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Articles 9661 - 9690 of 15565
Full-Text Articles in Entire DC Network
Photochemical Elimination Reactions That Proceed Via Triplet Excited State Electrocyclic Ring Closures, Himali Devika Jayasekara
Photochemical Elimination Reactions That Proceed Via Triplet Excited State Electrocyclic Ring Closures, Himali Devika Jayasekara
Master's Theses (2009 -)
Cage compounds have become an important tool for the study of biological processes. The research focuses on new cage compounds that can unmask functional groups present in biologically important molecules such as proteins, peptides, and oligonucleosides. The project focuses on certain functional groups that are often difficult to release photochemically. These are the thiolate groups present in cysteine residues of proteins and peptides. Thiolate groups are fairly basic leaving groups, unlike the more labile groups such as the carboxylates that are present in proteins and peptides, or the phosphate groups present in nucleosides. The research takes advantage of the ability …
Volume 06, Kristen Gains, Amanda Willis, Holly Backer, Monika Gutierrez, Cara O'Neal, Sara Nelson, Sasha Silberman, Jessica Beardsley, Jamie Gardner, Edward Peeples, Matthew Sakach, Tess Lione, Emily Wilkins, Kelsey Holt, Jessica Page, Jamie Clift, Charles Vancampen, Gilbert Hall, Jenny Nehrt, Kasey Dye, Amanda Tharp, Jamie Leeuwrik, Ashley Mcgee, Emily Poulin, Michael Kropf, Nick Pastore, Austin Polasky, Morgan Glasco, Laura L. Kahler, Melinda L. Edwards, Brandon C. Smith, Mariah Asbell, Cabell Edmunds, Amelia D. Perry, Alyssa Hayes, Irina Boothe, Perry Bason, James Early
Volume 06, Kristen Gains, Amanda Willis, Holly Backer, Monika Gutierrez, Cara O'Neal, Sara Nelson, Sasha Silberman, Jessica Beardsley, Jamie Gardner, Edward Peeples, Matthew Sakach, Tess Lione, Emily Wilkins, Kelsey Holt, Jessica Page, Jamie Clift, Charles Vancampen, Gilbert Hall, Jenny Nehrt, Kasey Dye, Amanda Tharp, Jamie Leeuwrik, Ashley Mcgee, Emily Poulin, Michael Kropf, Nick Pastore, Austin Polasky, Morgan Glasco, Laura L. Kahler, Melinda L. Edwards, Brandon C. Smith, Mariah Asbell, Cabell Edmunds, Amelia D. Perry, Alyssa Hayes, Irina Boothe, Perry Bason, James Early
Incite: The Journal of Undergraduate Scholarship
Introduction from Dean Dr. Charles Ross
Caught Between Folklore and the Cold War: The Americanization of Russian Children's Literature by Kristen Gains
Graphic Design by Amanda Willis
Graphic Design by Holly Backer
Prejudices in Swiss German Accents by Monika Gutierrez
Photography by Cara O'Neal
Photography by Sara Nelson
Edmund Tyrone's Long Journey through Night by Sasha Silberman
Photography by Jessica Beardsley
Photography by Jamie Gardner and Edward Peeples
The Republican Razor: The Guillotine as a Symbol of Equality by Jamie Clift
Graphic Design by Matthew Sakach
Genocide: The Lasting Effects of Gender Stratification in Rwanda By Tess Lione and Emily …
Controlling Competing Phases Of Magnetic Intermetallics And Bioceramics, Jacob D. Mcalpin
Controlling Competing Phases Of Magnetic Intermetallics And Bioceramics, Jacob D. Mcalpin
Honors Capstones
No abstract provided.
Serial Transfer Can Aid The Evolution Of Autocatalytic Sets, Wim Hordijk, Nilesh Vaidya, Niles Lehman
Serial Transfer Can Aid The Evolution Of Autocatalytic Sets, Wim Hordijk, Nilesh Vaidya, Niles Lehman
Chemistry Faculty Publications and Presentations
Background: The concept of an autocatalytic set of molecules has been posited theoretically and demonstrated empirically with catalytic RNA molecules. For this concept to have significance in a realistic origins-of-life scenario, it will be important to demonstrate the evolvability of such sets. Here, we employ a Gillespie algorithm to improve and expand on previous simulations of an empirical system of self-assembling RNA fragments that has the ability to spontaneously form autocatalytic networks. We specifically examine the role of serial transfer as a plausible means to allow time-dependent changes in set composition, and compare the results to equilibrium, or "batch" scenarios. …
Synthesis And Characterization Of A Tetra-Ruthenated Naphthylbiliverdin, Ashley M. Berding
Synthesis And Characterization Of A Tetra-Ruthenated Naphthylbiliverdin, Ashley M. Berding
Honors Theses
A new naphtylbiliverdin compound has been synthesized which offers intense absorption with the photodynamic therapy window (600 nm – 850 nm). The compound has been characterized by proton NMR, high resolution electrospray mass spectrometry, elemental analysis, and UV/vis spectroscopy. Coordination of four ruthenium(II) polypyridyl complexes was accomplished by standard procedures. The new tetra-ruthenated naphthylbiliverdin was characterized by elemental analysis. Cyclic voltammetry measurements reveal that all four ruthenium moieties are coordinated to the pyridyl groups of the biliverdin compound. The intense metal to ligand charge transfer (MLCT) bands of the peripheral ruthenium groups overshadow the absorption due to the biliverdin compound; …
Prepubertal Exposure To Arsenic(Iii) Suppresses Circulating Insulin-Like Growth Factor-1 (Igf-1) Delaying Sexual Maturation In Female Rats, Michael P. Reilly, James C. Saca, Alina Hamilton, Rene F. Solano, Jesse R. Rivera, Wendy Innis-Whitehouse, Jason Parsons, Robert K. Dearth
Prepubertal Exposure To Arsenic(Iii) Suppresses Circulating Insulin-Like Growth Factor-1 (Igf-1) Delaying Sexual Maturation In Female Rats, Michael P. Reilly, James C. Saca, Alina Hamilton, Rene F. Solano, Jesse R. Rivera, Wendy Innis-Whitehouse, Jason Parsons, Robert K. Dearth
School of Integrative Biological & Chemical Sciences (Formerly Dept. of Biology)
Arsenic (As) is a prevalent environmental toxin readily accessible for human consumption and has been identified as an endocrine disruptor. However, it is not known what impact As has on female sexual maturation. Therefore, in the present study, we investigated the effects of prepubertal exposure on mammary gland development and pubertal onset in female rats. Results showed that prepubertal exposure to 10 mg/kg of arsenite (As(III)) delayed vaginal opening (VO) and prepubertal mammary gland maturation. We determined that As accumulates in the liver, disrupts hepatocyte function and suppresses serum levels of the puberty related hormone insulin-like growth factor 1 (IGF-1) …
Investigation Of Porphyrins As Potential G-Quadruplex Stabilizing Ligands And Fluorescent Probes, Navin C. Sabharwal , '14
Investigation Of Porphyrins As Potential G-Quadruplex Stabilizing Ligands And Fluorescent Probes, Navin C. Sabharwal , '14
Senior Theses, Projects, and Awards
G-quadruplex (GQ) DNA is a non-canonical DNA structure thought to form throughout the human genome. Because the stabilization of quadruplexes formed in the telomeres and in the promoters of oncogenes may prevent the spread of cancer cells, there is great interest in developing and studying molecules that may bind to and stabilize these unique DNA structures. This thesis investigates the interactions between porphyrins and GQ DNA with the goal of determining how strongly and selectively porphyrins can stabilize the quadruplex structure. There is also great interest in developing luminescent probes for GQ structures to allow for their detection in vivo. …
Synthesis And Evaluation Of 3-Aryl-4(1h)-Quinolones As Orally Active Antimalarials: Overcoming Challenges In Solubility, Metabolism, And Bioavailability, Andrii Monastyrskyi
Synthesis And Evaluation Of 3-Aryl-4(1h)-Quinolones As Orally Active Antimalarials: Overcoming Challenges In Solubility, Metabolism, And Bioavailability, Andrii Monastyrskyi
USF Tampa Graduate Theses and Dissertations
Infectious diseases are the second leading cause of deaths in the world with malaria being responsible for approximately the same amount of deaths as cancer in 2012. Despite the success in malaria prevention and control measures decreasing the disease mortality rate by 45% since 2000, the development of single-dose therapeutics with radical cure potential is required to completely eradicate this deadly disease. Targeting multiple stages of the malaria parasite is becoming a primary requirement for new candidates in antimalarial drug discovery and development. Recently, 4(1H)-pyridone, 4(1H)-quinolone, 1,2,3,4-tetrahydroacridone, and phenoxyethoxy-4(1H)-quinolone chemotypes have been shown to be antimalarials with blood stage activity, …
Insights Into [Aacute]-Aa Peptides And Ã-Aa Peptides As Broad Spectrum Antimicrobial Peptidomimetics And As Anti-Biofilm Agents, Shruti Padhee
Insights Into [Aacute]-Aa Peptides And Ã-Aa Peptides As Broad Spectrum Antimicrobial Peptidomimetics And As Anti-Biofilm Agents, Shruti Padhee
USF Tampa Graduate Theses and Dissertations
The emergent resistance of bacteria against the conventional antibiotics has motivated the search for novel antimicrobial agents. Nature abounds with a number of antimicrobial peptides that are a part of our innate immune system and protect us against a variety of pathogenic bacteria. While they are broad-spectrum in their activity and show less drug-resistance induction, their intrinsic metabolic stability limits their potential therapeutic applications. Herein we describe the development of novel broad-spectrum bioactive antimicrobial peptidomimetics AA-peptides. AApeptides were designed based on chiral PNA backbone. Substitution of nucleobases yields AApeptides that are resistant to proteolysis and capable of mimicking peptides. Two …
Isolation Of Antibacterial Compounds From Artemisia Californica, Jae Eun Min
Isolation Of Antibacterial Compounds From Artemisia Californica, Jae Eun Min
Seaver College Research And Scholarly Achievement Symposium
The Chumash Native Americans of Southern California have well-documented traditions of using plants for medicinal purposes. If a specific plant has traditionally been used by Chumash for the treatment of cuts, wounds and infections, it may contain chemicals with anti-bacterial properties. One plant that fits these criteria is Artemisia californica (coastal sage). Because of the widespread use of antibiotics over the past sixty years bacteria are evolving greater resistance to known antibiotics, but unfortunately the rate of antibiotic discovery has diminished during the past twenty years. Therefore, novel and effective antibiotics are essential for the continued treatment of bacterial infections. …
Mapping Posttranscriptional Regulation Of The Human Glycome Uncovers Microrna Defining The Glycocode, Praveen Agrawal, Tomasz Kurcon, Kanoelani T. Pilobello, John F. Rakus, Sujeethraj Koppolu, Zhongyin Liu, Bianca S. Batista, William S. Eng, Ku-Lung Hsu, Yaxuan Liang, Lara K. Maha
Mapping Posttranscriptional Regulation Of The Human Glycome Uncovers Microrna Defining The Glycocode, Praveen Agrawal, Tomasz Kurcon, Kanoelani T. Pilobello, John F. Rakus, Sujeethraj Koppolu, Zhongyin Liu, Bianca S. Batista, William S. Eng, Ku-Lung Hsu, Yaxuan Liang, Lara K. Maha
Chemistry Faculty Research
Cell surface glycans form a critical interface with the biological milieu, informing diverse processes from the inflammatory cascade to cellular migration. Assembly of discrete carbohydrate structures requires the coordinated activity of a repertoire of proteins, including glycosyltransferases and glycosidases. Little is known about the regulatory networks controlling this complex biosynthetic process. Recent work points to a role for microRNA (miRNA) in the regulation of specific glycan biosynthetic enzymes. Herein we take a unique systems-based approach to identify connections between miRNA and the glycome. By using our glycomic analysis platform, lectin microarrays, we identify glycosylation signatures in the NCI-60 cell panel …
Epigenetic Modification, Dehydration, And Molecular Crowding Effects On The Thermodynamics Of I-Motif Structure Formation From C-Rich Dna, Yogini P. Bhavsar-Jog, Eric Van Dornshuld, Tracy A. Brooks, Gregory S. Tschumper, Randy M. Wadkins
Epigenetic Modification, Dehydration, And Molecular Crowding Effects On The Thermodynamics Of I-Motif Structure Formation From C-Rich Dna, Yogini P. Bhavsar-Jog, Eric Van Dornshuld, Tracy A. Brooks, Gregory S. Tschumper, Randy M. Wadkins
Chemistry Faculty Research & Creative Works
DNA sequences with the potential to form secondary structures such as i-motifs (iMs) and G-quadruplexes (G4s) are abundant in the promoters of several oncogenes and, in some instances, are known to regulate gene expression. Recently, iM-forming DNA strands have also been employed as functional units in nanodevices, ranging from drug delivery systems to nanocircuitry. To understand both the mechanism of gene regulation by iMs and how to use them more efficiently in nanotechnological applications, it is essential to have a thorough knowledge of factors that govern their conformational states and stabilities. Most of the prior work to characterize the conformational …
Tcr Scanning Of Peptide/Mhc Through Complementary Matching Of Receptor And Ligand Molecular Flexibility, William F. Hawse, Soumya De, Alexander I. Greenwood, Linda K. Nicholson, Jaroslav Zajicek, Evgeni L. Kovrigin, David M. Kranz, K. Chrisopher Garcia, Brian M. Baker
Tcr Scanning Of Peptide/Mhc Through Complementary Matching Of Receptor And Ligand Molecular Flexibility, William F. Hawse, Soumya De, Alexander I. Greenwood, Linda K. Nicholson, Jaroslav Zajicek, Evgeni L. Kovrigin, David M. Kranz, K. Chrisopher Garcia, Brian M. Baker
Chemistry Faculty Research and Publications
Although conformational changes in TCRs and peptide Ags presented by MHC protein (pMHC) molecules often occur upon binding, their relationship to intrinsic flexibility and role in ligand selectivity are poorly understood. In this study, we used nuclear magnetic resonance to study TCR–pMHC binding, examining recognition of the QL9/H-2Ld complex by the 2C TCR. Although the majority of the CDR loops of the 2C TCR rigidify upon binding, the CDR3β loop remains mobile within the TCR–pMHC interface. Remarkably, the region of the QL9 peptide that interfaces with CDR3β is also mobile in the free pMHC and in the TCR–pMHC complex. …
Design, Synthesis, And Biological Evaluation Of Non-Symmetric Smal, Himabindu Anumala
Design, Synthesis, And Biological Evaluation Of Non-Symmetric Smal, Himabindu Anumala
Master's Theses and Doctoral Dissertations
Plasminogen activator inhibitor-1 (PAI-1) is a member of the serpin family of proteins, a primary inhibitor of both tissue-type and urokinase-type plasminogen activators in plasma, and is a well-established risk factor in various disease conditions. Increased levels of active PAI-1 in plasma are correlated with the development of atherosclerosis, diabetes, stroke, and other maladies. In the present study, we describe the synthesis of two new series of compounds that aim to reduce physiologically active PAI-1 levels. These molecules are related to a series of bis-arylsulfonimides and arylsulfonamides connected by short linking diamines, and to a series of hydrazine-based analogues. These …
Ultraviolet Light Emitting Diode Use In Advanced Oxidation Processes, Kelsey L. Duckworth
Ultraviolet Light Emitting Diode Use In Advanced Oxidation Processes, Kelsey L. Duckworth
Theses and Dissertations
Cleanup from a hazardous chemical release can result in large volumes of water containing hazardous materials, such as organophosphates. Unfortunately, this water cannot be treated in a municipal wastewater treatment plant without adversely affecting the performance of the plant. A known method for pretreating this water to prepare it for processing in a traditional treatment plant includes the addition of hydrogen peroxide, followed by ultraviolet (UV) light exposure to form reactive hydroxyl radicals which oxidize the chemical. Light emitting diodes (LEDs) are explored as a UV source as they are durable; compact; can be powered by low voltage, direct current …
Desorption Electrospray Ionization Mass Spectrometry Imaging: Instrumentation, Optimization And Capabilities, Manan Dhunna
Desorption Electrospray Ionization Mass Spectrometry Imaging: Instrumentation, Optimization And Capabilities, Manan Dhunna
Theses and Dissertations
Desorption Electrospray Ionization Mass spectrometry Imaging (DESI-MSI) is an area of great interest and a promising tool in the field of chemical imaging. It is a powerful, label-free technique, which can determine, map and visualize different molecular compounds on a sample surface. The amount of information acquired in a single DESI-MSI experiment is enormous compared to other techniques, as it can simultaneously detect different compounds with their spatial distribution on the surface. The experiment can be used to produce two-dimensional and three-dimensional images. Chapter 2 focuses on the design and optimization of the setup for performing DESI-MS imaging on various …
Facile Synthesis And Characterization Of A Thermally Stable Silica-Doped Alumina With Tunable Surface Area, Porosity, And Acidity, Maryam Khosravi Mardkhe
Facile Synthesis And Characterization Of A Thermally Stable Silica-Doped Alumina With Tunable Surface Area, Porosity, And Acidity, Maryam Khosravi Mardkhe
Theses and Dissertations
Mesoporous γ-Al2O3 is one of the most widely used catalyst supports for commercial catalytic applications. The performance of a catalyst strongly depends on the combination of textural, chemical and physical properties of the support. Pore size is essential since each catalytic system requires a unique pore size for optimal catalyst loading, diffusion and selectivity. In addition, high surface area and large pore volume usually result in higher catalyst loading, which increases the number of catalytic reaction sites and decreases reaction time. Therefore, determination of surface area and porosity of porous supports is critical for the successful design and optimization of …
Synergism Between Airborne Singlet Oxygen And A Trisubstituted Olefin Sulfonate For The Inactivation Of Bacteria, Rajib Choudhury, Alexander Greer
Synergism Between Airborne Singlet Oxygen And A Trisubstituted Olefin Sulfonate For The Inactivation Of Bacteria, Rajib Choudhury, Alexander Greer
Publications and Research
The reactivity of a trisubstituted alkene surfactant (8-methylnon-7-ene-1 sulfonate, 1) to airborne singlet oxygen in a solution containing E. coli was examined. Surfactant 1 was prepared by a Strecker-type reaction of 9-bromo-2-methylnon-2-ene with sodium sulfite. Submicellar concentrations of 1 were used that reacted with singlet oxygen by an “ene” reaction to yield two hydroperoxides (7-hydroperoxy-8-methylnon-8-ene-1 sulfonate and (E)-8-hydroperoxy-8-methylnon-6-ene-1 sulfonate) in a 4:1 ratio. Exchanging the H2O solution for D2O where the lifetime of solution-phase singlet oxygen increases by 20-fold led to an ∼2-fold increase in the yield of hydroperoxides pointing to surface activity …
Thermal Denaturation Of Mycobacterium Tuberculosis Protein Rv0045c Monitored By Intrinsic Tryptophan Fluorescence, Lindsey Renee Drake
Thermal Denaturation Of Mycobacterium Tuberculosis Protein Rv0045c Monitored By Intrinsic Tryptophan Fluorescence, Lindsey Renee Drake
Undergraduate Honors Thesis Collection
The aim of my project was to use intrinsic tryptophan fluorescence to monitor the denaturation pathway of a protein, specifically the Mycobacterium tuberculosis enzyme Rv0045c. The larger scientific goal and inspiration for this honors thesis was to use the amino acid residues of a protein to map it's unfolding by thermal denaturation.
Structural Insights Into The Interaction Between A Potent Anti-Inflammatory Protein, Viral Cc Chemokine Inhibitor (Vcci), And The Human Cc Chemokine, Eotaxin-1, Nai-Wei Kuo, Yong-Guang Gao, Megan Schill, Nancy Isern, Cynthia Dupureur, Patricia Liwang
Structural Insights Into The Interaction Between A Potent Anti-Inflammatory Protein, Viral Cc Chemokine Inhibitor (Vcci), And The Human Cc Chemokine, Eotaxin-1, Nai-Wei Kuo, Yong-Guang Gao, Megan Schill, Nancy Isern, Cynthia Dupureur, Patricia Liwang
Chemistry & Biochemistry Faculty Works
Chemokines play important roles in the immune system, not only recruiting leukocytes to the site of infection and inflammation but also guiding cell homing and cell development. The soluble poxvirus-encoded protein viral CC chemokine inhibitor (vCCI), a CC chemokine inhibitor, can bind to human CC chemokines tightly to impair the host immune defense. This protein has no known homologs in eukaryotes and may represent a potent method to stop inflammation. Previously, our structure of the vCCI·MIP-1β (macrophage inflammatory protein-1β) complex indicated that vCCI uses negatively charged residues in β-sheet II to interact with positively charged residues in the MIP-1β N …
Structural Insights Into The Interaction Between A Potent Anti-Inflammatory Protein, Viral Cc Chemokine Inhibitor (Vcci), And The Human Cc Chemokine, Eotaxin-1*, Nai-Wei Kuo, Yong-Guang Gao, Megan S. Schill, Nancy Isern, Cynthia M. Dupureur, Patricia J. Liwang
Structural Insights Into The Interaction Between A Potent Anti-Inflammatory Protein, Viral Cc Chemokine Inhibitor (Vcci), And The Human Cc Chemokine, Eotaxin-1*, Nai-Wei Kuo, Yong-Guang Gao, Megan S. Schill, Nancy Isern, Cynthia M. Dupureur, Patricia J. Liwang
Educator Preparation & Leadership Faculty Works
Chemokines play important roles in the immune system, not only recruiting leukocytes to the site of infection and inflammation but also guiding cell homing and cell development. The soluble poxvirus-encoded protein viral CC chemokine inhibitor (vCCI), a CC chemokine inhibitor, can bind to human CC chemokines tightly to impair the host immune defense. This protein has no known homologs in eukaryotes and may represent a potent method to stop inflammation. Previously, our structure of the vCCI·MIP-1β (macrophage inflammatory protein-1β) complex indicated that vCCI uses negatively charged residues in β-sheet II to interact with positively charged residues in the MIP-1β …
Etherification Reactions Of Propargylic Alcohols Catalyzed By A Cationic Ruthenium Allenylidene Complex, Doaa F. Alkhaleeli, Kevin J. Baum, Jordan M. Rabus, Eike B. Bauer
Etherification Reactions Of Propargylic Alcohols Catalyzed By A Cationic Ruthenium Allenylidene Complex, Doaa F. Alkhaleeli, Kevin J. Baum, Jordan M. Rabus, Eike B. Bauer
Educator Preparation & Leadership Faculty Works
The cationic ruthenium allenylidene complex RRuRax −[Ru(indenyl)L(PPh3)CCCPh2]+PF6 catalyzes the etherification of secondary and tertiary propargylic alcohols in a formal nucleophilic substitution reaction utilizing primary and secondary alcohols as the nucleophiles. At a catalyst loading of only 1.1 mol%, the corresponding propargylic ether products were obtained in 9 to 73% isolated yields (18 h reaction time at 100 °C); no further additives are required. The reaction exhibits an induction period; as shown by a control reaction, the high reaction temperature may chemically change the allenylidene complex to be employed as the catalyst but does not lead to …
Systems And Methods For Diagnosis And Monitoring Of Bacteria-Related Conditions, Sylvia Daunert, Sapna K. Deo, Patrizia Pacini, Anjali Kumari Struss, Harohalli Shashidhar, Deborah R. Auer Flomenhoft, Nilesh Raut
Systems And Methods For Diagnosis And Monitoring Of Bacteria-Related Conditions, Sylvia Daunert, Sapna K. Deo, Patrizia Pacini, Anjali Kumari Struss, Harohalli Shashidhar, Deborah R. Auer Flomenhoft, Nilesh Raut
Chemistry Faculty Patents
The presently-disclosed subject matter provides systems, methods, and kits for diagnosing and/or monitoring a bacteria-related condition of interest in a subject by providing a cell sensing system, each system containing a reporter molecule capable of detecting binding of a quorum sensing molecule and capable of generating a detectable signal.
Parkinson Disease-Associated Mutation R1441h In Lrrk2 Prolongs The “Active State” Of Its Gtpase Domain, Jingling Liao, Chun-Xiang Wu, Christopher Burlak, Sheng Zhang, Dali Liu
Parkinson Disease-Associated Mutation R1441h In Lrrk2 Prolongs The “Active State” Of Its Gtpase Domain, Jingling Liao, Chun-Xiang Wu, Christopher Burlak, Sheng Zhang, Dali Liu
Chemistry: Faculty Publications and Other Works
Mutation in leucine-rich-repeat kinase 2 (LRRK2) is a common cause of Parkinson disease (PD). A disease-causing point mutation R1441H/G/C in the GTPase domain of LRRK2 leads to overactivation of its kinase domain. However, the mechanism by which this mutation alters the normal function of its GTPase domain [Ras of complex proteins (Roc)] remains unclear. Here, we report the effects of R1441H mutation (RocR1441H) on the structure and activity of Roc. We show that Roc forms a stable monomeric conformation in solution that is catalytically active, thus demonstrating that LRRK2 is a bona fide self-contained GTPase. We further show …
Lysine Deacetylase (Kdac) Regulatory Pathways: An Alternative Approach To Selective Modulation, Michael W. Van Dyke
Lysine Deacetylase (Kdac) Regulatory Pathways: An Alternative Approach To Selective Modulation, Michael W. Van Dyke
Faculty Articles
Protein lysine deacetylases (KDACs), including the classic Zn2+-dependent histone deacetylases (HDACs) and the nicotinamide adenine dinucleotide (NAD+)-requiring sirtuins, are enzymes that play critical roles in numerous biological processes, particularly the epigenetic regulation of global gene expression programs in response to internal and external cues. Dysregulation of KDACs is characteristic of several human diseases, including chronic metabolic, neurodegenerative, and cardiovascular diseases and many cancers. This has led to the development of KDAC modulators, two of which (HDAC inhibitors vorinostat and romidepsin) have been approved for the treatment of cutaneous T cell lymphoma. By their nature, existing KDAC modulators are relatively nonspecific, …
Photoassisted Access To New Polyheterocycles, Teresa M. Cowger
Photoassisted Access To New Polyheterocycles, Teresa M. Cowger
Electronic Theses and Dissertations
Photoassisted diversity-oriented synthesis holds great promise in its ability to provide rapid access to complex and diverse molecular scaffolds. As it stands, while photochemical techniques have this potential, their implementation in the field of synthetic organic chemistry is very limited. The main goal of this project was to utilize photochemically assisted techniques in the synthesis of a variety of novel polyheterocycles.
Initially, we explored the how the strain installed in these polycycles could be harnessed to trigger cationic rearrangements in the framework of the system. This was achieved via the high yield and rapid assembly of a highly strained system …
2,9-Bis(5-Sulfanylidene-4,5-DiHydro-1,3,4-OxaDiazol-2-Yl)-1,10-Phenanthroline Dimethyl Sulfoxide Disolvate, Mohammad A. Rahman, Mohammad R. Karim, Md Arifuzzaman, Tasneem Siddiquee, Lee M. Daniels
2,9-Bis(5-Sulfanylidene-4,5-DiHydro-1,3,4-OxaDiazol-2-Yl)-1,10-Phenanthroline Dimethyl Sulfoxide Disolvate, Mohammad A. Rahman, Mohammad R. Karim, Md Arifuzzaman, Tasneem Siddiquee, Lee M. Daniels
Chemistry Faculty Research
In the title compound, C16H8N6O2S2·2C2H6OS, the phenanthroline molecule resides on a twofold axis, and the asymmetric unit also contains a slightly disordered [occupancy ratio for S atom of 0.95 (3):0.047 (3)] molecule of dimethyl sulfoxide. The O atoms of the solvent molecule accept hydrogen bonds from the N-H groups of the five-membered 2,3-dihydro-1,3,4-oxadiazole-2-thione ring. This ring is nearly coplanar with the phenanthroline ring, with a dihedral angle between their least-squares planes of 8.86 (6)°. In the crystal, the molecules are linked by C-HO interactions.
Strad Pseudokinases Regulate Axogenesis And Lkb1 Stability, Biliana O. Veleva-Rotse, James L. Smart, Annette F. Baas, Benjamin Edmonds, Zi-Ming Zhao, Allyson Brown, Lillian R. Klug, Kelly Hansen, Gabrielle Rielly, Alexandria P. Gardner, Krishnaveni Subbiah, Eric A. Gaucher, Hans Clevers, Anthony P. Barnes
Strad Pseudokinases Regulate Axogenesis And Lkb1 Stability, Biliana O. Veleva-Rotse, James L. Smart, Annette F. Baas, Benjamin Edmonds, Zi-Ming Zhao, Allyson Brown, Lillian R. Klug, Kelly Hansen, Gabrielle Rielly, Alexandria P. Gardner, Krishnaveni Subbiah, Eric A. Gaucher, Hans Clevers, Anthony P. Barnes
Faculty Publications - Department of Biological & Molecular Science
No abstract provided.
Lead Optimization Of Hmba To Develop Potent Hexim1 Inducers, Bo Zhong, Rati Lama, Wannarasmi Ketchart, Monica M. Montano, Bin Su
Lead Optimization Of Hmba To Develop Potent Hexim1 Inducers, Bo Zhong, Rati Lama, Wannarasmi Ketchart, Monica M. Montano, Bin Su
Chemistry Faculty Publications
The potency of a series of Hexamethylene bis-acetamide (HMBA) derivatives inducing Hexamethylene bis-acetamide inducible protein 1 (HEXIM1) was determined in LNCaP prostate cancer cells. Several compounds with unsymmetrical structures showed significantly improved activity. Distinct from HMBA, these analogs have increased hydrophobicity and can improve the short half-life of HMBA, which is one of the factors that have limited the application of HMBA in clinics. The unsymmetrical scaffolds of the new analogs provide the basis for further lead optimization of the compounds using combinatorial chemistry strategy.
Nascent Peptides That Induce Translational Arrest, Christopher J. Woolstenhulme
Nascent Peptides That Induce Translational Arrest, Christopher J. Woolstenhulme
Theses and Dissertations
Although the ribosome is a very general catalyst, it cannot synthesize all protein sequences equally well. Certain proteins are capable of stalling the ribosome during their own synthesis. Stalling events are used by both prokaryotic and eukaryotic cells to regulate gene expression. Characterization of natural stalling peptides shows that only a few strategically placed amino acids are needed to inactivate the ribosome. These motifs share little sequence similarity suggesting that there are more stalling motifs yet to be discovered. Here we use two genetic selections in E. coli to discover novel stalling peptides and detail their subsequent characterization. Kinetic studies …