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Articles 151 - 180 of 229
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
Characterization Of A Phosphonate-Specific Cytidylyltransferase, Kissa Batul
Characterization Of A Phosphonate-Specific Cytidylyltransferase, Kissa Batul
Theses and Dissertations (Comprehensive)
Antibiotic resistance is a major global health concern that requires new therapeutic approaches. Furthermore, a lack of narrow spectrum antibiotics on the market produces unintended consequences with respect to changes in our microbial make up. Phosphonates are reduced versions of phosphates that possess a C-P bond which is more resistant to enzymatic and chemical degradation. The role of phosphonate containing macromolecules (e.g. cell surface polysaccharides) remains enigmatic, however their presence suggests that they may confer an advantage. The biosynthesis of phosphonate-containing macromolecules is unknown, but a pathway is proposed involving aLicC type cytidylyltransferase-catalyzed conjugation to a phosphonate followed by a …
Investigation Of The Inherent Chemical, Structural, And Mechanical Attributes Of Bio-Engineered Composites Found In Nature: Alligator Gar’S Exoskeleton Fish Scales, Wayne Derald Hodo
Investigation Of The Inherent Chemical, Structural, And Mechanical Attributes Of Bio-Engineered Composites Found In Nature: Alligator Gar’S Exoskeleton Fish Scales, Wayne Derald Hodo
Graduate Theses and Dissertations
The U.S. Army has determined a huge cost savings of up to 51% can be accomplished by reducing the gross vehicle weight, for their personnel carrier, by 33%. To cut cost, composite materials are needed. Man-made composites can have superior material properties (high-strength, high-fracture toughness, and lightweight), but they are prone to delamination at the glued-layered interface. In contrast, fish scale is a natural composite that has the same material properties and, additionally, tend not to delaminate.
The focus of this study was to learn how nature integrates hard and soft materials at each length scale to form a layered …
Biochemical Effects Of Meditation: A Literature Review, William C. Daube, Charles E. Jakobsche
Biochemical Effects Of Meditation: A Literature Review, William C. Daube, Charles E. Jakobsche
Scholarly Undergraduate Research Journal at Clark (SURJ)
Meditation is an activity that can help reduce stress and anxiety from daily life as well as help cultivate overall feel- ings of peacefulness, relaxation, and contentment. This review describes several studies that have been used to assess how meditation can influence the body at the molecular level. The presented results focus on small-molecule metab- olites, which are broadly defined as naturally-produced molecules that weigh less than approximately 1000 Da. The results show that meditation can significantly affect hormones and neurotransmitters such as cortisol, dehydroepi- androstrone, serotonin, melatonin, and epinephrine. Some common and modern experimental techniques that are relevant to …
Characterizing The Role Of Aif4 In Saccharomyces Cerevisiae, Antonia L. Hur Ms., Nina Serratore Ms., Scott D. Briggs
Characterizing The Role Of Aif4 In Saccharomyces Cerevisiae, Antonia L. Hur Ms., Nina Serratore Ms., Scott D. Briggs
The Summer Undergraduate Research Fellowship (SURF) Symposium
Chromatin remodelers are important regulatory mechanisms that eukaryotic cells use to modify the structure of chromatin, which is made up of DNA and proteins. DNA wraps around histone proteins to make up chromatin. When these proteins are modified, the shape of the chromatin is altered. “Loosening” the chromatin structure by chromatin modifications allows for active gene expression whereas “tightening” or compaction of chromatin results in gene repression. Therefore the modifications on chromatin modulate gene expression in all eukaryotes. It has been shown that mis-regulation of chromatin remodelers contribute to various cancers. Understanding the biochemistry behind how chromatin associating proteins modify …
Evolutionary Convergence Of The Caffeine Biosynthetic Pathway In Chocolate Followed Duplication Of A Constrained Ancestral Enzyme, Andrew J. O'Donnell
Evolutionary Convergence Of The Caffeine Biosynthetic Pathway In Chocolate Followed Duplication Of A Constrained Ancestral Enzyme, Andrew J. O'Donnell
Masters Theses
Caffeine biosynthesis is widely distributed in flowering plants and requires three consecutive methylation steps of xanthine alkaloids. Genes that have previously been reported to participate in the multi-step pathway in Coffea sp. (coffee) and Camellia sinensis (tea) encode members of the SABATH family of methyltransferases. Two genes highly expressed in fruits of Theobroma cacao (cacao) are orthologous to the caffeine genes in tea and appear to have diversified following gene duplication. Biochemical characterization of the enzymes (XMTs) encoded by these genes strongly suggest an unprecedented major pathway to theobromine, a precursor to caffeine. These findings imply that caffeine biosynthesis evolved …
Recyclable Organocatalysis Of One-Pot Michael/Mannich/Lactamization Sequence For Asymmetric Synthesis Of Fluorinated Poly-Substituted 2-Piperidinones, Anthony P. Tran
Recyclable Organocatalysis Of One-Pot Michael/Mannich/Lactamization Sequence For Asymmetric Synthesis Of Fluorinated Poly-Substituted 2-Piperidinones, Anthony P. Tran
Honors College Theses
2-piperidinone (δ-lactam), a bio-interesting nitrogen-containing six-membered ring compound, has attracted much interest from researchers both in synthetic and medicinal chemistry. Polysubstituted piperidine derivatives, such as the δ-lactam, serve as a synthon for numerous biologically relevant structures and pharmaceutical agents. A novel one-pot asymmetric Michael/Mannich/Lactamization sequence promoted by recyclable fluorous bifunctional cinchona alkaloid–thiourea organocatalysts is introduced for the synthesis of polysubstituted 2-piperidinones bearing four contiguous stereocenters, one of which is a fluorinated quaternary chiral center with excellent stereoselectivities (ee up to >99%, dr up to >20:1).
“Analyze, Acquire, Apply, And Write” As A New Learning Model In Science, Jeong Choe
“Analyze, Acquire, Apply, And Write” As A New Learning Model In Science, Jeong Choe
Faculty Publications & Research
I have developed a new teaching and learning model called AAAW, which stand for Analyze, Acquire, Apply and Write. This model grows from action research and unique experience in teaching a biochemistry course to high school students who are talented in math and science. In this model, students first "Analyze" lab data to generate questions that lead them to "Acquire" background knowledge. Students then go back to the data and "Apply" their new knowledge to better understand the data. Finally, students "Write" about the connections they make from their reading, data analysis, and application of the data. The rationale behind …
Interactions Between Phospholipids And Polymers With Time Resolved Fluorescence Spectroscopy, Zachary E. Hier
Interactions Between Phospholipids And Polymers With Time Resolved Fluorescence Spectroscopy, Zachary E. Hier
Williams Honors College, Honors Research Projects
Interactions between macromolecule species and fluorescently labeled phospholipids were explored in supported lipid bilayers (SLBs). The concentration and the lateral mobility of the labeled phospholipids within the confocal volume were determined via fluorescence correlation spectroscopy. Low molecular weight polystyrene was used for the neutral charged macromolecule. Three separate concentrations of polystyrene were used and a significant change in lateral mobility of phospholipids was found for the SLB doped with all three concentration of styrene from polystyrene (molecular weight = 1000). Polyester with mimic lysine pendant groups was used for the cationic polymer at physiological pH. A large decrease in the …
Differences In Fecal Metabolite Profiles From Geographically Distinct Populations Of Adolescents, Jessica Moncivaiz
Differences In Fecal Metabolite Profiles From Geographically Distinct Populations Of Adolescents, Jessica Moncivaiz
Browse all Theses and Dissertations
Microbiota of the gastrointestinal tract have a variety of functions within the human body. They participate in protection of the host from pathogens, aid in immune system development and regulation, and carry out a variety of metabolic functions. This study focuses on the ability of gut microbiota to create metabolites through the degradation of food products. Using 1H NMR on fecal water extracts, I compared the metabolite profiles of two geographically distinct cohorts: healthy adolescents from Egypt (n=28) and healthy adolescents from the United States (n=14). Multivariate statistical analyses of binned NMR data confirmed that samples separated into groups corresponding …
Purifying The Human Rna-Lariat Debranching Enzyme, Ammar Saigal
Purifying The Human Rna-Lariat Debranching Enzyme, Ammar Saigal
Honors Program Theses and Research Projects
This project is my first official research endeavor and it involved becoming acquainted with a large variety of biochemistry and molecular biology techniques. The goal is to elucidate the structure of a protein common to most if not all cells of organisms within the Domain Eukarya, which is one of the three taxonomic domains into which all life is categorized. This is the domain most relevant to human beings as it includes plants, fungi, and animals (from a strictly biologically-taxonomic perspective, the species Homo sapiens to which you and I belong is considered belonging to the Kingdom Animalia [Animal]).
Gene Expression Studies For The Analysis Of Domoic Acid Production In The Marine Diatom Pseudo-Nitzschia Multiseries, Katie Boissonneault, Brooks M. Henningsen, Stephen S. Bates, Deborah L. Robertson, Sean Milton, Jerry Pelletier, Deborah A. Hogan, David E. Housman
Gene Expression Studies For The Analysis Of Domoic Acid Production In The Marine Diatom Pseudo-Nitzschia Multiseries, Katie Boissonneault, Brooks M. Henningsen, Stephen S. Bates, Deborah L. Robertson, Sean Milton, Jerry Pelletier, Deborah A. Hogan, David E. Housman
Dartmouth Scholarship
Pseudo-nitzschia multiseries Hasle (Hasle) (Ps-n) is distinctive among the ecologically important marine diatoms because it produces the neurotoxin domoic acid. Although the biology of Ps-n has been investigated intensely, the characterization of the genes and biochemical pathways leading to domoic acid biosynthesis has been limited. To identify transcripts whose levels correlate with domoic acid production, we analyzed Ps-n under conditions of high and low domoic acid production by cDNA microarray technology and reverse-transcription quantitative PCR (RT-qPCR) methods. Our goals included identifying and validating robust reference genes for Ps-n RNA expression analysis under these conditions.
An Ethnobotanical Approach To Finding Antimicrobial Compounds In Wooly Blue Curls (Trichostema Lanatum) Using A Kirby-Bauer Disc Diffusion Assay, Matthew C. Fleming, P. Matthew Joyner
An Ethnobotanical Approach To Finding Antimicrobial Compounds In Wooly Blue Curls (Trichostema Lanatum) Using A Kirby-Bauer Disc Diffusion Assay, Matthew C. Fleming, P. Matthew Joyner
Featured Research
Plants can be an important source of creativity and production of new drugs. In this study, extracts of wooly blue curls (Trichostema lanatum) were made using DMSO and tested for antimicrobial activity on a panel of bacteria commonly found in separate ecological niches. Wooly blue curls (WBC) was chosen due to its being recorded as a strong disinfectant by the Chumash people. It was found that WBC does exhibit antimicrobial activity against gram positive bacteria and not against gram negative bacteria. However, gram negative bacteria with reduced drug efflux function became susceptible to the WBC extract.
Integrating Art And Science In Undergraduate Education, Daniel Gurnon
Integrating Art And Science In Undergraduate Education, Daniel Gurnon
Chemistry & Biochemistry Faculty Publications
The prevailing vision for undergraduate science education includes increased collaboration among teachers of science, technology, engineering and math (STEM) and an overhaul of introductory courses [1]–[4]. But by staying within the borders of STEM, are we overlooking connections between the arts and innovative science? Likewise, are we missing an important opportunity to inspire and inform nonscientists? Here we explore how weaving the visual arts into a science curriculum can both help develop scientific imagination and engage nonscientists. As an example, we describe a recent collaboration between artists and scientists to create a series of science-inspired sculptures.
Ring Domain, David J. Hall
Ring Domain, David J. Hall
Protein Domains
Ring domain #1CHC. The RING finger is a specialized type of Zn finger consisting of 40–60 residues that binds two atoms of zinc, and is involved in mediating protein—protein interactions. Many zinc fingers bind nucleic acids. The presence of a RING finger domain is a characteristic of RING-class E3 ubiquitin protein ligases capable of transferring ubiquitin from an E2 enzyme to a substrate protein.
Sh2 Domain, David J. Hall
Sh2 Domain, David J. Hall
Protein Domains
SH2 domain #1BFJ. Src-homology 2 (SH2) domains are modules of ~100 amino acids that bind to specific phospho tyrosine (pY) containing peptide motifs. Conventional SH2 domains have a conserved pocket that recognizes pY, and a more variable pocket that binds 3-6 residues C-terminal to the pY and confers specificity.
Sh3 Domain, David J. Hall
Sh3 Domain, David J. Hall
Protein Domains
SH3 domain #1NEB. Src-homology 3 (SH3) domains bind to Pro-rich peptides that form a left-handed poly-Pro type II helix, with the minimal consensus Pro-X-X-Pro. Each Pro is usually preceeded by an aliphatic residue. Each in the aliphatic-Pro pair binds to a hydrophobic pocket on the SH3 domain.
Ig Domain, David J. Hall
Ig Domain, David J. Hall
Protein Domains
Ig domain #2CKN. This particular domain is named for the first protein in which it was found, the immunoglobulin. An immunoglobulin is a antibody. Antibodies are generated by our immune system to recognize the specific size, shape and charge of pathogens. This domain is also found on the extracellular portion of many receptors including the interleukin-1 family of receptors.
Beta Barrel, David J. Hall
Beta Barrel, David J. Hall
Protein Domains
Beta barrel (cyan fluorescent protein) #4AR7. This fluorescent protein is a variation of green fluorescent protein from a jellyfish and is the only domain that is a complete protein. The protein is routinely used to visualize a variety of biological processes. The beta barrel domain is a beta sheet wrapped around the fluorescent active site to provide structure.
Helix Turn Helix Domain, David J. Hall
Helix Turn Helix Domain, David J. Hall
Protein Domains
Helix turn helix domain #3V1A. The helix-turn helix is a DNA-binding domain. The two alpha helices are the reading or recognition helices, which bind in a groove in the DNA and recognize specific gene regulatory sequences in the DNA.
Phi X 174, David J. Hall
Phi X 174, David J. Hall
Infectious Pathogens
Phi X 174 database number # 1CD3. Phi X 174 is a virus that infects bacteria and was the first DNA-based genome to be sequenced in 1977. This bacteriophage has a [+] circular single-stranded DNA genome. The assembly of the capsid has been successfully done in vitro and is the focus of many studies on self-assembly, drug delivery and nanotechnology.
Dengue Virus, David J. Hall
Dengue Virus, David J. Hall
Infectious Pathogens
Dengue virus, database # 1THD Dengue fever, is an infectious tropical disease caused by the dengue virus and transmitted by mosquito. Symptoms include fever, headache, muscle and joint pains, and a characteristic skin rash that is similar to measles. In a small proportion of cases the disease develops into the life-threatening dengue hemorrhagic fever. Dengue is a positive strand RNA virus that is part of the flavivirus family. Dengue is an enveloped virus meaning it has a nucleocapsid protecting the RNA and the nucleocapsid is surrounded by lipids (hence the name enveloped).
Human Papilloma Virus 16, David J. Hall
Human Papilloma Virus 16, David J. Hall
Infectious Pathogens
Human Papilloma virus 16, database# 1DZL Infection by most papillomaviruses is either asymptomatic or causes small benign tumors, known as papillomas or warts (e.g. human papillomavirus HPV6 or HPV11). Papillomas caused by some types, however, such as human papillomaviruses 16 and 18, carry a risk of becoming cancerous. Human papilloma virus is a non-enveloped, double stranded, circular DNA virus.
Hepatitis B, David J. Hall
Hepatitis B, David J. Hall
Infectious Pathogens
Hepatitis B, database # 2g33. Hepatitis B is an infectious inflammatory illness of the liver caused by the hepatitis B virus (HBV). Hepatitis B virus (HBV) is a member of the Hepadnavirus family.The virus particle, (virion) consists of an outer lipid envelope and an icosahedral nucleocapsid core composed of protein. These virions are 42 nM in diameter. The nucleocapsid encloses the viral DNA and a DNA polymerase that has reverse transcriptase activity.
Structurally Diverse Hamigerans From The New Zealand Marine Sponge Hamigera Tarangaensis: Nmr-Directed Isolation, Structure Elucidation And Antifungal Activity, A. Jonathan Singh, Jonathan D. Dattelbaum, Jessica J. Field, Zlatka Smart, Ethan F. Woolly, Jacqueline M. Barber, Rosemary Heathcott, John H. Miller, Peter T. Northcote
Structurally Diverse Hamigerans From The New Zealand Marine Sponge Hamigera Tarangaensis: Nmr-Directed Isolation, Structure Elucidation And Antifungal Activity, A. Jonathan Singh, Jonathan D. Dattelbaum, Jessica J. Field, Zlatka Smart, Ethan F. Woolly, Jacqueline M. Barber, Rosemary Heathcott, John H. Miller, Peter T. Northcote
Chemistry Faculty Publications
The NMR-directed investigation of the New Zealand marine sponge Hamigera tarangaensis has afforded ten new compounds of the hamigeran family, and a new 13-epi-verrucosane congener. Notably, hamigeran F (6) possesses an unusual carbon–carbon bond between C-12 and C-13, creating an unprecedented skeleton within this class. In particular, the structural features of 6, hamigeran H (10) and hamigeran J (12) imply a diterpenoid origin, which has allowed the putative biogenesis of three hamigeran carbon skeletons to be proposed based on geranyl geranyl pyrophosphate. All new hamigerans exhibited micromolar activity towards the HL-60 …
Locking Down The N-Terminus Of Prmt1 In Order To Assess The Role Of Motion In Activity, Taylor James Rasmussen
Locking Down The N-Terminus Of Prmt1 In Order To Assess The Role Of Motion In Activity, Taylor James Rasmussen
Undergraduate Honors Capstone Projects
Protein arginine methyltransferases (PRMTs) are involved In many major biological pathways in the human body. Processes that demonstrate arginine methylation by PRMTs include, but are not limited to, histone modification, DNA transcription, and post-translational protein modifications. Although recent research has allowed the identification of several PRMT isoforms and exposed their involvement in these processes, relatively little is known about the details of how these enzymes perform their biochemical duties. It is currently hypothesized that the N-terminus of PRMT variant I is involved in recognizing substrates and aiding in catalysis by virtue of a change in its conformation. To understand how …
Derivation Of Hill's Equation From Scale Invariance, Andres Ortiz^, Vladik Kreinovich*
Derivation Of Hill's Equation From Scale Invariance, Andres Ortiz^, Vladik Kreinovich*
COURI Symposium Abstracts, Spring 2012
No abstract provided.
Light-Activated Binary Nucleotide Reagent For Inactivation Of Dna Polymerase, Evan M. Cornett
Light-Activated Binary Nucleotide Reagent For Inactivation Of Dna Polymerase, Evan M. Cornett
Electronic Theses and Dissertations
This work explores a binary reagent approach to increase the specificity of covalent inhibitors. In this approach, two ligand analogs equipped with inert pre-reactive groups specifically bind a target biopolymer. The binding event brings the pre-reactive groups in proximity with each other. The two groups react, generating active chemical intermediates that covalently modify and inactivate the target. In the present study we compare the new approach with the traditional single-component reagent strategy using DNA polymerase from bacteriophage T4 as a model target biopolymer. We report the design and synthesis of two analogs of deoxythymidine triphosphate, a natural DNA polymerase substrate. …
Lipase-Kinase Associations Involving Pld2, Jak3 And Fes That Underlie Cancer Cell Proliferation And Invasion, Qing Ye
Browse all Theses and Dissertations
Phospholipase D (PLD) is an enzyme that breaks down phospholipids in the cell membrane. It has been suggested that PLD may play a role during cell proliferation and cell invasion of cancer cells. The objective of this thesis was to define new molecular signaling pathways in which PLD2 might be involved in terms of cell proliferation (first part) and cell invasion (second part). To this, I compared molecular and biochemical aspects between untransformed cell lines with highly invasive, transformed breast cancer cells. In the first part, I investigated the interaction of two tyrosine kinases with PLD2 and the effect of …
Characterization Of Esterase Activity From The Bacteria, Francisella Tularensis, The Causative Agent Of Tularemia, Leigh Anna Weston
Characterization Of Esterase Activity From The Bacteria, Francisella Tularensis, The Causative Agent Of Tularemia, Leigh Anna Weston
Undergraduate Honors Thesis Collection
Francisella tularensis is the bacteria responsible for causing the disease tularemia and is listed as one of the top three-biowarfare agents. Among the proteins essential to the virulence and infectivity of F.tularensis are multiple esterases, which are enzymes that break down various ester, thioester, and amide bonds. In this project, the catalytic activity, substrate speci fi city, and structure of a putative esterase from F.tularensis was studied. Latent fluorophores based on the molecule, fluorescein, were unmasked by the enzymatic activity of the esterase and the increase in fluorescence was measured over time to determine how well the e tcrase recognized …
Determining The Effect Of Double-Stranded Rna Treatment In Ovarian Cancer, Charlotte Roberts
Determining The Effect Of Double-Stranded Rna Treatment In Ovarian Cancer, Charlotte Roberts
Theses and Dissertations
DETERMINING THE EFFECT OF DOUBLE-STRANDED RNA TREATMENT IN OVARIAN CANCER By Charlotte Faye Roberts, B.A. A thesis submitted in partial fulfillment of the requirements for the degree of Masters of Science in Biochemistry at Virginia Commonwealth University.Virginia Commonwealth University, 2011Major Director: Jessica K. Bell, Ph.D.Assistant Professor, Department of Biochemistry & Molecular Biology. Epithelial ovarian cancer is a lethal gynecological malignancy. Due to its asymptomatic nature it is typically detected in the latter metastatic stages. Standard treatment protocol involves surgical cytoreduction, followed by a combination of taxane and platinum-based chemotherapeutics. Initially this treatment is successful however, most patients face recurring tumors …