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Characterization Of Dap2 (Defense-­‐Associated Aspartic Protease-­‐2) In Arabidopsis Thaliana And Determining Its Role In Plant Defense Responses, Kemardo Kitaro Henry 2013 Syracuse University

Characterization Of Dap2 (Defense-­‐Associated Aspartic Protease-­‐2) In Arabidopsis Thaliana And Determining Its Role In Plant Defense Responses, Kemardo Kitaro Henry

Renée Crown University Honors Thesis Projects - All

Plants defend themselves from invading pathogens by coordinating activity of several plant defense-­‐associated genes. Defense-­‐Associated Aspartic Protease-­‐1 (DAP1) gene of Arabidopsis encodes for an atypical aspartic protease with a putative proteolytic activity. The DAP1 is a negative regulator of plant immunity and the transgenic plants ectopically expressing this genes support pathogen growth and pathogenicity. The Arabidopsis genome has another putative protese that has ~75% homology to DAP1 present in close proximity and therefore was named DAP2. Here, I describe the role of the DAP2 gene in plant defense responses. Two independent knockout dap2 mutants are found to be more susceptible …


Vitamin B12-Based Bioconjugate Probes For In Vitro And In Vivo Imaging, Anna Kahkoska 2013 Syracuse University

Vitamin B12-Based Bioconjugate Probes For In Vitro And In Vivo Imaging, Anna Kahkoska

Renée Crown University Honors Thesis Projects - All

Cancer is the second leading cause of death in the United States. This year, an estimated 577,190 Americans will die as a result of this family of diseases. Finding cancer at its most treatable stage gives patients the greatest chance of recovery; novel imaging agents that target primary and metastasized tumors offer hope for improved prognoses in the future. Based on the hypothesis that vitamin B12 (B12) and its association with specific transport proteins could offer selective access to cancer cell lines, a series of B12-based imaging agents were synthesized, characterized, and assayed for both in vitro and in vivo …


Investigation Of Ghrelin Acylation By Ghrelin O-Acyltransferase, Edward P. Prybolsky 2013 Syracuse University

Investigation Of Ghrelin Acylation By Ghrelin O-Acyltransferase, Edward P. Prybolsky

Renée Crown University Honors Thesis Projects - All

Ghrelin is a peptide hormone involved in hunger signaling and other physiological processes. To become active, ghrelin first must be acylated by ghrelin O-acyltransferase (GOAT). This enzyme carries out a post-translational modification that attaches an octanoyl group to the side chain of the serine 3 (S3) residue of ghrelin. With ghrelin linked to hunger signaling, memory, and other physiological processes, GOAT has been identified as a potential drug target. However, inhibitor design is difficult because not much is known regarding the active site structure and catalytic mechanism of GOAT. This study reports the design of a novel fluorescence-based assay that …


Development Of Protein Farnesyltransferase Variants With Altered Substrate Selectivity, Susan Zhang 2013 Syracuse University

Development Of Protein Farnesyltransferase Variants With Altered Substrate Selectivity, Susan Zhang

Renée Crown University Honors Thesis Projects - All

Post-translational modifications play an essential role in regulating protein structure and function. Enzymes catalyzing these modifications must often recognize and modify multiple substrate proteins from among a plethora of non-substrates with similar structures and amino acid sequences. For example, protein farnesyltransferase (FTase) catalyzes the addition of an isoprenoid group to a cysteine near the C-terminus of a substrate protein and is proposed to modify a pool of substrates numbering more than one hundred. We seek to understand the interactions in the FTase active site that engender substrate selectivity. By mutating two residues within FTase, we have developed FTase variants with …


Design Of Metalloproteins For Catalysis And Bioimaging, Krystyna Zhezherya 2013 Syracuse University

Design Of Metalloproteins For Catalysis And Bioimaging, Krystyna Zhezherya

Renée Crown University Honors Thesis Projects - All

Abstract

Metalloenzymes constitute a large subclass of proteins with diverse functions including metal-sensing, signal transduction pathways, and metal transport. In this report, I aim to study the intricate relationship between structure and function as it relates to metalloproteins in the fields of catalysis and bioimaging. For catalysis, I used existing platforms in addition to de novo design to study small scaffolds with varying secondary structure, and their function in catalyzing the hydrolysis of a p-nitrophenol ester. For bioimaging, I used an existing enzyme known as human carbonic anhydrase I, hCA, to develop a bioimaging agent that can be fused to …


Structural And Functional Studies On The Role Of The Retinoblastoma Binding Protein Five (Rbbp5) In The Histone Methyltransferase Activity Of The Mixed Lineage Leukemia (Mll1) Core Complex, Melody Sanders 2013 Syracuse University

Structural And Functional Studies On The Role Of The Retinoblastoma Binding Protein Five (Rbbp5) In The Histone Methyltransferase Activity Of The Mixed Lineage Leukemia (Mll1) Core Complex, Melody Sanders

Biology - Theses

Cells employ elaborate mechanisms to introduce structural and chemical variation into chromatin in the form of covalent post-translational modifications. Covalent modifications of histones contribute to the dynamic states of chromatin structure that govern nearly all of DNA-coupled processes such as transcription, replication, and repair. The mechanism by which covalent modifications of histones contribute to these activities remains a central question to understanding genome regulation and its dysfunction in human disease. Although there is extensive literature documenting the identification of many of the enzymes that place histone modifications, far less is known about how the enzymes are targeted and how their …


Manipulating Aktivated Metabolism Via Mtorc1, Ivan von Hack Prestinary 2013 University of Central Florida

Manipulating Aktivated Metabolism Via Mtorc1, Ivan Von Hack Prestinary

HIM 1990-2015

Although poorly understood, normal cells and cancerous cells of the same type exhibit different patterns of nutrient consumption, processing and utility of metabolic substrates. Differences in substrate uptake, preference, and alternately emphasized metabolic pathways offer opportunities for selective targeting of cancer versus stroma. This may be accomplished by using a sequential approach of nutrient deprivation and pharmaceutical perturbation of metabolic pathways to inhibit cellular proliferation. The purpose of this study was to investigate the effects of restricting glucose and glutamine concentrations, in vitro, to levels that resemble a potential human fasting state. The mammalian target of rapamycin (mTOR), a mediator …


Effects Of Mtn Enzyme Deficiency On E. Coli O157:H7 Growth And Virulence, Reece Knippel 2013 Boise State University

Effects Of Mtn Enzyme Deficiency On E. Coli O157:H7 Growth And Virulence, Reece Knippel

Boise State University Theses and Dissertations

The bacterial enzyme Methylthioadenosine/S-adenosylhomocysteine (MTA/SAH) nucleosidase (MTN) is involved in methionine and adenine salvage from the by-products of S-adenosylmethionine (SAM, AdoMet) dependent reactions. MTN plays a critical role in alleviating product inhibition of SAM dependent reactions, including methylation reactions and the synthesis of polyamines, vitamins, and autinducer signals. Due to its absence from humans and its importance to bacterial metabolism, MTN is a potential target for the development of novel antibiotics to treat microbial infections. In this study, a MTN gene knock-out (MTN KO) strain of the pathogen E. coli O157:H7 was created to study the impact of MTN activity …


The Effects Of Glutathione And Its Derivatives On The Survival Of Mycobacterium Bovis-Bcg Vegetative And Persistent Organisms, Neil Patel 2013 Honors College, Pace Univesity

The Effects Of Glutathione And Its Derivatives On The Survival Of Mycobacterium Bovis-Bcg Vegetative And Persistent Organisms, Neil Patel

Honors College Theses

Mycobacterium tuberculosis is responsible for nearly 2 million deaths yearly. Upon inhalation,mycobacteria are engulfed by alveolar macrophages. These cells produce reactive oxygen and nitrogen intermediates (ROI’s and RNI’s), which normally kill pathogens, but are ineffective against invading mycobacteria. What ensues, is the formation of a tubercle to sequester the infected macrophages, and the initiation of a latent tuberculosis infection, in which the mycobacteria enter a state of non-replicative persistence (NRP). Glutathione (GSH), a host tripeptide thiol-based detoxification molecule, protects host cells from ROI/RNI toxicity.Recently, it has been demonstrated that GSH is toxic to in vitro and early infection mycobacteria, but …


Amphetamine Elicits Opposing Actions On Readily Releasable And Reserve Pools For Dopamine, Dan P. Covey, Steven A. Juliano, Paul A. Garris 2013 Illinois State University

Amphetamine Elicits Opposing Actions On Readily Releasable And Reserve Pools For Dopamine, Dan P. Covey, Steven A. Juliano, Paul A. Garris

Faculty Publications – Biological Sciences

Amphetamine, a highly addictive drug with therapeutic efficacy, exerts paradoxical effects on the fundamental communication modes employed by dopamine neurons in modulating behavior. While amphetamine elevates tonic dopamine signaling by depleting vesicular stores and driving non-exocytotic release through reverse transport, this psychostimulant also activates phasic dopamine signaling by up-regulating vesicular dopamine release. We hypothesized that these seemingly incongruent effects arise from amphetamine depleting the reserve pool and enhancing the readily releasable pool. This novel hypothesis was tested using in vivo voltammetry and stimulus trains of varying duration to access different vesicular stores. We show that amphetamine actions are stimulus dependent …


Mechanisms Underlying The Heterogeneous Sensitivities Of Cancer Cells To Proteasome Inhibitors, Matthew C. White 2013 The University of Texas Graduate School of Biomedical Sciences at Houston

Mechanisms Underlying The Heterogeneous Sensitivities Of Cancer Cells To Proteasome Inhibitors, Matthew C. White

Dissertations and Theses (Open Access)

The mechanisms underlying cellular response to proteasome inhibitors have not been clearly elucidated in solid tumor models. Evidence suggests that the ability of a cell to manage the amount of proteotoxic stress following proteasome inhibition dictates survival. In this study using the FDA-approved proteasome inhibitor bortezomib (Velcade®) in solid tumor cells, we demonstrated that perhaps the most critical response to proteasome inhibition is repression of global protein synthesis by phosphorylation of the eukaryotic initiation factor 2-α subunit (eIF2α). In a panel of 10 distinct human pancreatic cancer cells, we showed marked heterogeneity in the ability of cancer cells to induce …


Molecular Diagnosis Of Metabolic Fast Growth Related Diseases In Broiler, Adnan Ali Khalaf Al-Rubaye 2013 University of Arkansas, Fayetteville

Molecular Diagnosis Of Metabolic Fast Growth Related Diseases In Broiler, Adnan Ali Khalaf Al-Rubaye

Graduate Theses and Dissertations

Pulmonary Hypertension Syndrome (PHS) and lameness are important metabolic diseases that affect rapidly growing broilers. The research reported in the first section of this dissertation focused on developing qPCR assays to identify differences in the expression levels of four candidate genes possibly associated with PHS: angiotensin II type 1 receptor (AGTR1): urotensin receptor 2D (UTS2D); serotonin receptor/transporter type 2Bn (HTR2B); and angiotensinogen cleaving enzyme (ACE). Expression levels of these candidate genes were examined in four different tissues. We established ribosomal protein S14 (RPS14) and RNA polymerase subunit 2B (RP2B) as suitable reference genes because they showed the most consistent deltaCt …


Dynamics And Model Of The Pore-Forming Protein Lysenin, Eric Krueger 2013 University of Arkansas, Fayetteville

Dynamics And Model Of The Pore-Forming Protein Lysenin, Eric Krueger

Graduate Theses and Dissertations

Membrane transporters are a class of membrane proteins that function to provide a pathway across a cell membrane for the movement of ions and biomolecules. Investigations into the regulatory mechanism of these systems are hindered by their extensive preparation requirements compounded by their fragility and instability. However, lysenin, a pore-forming protein extracted from the earthworm Eisenia foetida, provided a unique opportunity to study a protein which is stable in both a soluble and membrane phase. Lysenin channels possess several important properties characteristic of ion channels without the inherent difficulties that plague investigations with biologically vital membrane transporters like voltage-gated ion …


Interaction Of Bacillus Anthracis Exosporium Protein Bcla With Complement Factor H And Spore Persistence In The Lung, Sarah A. Jenkins 2013 The University of Teas Graduate School of Biomedical Sciences at Houston

Interaction Of Bacillus Anthracis Exosporium Protein Bcla With Complement Factor H And Spore Persistence In The Lung, Sarah A. Jenkins

Dissertations and Theses (Open Access)

Anthrax outbreaks in the United States and Europe and its potential use as a bioweapon have made Bacillus anthracis an interest of study. Anthrax infections are caused by the entry of B. anthracis spores into the host via the respiratory system, the gastrointestinal tract, cuts or wounds in the skin, and injection. Among these four forms, inhalational anthrax has the highest lethality rate and persistence of spores in the lungs of animals following pulmonary exposure has been noted for decades. However, details or mechanisms of spore persistence were not known. In this study, we investigated spore persistence in a mouse …


The Geometry And Sensitivity Of Ion-Beam Sculpted Nanopores For Single Molecule Dna Analysis, Ryan Connor Rollings 2013 University of Arkansas, Fayetteville

The Geometry And Sensitivity Of Ion-Beam Sculpted Nanopores For Single Molecule Dna Analysis, Ryan Connor Rollings

Graduate Theses and Dissertations

In this dissertation, the relationship between the geometry of ion-beam sculpted solid-state nanopores and their ability to analyze single DNA molecules using resistive pulse sensing is investigated. To accomplish this, the three dimensional shape of the nanopore is determined using energy filtered and tomographic transmission electron microscopy. It is shown that this information enables the prediction of the ionic current passing through a voltage biased nanopore and improves the prediction of the magnitude of current drop signals when the nanopore interacts with single DNA molecules. The dimensional stability of nanopores in solution is monitored using this information and is improved …


Characterizing The Role Of Cortactin In Actin Pedestal Assembly By Enterohemorrhagic Escherichia Coli (Ehec), Sarah E. Grout 2013 University of Connecticut - Storrs

Characterizing The Role Of Cortactin In Actin Pedestal Assembly By Enterohemorrhagic Escherichia Coli (Ehec), Sarah E. Grout

Honors Scholar Theses

Enterohemorrhagic Escherichia coli (EHEC) is a major foodborne cause of bloody diarrhea and renal failure. During colonization of the intestine, EHEC injects the transmembrane receptor protein Tir and the cytoplasmic effector protein EspFU into host cells to reorganize the actin cytoskeleton into adhesion “pedestals.” EspFU has been shown to bind and activate the actin nucleation factor N-WASP to drive actin polymerization into pedestals. However, EspFU can still assemble pedestals in cells lacking N-WASP, suggesting that this effector protein is able to also trigger N-WASP-independent pathways of actin polymerization during infection. Cortactin is an atypical nucleation factor that localizes to pedestals, …


A Cell Simulator Platform: The Cell Collective, Tomáš Helikar, B. Kowal, J. A. Rogers 2013 University of Nebraska-Lincoln

A Cell Simulator Platform: The Cell Collective, Tomáš Helikar, B. Kowal, J. A. Rogers

Department of Biochemistry: Faculty Publications

Diseases are often a result of multiple malfunctions in complex, nonlinear biological/biochemical networks. As such, these processes are far more complicated to understand because they tend to give rise to functions that are emergent in nature, i.e., higher-level (mal)functions that are more than the sum of their parts. Systems biology provides a new approach to understanding biological systems and diseases from a holistic perspective.


Spectroscopic Investigation Of The Interaction Of Fadh In Dna Photolyase With Uv-Damaged Dna, Kyle Luke Williams 2013 Montclair State University

Spectroscopic Investigation Of The Interaction Of Fadh In Dna Photolyase With Uv-Damaged Dna, Kyle Luke Williams

Theses, Dissertations and Culminating Projects

Skin cancer is the most prevalent malignancy found in humans, with the diagnosis rate continuing to steadily increase. The primary cause of this disease is overexposure to harmful ultraviolet (UV) radiation from sunlight, which can induce damage to the nitrogenous bases in DNA via dimerization. The most prevalent UV-induced photoproducts in DNA are cyclobutane pyrimidine dimers (CPDs), most commonly between adjacent thymidines.

Organisms have implemented methods by which to repair these CPDs, the primary of which are nucleotide excision repair (NER) and photoreactivation by photolyases. Photolyases are blue-light activated flavoproteins that are more efficient at recognizing and repairing CPDs than …


Characterization Of Aebp2 Mutant Mice, Arundhati Bakshi 2013 Louisiana State University

Characterization Of Aebp2 Mutant Mice, Arundhati Bakshi

Honors Capstones

No abstract provided.


Genome-Wide Profiling Unveils Criticial Functions Of P53 In Human Embryonic Stem Cells, Kadir C. Akdemir 2013 The University of Texas Graduate School of Biomedical Sciences at Houston

Genome-Wide Profiling Unveils Criticial Functions Of P53 In Human Embryonic Stem Cells, Kadir C. Akdemir

Dissertations and Theses (Open Access)

Embryonic stem cells (ESCs) possess two unique characteristics: infinite self-renewal and the potential to differentiate into almost every cell type (pluripotency). Recently, global expression analyses of metastatic breast and lung cancers revealed an ESC-like expression program or signature, specifically for cancers that are mutant for p53 function. Surprisingly, although p53 is widely recognized as the guardian of the genome, due to its roles in cell cycle checkpoints, programmed cell death or senescence, relatively little is known about p53 functions in normal cells, especially in ESCs. My hypothesis is that p53 has specific transcription regulatory functions in human ESCs (hESCs) that …


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