisiae Hsp104 are part of the Hsp100 family of proteins responsible for maintaining protein homeostasis in a cell during heat-stress conditions. Structurally, ClpB and Hsp104, in their active state, assemble into hexameric ring complexes with a hollow axial channel. Functionally, these enzymes are hypothesized to couple energy from ATP binding and hydrolysis to unfold protein substrates and translocate them through their axial channel. However, the molecular mechanisms of protein unfolding and translocation catalyzed by both ClpB and Hsp104 are not well understood. In this dissertation, we report the development of a single-turnover transient state kinetics …
Optimizing Biofilm Assay Reproducibility And Characterizing The 12-Hydroxystearic Acid On Escherichia Coli, Khilola Khusanova
Optimizing Biofilm Assay Reproducibility And Characterizing The 12-Hydroxystearic Acid On Escherichia Coli, Khilola Khusanova
Theses and Dissertations
Biofilm formation in Escherichia coli plays a critical role in microbial chemical communication and surface-associated persistence. This study investigates the antibiofilm activity of 12-hydroxystearic acid (12-HSA), evaluating its R and S enantiomers as well as a racemic mixture. E. coli BL21, biofilms were grown under standardized laboratory conditions and quantified using the Crystal Violet staining assay. Treatment with 12-HSA resulted in a measurable reduction in biofilm biomass, with differences observed between the individual enantiomers and the mixture. These findings suggest that 12-HSA influences early adhesion and biofilm development, supporting its potential as a small-molecule modulator of bacterial surface behavior. This …
Nls-Binding Deficient Kapβ2 Reduces Neurotoxicity Via Selective Interaction With C9orf72-Als/Ftd Dipeptide Repeats, Kevin Kim, Amandeep Girdhar, Maria Elena Cicardi, V. Kankate, Miyuki Hayashi, Ruoyu Yang, Jenny Carey, Charlotte M Fare, James Shorter, Gino Cingolani, Davide Trotti, Lin Guo
Nls-Binding Deficient Kapβ2 Reduces Neurotoxicity Via Selective Interaction With C9orf72-Als/Ftd Dipeptide Repeats, Kevin Kim, Amandeep Girdhar, Maria Elena Cicardi, V. Kankate, Miyuki Hayashi, Ruoyu Yang, Jenny Carey, Charlotte M Fare, James Shorter, Gino Cingolani, Davide Trotti, Lin Guo
Department of Biochemistry and Molecular Biology Faculty Papers
Arginine-rich dipeptide repeat proteins (R-DPRs) are highly toxic proteins found in patients with C9orf72-linked amyotrophic lateral sclerosis and frontotemporal dementia (C9-ALS/FTD). R-DPRs can cause toxicity by disrupting the natural phase behavior of RNA-binding proteins (RBPs). Mitigating this abnormal phase behavior is, therefore, crucial to reduce R-DPR-induced toxicity. Here, we use FUS as a model RBP to investigate the mechanism of R-DPR-induced aberrant RBP phase transition. We find that this phase transition can be mitigated by Kapβ2. However, as a nuclear import receptor and phase modifier for PY-NLS-containing RBPs, the function of WT Kapβ2 could lead to undesired interaction with its …
Investigating The Interactions Between Elm1 And Hsl7 In The Morphogenesis Checkpoint Of Saccharomyces Cerevisiae, Rachel Foster
Investigating The Interactions Between Elm1 And Hsl7 In The Morphogenesis Checkpoint Of Saccharomyces Cerevisiae, Rachel Foster
Masters Theses & Specialist Projects
Cell shape is essential to understanding the normal regulatory processes that occur within the cell and can indicate there are abnormalities present when there is dysfunction in the cell's development, which can have broader implications regarding human disease. The morphogenesis pathway couples cell division to the timely formation of a daughter bud in Saccharomyces cerevisiae and consists of Elm1, Hsl1, Hsl7, and Swe1 proteins which interact with septins at the bud neck to provide stability for the bud and to facilitate cell division. Elm1 is needed for the recruitment of Hsl1 and subsequently Hsl7. Hsl7 will then tether Swe1 to …
Protein-Metal Interactions Of A-Synuclein And Bioactive Transition Metals Via Molecular Dynamics, Gonzalo R. Vazquez
Protein-Metal Interactions Of A-Synuclein And Bioactive Transition Metals Via Molecular Dynamics, Gonzalo R. Vazquez
Theses and Dissertations
Parkinson’s Disease (PD) is a neurodegenerative movement disorder which has been found to target the dopaminergic neurons of the substantia nigra. It is characterized by the formation of masses known as Lewy Bodies, formed by aggregates of the intrinsically disordered protein (IDP) -synuclein (asyn). Research suggests that alpha synuclein can undergo aggregation in the presence of heavy metals, which may accumulate in the body through a variety of mechanisms. To study how metals may play a role in wildtype (WT) asyn aggregation, MD simulation of the protein was performed in the presence of bioactive transition metals including Fe2+, Fe3+, Cu+, …
Anti-Cancer Compounds Based On Natural Imidazole Compounds, Autumn Forsythe, Victoria Hardy, Kerri L. Shelton
Anti-Cancer Compounds Based On Natural Imidazole Compounds, Autumn Forsythe, Victoria Hardy, Kerri L. Shelton
CSU Tower Day
We are developing a comprehensive review on imidazole-based compounds of natural origin, the most common groups of compounds, and their properties, such as the imidazole ring. The intent of this presentation is to learn about the compound’s occurrence, general/predicted properties, and advantages. The review will be a fluid development comparing imidazole derivatives of natural origin with antinociceptive/lethal properties from the last 5 years. This review would include both purely extracted products but also those modified by synthesis.
Characterization Of Legionella Pneumophila Effector Protein Ceg10, Emmanuella Ofoka
Characterization Of Legionella Pneumophila Effector Protein Ceg10, Emmanuella Ofoka
Masters Theses & Specialist Projects
Legionella pneumophila, the causative agent of Legionnaires' disease, utilizes a Type IV secretion system (T4SS) to transport effector proteins into host cells. This bacterium is said to have over 300 effector proteins. Among these, the Ceg10 effector protein had remained uncharacterized, despite evidence suggesting the importance of bacterial effector proteins in the host-pathogen interaction. This study aimed to perform a structural and functional characterization of Ceg10 through transcriptomic, bioinformatics, and molecular analyses. Transcriptomic profiling of HEK 293T cells expressing Ceg10 revealed significant differential gene expression, with approximately 20 upregulated genes, including leucine-rich repeat, as well as other downregulated genes. …
Biological And Chemical Evaluation Of Amide-Based Cjoc42 Derivatives As Potential Gankyrin-Inhibitors For The Treatment Of Breast, Lung, And Liver Cancer, Benita Britton-George
Biological And Chemical Evaluation Of Amide-Based Cjoc42 Derivatives As Potential Gankyrin-Inhibitors For The Treatment Of Breast, Lung, And Liver Cancer, Benita Britton-George
Theses and Dissertations
Gankyrin is an ankyrin-repeat protein overexpressed in certain cancers and is responsible for cell growth and proliferation. Gankyrin is important to the development of many types of cancer, including breast, lung, and liver cancer. Consequently, gankyrin and its various protein-protein interactions, are prospective therapeutic targets for inhibiting the progression of certain cancers. In 2016, the first small molecule inhibitor of gankyrin, cjoc42, was discovered and subsequently demonstrated modest antiproliferative activity against liver cancer cells. Previous work from our lab demonstrated that replacing the sulfonate ester of cjoc42 with an amide group significantly improved gankyrin binding while enhancing antiproliferative activity against …
Expression And Function Of Floral Symmetry Genes In The Regulation Of Flower Shape In Fedia Graciliflora, Theresa A. Mustacchio
Expression And Function Of Floral Symmetry Genes In The Regulation Of Flower Shape In Fedia Graciliflora, Theresa A. Mustacchio
Theses and Dissertations
Shifts between radial symmetry (actinomorphy) and bilateral symmetry (zygomorphy) in flowers have occurred multiple times independently within angiosperms (flowering plants). Evidence across angiosperms indicate the transcription factors RADIALIS (RAD), DIVARICATA (DIV), and CYCLOIDEA (CYC) play a major role in regulating floral symmetry and morphology. The CYC-like genes have been shown to shift their expression dorsally independently in nearly all shifts to bilaterally symmetrical flowers examined. Three core eudicot clades of CYC-like genes have been identified: CYC1, CYC2 and CYC3, with only CYC2 genes being shown to have a role in floral symmetry. We use the non-model plant, Fedia graciliflora (Caprifoliaceae) …
Analysis Of The Influence Of Telomere Length Variation On Flowering Time And Plant Fitness In Arabidopsis, Brianna Spadavecchia
Analysis Of The Influence Of Telomere Length Variation On Flowering Time And Plant Fitness In Arabidopsis, Brianna Spadavecchia
Theses, Dissertations and Capstones
Telomeres are conserved structures at the ends of eukaryotic chromosomes that promote genome stability. In most eukaryotes, the DNA found within these protective end caps consists of short, G-rich nucleotide repeats. Cells with critically short telomeres face a variety of potential adverse outcomes such as end-to-end chromosome fusion, apoptosis, etc. The length of telomeric DNA varies substantially between different plant species and even between genotypes of the same species. A previous study using T-DNA mutants of the model plant Arabidopsis thaliana with long or short telomeres suggested that telomere length may be an adaptive trait. Specifically, for reproductive fitness, the …
Structural Impacts Of Canonical And Non-Canonical Oligonucleotide Modifications, Deepak Shrestha
Structural Impacts Of Canonical And Non-Canonical Oligonucleotide Modifications, Deepak Shrestha
Wayne State University Dissertations
Nucleic acids, including DNA (deoxyribonucleic acid) and RNA (ribonucleic acids), are the fundamental building blocks of living organisms. The events that cause modification of DNA/RNA are of interest because they impact the nucleic acid function. Targeting DNA is important for treating diseases such as cancer. Cisplatin (cisPt) is a well-studied drug that targets DNA and blocks replication, but its use is limited by adverse side effects and cellular resistance. Prevoius research addressed some of these challenges through development of platinum analogues such as carboplatin and oxaliplatin. Amino acid-linked platinum analogues (AAPt) are the focus of this thesis work. AAPt complexes …
Mass Spectrometry Combined With Chemical Biology To Study Human Ailments, Eric Thomas Jacquerio Davis
Mass Spectrometry Combined With Chemical Biology To Study Human Ailments, Eric Thomas Jacquerio Davis
Wayne State University Dissertations
Post-translational modifications (PTMs) are essential as chemical changes that regulate protein function, activity, stability, interactions, and localization after protein synthesis. PTMs, such as phosphorylation, acetylation, and ubiquitination, can activate or deactivate proteins, influence their interactions with other molecules, and determine their cellular location. This regulation is vital for numerous biological processes, such as cell cycle control, signal transduction, and gene expression. Abnormal PTMs are linked to various diseases in humans, including parasitic infection, blood disorders, cancers, and neurodegenerative diseases, making their study crucial for understanding disease mechanisms and developing targeted therapies. In the Pflum lab, we are interested in the …
Ashwagandha And Sexual Health In Women With Hypoactive Sexual Desire Disorder: Exploring Extent Of Adaptogenic Properties, Rhea Chatterjee
Ashwagandha And Sexual Health In Women With Hypoactive Sexual Desire Disorder: Exploring Extent Of Adaptogenic Properties, Rhea Chatterjee
AUCTUS: The Journal of Undergraduate Research and Creative Scholarship
Hypoactive Sexual Desire Disorder (HSDD) affects 40% of women and potentially decreases their quality of life. Currently, the primary treatment for HSDD is Flibanserin, which is a serotonergic agonist and an antidepressant. However, the limited efficacy of Flibanserin encourages the exploration of the utilization of traditional drugs such as Withania somnifera, otherwise known as Ashwagandha, as an alternative treatment for HSDD. Minimal studies examine ayurvedic medications or the symptoms of illnesses that traditional Western medicines are unable to treat. This comprehensive literature review investigated the efficacy of Ashwagandha in improving sexual function in women with HSDD. The paper evaluated …
Identifying The Constituents Of Pyrolysis Oil Using Supercritical Fluid Chromatography- Fraction Collection (Sfc-Fc) And Gas Chromatography- Mass Spectrometry/Vacuum Ultraviolet Spectroscopy (Gc-Ms/Vuv), Sadid Morshed
2025 Fall Honors Capstones Projects - Archive
Plastic waste continues to accumulate as production increases and disposal methods remain insufficient. Even with recycling programs in place, much of the discarded plastic still ends up in landfills or waterways, eventually breaking down into harmful microplastics. One promising solution is the conversion of plastic waste into pyrolysis oil, which can also serve as an alternative feedstock for chemicals. Pyrolysis oil is produced by heating plastics to approximately 800 °C in the absence of oxygen, resulting in a complex mixture of hydrocarbons that includes paraffins, isoparaffins, olefins, naphthenes, and aromatics. Analyzing the amount of oxygen, nitrogen, and sulfur in these …
Cdh-3/Cadherin, Yap-1/Yap And Egl-44/Tead Promote Syx-2/Syntaxin And Eff-1 Fusogen-Mediated Phagosome Closure, Alec Whited, Aladin Elkhalil, Ginger Clark, Piya Ghose
Cdh-3/Cadherin, Yap-1/Yap And Egl-44/Tead Promote Syx-2/Syntaxin And Eff-1 Fusogen-Mediated Phagosome Closure, Alec Whited, Aladin Elkhalil, Ginger Clark, Piya Ghose
Biology Theses - Archive
Physical interactions between cells, such as cell-cell junctions, can profoundly impact cell fate. A vital cell fate for normal development and homeostasis is programmed cell death. Cells fated to die must be efficiently cleared away via phagocytosis, and defects are associated with a variety of diseased states. Whether cell-cell physical associations affect programmed cell elimination has not been well-explored. Here we describe, in vivo, a cell-cell adhesion-driven signaling pathway that ensures compartment-specific cell clearance during development. We previously described the specialized cell death program “Compartmentalized Cell Elimination” (CCE) in the C. elegans embryo. During CCE, the tail-spike cell (TSC), a …
Resveratrol Exerts Anti-Inflammatory Effects On Human Thp-1 Macrophages, Valeria B. Martinez
Resveratrol Exerts Anti-Inflammatory Effects On Human Thp-1 Macrophages, Valeria B. Martinez
Chemistry & Biochemistry Theses - Archive
Inflammation is a natural biological response to harmful stimuli. It initiates a series of reactions that prompt defensive and curative mechanisms, ridding the body of offending agents and healing remaining injuries. Inflammation involves the intricate communication between cells, requiring complex signaling that mediates various pathways. This acute form of inflammation is vital for our survival, promoting a myriad of mechanisms that function to defend and heal. However, if this inflammatory response is not resolved, it results in a prolonged condition referred to as chronic inflammation. This persistent inflammatory state is incredibly harmful, damaging the host's healthy cells, tissues, and organs. …
The Role Of Sodium Butyrate As An Inflammatory Regulator And Its Effect On Long Noncoding Rnas In Neuroinflammation, Angel Covarrubias
The Role Of Sodium Butyrate As An Inflammatory Regulator And Its Effect On Long Noncoding Rnas In Neuroinflammation, Angel Covarrubias
Chemistry & Biochemistry Theses - Archive
Inflammation is a crucial homeostatic process that contributes to both the elimination of foreign invaders and tissue repair. Inflammation at sites of tissue injury or infection is initiated by the detection of a harmful stimulus, triggering vital inflammatory immune signaling pathways and a cascade of cytokines and inflammatory mediators. The dysregulation of this process, however, can result in inappropriate inflammatory responses manifesting in tissue damage and compromised cell function. Dysregulation of the inflammatory response is seen frequently in many human diseases such as Diabetes, Cancer, cardiovascular disease, and neurodegenerative diseases.
In the context of the Central Nervous system, inflammation is …
Characterizing And Targeting The Non-Catalytic Functions Of Phosphatase Of Regenerating Liver 3 (Prl-3) In Oncogenesis And Cancer Progression, Jeffery T. Jolly
Characterizing And Targeting The Non-Catalytic Functions Of Phosphatase Of Regenerating Liver 3 (Prl-3) In Oncogenesis And Cancer Progression, Jeffery T. Jolly
Theses and Dissertations--Molecular and Cellular Biochemistry
Phosphatase of Regenerating Liver 3 (PRL-3) is frequently upregulated in various cancers and is associated with poor patient prognosis. Although traditionally studied for its phosphatase activity, PRL-3 also interacts with the CNNM family of magnesium transporters through its catalytic site, and these two functions are mutually exclusive at any given time. Most previous studies relied on a commonly used PRL-3 mutation that disrupts both phosphatase activity and CNNM binding, making it challenging to determine which function drives its oncogenic effects. To address this gap in the field, I utilized a panel of PRL-3 mutants that selectively disrupt either phosphatase activity …
Functional Analysis Of Ligand Binding Domain 2 Of Outer Surface Protein C Of Borreliella Burgdorferi, Gavin Z. Chambers
Functional Analysis Of Ligand Binding Domain 2 Of Outer Surface Protein C Of Borreliella Burgdorferi, Gavin Z. Chambers
Theses and Dissertations
Lyme disease, caused by the spirochete Borreliella burgdorferi, is the most common vector-borne infection in North America. A critical determinant of early mammalian infection is outer surface protein C (OspC), a highly variable lipoprotein that is indispensable for spirochete survival but whose precise function remains unresolved. OspC has been proposed to mediate diverse roles, including complement evasion, adhesion, tissue dissemination, and antiphagocytic activity, supporting the view that it is a multifunctional virulence factor. Structural studies have identified two putative ligand-binding domains (LBD1 and LBD2), with LBD2 forming a solvent-exposed crown at the membrane-distal end of the OspC dimer.
To …
Enhancing The Mechanical Properties Of Sla 3d-Printed Bio-Resin From Linseed Oil Using Cellulose And Lignin Biopolymers, Chukwunonso A. Ikedionu
Enhancing The Mechanical Properties Of Sla 3d-Printed Bio-Resin From Linseed Oil Using Cellulose And Lignin Biopolymers, Chukwunonso A. Ikedionu
College of Graduate Studies: Theses & Dissertations
Abstract
This research explores the development of bio resin from linseed oil by the process of epoxidation and acrylation to produce acrylated epoxidized linseed oil (AELO). Lignin and cellulose biopolymers were added as reinforcement at varying weight fractions of 1 wt.%, 2.5 wt.%, and 5 wt.%, and their mechanical performance was compared against pure AELO. The formulations were printed using an Elegoo SLA 3D printer to create standardized test specimens like tensile bars, compression cylinders, and hardness blocks, which were all prepared according to the ASTM testing standard.
The results indicate that reinforcement effects depend on both filler type and …
Synthesis And Assessment Of Biobased Acrylated Epoxidized Soybean Oil Resins For Stereolithography 3d Printing Of Microfluidic Devices, Natalie S. Romero Figueroa
Synthesis And Assessment Of Biobased Acrylated Epoxidized Soybean Oil Resins For Stereolithography 3d Printing Of Microfluidic Devices, Natalie S. Romero Figueroa
College of Graduate Studies: Theses & Dissertations
This research focuses on the development and characterization of a biobased photocurable resin synthesized from soybean oil for use in stereolithography (SLA) 3D printing of microfluidic devices. The study explores a sustainable alternative to petroleum-based resins by performing an acrylation reaction on epoxidized soybean oil (ESO) to produce acrylated epoxidized soybean oil (AESO), which was then formulated into a photocurable resin with the addition of a photo initiator. The fabrication process involved designing microfluidic molds in SolidWorks and printing them using an Elegoo Mars 4 SLA printer under various exposure and layer thickness parameters. The printed samples consisted of microchannels …
Traction Force Microscopy Using An Epifluorescence Microscope: Experimental Considerations And Caveats, Zaria Booth, Mazen Mezher, Rudra Patel, Venkat Maruthamuthu
Traction Force Microscopy Using An Epifluorescence Microscope: Experimental Considerations And Caveats, Zaria Booth, Mazen Mezher, Rudra Patel, Venkat Maruthamuthu
Mechanical & Aerospace Engineering Faculty Publications
Forces exerted by cells due to their internal contractility play fundamental roles in a host of processes, including adhesion, migration, survival and differentiation. Traction force microscopy (TFM) enables the determination of forces exerted by cells or cell collectives on their environment, which is typically taken to be an extra-cellular matrix (ECM)-coated substrate. Sample preparation for TFM involves the plating of cells onto an environment embedded with fiducial markers. The imaging of these fiducial markers in the presence and absence of the cells then enables calculation of the displacement of localized regions of the environment, and, consequently, the spatial distribution of …
Transient Transmembrane-Electrostatically Localized Protons And Transmembrane Potential In A Laser Flashed Bacteriorhodopsin Purple Membrane Open Flat Sheet - Summary, James Weifu Lee
Chemistry & Biochemistry Faculty Publications
The transmembrane-electrostatically localized protons/cations charges (TELCs, also known as TELPs) model may serve as a unified framework to explain a wide range of bioenergetic phenomena. Transient transmembrane-electrostatically localized protons (TELPs) and transmembrane potential in a laser flash-energized bacteriorhodopsin (bR) purple membrane (PM) open flat sheet are now better analyzed. Under the Heberle et al. (1994) experimental conditions, the number of bR molecules is now calculated to be 8200 per PM open flat sheet with a diameter of 600 nm. With a single-turnover laser flash intensity of 3 mJ/cm² to photoexcite 10% of the bR molecules, the laser flash-induced peak TELCs …
Identification Of A Serine Protease Involved In Spinosad Degradation In The Yellow Fever Mosquito, Aedes Aegypti, Hongxiao Yu, Caixia Peng, Zhaohui Chen, Jie Li, Yunqi Li, Xiaojing Zhu, Yuqi Huang, Linlong Jiang, Pablo Sobrado, Jianqiang Lan, Yingying Guo, Qian Han
Identification Of A Serine Protease Involved In Spinosad Degradation In The Yellow Fever Mosquito, Aedes Aegypti, Hongxiao Yu, Caixia Peng, Zhaohui Chen, Jie Li, Yunqi Li, Xiaojing Zhu, Yuqi Huang, Linlong Jiang, Pablo Sobrado, Jianqiang Lan, Yingying Guo, Qian Han
Chemistry Faculty Research & Creative Works
Spinosad is a widely used insecticide effective in controlling Aedes aegypti populations, but the molecular mechanisms underlying resistance remain poorly understood. This study explores the role of a serine protease, AeaSP (AAEL002624), in the potential detoxification ability of spinosad. Our results showed the crude protein of Ae. aegypti degraded approximately 48% of spinosad in vitro within 1 h; based on our previous research, AeaSP was believed to be potentially involved in the degradation of spinosad. Subsequently, AeaSP was recombinantly expressed in vitro, and its enzymatic activity was tested using BAEE as a substrate, with a Michaelis constant (KM) of 0.88 …
Durable Oxyfluoride Waste Forms For Salt Wastes From Molten Salt Reactors, Alevtina A. Maksimova, Jake W. Amoroso, Matthew Page, Gregory Morrison, Hans Conrad Zur Loye
Durable Oxyfluoride Waste Forms For Salt Wastes From Molten Salt Reactors, Alevtina A. Maksimova, Jake W. Amoroso, Matthew Page, Gregory Morrison, Hans Conrad Zur Loye
Faculty Publications
Molten salt reactors (MSRs) are promising technology to replace traditional light and heavy water reactors in the near future. Waste management for MSRs, however, remains a pressing concern that needs to be resolved prior to realizing deployment of MSRs. Specifically, the generated salt waste needs to be safely sequestered, a task made difficult by the high solubility of the salt waste that can cause the release of radionuclides into the environment. This work demonstrates a new approach to immobilize multiple fluoride salts into a single waste form by converting highly-soluble fluorides to durable and stable oxyfluorides. Notably, we report a …
Racial Health Disparities Among Pregnant Women Of Color In New York City: Biological And Systemic Impacts, Kaylin Peña
Racial Health Disparities Among Pregnant Women Of Color In New York City: Biological And Systemic Impacts, Kaylin Peña
Pitzer Senior Theses
Racial Health Disparities Among Pregnant Women of Color in New York City: Biological and Systemic Impacts
Abstract
This thesis aims to explore how racial health disparities, underrepresentation in gynecology, and socioeconomic barriers contribute to adverse pregnancy outcomes among women of color in New York City. Through an interdisciplinary approach that combines resources from medical anthropology and human biology, this research will examine the biological implications of chronic stress, specifically HPA axis dysregulation, and its role in maternal health outcomes. With the idea of intersectionality, as conceptualized by Kimberlé Crenshaw, the study analyzes the various effects of systemic inequities and social …
Using Rna Sequencing To Examine Encephalic Gene Expression In Cactus Mice, Sarah A. Nicholls
Using Rna Sequencing To Examine Encephalic Gene Expression In Cactus Mice, Sarah A. Nicholls
Honors Theses and Capstones
Many of the exact mechanisms by which desert-adapted animals avoid dehydration-induced complications are unknown, though there are likely ties to the general mammalian dehydration response, a multisystem process spearheaded by the brain. Peromyscus eremicus, the cactus mouse, can survive its whole life without intaking water and is commonly used as a model to study desert adaptations. In this study, we have used bulk transcriptomics to characterize the differential gene expression across hydrated and dehydrated P. eremicus in five major regions of the brain: the cerebral cortex (referred to throughout much of this paper as the cortex), hippocampus, thalamus, midbrain, …