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Articles 3241 - 3270 of 15552
Full-Text Articles in Entire DC Network
Lipophilic Probes For Cellular Ethylene Detection, Morgan R. Brown
Lipophilic Probes For Cellular Ethylene Detection, Morgan R. Brown
Electronic Theses and Dissertations
The structure of ethylene is simple, yet its biological effects are significant. When considering its role in biology it is almost exclusively regarded as a plant hormone. Research on ethylene from plants was progressed by several advancements in analytical instrumentation, from its discovery to elucidation of its signaling pathway. There is currently limited understanding of ethylene’s role in mammals, but evidence suggests that it may be a biomarker for oxidative stress! Additional tools and technology are crucial to study this surprising and important signaling role in mammals. Our group has developed molecular ethylene probes as a strategy to detect ethylene …
Measurements Of Atmospheric Radicals, Heather L. Runberg
Measurements Of Atmospheric Radicals, Heather L. Runberg
Electronic Theses and Dissertations
Atmospheric particulate matter (PM) is a global health concern. PM2.5 is formed primarily through combustion processes such as automobile use and industrial activity. Natural sources of PM2.5 result from events like volcanos and wildfires. Upon inhalation, PM2.5 is small enough to travel deep into the lungs where it can form reactive oxygen species (ROS), such as hydroxyl radical (OH), causing oxidative damage to pulmonary tissues. PM2.5 has been linked to cardiopulmonary diseases such as asthma, chronic obstructive pulmonary disease (COPD), and high blood pressure.
PM2.5 is small enough to remain aloft and travel many hundreds …
Esipt-Enabled Alkyne Migration Provides Rapid Access To Benzoxazinones, Andrés G. Muñoz
Esipt-Enabled Alkyne Migration Provides Rapid Access To Benzoxazinones, Andrés G. Muñoz
Electronic Theses and Dissertations
Benozoxazinones have long been of interest to agrochemical scientists and medicinal chemists because of their widespread biological activity. These scaffolds are also of interest to synthetic chemists, who recognize the utility of benzoxazinones for accessing functionalized heterocycles. The use of efavirenz, a benzoxazinone-based reverse transcriptase inhibitor used in the treatment of HIV-1, has brought increased attention to this privileged pharmacophore. While there exist numerous strategies for synthesizing benzoxazinones, methods that do not require the use of acutely toxic and environmentally hazardous reagents are lacking. Consequently, there is a need to develop new methods for constructing this valuable scaffold. Herein, we …
Dynamics And Turnover Of Lipid And Protein Domains In Cells And Supported Bilayers, Alan Weisgerber
Dynamics And Turnover Of Lipid And Protein Domains In Cells And Supported Bilayers, Alan Weisgerber
Electronic Theses and Dissertations
Protein and lipid clustering is an important mechanism for cell processes such as exo- and endo-cytosis and creating functional signaling complexes. It has been seen that both lipids and proteins are involved with the formation of cluster domains on cell membranes, yet little is known about the interplay between the two. In this work I began with visualizing lipid sorting to artificially induced curvature in supported lipid bilayers, with lipid tails affecting the sorting differently to curvature. These results demonstrate that lipids sort to curvature on curved, supported lipid bilayers. The sorting depends on the number of lipids in the …
Protonation And Non-Innocent Ligand Behavior In Pyranopterin Dithiolene Molybdenum Complexes, Cassandra Gates, Haley Varnum, Catherine Getty, Natalie Loui, Ju Chen, Martin L. Kirk, Jing Yang, Sharon J. Nieter Burgmayer
Protonation And Non-Innocent Ligand Behavior In Pyranopterin Dithiolene Molybdenum Complexes, Cassandra Gates, Haley Varnum, Catherine Getty, Natalie Loui, Ju Chen, Martin L. Kirk, Jing Yang, Sharon J. Nieter Burgmayer
Chemistry Faculty Research and Scholarship
The complex [TEA][Tp*MoIV(O)(S2BMOPP)] (1) [TEA = tetraethylammonium, Tp* = tris(3,5-dimethylpyrazolyl)hydroborate, and BMOPP = 6-(3-butynyl-2-methyl-2-ol)-2-pivaloyl pterin] is a structural analogue of the molybdenum cofactor common to all pyranopterin molybdenum enzymes because it possesses a pyranopterin-ene-1,2-dithiolate ligand (S2BMOPP) that exists primarily in the ring-closed pyrano structure as a resonance hybrid of ene-dithiolate and thione-thiolate forms. Compound 1, the protonated [Tp*MoIV(O)(S2BMOPP-H)] (1-H) and one-electron-oxidized [Tp*MoV(O)(S2BMOPP)] [1-Mo(5+)] species have been studied using a combination of electrochemistry, electronic absorption, and electron paramagnetic resonance (EPR) spectroscopy. Additional insight into the nature of these molecules has been derived from electronic structure computations. Differences in dithiolene C–S bond …
Modelling Quinones Using Density Functional Theory, David Ruiter, Madeleine Callan, Elijah Gruszecki, Maya Nambisan, Dr. K. V. Lakshmi
Modelling Quinones Using Density Functional Theory, David Ruiter, Madeleine Callan, Elijah Gruszecki, Maya Nambisan, Dr. K. V. Lakshmi
Summer Research
We modelled benzoquinone (BQ), dichlorobenzoquinone (DCBQ), and dimethylbenzoquinone (DMBQ) using the ORCA quantum chemistry computation suite. We obtained singlepoint energies, electron and spin densities, and the hyperfine coupling values for each molecule suspended in dimethyl sulfoxide (DMSO) and isopropyl alcohol (IPA). In most cases, we find close agreement with published literature values.
Cysteine-Tyrosine Crosslink Synthesis In Bf4112 From B. Fragilis, Alex Van Uffelen, Sophie Hruska, David Benson
Cysteine-Tyrosine Crosslink Synthesis In Bf4112 From B. Fragilis, Alex Van Uffelen, Sophie Hruska, David Benson
Summer Research
Redox-active crosslinked amino acids are a class of post-translational modifications that extend protein chemistry. These cofactors occur in fifteen known proteins with high resolution Xray crystallography as the primary method for confirmation. One of those proteins is cytochrome c oxidase (complex IV), where HisTyr (figure 1) is responsible for the high-valent oxidative intermediate in O2 reduction to 2H2O. Cys-Tyr was the first of these cofactors to be identified and is characterized in galactose oxidase (coordinated to a Cu ion) and cysteine dioxygenase (distal to a mononuclear non-heme iron ion).
Micro-Rna And Proteomic Profiles Of Plasma-Derived Exosomes From Irradiated Mice Reveal Molecular Changes Preventing Apoptosis In Neonatal Cerebellum, Simonetta Pazzaglia, Barbara Tanno, Ilaria De Stefano, Paola Giardullo, Simona Leonardi, Caterina Merla, Gabriele Babini, Seda Tuncay Cagatay, Ammar Mayah, Munira Kadhim, Fiona Lyng, Christine Von Toerne, Zohaib N. Khan, Prabal Subedi, Soile Tapio, Anna Saran, Mariateresa Mancuso
Micro-Rna And Proteomic Profiles Of Plasma-Derived Exosomes From Irradiated Mice Reveal Molecular Changes Preventing Apoptosis In Neonatal Cerebellum, Simonetta Pazzaglia, Barbara Tanno, Ilaria De Stefano, Paola Giardullo, Simona Leonardi, Caterina Merla, Gabriele Babini, Seda Tuncay Cagatay, Ammar Mayah, Munira Kadhim, Fiona Lyng, Christine Von Toerne, Zohaib N. Khan, Prabal Subedi, Soile Tapio, Anna Saran, Mariateresa Mancuso
Articles
Cell communication via exosomes is capable of influencing cell fate in stress situations such as exposure to ionizing radiation. In vitro and in vivo studies have shown that exosomes might play a role in out-of-target radiation effects by carrying molecular signaling mediators of radiation damage, as well as opposite protective functions resulting in resistance to radiotherapy. However, a global understanding of exosomes and their radiation-induced regulation, especially within the context of an intact mammalian organism, has been lacking. In this in vivo study, we demonstrate that, compared to sham-irradiated (SI) mice, a distinct pattern of proteins and miRNAs is found …
Advancing Competency In Managing Risk And Knowledge: Steps Toward Operationalisation Of The Risk-Knowledge Infinity Cycle (Rki Cycle) Part 3: Uncovering Knowledge For Qrm Through Knowledge Mapping At Node 1, Martin Lipa, Valerie Mulholland, Anne Greene
Advancing Competency In Managing Risk And Knowledge: Steps Toward Operationalisation Of The Risk-Knowledge Infinity Cycle (Rki Cycle) Part 3: Uncovering Knowledge For Qrm Through Knowledge Mapping At Node 1, Martin Lipa, Valerie Mulholland, Anne Greene
Articles
To date, literature on the Risk-Knowledge Infinity Cycle (RKI Cycle) has mainly been theoretical. This paper series intent is to focus on the operationalisation of the RKI Cycle by describing a series of steps – the “How to” – for RKI Cycle deployment, to help move the RKI Cycle from theory to practice. The third paper in this series focuses on ensuring the best available knowledge flows into QRM through a case study demonstrating knowledge mapping to support effective quality risk assessment during commissioning and qualification activities.
Chemical Proteomic Identification And Functional Studies Of Cardiac Protein Glutathionylation, Maheeshi Yapa Abeywardana
Chemical Proteomic Identification And Functional Studies Of Cardiac Protein Glutathionylation, Maheeshi Yapa Abeywardana
Wayne State University Dissertations
Elevated intracellular levels of reactive oxygen species (ROS) are associated with induction of oxidative stress. Increased levels of ROS participate in development of cardiovascular diseases by modifying proteins reversibly or irreversibly. Especially, the cysteine residues can undergo oxidative post-translational modifications such as glutathionylation. Glutathionylation is an important regulatory reversible thiol oxidation. Identification and quantification of glutathionylated proteins is important for the understanding of the molecular mechanisms behind initiation and progression of many diseases. Our lab previously developed a click chemistry-based method to detect and identify glutathionylation in cells by synthesizing clickable-glutathione.We established a mass spectrometry-based strategy coupled with clickable glutathione …
Using Circular Dichroism Spectroscopy To Study Secondary Structure Of Horseradish Peroxidase: A Laboratory Experiment In Biochemistry, Shemaiah Kamran, Sarah E. Bultje, Kumar Sinniah
Using Circular Dichroism Spectroscopy To Study Secondary Structure Of Horseradish Peroxidase: A Laboratory Experiment In Biochemistry, Shemaiah Kamran, Sarah E. Bultje, Kumar Sinniah
Summer Research
- We present a laboratory experiment in biochemistry to study the Far-UV Visible secondary structure of a protein (horseradish peroxidase, HRP) that can be adapted for a single-session laboratory experiment or a multiple-session laboratory project.
- A Circular Dichroism (CD) spectrometer provides structural information of proteins as a function of environmental changes such as pH and temperature. We present secondary structural information for the protein, horseradish peroxidase, at pH 3 and pH 7 in the temperature range 30-80° C in phosphate buffered solution (PBS).
- HRP has many applications in biochemistry and biotechnology. It is frequently used as a reporter enzyme in diagnostics …
Catalytic Enantioselective Birch–Heck Sequence For The Synthesis Of Phenanthridinone Derivatives With An All-Carbon Quaternary Stereocenter, Mary Elizabeth Sexton, William Paul Malachowski, Glenn P. A. Yap, Diana Rachii, Greg Feldman, Andrew T. Krasley, Zhilin Chen, My Anh Tran, Kalyn Wiley, Alexandra Matei, Samantha Petersen, Sabrina Tran Tien
Catalytic Enantioselective Birch–Heck Sequence For The Synthesis Of Phenanthridinone Derivatives With An All-Carbon Quaternary Stereocenter, Mary Elizabeth Sexton, William Paul Malachowski, Glenn P. A. Yap, Diana Rachii, Greg Feldman, Andrew T. Krasley, Zhilin Chen, My Anh Tran, Kalyn Wiley, Alexandra Matei, Samantha Petersen, Sabrina Tran Tien
Chemistry Faculty Research and Scholarship
Novel phenanthridinone analogues with an all-carbon quaternary stereocenter have been enantioselectively synthesized using the Birch–Heck sequence. Flat phenanthridinone structures have extensive bioactivity but consequently also suffer from poor therapeutic selectivity. The addition of a quaternary center to the phenanthridinone skeleton has the potential to generate more complex analogues with improved selectivity. Unfortunately, no general synthetic pathway to such derivatives exists. Herein we report a four-step process that transforms inexpensive benzoic acid into 22 different quaternary carbon-containing phenanthridinone analogues with a variety of substituents on all three rings: alkyl groups at the quaternary center; methyl, methoxymethyl, or para-methoxybenzyl on the …
Generation Of Nanomaterials By Reactive Laser Synthesis In Liquid, Laysa M. Frias Batista, Ashish B. Nag, Victoria K. Meader, Katharine M. Tibbetts
Generation Of Nanomaterials By Reactive Laser Synthesis In Liquid, Laysa M. Frias Batista, Ashish B. Nag, Victoria K. Meader, Katharine M. Tibbetts
Chemistry Publications
Nanomaterials with tailored structures and surface chemistry are in high demand, as these materials play increasingly important roles in biology, catalysis, energy storage, and manu- facturing. Their heightened demand has attracted attention towards the development of syn- thesis routes, particularly, laser-synthesis techniques. These efforts drove the refinement of laser ablation in liquid (LAL) and related methods over the past two decades, and have led to the emergence of reactive laser-synthesis techniques that exploit these methods’ character- istic, non-equilibrium conditions. Reactive laser-synthesis approaches foster unique chemical reactions that enable the formation of composite products like multimetallic nanoparticles, supported nanostructures, and complex …
Inflammatory Response To Sleep Fragmentation In Skeletal, Cardiac, And Smooth Muscle Tissues In Female Mice, Patton Allen
Inflammatory Response To Sleep Fragmentation In Skeletal, Cardiac, And Smooth Muscle Tissues In Female Mice, Patton Allen
Mahurin Honors College Capstone Experience/Thesis Projects
Sleep is a critical process that the body undergoes. When sleep is interrupted, so that an individual is awakened for some period before going back into sleep, the sleep can be described as fragmented. Studies in the past have shown that sleep fragmentation (SF) promotes an inflammatory environment, especially in the brain and peripheral tissue. However, studies have not been conducted to observe inflammatory responses in muscle. To examine this, C57BL/6J female mice were subjected to either a control group (no SF) or a SF group which involved using an automated SF chamber to disrupt sleep every 2 min over …
Affinity Of Cadmium Versus Zinc For The Carbonic Anhydrase Active Site, Rachel Phan
Affinity Of Cadmium Versus Zinc For The Carbonic Anhydrase Active Site, Rachel Phan
Honors Scholars Collaborative Projects
Cadmium is a heavy metal found in tobacco plants, nickel-cadmium batteries, and as a byproduct of metal mining. The similarities between the properties of zinc ions and cadmium ions in proteins due to their 2+ charges may cause displacement of zinc by cadmium if encountered and has been shown to do so in several transcription factors. Cadmium’s ability to replace zinc- a metal found in around 3,000 human proteins- is a cause for concern, especially due to its toxicity, long half-life in the body, and larger size.
Carbonic anhydrase is an important metalloprotein protein that relies on a central zinc(II) …
Web-Based Platform For Analysis Of Rna Folding From High Throughput Chemical Probing Data, Christopher Jurich, Amir Brivanlou, Silvi Rouskin, Joseph D. Yesselman
Web-Based Platform For Analysis Of Rna Folding From High Throughput Chemical Probing Data, Christopher Jurich, Amir Brivanlou, Silvi Rouskin, Joseph D. Yesselman
Department of Chemistry: Faculty Publications
RNA structures play critical roles in regulating gene expression across all domains of life and viruses. Chemical probing methods coupled with massively parallel sequencing have revolutionized the RNA structure field by enabling the assessment of many structures in their native, physiological context. Previously, we developed Dimethyl-Sulfate-based Mutational Profiling and Sequencing (DMS-MaPseq), which uses DMS to label the Watson-Crick face of open and accessible adenine and cytosine bases in the RNA. We used this approach to determine the genome-wide structures of HIV-1 and SARS-CoV-2 in infected cells, which permitted uncovering new biology and identifying therapeutic targets. Due to the simplicity and …
The Impacts Of The Molecular Education And Research Consortium In Undergraduate Computational Chemistry On The Careers Of Women In Computational Chemistry, Kelly Anderson, Sarah Arradondo, K Aurelia Ball, Chrystal D. Bruce, Maria A. Gomez, Kedan He, Heidi Hendrickson, Lindsey Madison, Ashley Ringer Mcdonald, Maria C. Nagan, Carol Parish, Caitlin E. Scott, Patricia Soto, Aime'e Tomlinson, Mychel Varner
The Impacts Of The Molecular Education And Research Consortium In Undergraduate Computational Chemistry On The Careers Of Women In Computational Chemistry, Kelly Anderson, Sarah Arradondo, K Aurelia Ball, Chrystal D. Bruce, Maria A. Gomez, Kedan He, Heidi Hendrickson, Lindsey Madison, Ashley Ringer Mcdonald, Maria C. Nagan, Carol Parish, Caitlin E. Scott, Patricia Soto, Aime'e Tomlinson, Mychel Varner
2022 Faculty Bibliography
The Molecular Education and Research Consortium in Undergraduate Computational Chemistry (MERCURY) has supported a diverse group of faculty and students for over 20 years by providing computational resources as well as networking opportunities and professional support. The consortium comprises 38 faculty (42% women) at 34 different institutions, who have trained nearly 900 undergraduate students, more than two-thirds of whom identify as women and one-quarter identify as students of color. MERCURY provides a model for the support necessary for faculty to achieve professional advancement and career satisfaction. The range of experiences and expertise of the consortium members provides excellent networking opportunities …
S-Glutathionylation Of Chicken Breast Extract, Isabella Fransisco
S-Glutathionylation Of Chicken Breast Extract, Isabella Fransisco
Senior Honors Projects
The purpose of this experiment was to analyze chicken breast fractions through affinity chromatography for protein modifications by glutathione disulfide (GSSG). The fractions were incubated with different concentrations of GSSG to determine potential modified proteins. There were proteins modified with GSSG at 33 kDa in fraction I, at 16 kDa, 36 kDa, and 44kDa in fraction II, and at 36 kDa in fraction III for the concentration dependent reactions. In the time dependent reaction for fraction II, there were two major proteins at 65 kDa and 176 kDa that were modified by GSSG. Lastly, we suggest that the major modified …
Soil Health And The Effects Of Nanoparticles, Elijah Mock
Soil Health And The Effects Of Nanoparticles, Elijah Mock
Natural Sciences Student Research Presentations
I researched the effects of soil on human health. Specifically, I was interested in nanoparticles that reside in soil and how they affect humans as well as crops that are planted in the soil. This topic is relevant because nanoparticles can be used to deliver drugs for doctors, create specific properties for material scientists, sensors for the military, and in a plethora of other fields (“What Are Nanoparticles? Definition, Size, Uses and Properties.”).
Development Of New Photochemical Tools For Applications In Cancer Research And Enzymatic Signaling, Nicholas Paul Toupin
Development Of New Photochemical Tools For Applications In Cancer Research And Enzymatic Signaling, Nicholas Paul Toupin
Wayne State University Dissertations
Photochemical tools empower researchers to act with precision and control over the cellular environment through production of reactive oxygen species (ROS), targeted drug delivery, and modulation of enzymatic activity. These molecular tools use light as a readily available, biorthogonal reagent for initiating advantageous light-activated reactions. Using light in this way allows researchers to affect the cellular environment in specific ways with high spatio-temporal control. This dissertation focuses on expanding the applications of, mostly Ru(II)-based, photoactivated chemicals. Complexes of this type are able to act as photosensitizers in photodynamic therapy (PDT), as photocages (PCT), or as dual-action compounds capable of both …
Investigating Spatiotemporal Kinetics, Dynamics, And Mechanism Of Exosome Release, Anarkali Mahmood
Investigating Spatiotemporal Kinetics, Dynamics, And Mechanism Of Exosome Release, Anarkali Mahmood
Electronic Theses and Dissertations
Exosomes are small lipid-based vesicles that can carry biomolecules from one cell to another. While exosomes are crucial to maintain homeostasis in healthy cells, they are exploited by unhealthy cells to aid disease progression. Exosomes likely facilitate disease progression via the transfer of disease-causing biomolecules from unhealthy to healthy cells. Exosomes are generated in Multivesicular endosomes (MVEs) and are then secreted into the extracellular space to travel to other cells. Despite being a crucial step, very little is known about exosomes release mechanism and dynamics. To further our understanding of exosomes, specifically their secretion, my work has focused on investigating …
Investigating Alamethicin Ion Channel Behavior In Lipid Bilayers, Vennisa Owusu-Barfi, Loren Haarsma
Investigating Alamethicin Ion Channel Behavior In Lipid Bilayers, Vennisa Owusu-Barfi, Loren Haarsma
Summer Research
Lipid molecules are made up of a head group that is strongly attracted to water and a tail group that is less attracted to it. In water, they selfassemble into bilayers which form the basis of cell membranes. Ion channels are proteins in the lipid bilayer which control the flow of ions in and out of the cell. Alamethicin is a 20 amino-acid peptide produced by fungus. When added to a lipid bilayer they self-assemble into voltage-dependent ion channels which open for brief periods called dwell times, usually on order of a few milliseconds. Because alamethicin is a fairly simple …
Understanding The Effects Of Ligand Environment On Important Properties Of Redox-Active Europium Using Computational Chemistry And T1-Weighted Magnetic Resonance Imaging, Brooke Anne Corbin
Understanding The Effects Of Ligand Environment On Important Properties Of Redox-Active Europium Using Computational Chemistry And T1-Weighted Magnetic Resonance Imaging, Brooke Anne Corbin
Wayne State University Dissertations
This thesis is a collection of seven chapters that describes a combination of literature research and experimental analyses into the study of inorganic complexes, with an emphasis on the photophysics and coordination of redox-active europium. The first chapter summarizes the key features of each chapter. The second and third chapters are detailed overviews, including historical context, current studies, and future goals of imaging science, with an emphasis on inorganic complexes. The fourth chapter describes the design of a screening procedure to study new ligand environments for redox-active europium using magnetic resonance imaging and a proof-of-concept experiment. The fifth chapter is …
Kinase-Catalyzed Labeling To Identify Kinase-Substrate Pairs Using Γ-Phosphate Modified Atp Analogs, Rachel Beltman
Kinase-Catalyzed Labeling To Identify Kinase-Substrate Pairs Using Γ-Phosphate Modified Atp Analogs, Rachel Beltman
Wayne State University Dissertations
Post-translational modifications (PTMs) are responsible for a variety of cellular processes. One such PTM is protein phosphorylation, which is catalyzed by kinases. Kinase enzymes play important roles in cellular signaling pathways, but dysregulation of kinase-mediated events results in the formation of diseases, which make kinases favorable drug targets. To uncover the role kinases play in the development of diseases, kinase-mediated cellular events need to be better understood. The current gap in the field is the lack of tools available to identify the kinase that is responsible for specific phosphorylation events within the cell. To improve the gap in the field, …
Biomedical Applications Of Lanthanide Nanomaterials, For Imaging, Sensing And Therapy, Qize Zhang, Stephen O'Brien, Jan Grimm
Biomedical Applications Of Lanthanide Nanomaterials, For Imaging, Sensing And Therapy, Qize Zhang, Stephen O'Brien, Jan Grimm
Publications and Research
The application of nanomaterials made of rare earth elements within biomedical sciences continues to make significant progress. The rare earth elements, also called the lanthanides, play an essential role in modern life through materials and electronics. As we learn more about their utility, function, and underlying physics, we can contemplate extending their applications to biomedicine. This particularly applies to diagnosis and radiation therapy due to their relatively unique features, such as an ultra-wide Stokes shift in the luminescence, variable magnetism and potentially tunable properties, due to the library of lanthanides available and their multivalent oxidation state chemistry. The ability to …
Developing A New Treatment For Superficial Fungal Infection Using Antifungal Collagen-Hsaf Dressing, Jing Zhong, Xiayi Yan, Xin Zuo, Xuan Zhao, Jiahui Yang, Qin Dou, Lulu Peng, Yuxiang Zhu, Yichen Xiao, Zeran Bian, Dalian He, Qiushuang Xu, Stephen Wright, Yaoyao Li, Liangcheng Du, Yan Wang, Jin Yuan
Developing A New Treatment For Superficial Fungal Infection Using Antifungal Collagen-Hsaf Dressing, Jing Zhong, Xiayi Yan, Xin Zuo, Xuan Zhao, Jiahui Yang, Qin Dou, Lulu Peng, Yuxiang Zhu, Yichen Xiao, Zeran Bian, Dalian He, Qiushuang Xu, Stephen Wright, Yaoyao Li, Liangcheng Du, Yan Wang, Jin Yuan
Department of Chemistry: Faculty Publications
Fungal pathogens are common causes of superficial clinical infection. Their increasing drug resistance gradually makes existing antifungal drugs ineffective. Heat stable antifungal factor (HSAF) is a novel antifungal natural product with a unique structure. However, the application of HSAF has been hampered by very low yield in the current microbial producers and from extremely poor solubility in water and common solvents. In this study, we developed an effective mode of treatment applying HSAF to superficial fungal infections. The marine-derived Lysobacter enzymogenes YC36 contains the HSAF biosynthetic gene cluster, which we activated by the interspecific signaling molecule indole. An efficient extraction …
Phenanthroline-Catalyzed 1,2-Cis Glycosylation: Scope And Mechanism, Jiayi Li
Phenanthroline-Catalyzed 1,2-Cis Glycosylation: Scope And Mechanism, Jiayi Li
Wayne State University Dissertations
Phenanthroline, a rigid and planar organic compound with two fused pyridine rings, has been used as a powerful ligand for metals and a binding agent for DNA/RNA. We recently discovered that phenanthroline could be used as a nucleophilic catalyst to access high yielding and diastereoselective α-1,2-cis glycosides through the coupling of hydroxyl acceptors with α-glycosyl bromide donors. The utility of the phenanthroline catalysis is expanded to sterically hindered hydroxyl nucleophiles and chemoselective coupling of an alkyl hydroxyl group in the presence of a free C1-hemiacetal functionality. In addition, the phenanthroline-based catalyst has a pronounced effect on site-selective couplings of triol …
Sequential Assembly Of 1-D And 2-D Origami Arrays, Nathan Shin
Sequential Assembly Of 1-D And 2-D Origami Arrays, Nathan Shin
Theses, Dissertations and Capstones
DNA origami, invented by Paul Rothemund in 2006, provides many possible routes for the synthesis of complex macromolecular assemblies. This project involves the creation of 1-D and 2-D arrays of cross origami to support the development of DNA detection devices by providing precise platforms for these devices. The M13 plasmid is the most commonly used scaffold in DNA nanotechnology, limiting the size and complexity of an individual DNA origami construct. However, by creating larger assemblies, the dimensions can be multiplied. For example, by alternating two different types of cross origami, optical reporters can be separated by 200 nm, which is …
Development Of Carbohydrate-Based Antibiotics And Metabolic Chemical Reporters, Courtney Kondor
Development Of Carbohydrate-Based Antibiotics And Metabolic Chemical Reporters, Courtney Kondor
Wayne State University Dissertations
CHAPTER 1: Multidrug-resistant bacteria is a threat to public health and there is a need for the development of new antibiotics to fight bacterial resistance. Aminoglycoside antibiotics are attractive to researchers due to their lack of known drug related allergies, low cost, and broad spectrum of activity; however, they can cause nephrotoxicity and ototoxicity in patients. We modified the 2-deoxystreptamine ring of paromomycin to make the drug more flexible and potentially more selective for the bacterial ribosomal A-site to circumvent off-target effects that cause ototoxicity. However, we found that our compound, paromomexin, was significantly less active than paromomycin in all …
Investigation Of Catalysis Of Nitration By Cytochrome P450s, Lannika Johnson
Investigation Of Catalysis Of Nitration By Cytochrome P450s, Lannika Johnson
Honors Undergraduate Theses
TxtE is a protein related to cytochrome P450 enzymes, which catalyze a number of reactions that typically involve oxygen and not nitrogen. It has been discovered that TxtE can nitrate tryptophan through an unusual reaction in which it uses nitric oxide (NO) as a nitrogen donor to install the nitro group despite NO typically being considered toxic to bacteria. This project will determine if all cytochromes P450 can catalyze nitration as long as they are given NO. This will have an impact on understanding drug delivery and metabolism for which nitration is important.