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Articles 31 - 60 of 72

Full-Text Articles in Molecular Biology

The Effects Of Insulin-Like Growth Factor-1 (Igf-1) And Insulin-Like Growth Factor Receptor (Igfr) Regulation On Cognition And Structure Of Astrocytes, Sariya Khan May 2020

The Effects Of Insulin-Like Growth Factor-1 (Igf-1) And Insulin-Like Growth Factor Receptor (Igfr) Regulation On Cognition And Structure Of Astrocytes, Sariya Khan

Honors Theses

Insulin-like growth factor-1 (IGF-1) is a neuroendocrine signaling hormone that plays an integral role in bone and tissue growth and development. Inhibition of this hormone is known to disrupt the chemistry of the brain, resulting in cognitive impairments such as those seen in many common neurodegenerative diseases. While much research has been conducted on neurons and their relation with IGF-1, the role of astrocytes still needs to be explored. Our research investigates how astrocytes are affected as a result of IGF-1 regulation. Preliminary studies in our laboratory established a connection between IGF-1 and glial fibrillary acidic protein (GFAP), and in …


The Impact Of Age/Rage Signaling On Oxidative Stress Under Diabetic Conditions In Cardiac Fibroblasts, Christopher Dorroh May 2020

The Impact Of Age/Rage Signaling On Oxidative Stress Under Diabetic Conditions In Cardiac Fibroblasts, Christopher Dorroh

Honors Theses

Diabetes is a major health concern in the United States, with 1.5 million new cases diagnosed each year. Patients who suffer from diabetes have an increased risk of developing heart failure, a form of cardiovascular disease. Heart failure has been shown to result from increased left ventricular stiffness, which in turn is caused by increased remodeling of the extracellular matrix (ECM). This increase in ECM remodeling is a result of AGE/RAGE signaling, which occurs at a heightened level in the cardiac fibroblast cells of diabetics. Studies have shown that diabetics have elevated levels of AGEs (Advanced Glycation End-Products), which bind …


The Effects Of Largazole, A Histone Deacetylase Inhibitor, On Breast Cancer Cell Viability And Metastasis, Hannah Mccowan May 2020

The Effects Of Largazole, A Histone Deacetylase Inhibitor, On Breast Cancer Cell Viability And Metastasis, Hannah Mccowan

Honors Theses

Histone deacetylase enzymes modify epigenetic characteristics of a genome by removing acetyl groups from histone proteins in chromatin. Histone deacetylase inhibitors work by stopping this activity which can have various results in a cell including apoptosis, cell cycle arrest, differentiation, and migration. The purpose of these experiments was to see how largazole, a histone deacetylase inhibitor, affected cell viability for breast cancer and associated metastatic cell lines in both normoxic and hypoxic conditions. The experiment was completed by setting up two 96-well plates with varying concentrations of largazole and conducting a sulforhodamine viability assay. The specific cell lines used in …


Cell Proliferation And Viability Inhibition By Resveratrol On Breast Cancer Cell Lines, Kyle Ford Gordon Jr May 2020

Cell Proliferation And Viability Inhibition By Resveratrol On Breast Cancer Cell Lines, Kyle Ford Gordon Jr

Honors Theses

Antioxidants are well-known for their various health benefits. They are able to protect cells from being damaged by free radicals that are produced by vital biochemical processes. It has long been known that antioxidants are important in our everyday health, but their potential as disease preventers and potential therapeutic agents is a relatively new field of study. Resveratrol, a natural polyphenol and well-known antioxidant, is found in plants, fruits, and products derived from them, like red wine. Resveratrol has been shown to have various properties, including antiaging, anti-aggregation of platelets, anti-inflammatory, and anticancer activities. Because of their many health benefits, …


Alpha-Gal Syndrome: Molecular Characterization Of Amblyomma Americanum Α-D-Galactosidase In Α-Gal Metabolism And Onset Of Red Meat Allergy, Ahmed A. Mohamed May 2020

Alpha-Gal Syndrome: Molecular Characterization Of Amblyomma Americanum Α-D-Galactosidase In Α-Gal Metabolism And Onset Of Red Meat Allergy, Ahmed A. Mohamed

Honors Theses

Tick-borne red meat allergy is an IgE-mediated delayed hypersensitivity reaction, increasingly widespread in tick endemic areas in the United States of America, and worldwide. Bites from the lone-star tick (Amblyomma americanum) are believed to be involved as the source of the sensitization of humans to the oligosaccharide galactose-⍺-1,3-galactose (α-gal), which is found in most mammal-derived food products, including gelatin, broths, and red meat. The purpose of this study is to functionally characterize the lone-star tick α-D-galactosidase (AGS) enzyme and assess its role in α-gal metabolism. This enzyme cleaves terminal α-galactose moieties from glycoproteins and glycolipids. Hence, I hypothesized …


Cloning And Expression Of Human Synaptosome Associated Protein 29 In E. Coli, Logan M. Ryals May 2020

Cloning And Expression Of Human Synaptosome Associated Protein 29 In E. Coli, Logan M. Ryals

Honors Theses

Acting as the chief mediators of vesicular fusion, soluble N-ethylmaleimide-sensitive factor attachment protein receptors (SNAREs) play a role in many intracellular trafficking events by moving opposing membranes into close proximity. One such event takes place in the process of autophagy. A key SNARE involved in autophagy is Synaptosome Associated Protein 29 (SNAP-29), which acts on the autophagosome membrane to promote autophagosome and lysosome fusion. Kaposi’s Sarcoma Herpesvirus (KSHV) proteins ORF33 and ORF38 were demonstrated to interact with SNAP-29. The exact mechanism of this interaction is yet to be elucidated but it is hypothesized that these interactions allow KSHV to modulate …


Evaluating A Culprit: A Review Of The Biochemical Mechanisms Of Non-Celiac Gluten Intolerance, Callie Cinque Jan 2020

Evaluating A Culprit: A Review Of The Biochemical Mechanisms Of Non-Celiac Gluten Intolerance, Callie Cinque

Honors Theses

Non-Celiac Gluten Intolerance (NCGI) has evaded biological and chemical mechanisms since it was first reported in 1978. Celiac Disease, a multi-system immune mediated disorder has long served as the most similar counterpart to NCGI. Less cases of celiac disease are going undiagnosed reflecting an improvement on sensitive and decisive diagnostic tools. However, NCGI has been significantly growing as a diagnosis over the past decade with little match or similarity to the markers found in celiac disease patients. Critical evaluation of NCGI theories, experimentation, and existing hypotheses is necessary. This review seeks to synthesize multiple disciplines of gluten research and enhance …


Application Of Β-Chloroenals: One-Pot Syntheses To Create Highly Variable, Functional, And Biologically Interesting Molecules, Julia Powell Siewert Jan 2020

Application Of Β-Chloroenals: One-Pot Syntheses To Create Highly Variable, Functional, And Biologically Interesting Molecules, Julia Powell Siewert

Honors Theses

Pyrroles and pyrazoles are privileged structures which provide a molecular framework found in many different classes of bioactive compounds, thus rendering their syntheses useful in pharmaceutical drug development. Additionally, being able to selectively create these molecules with interesting substituents allows for different pharmacological and biological activities, such as antitumor and antibiotic effects. Our group has used β-chloroenals in the application of many different unique synthetic strategies in the past, and here I show that chloroenals can be used to synthesize novel 1,2,5 trisubstituted pyrroles as well as 1,5 di- and 1,4,5 trisubstituted pyrazoles in fewer steps and with milder conditions …


The Effects Of Signaling Molecules To Agrobacterium Tumefaciens Tumorigenesis At Plant Wound Sites, Nicole Walker Jan 2020

The Effects Of Signaling Molecules To Agrobacterium Tumefaciens Tumorigenesis At Plant Wound Sites, Nicole Walker

Honors Theses

Agrobacterium tumefaciens can live independently within soil before infecting its host (McCullen and Binns, 2006). The bacterium infects the plant through the rhizosphere, an area of soil along the plant root surface which contains microorganisms, making up the “external metabolome” (Bais et al. 2006). As these bacteria live in the rhizosphere, they are exposed to a multitude of chemical signals. These chemical signals include several conditions that must be met before the virulence machinery is expressed. These conditions include signaling from phenols and sugars as well as low PO4 levels and low pH. Upon wounding, sugars and phenols are released …


Microrna Identification And Target Prediction In The Whitefly (Bemisia Tabaci), Alexis Aleman Aug 2019

Microrna Identification And Target Prediction In The Whitefly (Bemisia Tabaci), Alexis Aleman

Honors Theses

RNA interference, referred to as RNAi, is a biological phenomenon whereby knock-down of gene expression can be achieved through the use of RNA molecules, including small interfering RNAs (siRNAs) and microRNAs (miRNAs). The use of miRNAs is an endogenous pathway that results in the degradation of the miRNA strand’s complementary messenger RNA (mRNA), preventing the translation of the mRNA and therefore the production of the proteins necessary for gene expression. While RNAi is a biological phenomenon that occurs naturally, it is also a method that can be used and manipulated in the laboratory to try to control the expression of …


Transformation Of Model Organisms With Munc13-1 For Subcloning And Protein Harvesting, Grace Dittmar May 2019

Transformation Of Model Organisms With Munc13-1 For Subcloning And Protein Harvesting, Grace Dittmar

Honors Theses

Exocytosis is the process by which cells release various molecules into the extracellular space. This mechanism is accomplished by membrane fusion, in which the membrane of the transport vesicle and that of the cell itself fuse to create one continuous membrane, allowing the release of the molecules inside the vesicle. A family of proteins, known as SNARE proteins, is responsible for facilitating membrane fusion. SNARE proteins form a complex between the vesicle membrane and the plasma membrane. For various cells, such as mast cells and neurons, exocytosis is essential to carry out their vital functions. Various accessory proteins are known …


The Dna Damage Response Gene Ddr48 Regulates Sterol Synthesis Genes To Confer Antifungal Resistance To The Pathogenic Fungus Histoplasma Capsulatum, Gabriella Reyes May 2019

The Dna Damage Response Gene Ddr48 Regulates Sterol Synthesis Genes To Confer Antifungal Resistance To The Pathogenic Fungus Histoplasma Capsulatum, Gabriella Reyes

Honors Theses

Histoplasma capsulatum is a dimorphic fungal pathogen that is endemic to the Ohio, Missouri, and Mississippi river valley regions. The fungus grows as a mold at environmental temperatures (25C) and transforms into a unicellular yeast upon inhalation by a mammalian host (37C). The mold to yeast shift is required for pathogenicity in host organisms, where the potentially fatal disease, histoplasmosis, can present. This study aims to characterize the DNA damage response protein DDR48 and the role that it plays in combating cellular stressors in H. capsulatum. We found that DDR48 is expressed strongly in the mold phase but expressed only …


Investigating Phosphorylation Patterns And Their Effect On The Activity Of Transcription Factor Taabf1 In Imbibing Cereal Grains, Grace Uwase Jan 2018

Investigating Phosphorylation Patterns And Their Effect On The Activity Of Transcription Factor Taabf1 In Imbibing Cereal Grains, Grace Uwase

Honors Theses

The wheat transcription factor TaABF1 plays an important role in hormone-mediated regulation of seed dormancy and germination of cereal grains. Evidence shows that TaABF1 activity is regulated by phosphorylation, and previous work in our lab showed that when serine residues in its conserved regions; S36, S37, S113, S115 were altered to phosphomimetic aspartate, the 4xD TaABF1 mutant had increased activity as a transcription factor. However, when only S113 was altered, TaABF1’s activity was greatly reduced. The work presented here explored whether the S36D/S37D/S115D mutant would have stronger activity than the 4xD mutant. Using the particle bombardment technique to introduce the …


Generation Of Mutant Snap-23 To Arrest Mast Cell Degranulation At Trans-Snare Complex Formation, Suzette Wafford-Turner May 2017

Generation Of Mutant Snap-23 To Arrest Mast Cell Degranulation At Trans-Snare Complex Formation, Suzette Wafford-Turner

Honors Theses

Regulated secretion of pro-inflammatory molecules (e.g, histamines, proteases) from mast cells plays critical roles in immunity, allergic reactions, cardiovascular disease and cancer. These molecules are stored in secretory granules inside the cell and are rapidly released into the extracellular environment when mast cells are activated. It is known that mast cell degranulation depends upon membrane anchored SNAREs (soluble N-ethylmaleidimide-sensitive factor attachment protein receptors) and accessory proteins that form the trans-SNARE complex, a 4 helical bundle central to exocytic fusion. There are three SNARE proteins that contribute to the 4-helical bundle during exocytosis; Syntaxin and VAMP proteins each provide one helix …


Examining Interactions Between Opsins And Carotenoid Biosynthetic Proteins In Halophilic Archaea, Alexandru M. Plesa Jan 2017

Examining Interactions Between Opsins And Carotenoid Biosynthetic Proteins In Halophilic Archaea, Alexandru M. Plesa

Honors Theses

Organisms have evolved numerous specialized molecules for constantly responding to environmental changes. Examples of such molecules are the light-driven proton-pump rhodopsins, such as bacteriorhodopsin (BR) and cruxrhodopsin (cR), and the carotenoid pigments, such as retinal and bacterioruberin. In halophilic Archaea, retinal can covalently bind bacterioopsin (BO) and cruxopsin (CO) to form the corresponding protein complexes, and its biosynthesis is indirectly controlled by the activity of the lycopene elongase (Lye) enzyme, which converts lycopene, a retinal precursor, to a form of bacterioruberin. Interestingly, opsins were shown to inhibit the activity of Lye, thereby promoting retinal biosynthesis and indirectly regulating the apoprotein-cofactor …


Functional Significance Of Branch Points In Mirtrons, Britton A. Strickland Dec 2016

Functional Significance Of Branch Points In Mirtrons, Britton A. Strickland

Honors Theses

MicroRNAs are a heterogeneous group of small regulatory RNAs generated by many pathways. Mirtrons (miR) are a class of microRNAs produced by splicing, and some mirtrons contain a 3’ tail located downstream from the self-complementary hairpin. During RNA splicing, a loop-like “lariat” intermediate structure is created when the 5’ end of the RNA is attached to an adenine called the branch point. The goal of this project is to uncover the contribution of branch point location to the processing of tailed mirtrons into functional gene regulators. This project approaches this issue from two directions. First, branch points were identified by …


Expression Of Glycine-Rich Proteins Found In Salivary Glands Of The Lone Star Tick (Amblyomma Americanum) Using A Mammalian Cell Line, Annabelle Clark Dec 2016

Expression Of Glycine-Rich Proteins Found In Salivary Glands Of The Lone Star Tick (Amblyomma Americanum) Using A Mammalian Cell Line, Annabelle Clark

Honors Theses

Ticks play an important ecological role as well as a growing role in human health and veterinary care. Ticks are hosts to a plethora of microbial pathogens that can be transferred during feeding to cause tick-borne diseases in humans and many animals. Ticks may in large part owe the success of the transfer of these pathogens between hosts to their complex saliva. The saliva secreted upon a tick’s attachment to a host serves the following, among other, functions: anti-hemostasis of the blood pool, preventing an inflammatory response at the bite site, and serving as a natural anti-microbial substance. An important …


Painless Hematophagy: The Functional Role Of Novel Tick Metalloproteases In Pain Suppression, Joseph W. Jelinski May 2016

Painless Hematophagy: The Functional Role Of Novel Tick Metalloproteases In Pain Suppression, Joseph W. Jelinski

Honors Theses

Ticks secrete a plethora of pharmacologically active molecules in their saliva while feeding. These allow the tick to feed upon a host over prolonged periods of time in an itch free and painless attachment. The exact mechanism of pain suppression by the tick has barely been investigated. In this study, two angiotensin converting enzymes (ACEs), members of the metalloprotease family, are identified as potentially responsible for the degradation of pro-inflammatory peptides. It is hypothesized that these tick ACEs block the function of bradykinin through degradation of the peptide, contributing to the tick’s ability to conduct a pain and itch-free host …


Using Intrinsic Properties Of Polyaniline To Sense Expression Of The Microrna Let-7, Jared N. Gloria May 2016

Using Intrinsic Properties Of Polyaniline To Sense Expression Of The Microrna Let-7, Jared N. Gloria

Honors Theses

MicroRNAs are approximately 22-nucleotide long RNA molecules that function through decay and translational repression of messenger RNA. The microRNA let-7 is found to play a role in maintaining the fate of differentiated cells in humans. Thus, expression level of this microRNA is a reliable biomarker of tumor cell phenotype. However, there are significant limitations in the current profiling techniques of microRNA. The current methods like northern blotting, microarrays, RT-PCR, or using locked nucleic acid (LNA) for in-situ hybridization are either laborious, semi-quantitative, or expensive. In this research we try to address this issue by developing a fast, specific, and inexpensive …


Computational Studies Of Paradifluorobenzene Cations And Hydrogen Cyanide Molecule, John C. Rowe Iv Jan 2016

Computational Studies Of Paradifluorobenzene Cations And Hydrogen Cyanide Molecule, John C. Rowe Iv

Honors Theses

Polycyclic aromatic hydrocarbons (PAHs) are hypothesized to comprise a significant portion of interstellar carbon identified from the Diffuse Interstellar Bands (DIBs). Gas phase cation-molecule reactions between compounds that previously existed as weakly bound species provides the best explanation for the emergence of PAHs in the interstellar medium (ISM). In this work, we use computational methods to characterize one of these weakly-bound systems. We discovered that intramolecular charge distribution (calculated using the Natural Population Analysis) dictate the complexes formed between a paradifluorobenzene cation and either one or two HCN molecules. Additionally, the relative stabilities of the complexes and the binding energies …


Characterization Of Catecholamine Receptors And Transporters In Murine Macrophages, Elizabeth Gonye Jan 2016

Characterization Of Catecholamine Receptors And Transporters In Murine Macrophages, Elizabeth Gonye

Honors Theses

Macrophages are a critical part of the immune response. When circulating monocytes move into tissues they differentiate int macrophages to mount the first line of defense against pathogens.


Calcium (Ii) Catalyzed Nitrone Additions, Elizabeth A. Congdon Jan 2016

Calcium (Ii) Catalyzed Nitrone Additions, Elizabeth A. Congdon

Honors Theses

Calcium(II) complexes have be shown to be successful catalysts for nitrone reactions. The addition of n-­‐methyl and n-­‐phenyl nitrones to donor-­‐acceptor cyclopropanes was achieved with calcium triflate (Ca(OTf). Differentially substituted tetrahydro-­‐1,2-­‐oxazines were synthesized in good to excellent yields. Calcium triflate was also found to catalyze the addition of silyl enol ethers to n-­‐phenyl nitrones along the Mukaiyama-­‐Mannich addition pathway. B-­‐amino carbonyls were synthesized from a variety of substituted nitrones. Bulky and cyclic silyl enol ethers were also found to be reactive, the products of which were isolated in good to excellent yields.


Impact Of Vector Range Expansion On Pathogen Transmission Dynamics Of Lyme Disease In Southwestern Virginia, Bishan Bhattarai Jan 2016

Impact Of Vector Range Expansion On Pathogen Transmission Dynamics Of Lyme Disease In Southwestern Virginia, Bishan Bhattarai

Honors Theses

Blacklegged ticks, Ixodes scapularis is the primary vector of Lyme disease in eastern United States. Borrelia Burgdorfei, the etiological agent of Lyme disease is transferred by ticks of Ixodes species. In recent years, its congener, Ixodes affinis has been expanding its range northwards from its southern population. We were interested in studying how the introduction of this new vector affected the interaction between the pathogen genotype and the host. We hypothesized that differential host use by I. affinis and I. scapularis would partly explain observed differences in B. burgdorferi infection prevalence and genotypic structure in southeastern Virginia. The result …


Isolation Of Microbial Nrps And Pks Gene Clusters For Natural Product Isolation, Danielle N. O'Hara Jan 2015

Isolation Of Microbial Nrps And Pks Gene Clusters For Natural Product Isolation, Danielle N. O'Hara

Honors Theses

Greater than 99% of microbes living in the environment are uncultivable due to their complex nutrient and temperature requirements for growth. These microorganisms present a potential source of natural products that could be developed for biotechnological and pharmaceutical uses. Microorganisms with phosphopantetheinyl transferase (PPTase) activity are of high interest due to the role PPTase plays in activating non-ribosomal peptide synthetase (NRPS) and polyketide synthase (PKS) gene clusters. These gene clusters produce multi-enzymatic, multi-domain megasynthases that produce complex natural products utilized by the host organism for selective advantages. This study isolated genomic DNA from soil samples collected from the University of …


An Nmr-Guided Approach To The Isolation Of Secondary Metabolites From Nrps And Pks Gene Clusters, Connor Craig Jan 2015

An Nmr-Guided Approach To The Isolation Of Secondary Metabolites From Nrps And Pks Gene Clusters, Connor Craig

Honors Theses

Secondary metabolites continue to offer a promising source of novel chemical entities with therapeutic bioactivities. Our research aims to isolate secondary metabolites produced by non-ribosomal peptide synthetase (NRPS) and polyketide synthase (PKS) constructs. A metagenomic library was created from the marine bacterium Pseudoalteromonas sp., which was isolated from the Chesapeake Bay sponge Halichondria bowerbanki. Using a functional screen for PPTase activity we were able to identify colonies that contained NRPS and PKS gene clusters. Cultures of this microbe have been produced and analyzed using a combination of chromatography and 1H, 13C, HMBC, HSQC, COSY, AND NOESY NMR spectra. …


Development Of A Genetic Over-Expression System For The Freshwater Sponge Ephydatia Muelleri, Joe Walsh Jan 2015

Development Of A Genetic Over-Expression System For The Freshwater Sponge Ephydatia Muelleri, Joe Walsh

Honors Theses

The aim of this work is to develop an over-expression system for Ephydatia muelleri. Preliminary work by Klaske Schippers (Schippers, 2013) showed sponges were induced to transcribe reporter genes driven by the widely used cytomegalovirus promoter (CMV). Building off Schippers work, newly identified native Ephydatia promoters were identified from the genome and verified to drive expression ofreporter genes. Validated over-expression vectors and transfection technology will allow researchers around the world who are working with this organism to ask questions about cell specification, gene regulation and animal development.


The Use Of A Small Molecule To Improve The Thermostability Of Dna Junctions, Arik Shams May 2014

The Use Of A Small Molecule To Improve The Thermostability Of Dna Junctions, Arik Shams

Honors Theses

The short-term goal of this research project is to employ small molecules as a means to stabilize four-way DNA junctions (4WJs) composed of natural DNA and chimeric nucleic acids. The long-term goal of the project is utilizing the 4WJs as extracellular therapeutic inhibitors of DNA binding proteins [i.e. Histones and High Mobility Group Protein B (HMGB1b)]. A number of studies have shown that classical intracellular DNA-binding proteins have a variety of deleterious side-effects when present in the extracellular milieu. In order to develop a successful 4WJ therapeutic, we are focused on using modified nucleic acids to enhance the stability of …


Formyl Group Activation Of Bromopyrrole Suzuki Cross-Coupling: Application To A Formal Synthesis Of Lamellarin G Trimethyl Ether, Andrew Harrison Jan 2014

Formyl Group Activation Of Bromopyrrole Suzuki Cross-Coupling: Application To A Formal Synthesis Of Lamellarin G Trimethyl Ether, Andrew Harrison

Honors Theses

Many biologically interesting compounds have been isolated from marine natural products, many of which contain characteristic pyrroles. Compounds such as polycitones, storniamides, ningalins, and lamellarins have been of particular interest for synthesis due to their vast pharmaceutical potential including the ability to fight tumors as well as induce cytolysis of drug resistant cancer cell lines. Previous studies on the synthesis of Lamellarin G trimethyl ether by the Gupton Group have relied upon vinylogous amide derivatives as building blocks.2 A new pathway utilizing a formylated pyrrole ring provides an interesting method for the synthesis of Lamellarin G trimethyl ether. Regioselective Suzuki …


A Conservative Isoleucine To Leucine Mutation Of Klentaq1 Dna Polymerase 1 Induces Conformational Change For Cold-Sensitive Phenotype, Emma Caroline Materne Jan 2014

A Conservative Isoleucine To Leucine Mutation Of Klentaq1 Dna Polymerase 1 Induces Conformational Change For Cold-Sensitive Phenotype, Emma Caroline Materne

Honors Theses

Polymerase Chain Reaction (PCR) typically employs the Taq or Klentaq1 DNA polymerase from Thermus aquaticus to elongate short sequences of DNA during DNA amplification. Both Taq and Klentaq1 retain activity at room temperature. During assembly of PCR at room temperature, the activity of Taq and Klentaq1 can result in spurious products due to elongation of primers bound to non-target sequences. A mutation of isoleucine to leucine at position 707 of Klentaq1 results in slowing of the enzyme at room temperature without compromising the fidelity of the enzyme. To understand how a mutation over 20Å from the active site can affect …


One-Pot Heteroconjugate Addition-Diels-Alder Reactions And Acetate-Catalyzed Aldol Reactions Of Α-Silyl Nitriles, Carly Mueller Jan 2014

One-Pot Heteroconjugate Addition-Diels-Alder Reactions And Acetate-Catalyzed Aldol Reactions Of Α-Silyl Nitriles, Carly Mueller

Honors Theses

  1. A one-pot three-step Diels–Alder reaction sequence of ethyl propiolate and thiols can be performed to produce high yields of complex bicyclic products. A KOt-Bu-catalyzed thioconjugate addition of thiols to enoates, oxidation of the generated thioenoate by mCPBA, and Li-catalyzed Diels–Alder addition of cyclopentadiene occur in situ, without any purification of intermediates.
  2. Stereoselectivity of the Diels–Alder product was examined by utilizing a chiral sulfone substrate. It was determined that these substrates were unable to provide significant stereochemical control.
  3. Silylation of 3-phenylpropionitrile is achieved at the α-position with trimethylsilyl trifluoromethanesulfonate and trialkylamine base. Catalyzed by tetrabutylammonium acetate (2.5 mol%), …