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Articles 1 - 30 of 191
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
Windows Of Developmental Susceptibility To Tetrahydrocannabivarin (Thcv) Reveal Stage-Dependent Morphological And Biological Effects, Mirielle Clayton
Windows Of Developmental Susceptibility To Tetrahydrocannabivarin (Thcv) Reveal Stage-Dependent Morphological And Biological Effects, Mirielle Clayton
Honors Theses
Tetrahydrocannabivarin (THCV), a minor cannabinoid found in Cannabis sativa, is gaining attention for its potential therapeutic applications, yet its effects on early development remain poorly understood. This study investigated how the timing of THCV exposure influences morphological, behavioral, and bioaccumulation outcomes in zebrafish (Danio rerio) embryos. Embryos were exposed to 2 μM THCV during discrete developmental windows (6–30, 30–54, 54–78, 78–102) and continuous 6–102 hours post-fertilization (hpf), designed to model early stages of human gestation. Behavioral analysis using a larval photomotor response assay revealed significant reductions in locomotor activity during dark phases, with the strongest hypoactivity observed …
Bax Activation Through The N-Terminal Bh3-Like Domains Of Vdac1 And Vdac2, Autumn A. Peters
Bax Activation Through The N-Terminal Bh3-Like Domains Of Vdac1 And Vdac2, Autumn A. Peters
Honors Theses
Voltage-dependent anion channels (VDACs) are central to mitochondrial function by mediating metabolite diffusion across the mitochondrial outer membrane (MOM). Two isoforms, VDACs 1 and 2, are also implicated in apoptosis based on interactions with Bcl-2 family proteins that control this process, including Bax and Bcl-xL. Activation of the pro-apoptotic protein Bax by interaction with ‘BH3-only’ proteins, such as Bim or Bid, induces MOM permeabilization to signal apoptosis, yet accumulating evidence indicates VDACs 1 and 2 may also affect Bax. We discovered that the VDAC N-terminal domains contain high sequence similarity to the conserved BH3 domains within Bcl-2 family members that …
Functionalized Nanodiamonds As Binding Platforms For Single-Stranded Dna, Mallory A. Chapman
Functionalized Nanodiamonds As Binding Platforms For Single-Stranded Dna, Mallory A. Chapman
Honors Theses
Nanodiamonds (NDs) offer a promising platform for biomolecular applications due to their stability, biocompatibility, and three-dimensional structure. This study focused on developing a nanodiamond–DNA complex in which streptavidin-functionalized NDs would form a protective shell around biotinylated single-stranded DNA (ssDNA), creating a core–shell system like an “M&M” candy with DNA at the center and a protective coating on the outside. DNA has many uses in nanotechnology, including DNA origami, nanomachines, and drug delivery systems, but its degradation limits its practical use, making protective strategies essential.
ND–DNA conjugates were prepared using biotin–streptavidin interactions and analyzed using gel electrophoresis. Initial separation on agarose …
Biochemical Characterization Of Luciferase In Omphalotus Olearius, James H. Martin
Biochemical Characterization Of Luciferase In Omphalotus Olearius, James H. Martin
Honors Theses
The overall goal of this thesis was to investigate the genetic basis of bioluminescence in Omphalotus olearius, a bioluminescent mushroom. The project initially focused on growing fungal cultures under controlled laboratory conditions and using molecular techniques such as DNA extraction, PCR, and gel electrophoresis to identify the organism and isolate the gene responsible for light production. The main objective was to insert this gene into a bacterial system to confirm its function through observable bioluminescence. However, repeated difficulties in maintaining viable fungal cultures and errors in molecular procedures resulted in inconclusive results, preventing successful gene identification. Due to these …
Acute Effects Of The Psychoactive Pollutant Fluoxetine On The Antipredator Behavior Of The Gulf Killifish (Fundulus Grandis), Semyra Reus
Honors Theses
Pharmaceutical contaminants are increasingly prevalent in aquatic environments, yet their sublethal effects on ecologically relevant behaviors remain poorly understood, particularly in estuarine systems. Selective serotonin reuptake inhibitors (SSRIs), such as fluoxetine, are of particular concern due to the conserved role of serotonin in regulating behavior across vertebrates. Here, we investigated how acute exposure to environmentally relevant concentrations of fluoxetine influences anti-predator behavior in Gulf killifish (Fundulus grandis), a key estuarine fish commonly found in saltmarsh habitats. Killifish were exposed to control (0 ng/L), low (17.8 ng/L), and high (596 ng/L) fluoxetine concentrations and subsequently tested in the presence …
Novel Biomarker Discovery In Multiple Sclerosis, Manisha Gangasani
Novel Biomarker Discovery In Multiple Sclerosis, Manisha Gangasani
Honors Theses
Multiple Sclerosis (MS) is a chronic neuroinflammatory disorder affecting the brain, spinal cord, and optic nerve. Patients experience cognitive, motor, autonomic, and emotional symptoms that often overlap with other neurological conditions, making early diagnosis challenging. Current diagnostic criteria require evidence of lesions with dissemination in time and space. Racial disparities in MS outcomes are well documented, with Black individuals often exhibiting greater disease severity, higher relapse rates, and increased disability compared to White individuals. These differences likely reflect a combination of genetic, biological, environmental, and healthcare access factors, underscoring the need to improve early diagnosis and reduce inequities in care. …
Developing A Protocol For Non-Cellular Transplantation Of Donor Mitochondria Into Recipient Cells, Andrew Parton
Developing A Protocol For Non-Cellular Transplantation Of Donor Mitochondria Into Recipient Cells, Andrew Parton
Honors Theses
Tumor innervation has emerged as a critical feature of cancer progression, with increased nerve density correlating with enhanced aggressiveness, metastatic dissemination, and poor clinical outcome. However, the functional contribution of neurons to tumor biology remains incompletely defined. We recently identified the intercellular transfer of mitochondria from neurons to cancer cells as a mechanism that promotes tumor progression. We therefore hypothesized that disruption of this transfer could attenuate tumor aggressivity. To directly investigate this process, we developed an approach to isolate mitochondria from donor cells and transplant them into recipient cancer cells independently of canonical cell-cell interactions. Transferred mitochondria were tracked …
Cleft Palate And The Coordination Of Wnt Signaling And Pax9 In Murine Palatogenesis, Landon Wyatt
Cleft Palate And The Coordination Of Wnt Signaling And Pax9 In Murine Palatogenesis, Landon Wyatt
Honors Theses
Cleft palate is a common craniofacial birth defect that arises when the molecular and morphogenetic events guiding secondary palate formation lose coordination during a narrow developmental window. In mice, successful palatogenesis requires the paired palatal shelves to grow vertically, elevate above the tongue, and fuse at the midline; disruption of any of these steps can result in clefting. Two important regulators of this process are canonical Wnt signaling and the transcription factor Pax9, both of which contribute to normal palatal mesenchymal growth and patterning during early development. This paper first examines whether altered Dkk1/Wnt signaling contributes to the Pax9-null palate …
An Insight Into The Venom Gland Proteome Of The Two-Spined Trap-Jaw Ant, Odontomachus Haematodus, Aaron Morgan
An Insight Into The Venom Gland Proteome Of The Two-Spined Trap-Jaw Ant, Odontomachus Haematodus, Aaron Morgan
Honors Theses
Ants are ecologically important and highly abundant organisms, playing key roles in many ecosystems. One recently introduced species in the southeastern United States is Odontomachus haematodus (the two-spined trap-jaw ant), a South American native that has often been misidentified, contributing to limited research on its biology and venom composition. This study aimed to provide the first detailed characterization of the venom apparatus and proteome of O. haematodus. Specimens were collected and dissected, and venom-related proteins were extracted and analyzed using SDS-PAGE and tandem mass spectrometry (MS/MS-ESI). Confocal microscopy was also used to visualize the sting apparatus, including F-actin filaments and …
Optimizing Barley Stripped Mosaic Virus Coat Protein Stability For Palladium Nanorod Biotemplating Via Terminal His-Tag Positioning, Emilie Hayes
Honors Theses
Viral biotemplating has become an exciting approach towards the production of nanomaterials with a controlled size and morphology. Rod-shaped plant viruses provide structurally consistent scaffolds that can guide the assembly of inorganic nanostructures, which can offer a biologically inspired platform to nanoscale material design. In the current study, computational modeling was used to examine the effect of palladium precursor chemistry on the reaction with viral protein templates. Molecular dynamics simulations were performed to test the stability of the viral scaffold, and the influence of N-terminal and C-terminal His-tag on protein flexibility. These simulations revealed that the viral coat protein is …
N-Allylation Of Secondary Amides With Unsymmetrical Propionates, Remi Graff
N-Allylation Of Secondary Amides With Unsymmetrical Propionates, Remi Graff
Honors Theses
The combination of trimethylsilyl trifluoromethanesulfonate (TMSOTf) and Et3N promotes the N-allylation of 4-methoxyacetanilide 2 with unsymmetrical propionates 1 (eq 1). The amide substrate is believed to undergo conversion to a nucleophilic silyl imidate in the presence of TMSOTf and the amine base, which concurrently promotes carbocation formation in the same flask through the loss of trimethylsilyl propionate, leading to N-allylation of the amide. A range of unsymmetrical propionates, accessed by varying the R and R’ substituents, react efficiently in this one-pot process with yields ranging from 44% to 99%, affording regioselective ratios of up to >20:1 through formation of regioisomers …
Development Of A Python Pipeline For The Inference Of Selection In Human Genomes And Applications To Adh1b*2, Aine Macdermott
Development Of A Python Pipeline For The Inference Of Selection In Human Genomes And Applications To Adh1b*2, Aine Macdermott
Honors Theses
Human evolutionary genomics provides an avenue to understand how genetic variation has been impacted by the environmental pressures of the past, revealing how selective pressures impacted past populations and contributed to present-day biological diversity. In this thesis, I describe the construction of a Python-based computational pipeline designed to automate and integrate multiple analyses of positive selection across worldwide population datasets, including derived allele frequency calculation, haplotype-based tests of selection, RELATE-based genealogical inference, and CLUES2-based temporal modeling. By automating file preparation, format conversion, job submission, result aggregation, model comparison, and visualization, this pipeline streamlines the data interpretation process, and shifts focus …
Exploring Phosphoregulation Of Myo3a Using Quantitative Fluorescence Image Analysis In Cos7 Cells, Vu Hao Minh Nguyen Phan
Exploring Phosphoregulation Of Myo3a Using Quantitative Fluorescence Image Analysis In Cos7 Cells, Vu Hao Minh Nguyen Phan
Honors Theses
Myosin 3A (MYO3A) is an unconventional myosin involved in the formation and maintenance of hair-cell stereocilia of the sensory epithelia in the inner ear. The kinase domain has been implicated in phosphoregulation of MYO3A activity through intermolecular autophosphorylation. Previous studies using mass spectrometry identified two potential phosphorylation sites in the motor domain. To investigate the regulatory roles of these sites, we generated glutamic acid point mutations in our mchr-MYO3AΔK construct to mimic phosphorylation and assayed the constructs for their ability to tip-localize and influence filopodial density via transfection into COS7 cells. The phosphomimic constructs were less able to generate filopodia …
Design, Synthesis And Biological Activities Of N-Substituted Phthalimide Derivative, Beaula Mangundah
Design, Synthesis And Biological Activities Of N-Substituted Phthalimide Derivative, Beaula Mangundah
Honors Theses
Phthalimides are a group of compounds among bicyclic non-aromatic nitrogen heterocycles that have gained recognition for their bioactivity across various fields, notably anti-cancer, anti-microbial, anti-oxidant, and anti-inflammatory. This study discusses the synthesis of a novel phthalimide derivative and provides an analysis of its biological activity. It was conducted through a Boric acid Imide synthesis and yielded a successful derivative using hexylamine. The product was evaluated in vitro for antimicrobial, anticoagulant, and anti-inflammatory properties using Kirby-Bauer disk diffusion, clotting time, hemolysis inhibition, and protein denaturation assays. It showed mild anticoagulant and anti-inflammatory activity.
The Dynamic Interplay Between Monovalent Salts And Ribosomal Protein S1 In Regulating Rna G-Quadruplex Structure, Chloe M. Martin
The Dynamic Interplay Between Monovalent Salts And Ribosomal Protein S1 In Regulating Rna G-Quadruplex Structure, Chloe M. Martin
Honors Theses
Many remarkable discoveries, especially in the last decade, have shown scientists just how important RNA is. In this study, the secondary structure of RNA, G-Quadruplexes, is the topic of interest and how they are affected by salts and S1 protein. To obtain the S1 protein it was transformed from E. Coli using a bacterial plasmid. The S1 protein was then purified from the bacteria through the use of many purification methods. The monovalent cationic salts used were LiCl and KCl which have different ionic radii size that contributes to the stability of RNA G-Quadruplexes. This stability was observed and affected …
Expression, Purification And Characterization Of Full Length Tdp-43, Danya Abouzaid
Expression, Purification And Characterization Of Full Length Tdp-43, Danya Abouzaid
Honors Theses
TAR DNA-binding protein 43 (TDP-43) is a 43 kDa RNA-binding protein linked to several neurodegenerative diseases, including amyotrophic lateral sclerosis (ALS), frontotemporal dementia (FTD), and Alzheimer’s disease. 5-7,28,30,33 Studying full-length TDP-43 has been difficult because of its intrinsic instability and tendency to aggregate.19,25,28,33,36 In this study, we focused on overcoming the difficulties to express full-length TDP-43 in E. coli recombinantly. We focused on expressing full-length TDP-43 as a fusion construct with a maltose-binding protein (MBP) to improve solubility and stability. Our strategy was to purify TDP-43-MBP fusion and make biomolecular condensates with RNA before cleaving the tag with thrombin protease. …
Transcription Factors And Regulatory Proteins In The Control Of Eukaryotic Gene Expression, Maya M. Minkara
Transcription Factors And Regulatory Proteins In The Control Of Eukaryotic Gene Expression, Maya M. Minkara
Honors Theses
Transcription factors (TFs) function as precision switches that integrate signaling inputs, chromatin state, and protein homeostasis to control gene expression. This thesis unites three interconnected research themes: (1) mechanistic studies of the ubiquitin-proteasome system (UPS) in regulating eukaryotic TFs, focusing on polymerase-associated Factor 1 (Paf1) and TATA-box binding protein-associated factor 2 (Taf2); (2) identification of biomarker genes within odor-related TF networks; and (3) integration of published undergraduate research linking molecular regulation, bioinformatics, and synthetic biology. These themes are purposefully structured so that mechanistic insight into TF control sets up network-level discovery and, in turn, motivates applied and translational directions. In …
Developing Novel Radical Protein Footprinting Methods For Application In Living Systems, Lyle Tobin
Developing Novel Radical Protein Footprinting Methods For Application In Living Systems, Lyle Tobin
Honors Theses
Radical protein footprinting (RPF) is a family of structural biology techniques that generate radicals in situ to label solvent-accessible amino acid residues. Coupled with liquid chromatography/mass spectrometry, RPF enables the characterization of protein higher order structure and sites of protein-protein and protein-ligand interactions. While traditionally performed in vitro, recent advancements have extended RPF to ex vivo and in vivo applications, including intact cells, nematodes, and 3D cell cultures. RPF in living systems allows the structural analysis of proteins and protein complexes in their native environment, preserving physiological interactions, dynamic conformational changes, and structural contexts that might otherwise be lost …
Biophysical Characterization Of Thermophilic Branched-Chain Amino Acid Periplasmic Binding Protein From Thermotoga Maritima, Sky Marsicano
Biophysical Characterization Of Thermophilic Branched-Chain Amino Acid Periplasmic Binding Protein From Thermotoga Maritima, Sky Marsicano
Honors Theses
Members of the periplasmic binding protein superfamily are involved in the selective passage of ligands through bacterial cell membranes. The hyperthermophilic eubacterium Thermotoga maritima encodes a putative periplasmic branched chain amino acid binding protein (TM1135). The gene was cloned into pET21a(+), overexpressed in Escherichia coli, purified using Ni-NTA chromatography, and confirmed with SDS-PAGE and MALDI mass spectrometry. Biophysical characterization of the protein was performed with fluorescence spectroscopy, absorbance spectroscopy, and circular dichroism experiments to investigate structural stability and ligand binding ability. Using circular dichroism, we demonstrate that TM1135 binds to the branched chain amino acids isoleucine, leucine, and valine, and …
Fouling-Resistant Voltammetric Xylazine Sensors For Detection Of The Street Drug “Tranq”, Ann Holland Wemple
Fouling-Resistant Voltammetric Xylazine Sensors For Detection Of The Street Drug “Tranq”, Ann Holland Wemple
Honors Theses
As the opioid crisis continues to wreak havoc on a national and global scale, it is increasingly critical to develop methodologies to detect the most dangerous of these drugs as fentanyl and its derivatives have orders of magnitude higher potency than morphine. Recently, the scientific challenge for chemical detection of fentanyl and its derivatives has been complicated by both the constantly increasing synthetic variations of the drug as well as the expanded use of adulterants. One tragically consequential example is the nocuous street drug known as “Tranq” which combines fentanyl or a fentanyl derivative with the veterinary sedative Rompun®, chemically …
Development And Functional Characterization Of Carbon Nanodot-Peptide Conjugates For The Treatment Of Bone Disease, Abigail Ali
Development And Functional Characterization Of Carbon Nanodot-Peptide Conjugates For The Treatment Of Bone Disease, Abigail Ali
Honors Theses
Carbon nanodots (CDs) synthesized from carbon nanopowder under acid oxidative conditions have unique bone-bind properties that could be exploited for theranostic purposes. In the zebrafish vertebrate model system, CDs bind to bone with high affinity and specificity, they don’t appear to bind to other tissues and they do not affect the bone physiology or animal viability. Thus, carbon-derived CDs could be developed for the delivery of pharmacological agents to bones to treat diseases such as osteoporosis. Biologicals such as peptides, proteins and antibodies are a new and exciting class of pharmacological agents that have been successfully used in treating complex …
Isolation And Identification Of Active Antimicrobial Compounds In Alcaligenes And Chromobacterium Strains, Hannah Lwin
Isolation And Identification Of Active Antimicrobial Compounds In Alcaligenes And Chromobacterium Strains, Hannah Lwin
Honors Theses
ESKAPE pathogens comprise six bacteria that can be highly virulent and are likely to develop antibiotic resistance to many of the currently available antibiotics. New antibiotics are needed to combat these pathogens. Our approach was to isolate and identify antimicrobial compounds from bacteria isolated from soil. Two isolates demonstrating antimicrobial activity were identified as Chromobacterium sp. and Alcaligenes parafaecalis. Preliminary extraction of their antimicrobials was performed.
Assessing The Behavioral Impact Of Pyridostigmine Bromide In Rats, Noah A. Martin
Assessing The Behavioral Impact Of Pyridostigmine Bromide In Rats, Noah A. Martin
Honors Theses
Pyridostigmine bromide (PB) is an organophosphate (OP) nerve agent prophylactic used to protect warfighters against chemical warfare agents. OPs inhibit the neural enzyme acetylcholinesterase (AChE) in the brain. This leads to the buildup of acetylcholine, causing respiratory failure, seizures, and death. PB functions by inhibiting ~30% of peripheral AChE temporarily, protecting the enzymes so that the body is able to restore sufficient cholinergic function post-exposure. PB does not cross the blood-brain barrier, though it may still indirectly affect toxicity in the brain due to repeated AChE inhibition throughout treatment, or by inhibition of non-target ChE’s in the blood. The aim …
Antioxidant Activity Of Pamam Dendrimer Stabilized Ascorbic Acid, Gabriella Srikureja
Antioxidant Activity Of Pamam Dendrimer Stabilized Ascorbic Acid, Gabriella Srikureja
Honors Theses
Ascorbic acid (vitamin C) is an essential micronutrient for human health. It acts as an enzymatic cofactor in anabolic biochemical pathways such as the synthesis of collagen, dopamine, and norepinephrine. Unfortunately, this versatility comes at the cost of a high degradation rate both in and outside of the food matrix. Previous research exploring stabilizing aqueous ascorbic acid through Poly(amidoamine) (PAMAM) dendrimers found success in reducing the rate of degradation.
To confirm the antioxidant activity of ascorbic acid in its stabilized dendrimer complex, 2,2-Diphenyl-1-picrylhydrazyl (DPPH) assays examined via Cary 5000 UV-Vis-NIR spectrophotometer found that performing the DPPH assay under aqueous conditions …
Cell Cycle Regulator Delays Pilus Production In Caulobacter Crescentus, Eli Johnson
Cell Cycle Regulator Delays Pilus Production In Caulobacter Crescentus, Eli Johnson
Honors Theses
Caulobacter crescentus is a model bacterium for its unusual life cycle. This cycle features three distinct phases- the stalked stage, pre-divisional or actively dividing stage, and the swarmer stage, characterized by the production of a flagellum and multiple pili. Pili are necessary for cell attachment to surfaces and their reuptake into the cell can help drive the cell cycle forward. The gene that encodes the pilus subunit, pilA, is regulated by four binding sites for the cell cycle regulator CtrA. Previous research has determined that one site induces expression while two of the four sites inhibit expression. It is unknown …
Fiddler Crab Gut Microbiomes As An Indicator For Eutrophication Due To Waste-Water Contamination In Estuaries, Madison L. Geraci
Fiddler Crab Gut Microbiomes As An Indicator For Eutrophication Due To Waste-Water Contamination In Estuaries, Madison L. Geraci
Honors Theses
Estuaries are unique biogeochemical zones in coastal systems that provide a myriad of ecological functions: providing habitat for critically important fishery species, diverse species of plants and animals, and contributing to nutrient cycling. Estuaries are vulnerable to anthropogenic stressors as they are intersections between marine and terrestrial communities and are often the hotspot of coastal development and activity. Estuarine sediments act as repositories for anthropogenic contaminants, including excess nutrient runoffs and waste-water pollution that can cause states of eutrophication. Microorganisms are sensitive to these environmental changes, presenting a unique opportunity of being useful bioindicators of environmental stress. Isolating microorganisms from …
Understanding Taf13 (Tata Box-Binding Protein-Associated Factor 13) Upregulation In Eukaryotic Cells, Selin Kaplanoglu
Understanding Taf13 (Tata Box-Binding Protein-Associated Factor 13) Upregulation In Eukaryotic Cells, Selin Kaplanoglu
Honors Theses
TATA-binding protein (TBP) and TBP-associated factors (Tafs) comprise RNA Polymerase II (RNA Pol II) pre-initiation complex. This universal component carefully controls the transcriptional initiation process. One of the Tafs, Taf13, also plays an important role in the regulation of RNA Pol II transcription initiation which is evolutionarily conserved from yeast to humans. It is found that Taf13 is overexpressed in cancer cells, although the exact mechanism that is responsible for this overexpression is unclear. Our hypothesis suggests that targeted degradation by the 26S proteasome via ubiquitylation [Ubiquitin-Proteasome System (UPS)] may be the mechanism that regulates the stability of Taf13. To …
Synthesis Of Novel Temozolomide Amides As Potential Anti-Glioblastoma Agents, Sion Kim
Synthesis Of Novel Temozolomide Amides As Potential Anti-Glioblastoma Agents, Sion Kim
Honors Theses
Glioblastoma is treated with Temozolomide (TMZ), a lipophilic alkylating drug that can cross the brain-blood barrier. To confront drug resistance, this research aimed to synthesize novel TMZ amide hybrids by using the acid chloride method, replacing an amino group with a primary amine. These novel hybrids were tested on U87-MG cells to determine if the primary amines with greater anticancer properties and lipophilicity have enhanced the drug's anticancer activity and bioavailability. The calculated lethal concentration 50 (LC50) of the hybrids ranged from 0.005 mg/mL to 0.2258 mg/mL, with some demonstrating greater anticancer effects than TMZ itself.
Understanding The Mechanism Behind Hfip's Effect On Diastereomeric Separation Of Oligonucleotides, Ian Neidigh
Understanding The Mechanism Behind Hfip's Effect On Diastereomeric Separation Of Oligonucleotides, Ian Neidigh
Honors Theses
The goal of this research was to determine the mechanism behind 1,1,1,3,3,3-hexafluoroisopropanol's (HFIP0 ability to suppress the separation of oligonucleotide diastereomers. This was accomplished by selecting different molecules that were like HFIP but differed in specific ways such as polarity, number and type of halogen(s), alcohol group location, carbon chain length, hydrophobicity, and chao/kosmotropicity. These molecules replaced HFIP in an IPRP chromatography method to determine if splitting of the diastereomers was observed and then they would becompared to HFIP's effect. Viscosity tests were to run to acquire quantitative data to determine chao/kosmotropicity. No decisive trend among a single factor was …
Development Of A Diaryl Oxazole-Based Cleavable Linker For Peptides, Evan Wolff
Development Of A Diaryl Oxazole-Based Cleavable Linker For Peptides, Evan Wolff
Honors Theses
The development of new cleavable linkers increases the diversity of compatible conditions for peptide discovery platforms. Potential applications for these linkers include high-throughput pharmaceutical candidate screening when utilized in Peptide Encoded Libraries (PELs). This thesis describes the development of a bifunctional diaryl oxazole-based cleavable linker that may be incorporated into compounds through Solid-Phase Peptide Synthesis (SPPS). This oxazole-based linker may be rapidly cleaved by cerium ammonium nitrate in aqueous conditions and is compatible with most natural amino acids and a variety of unnatural amino acids. This linker represents the first single-electron oxidant labile linker described to our knowledge and it …