Using Integrated Rate Equations To Analyze Acid Phosphatase Kinetics,
2022
Ohio Northern University
Using Integrated Rate Equations To Analyze Acid Phosphatase Kinetics, Melissa Gouge
ONU Student Research Colloquium
In an academic setting, enzyme kinetics are introduced by analysis of the initial rates using the Michaelis-Menten model. To better understand enzyme kinetics, a complete time course analysis will provide a larger set of data, including information on feedback or product inhibition. With this, the Lambert W function can be used to analyze the integrated rate equations. We have started our analysis with the enzyme, acid phosphatase. Inorganic phosphorus is a known competitive inhibitor of the acid phosphatase catalyzed hydrolysis of p-nitrophenylphosphate. Using the integrated form of the rate equation allows us to determine the relative relationship of the K …
Eukaryotic Initiation Factor 4f Promotes A Reorientation Of Eukaryotic Initiation Factor 3 Binding On The 5 And The 3 Utrs Of Barley Yellow Dwarf Virus Mrna,
2022
CUNY Hunter College
Eukaryotic Initiation Factor 4f Promotes A Reorientation Of Eukaryotic Initiation Factor 3 Binding On The 5 And The 3 Utrs Of Barley Yellow Dwarf Virus Mrna, Paul Powell, Usha Bhardwaj, Dixie Goss
Publications and Research
Viral mRNAs that lack a 5 m 7 GTP cap and a 3 poly-A tail rely on structural elements in their untranslated regions (UTRs) to form unique RNA-protein complexes that regulate viral translation. Recent studies of the barley yellow dwarf virus (BYDV) have revealed eukaryotic initiation factor 3 (eIF3) plays a significant role in facilitating communication be- tween its 5 and 3 UTRs by binding both UTRs simultaneously. This report uses in vitro translation assays, fluorescence anisotropy binding assays, and selective 2 -hydroxyl acylation analyzed by primer ex-tension (SHAPE) footprinting to identify secondary structures that are selectively interacting with eIF3. …
Protein Engineering Of A Spectroscopic Probe Into Malate Dehydrogenase (Mdh),
2022
College of Saint Benedict/Saint John's University
Protein Engineering Of A Spectroscopic Probe Into Malate Dehydrogenase (Mdh), Equoia S. Gibson, Mary E. Ludwig, Olivia H. Thompson, Genevieve M. Woods, Ella M. Young
Celebrating Scholarship and Creativity Day (2018-)
Malate dehydrogenase (MDH) is an enzyme that has a key role in biological processes, like the Krebs cycle. Specifically, it reversibly catalyzes the interconversion of (S)-malate with NAD+ to oxaloacetate and NADH. Once oxaloacetate is synthesized, MDH dispatches it to citrate synthase, but it is not clear how this happens. One theory is that MDH channels it to citrate synthase by forming a metabolon, a mechanism for direct channeling, preventing diffusion of reaction intermediates into a bulk matrix. There is a lack of research in this area due to the absence of a spectroscopic probe necessary to visualize MDH’s conformational …
Biochemical Analysis Of Biofilm Formation In Response To Changes In Concentrations Of D-Alanine,
2022
Harrisburg University of Science and Technology
Biochemical Analysis Of Biofilm Formation In Response To Changes In Concentrations Of D-Alanine, Jasmin Cruz, Akeisha Belgrave, Erica Ward
Harrisburg University Research Symposium: Highlighting Research, Innovation, & Creativity
This project involves the biochemical analysis of biofilm formation in response to changes in concentration of D-alanine. I hypothesized that an increase in D-alanine concentration increases the ability for cells to make more cross-links, which increases the viability of bacteria allowing them to make more biofilms. The experiment done showed no significant difference in cell density between four treatment conditions. (Independent Research)
Annual Faculty Research Symposium 2022,
2022
Oakwood University
Annual Faculty Research Symposium 2022, Oakwood University
Proceedings
No abstract provided.
Investigation Of The Role Of Overexpression Of Psbs Under Stress Inducible And Constitutive Promoters To Improve Water Use Efficiency.,
2022
University of Nebraska - Lincoln
Investigation Of The Role Of Overexpression Of Psbs Under Stress Inducible And Constitutive Promoters To Improve Water Use Efficiency., Annie Nelson
Honors Program: Senior Projects (Public)
As climate change continues to impact environmental growth conditions, it has become increasingly more important to identify potential mechanisms of crop development to resist these changes. Previous studies have identified the role of PsbS in the non-photochemical quenching (NPQ) mechanism in the plant by identifying its direct effect on the rate in which excitation energy absorbed by photosystem II is dissipated as heat. It was identified also that PsbS via NPQ oxidizes chloroplastic quinone A (QA) which is a signal for stomatal opening in response to light. By identifying this relationship between PsbS and the signal for stomatal opening in …
Quantification Of Kaempferol Conjugates In Watercress Juice And Methanol Extract: A Study Using Hplc And Protein Binding,
2022
Stephen F Austin State University
Quantification Of Kaempferol Conjugates In Watercress Juice And Methanol Extract: A Study Using Hplc And Protein Binding, Laken Simington
Undergraduate Research Conference
Flavonoids are a large group of biologically active polyphenolic compounds found in plants, that have gained importance in recent years due to their potential medicinal and therapeutic properties of high potency and low systemic toxicity. Kaempferol (3,4′,5,7- tetrahydroxyflavone) is a polyphenol antioxidant dietary flavonoid found in a variety of fruits and leafy vegetables, specifically vegetables of the Brassica family, which includes our subject vegetable, watercress (WC) which is usually grown in marshy lands. Kaempferol (KMP) has been depicted to have revolutionary attribute in overall human health ranging from anti-cancerous to anti-inflammatory properties. Here we show a novel approach for quantifying …
Bomb Calorimetry: A New Method Of Cec Determination,
2022
Stephen F Austin State University
Bomb Calorimetry: A New Method Of Cec Determination, Trace Washburn
Undergraduate Research Conference
A new method of determining the cation exchange capacity (CEC) of clay minerals was examined. This method involved exchanging the smectite clay with organic cations and using bomb calorimetry to measure the energy of combustion of the material. Because the clay is noncombustible, the energy is completely dependent on the amount of organic present, which is dependent on the CEC of the clay. Two organic cations, tetrapentylammonium and octadecyltrimethylammonium , with similar size but much different shape were used. For clays with lower CECs, using the more symmetric ion yielded better accuracy (4.24%), while for clays with higher CEC, using …
Modelling, Cloning, And Expression Of The J Domain Of C. Elegans Rme-8 Protein,
2022
Stephen F Austin State University
Modelling, Cloning, And Expression Of The J Domain Of C. Elegans Rme-8 Protein, Madison Thornhill, My Tran, Bingbing Xiao
Undergraduate Research Conference
Rme-8 is a J domain containing plasma membrane protein that is required for endocytosis in various cells The J domain is a characteristic structural motif found mainly in heat shock protein 40 (Hsp 40 or DnaJ) and other proteins such as Rme-8 Within the J domain is a tripeptide, the HPD motif, that is required by the J domain protein to interact with and stimulate the ATPase activity of Hsp70 a major cellular chaperone Rme-8 protein in C elegans CeRme-8 has not been identified with a particular Hsp70 partner CeHsp70 1 is the only cytosolic Hsp70 in C elegans therefore, …
Investigation Of Iron Homeostasis In Colon Tumorigenesis,
2022
Chemistry and Chemical Biology
Investigation Of Iron Homeostasis In Colon Tumorigenesis, Hyeoncheol Kim Ph.D.
Chemistry and Chemical Biology ETDs
Iron is essential part of the human metabolism. It is a catalytic co-factor for many proteins, but it generates harmful reactive oxygen species in human body. Also, many irons metabolic genes are changes in human cancer cells compared to normal cells, leading to iron accumulation in cancer cells especially in colorectal cancer.
Due to iron’s significant role in colorectal cancer promotion, much research is focused on its role in colorectal cancer genesis. But some important metabolic aspects are not fully addressed and researched. One key aspect of iron on colorectal cancer cell progression is hemin iron. Much research warned hemin …
Als-Associated Kif5a Mutations Abolish Autoinhibition Resulting In A Toxic Gain Of Function,
2022
University of Massachusetts Medical School
Als-Associated Kif5a Mutations Abolish Autoinhibition Resulting In A Toxic Gain Of Function, Desiree M. Barron, Adam R. Fenton, Sara Saez-Atienzar, Anthony Giampetruzzi, Aparna Sreeram, Shankaracharya, Pamela J. Keagle, Victoria R. Doocy, Nathan J. Smith, Eric W. Danielson, Megan Andresano, Mary C. Mccormack, Jaqueline Garcia, Valérie Bercier, Ludo Van Den Bosch, Jonathan R. Brent, Claudia Fallini, Brian J. Traynor, Erica L.F. Holzbaur, John E. Landers
Biochemistry -- Faculty Publications
Understandingthepathogenicmechanismsof diseasemutations is critical toadvancingtreatments.ALS-associated mutations in the gene encoding the microtubulemotor KIF5A result in skipping of exon 27 (KIF5ADExon27) and the encoding of a protein with a novel 39 amino acid residue C-terminal sequence. Here, we report that expression of ALS-linked mutant KIF5A results in dysregulated motor activity, cellular mislocalization, altered axonal transport, and decreased neuronal survival. Single-molecule analysis revealed that the altered C terminus of mutant KIF5A results in a constitutively active state. Furthermore,mutant KIF5A possesses altered protein and RNA interactions and its expression results in altered gene expression/splicing. Taken together, our data support the hypothesis that causative …
Physiological And Biochemical Thermal Stress Conditions Of The Ribbed Mussel, Geukensia Demissa, From Exposed And Less Exposed Areas In The Intertidal Salt Marsh On Tybee Island, Georgia.,
2022
Georgia Southern University
Physiological And Biochemical Thermal Stress Conditions Of The Ribbed Mussel, Geukensia Demissa, From Exposed And Less Exposed Areas In The Intertidal Salt Marsh On Tybee Island, Georgia., Jody E. Erber
Honors College Theses
Geukensia demissa, the ribbed mussel, is a keystone species of Georgia’s coastline that is at risk of experiencing detrimental thermal stress due to climate change. G. demissa interacts positively with a species of salt marsh cordgrass, Spartina alterniflora. Mussels form aggregates beneath salt marsh cordgrass stems where they are shaded and less exposed to sun rays. However, some mussels end up in areas which lack cordgrass and are directly exposed to sun rays. Body temperatures of mussels from exposed areas were found to be higher than mussels from less exposed areas. Thermal stress levels of mussels can be …
A Pathway To Solving The Structure Of Cl-Par-4 Tumor Suppressor Protein: Challenges & Findings,
2022
Old Dominion University
A Pathway To Solving The Structure Of Cl-Par-4 Tumor Suppressor Protein: Challenges & Findings, Krishna Raut, Samjhana Pandey, Andrea M. Clark, Komala Ponniah, Steven M. Pascal
College of Sciences Posters
Prostate apoptosis response-4 (Par-4) is a pro-apoptotic tumor suppressor protein. Down-regulation of this protein has been reported in a myriad of cancers. Conversely, up-regulation of Par-4 is found to be associated with several neurodegenerative disorders. Par-4 is unique in the sense it can selectively induce apoptosis in cancer cells. For this, caspase-dependent intracellular cleavage of Par-4 is essential to produce the functionally active fragment, cl-Par-4 (caspase-cleaved Par-4). The cl-Par-4 protein inhibits the NF-κB-mediated cell survival pathway and causes selective apoptosis in various tumor cells.
Our laboratory is interested in determining the structure of cl-Par-4 and understanding it’s interaction with various …
Investigation Of Magnesium Cation-Proton Exchange With Transmembrane Electrostatically Localized Protons (Telp) At A Liquid-Membrane Interface: Fundamental To Bioenergetics,
2022
Old Dominion University
Investigation Of Magnesium Cation-Proton Exchange With Transmembrane Electrostatically Localized Protons (Telp) At A Liquid-Membrane Interface: Fundamental To Bioenergetics, Gyanendra Kharel, Andrew J. Evans, Christopher M. Russo, Michael Eason, James W. Lee
College of Sciences Posters
The Lee transmembrane electrostatic proton localization (TELP) theory is a revolutionary scientific theory that has successfully explained decades long-standing quandary in the field of bioenergetics in regards to ATP synthesis in biological systems, specifically alkalophilic bacteria. This study provides experimental support for the TELP theory by further demonstrating evidence of a localized proton layer existing at the liquid-membrane interface in a simulated biological membrane apparatus. Whilst monovalent cations have been studied extensively, divalent cation exchange has not been studied experimentally.
A previous study determined equilibrium constant for Na+ and K+ to exchange with localized H+ layer to …
Generating A Colorimetric Ssa4 Transcript Export Reporter For Multicopy Suppression Screen In S. Cerevisiae,
2022
Belmont University
Generating A Colorimetric Ssa4 Transcript Export Reporter For Multicopy Suppression Screen In S. Cerevisiae, Zaid Hatem
[Archive] Belmont University Research Symposium (BURS)
The export of mRNA from the nucleus to the cytoplasm is a regulatory point that is essential to the pathway of gene expression in eukaryotic cells. The export of mRNA transcripts is mediated through selective doorways called the nuclear pore complexes (NPC). Additionally, there are proteins associated with the nuclear pore complex that assist in facilitating the export. This includes association with the export receptor, Mex67, which binds to the transcript and ferries it through NPCs. During cellular stress, such as heat shock, the export of housekeeping mRNA transcripts is halted, forcing these transcripts to remain inside the nucleus and …
Proline To Serine Mutation In The Active Site Loop Of Malate Dehydrogenase Alters Substrate Specificity,
2022
Providence College
Proline To Serine Mutation In The Active Site Loop Of Malate Dehydrogenase Alters Substrate Specificity, Olivia J. Schmitt
Chemistry & Biochemistry Student Scholarship
Cancer cells preferentially undergo glycolysis in aerobic environments, a phenomenon termed the Warburg effect. Malate dehydrogenase (MDH) catalyzes the reversible interconversion of malate and oxaloacetate. Human cytosolic malate dehydrogenase (hMDH1) isoform 3 is involved in the malate-aspartate shuttle (MAS), which oxidizes cytosolic NADH. hMDH1 is implicated in high aerobic glycolysis in cancer cells because NAD is a necessary cofactor for glycolysis. Thus, hMDH1 is a promising molecular target for cancer treatment. A single proline residue at position 110 in the mobile active site loop of hMDH1 was mutated to a serine with the intention of altering the enzyme’s substrate specificity. …
Development And Kinetic Survey Of A G148t Mutant Human Cytosolic Malate Dehydrogenase Isoform 3 Enzyme With Oxaloacetate And A-Ketoglutarate,
2022
Providence College
Development And Kinetic Survey Of A G148t Mutant Human Cytosolic Malate Dehydrogenase Isoform 3 Enzyme With Oxaloacetate And A-Ketoglutarate, Ethan N. Dionne
Chemistry & Biochemistry Student Scholarship
Cancer cells often use an altered metabolic pathway in which glycolysis, uncoupled from the citric acid cycle, serves as the primary source of ATP. To support cancer cell proliferation and growth, the glycolytic enzyme glyceraldehyde-3-phosphate dehydrogenase (GAPDH) must have a constant source of NAD. While lactate dehydrogenase (LDH) in its conversion of pyruvate to lactate is a well-known source of cytosolic NAD for GAPDH activity, cytosolic malate dehydrogenase (MDH1) also plays a role in cell proliferation through its generation of cytosolic NAD by the conversion of OAA to malate. This development has implicated MDH1 in cancer cell metabolism and characterizing …
Investigating The Overexpression Of And Molecular Mechanism Utilized By Acetyl-Coa Carboxylase,
2022
Louisiana State University
Investigating The Overexpression Of And Molecular Mechanism Utilized By Acetyl-Coa Carboxylase, Blaire Peterson
Honors Capstones
No abstract provided.
In Situ Recording Of Mars Soundscape,
2022
University of South Carolina
In Situ Recording Of Mars Soundscape, S. Maurice, B. Chide, N. Murdoch, R. D. Lorenz, D. Mimoun, R. C. Wiens, A. Stott, X. Jacob, T. Bertrand, F. Montmessin, N. L. Lanza, C. Alvarez-Llamas, Stanley M. Angel, M. Aung, J. Balaram, O. Beyssac, A. Cousin, G. Delory, O. Forni, T. Fouchet, Et. Al.
Faculty Publications
Before the Perseverance rover landing, the acoustic environment of Mars was unknown. Models predicted that: (1) atmospheric turbulence changes at centimetre scales or smaller at the point where molecular viscosity converts kinetic energy into heat1, (2) the speed of sound varies at the surface with frequency2,3 and (3) high-frequency waves are strongly attenuated with distance in CO2 (refs. 2,3,4). However, theoretical models were uncertain because of a lack of experimental data at low pressure and the difficulty to characterize turbulence or attenuation in a closed environment. Here, using Perseverance …
Characterization Of A Medium-Dependent Streptomyces Developmental Mutant,
2022
Otterbein University
Characterization Of A Medium-Dependent Streptomyces Developmental Mutant, Dylan Gray, Jennifer A. Bennett
Undergraduate Distinction Papers
Streptomyces coelicolor is a soil-dwelling, Gram-positive Actinobacteria. Streptomyces species produce thousands of secondary metabolites which include many antibiotics used in medicine today. In Streptomyces development, as colonies grow, secondary metabolites are produced, and ultimately mature spores are dispersed. The production of each of these secondary metabolites in wild-type Streptomyces is determined by a distinct biosynthetic pathway. In order to identify new genes for antibiotic production and other aspects of development, an engineered Tn5-derived transposon was used to mutagenize wild-type cells in vivo and produce single, stable insertions.
Colonies that were visually distinct from the wild type were selected for further …
