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Articles 1 - 30 of 131
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
Increased Backbone Rigidity Of Artificial Transcription Factors, Jasmine Glover, Emma Otey, Joanna K. Kwao, Nicholas Truex
Increased Backbone Rigidity Of Artificial Transcription Factors, Jasmine Glover, Emma Otey, Joanna K. Kwao, Nicholas Truex
Senior Theses
Programming DNA-binding proteins is an effective strategy for developing therapeutics that regulate gene expression. These proteins can directly bind to DNA to activate or repress transcription of specific genes. Zinc finger proteins are a class of DNA-binding proteins commonly found in eukaryotic organisms. Their DNA-binding function is derived from unique amino acid sequences within each domain that recognizes specific nucleotides, allowing each finger to selectively recognize three DNA base pairs. Adjoining of multiple domains in tandem allows recognition of a specific DNA sequence. Artificial transcription factors can be made of multiple zinc finger domains arranged in tandem and engineered to …
Lighting Up The Cell: Developing A Luminescent Lanthanide Probe For Detecting Rnas, Jonathan Savell
Lighting Up The Cell: Developing A Luminescent Lanthanide Probe For Detecting Rnas, Jonathan Savell
Honors Projects
An anion detecting luminescent probe, Tb:DO2A-Cs124, was repurposed for use in RNA imaging. Potential RNA aptamers were identified for the molecule using Capture-SELEX and MinION sequencing. Fluorimetry data revealed these aptamers did not allow for the probe to luminesce in the presence of target RNAs due to adenosine monophosphate’s ability to quench the emission signal.
Phosphomimetic Substitution Of Serine Residue Ser260 With Aspartate Suggests Regulation Of Activity Of Human Cytosolic Malate Dehydrogenase By Phosphorylation, Charles Pelagalli '25, Luke Tischio, Kathleen Cornely
Phosphomimetic Substitution Of Serine Residue Ser260 With Aspartate Suggests Regulation Of Activity Of Human Cytosolic Malate Dehydrogenase By Phosphorylation, Charles Pelagalli '25, Luke Tischio, Kathleen Cornely
Chemistry & Biochemistry Faculty Publications
Human cytosolic malate dehydrogenase (MDH1) is a key enzyme involved in the malate-aspartate shuttle of eukaryotic cells, and which catalyzes the reaction of oxaloacetate to malate. As MDH1 is responsible for maintaining redox homeostasis by regeneration of NAD+ for glycolysis, its regulation is of particular interest in pharmaceutical applications, specifically in treating cancer cells that proliferate quickly and hence rely greatly on glycolysis. While the regulation of MDH1 by the phosphorylation of key residues has been previously documented, work still remains in identifying the specific residues involved in regulation of the enzyme by phosphorylation. In this study, we used …
Exploring The Role Of Azoreductase Enzymes In Drug Metabolism: Implications For Personalized Medicine, Najoude Claude, Robert Ghergurovich
Exploring The Role Of Azoreductase Enzymes In Drug Metabolism: Implications For Personalized Medicine, Najoude Claude, Robert Ghergurovich
Chemistry & Biochemistry Student Scholarship
Najoude Claude ’26, Biology major
Robert Ghergurovich ’26, Biochemistry major
Faculty mentor: Dr. Tyler Stack, Chemistry and Biochemistry
The gut microbiome hosts trillions of microorganisms that metabolize xenobiotics such as drugs and food dyes. Individual differences lead to variable drug metabolism. We studied two azoreductases: E. coli’s P41407 and Alistipes sp. CHKCL003’s A0A143XFE8. Enzyme P41407 acted on methyl red and ethyl red, while A0A143XFE8 acted on these and also on phenol blue, HMND, and sunset yellow. We propose these enzymes function as quinone reductases, requiring a quinone-like intermediate. Three synthesized compounds confirmed similar kinetics. In conclusion, these insights significantly advance …
Discovery, Purification And Annotation Of Four Novel Mycobacteriophages In New England, Mason Krawczynski
Discovery, Purification And Annotation Of Four Novel Mycobacteriophages In New England, Mason Krawczynski
Chemistry & Biochemistry Student Scholarship
Mason Krawczynski ’26, Biology and Psychology major
Faculty mentor: Dr. Kathleen Cornely, Chemistry and Biochemistry
Mycobacteriophages are viruses that infect bacteria of the Mycobacterium genus. Several thousand mycobacteriophages have been discovered, isolated, and characterized to advance the current understanding of their genomic diversity. The mycobacterium phage selection proves valuable, as they have a broad host range and potential for therapeutic application to treat pathogenic and antibiotic-resistant mycobacteria, such as Mycobacterium tuberculosis, the causative agent of tuberculosis infection. Kraw was isolated from a soil sample collected in Oaks Bluff, Massachusetts, on the island of Martha’s Vineyard in July 2023. FairyPath, Calvinny, …
Tools For Harnessing Atropisomerism In 1-Aryl-Β-Carbolines, Cristina Díaz, Malaquias Loiza, Josef Crenshaw, Brian Ladino, Elizabeth Perda, Alma Martinez, Joseph Mazzucca, John Stathoulopoulos
Tools For Harnessing Atropisomerism In 1-Aryl-Β-Carbolines, Cristina Díaz, Malaquias Loiza, Josef Crenshaw, Brian Ladino, Elizabeth Perda, Alma Martinez, Joseph Mazzucca, John Stathoulopoulos
Chemistry & Biochemistry Student Scholarship
Cristina Díaz ’25, Chemistry major
Malaquias Loiza ’26, Biochemistry major
Josef Crenshaw ’28, Biochemistry major
Brian Ladino ’28, Biochemistry major
Elizabeth Perda ’26, Biochemistry major
Alma Martinez ’26, Biochemistry major
Joseph Mazzucca ’25, Biochemistry major
John Stathoulopoulos ’26, Chemistry major
Faculty mentor: Dr. Seann Mulcahy, Chemistry and Biochemistry
Axially chiral molecules with high barriers to rotation are becoming increasingly more prominent in drug discovery, chemical biology, and materials science. We have shown that 1-aryl-β-carbolines exhibit high configurationally stability, with barriers to rotation greater than 30 kcal/mol and have recently disclosed an asymmetric synthesis of these molecules. In this presentation, we …
Discovery, Purification And Annotation Of A Novel Mycobacteriophage Discovered On The Providence College Campus, Jenna Greene
Discovery, Purification And Annotation Of A Novel Mycobacteriophage Discovered On The Providence College Campus, Jenna Greene
Chemistry & Biochemistry Student Scholarship
Jenna Greene ’26, Biochemistry major
Faculty mentor: Dr. Kathleen Cornely, Chemistry and Biochemistry
Bacteriophages—viruses that infect bacteria—offer a promising alternative to antibiotics in the face of rising antibiotic resistance. In this project, I isolated a novel phage from a soil sample collected in front of Raymond Dining Hall at Providence College. Using Mycobacterium smegmatis as the host, the sample underwent multiple rounds of purification until a single phage, named GMonster (a nod to my family nickname, “Greene Monster”), was isolated. GMonster was submitted to the PhagesDB database and confirmed through sequencing to belong to the A1 cluster—the first of its …
Exploring An Electron-Rich Iron Tricarbonyl Complex Containing An Α-Diimine Ligand, Joseph Maher
Exploring An Electron-Rich Iron Tricarbonyl Complex Containing An Α-Diimine Ligand, Joseph Maher
Chemistry & Biochemistry Student Scholarship
Joseph Maher ’25, Chemistry major
Faculty mentor: Dr. Maria Carroll, Chemistry and Biochemistry
The combustion of fossil fuels increases atmospheric CO2, making hydrogen a promising cleaner energy alternative. Pt has been able to facilitate this reaction efficiently, however, it is expensive and scarce. Fe has shown promise in facilitating 2-electron transfers when bound to redox-active ligands. Reacting the redox-active CyDABMe with benzylidene acetone iron tricarbonyl (bdaFe(CO)3) forms Fe[CyDABMe](CO)3, with vCO values ~10 cm-1 lower than FeArDABMe(CO)3, indicating increased electron density. The reduction potential of CyDABMe was probed using Zn[CyDABMe]Cl2, showing a reduction at 200 mV more negative than Zn[ArDABMe]Cl2. X-ray …
Science, Physiology, And Nutrition For The Nonscientist, Judi S. Morrill
Science, Physiology, And Nutrition For The Nonscientist, Judi S. Morrill
Open Educational Resources
A wonderful blend of physiology, nutrition, biochemistry, genetics, biology, evolution, chemistry--what we all need to know as informed citizens. A basic knowledge of the life sciences and how our bodies work--to promote our own good health, especially as we're bombarded with misleading advertisements, soundbites, and the like. DNA fingerprinting, calorie requirements, dietary advice, genetic engineering (including gene editing with CRISPR cas9)--all in an easy-to understand book.
E-Textbook For Better Learning In Chemistry 120, Anh Vu '27, Jeffery A. Hansen
E-Textbook For Better Learning In Chemistry 120, Anh Vu '27, Jeffery A. Hansen
Annual Student Research Poster Session
Organic chemistry is a highly visual subject since organic compounds are 3D objects. For this reason, in order to fully understand the composition, properties, and chemistry of these compounds, it is essential to understand and visualize their 3D structures. Nevertheless, there is a frequent necessity to depict organic substances on 2D surfaces, such as paper, a computer screen, or a whiteboard. As a result, one of the biggest obstacles we will face is learning these molecules in a 2D format while maintaining an accurate understanding of 3D nature. The purpose of this e-textbook is to fully utilize the digital medium …
Integration Of Machine Learning And Quantum Mechanical Calculations For De Novo Drug Design, Ayesh Madushanka Mahamada Kalapuwage
Integration Of Machine Learning And Quantum Mechanical Calculations For De Novo Drug Design, Ayesh Madushanka Mahamada Kalapuwage
Chemistry Theses and Dissertations
The drug designing process is an intricate and resource-intensive endeavor, spanning approximately 12 years to transform a lead compound into a functional drug. Computer-aided drug design (CADD) plays a fundamental role in this process, mitigating the risk of failures in the later stage and saving valuable time and money. In the last decade, Artificial intelligence (AI) has provided remarkable alternatives for practical challenges, including drug design. Simultaneously, advanced QM calculations have achieved near-experimental accuracy in simulating drug-target interactions. However, introducing QM and AI-based techniques into drug discovery presents considerable challenges. AI techniques require high- quality data and often struggle with …
Computational Analysis Of O6-Methylated Guanine And Thioguanine Complexes, Kirsten Stinson, Michael Bowman
Computational Analysis Of O6-Methylated Guanine And Thioguanine Complexes, Kirsten Stinson, Michael Bowman
Lux et Fides: A Journal for Undergraduate Christian Scholars
DNA methylation occurring on the O6 position of guanine has been linked to the formation of cancer. DNA complexes with O6-methylated guanine have been studied experimentally, yet questions remain concerning the carcinogenic properties of O6-methylguanine. This present research explored the interaction between O6-methylguanine and its potential nucleobase pairs of cytosine and adenine in hopes of elucidating the mutagenic characteristics of O6-methylguanine. A variety of computational methods including Density Functional Theory (DFT), Symmetry Adapted Perturbation Theory (SAPT), Noncovalent Interaction (NCI) analysis, and Natural Bond Orbital (NBO) analysis were employed to comprehensively probe …
Mycobacteriophage Lberry, An A3 Cluster Phage Infecting Mycobacterium Smegmatis, Nathan Berry '25
Mycobacteriophage Lberry, An A3 Cluster Phage Infecting Mycobacterium Smegmatis, Nathan Berry '25
Chemistry & Biochemistry Student Scholarship
Nathan Berry ’25, Biochemistry major
Faculty Mentor: Dr. Kathleen Cornely, Chemistry and Biochemistry
Synthesis Of 2-Substituted Beta-Carbolines From N-Oxides, Alma Martinez '26
Synthesis Of 2-Substituted Beta-Carbolines From N-Oxides, Alma Martinez '26
Chemistry & Biochemistry Student Scholarship
Alma Martinez ’26, Biochemistry major
Faculty Mentor: Dr. Seann Mulcahy, Chemistry and Biochemistry
Mycobacteriophage Maravista, An F1 Cluster Phage Infecting Mycobacterium Smegmatis, Charles Pelagalli '25
Mycobacteriophage Maravista, An F1 Cluster Phage Infecting Mycobacterium Smegmatis, Charles Pelagalli '25
Chemistry & Biochemistry Student Scholarship
Charles Pelagalli ’25, Biochemistry major
Faculty Mentor: Dr. Kathleen Cornely, Chemistry and Biochemistry
Mycobacteriophage Rita, Anna Fakhri '24
Mycobacteriophage Rita, Anna Fakhri '24
Chemistry & Biochemistry Student Scholarship
Anna Fakhri ’24, Biochemistry major
Faculty Mentor: Dr. Kathleen Cornely, Chemistry and Biochemistry
Mycobacteriophage Pembroke, An A3 Cluster Phage Infecting Mycobacterium Smegmatis, Marly Cassford '25
Mycobacteriophage Pembroke, An A3 Cluster Phage Infecting Mycobacterium Smegmatis, Marly Cassford '25
Chemistry & Biochemistry Student Scholarship
Marly Cassford ’25, Biochemistry major
Faculty Mentor: Dr. Kathleen Cornely, Chemistry and Biochemistry
Genome Announcement For E Cluster Phage Tarkin, Katherine Cleary
Genome Announcement For E Cluster Phage Tarkin, Katherine Cleary
Chemistry & Biochemistry Student Scholarship
Katherine Cleary ’23
Major: Biochemistry
Faculty Mentor: Dr. Kathleen Cornely, Chemistry and Biochemistry
Damped Oscillating Phosphoryl Transfer Reaction In The Cyanobacterial Circadian Clock, Hye In Jang, Pyonghwa Kim, Yongick Kim
Damped Oscillating Phosphoryl Transfer Reaction In The Cyanobacterial Circadian Clock, Hye In Jang, Pyonghwa Kim, Yongick Kim
Chemistry Faculty Research
Most organisms have circadian clocks to ensure the metabolic cycle to resonate with the rhythmic environmental changes without “damping,” or losing robustness. Cyanobacteria is the oldest and simplest form of life that is known to harbor this biological intricacy. Its KaiABC-based central oscillator proteins can be reconstituted inside a test tube, and the post-translational modification cycle occurs with 24 h periodicity. KaiC’s two major phosphorylation sites, Ser-431 and Thr-432, become phosphorylated and dephosphorylated by interacting with KaiA and KaiB, respectively. Here, we mutate Thr-432 into Ser to find the oscillatory phosphoryl transfer reaction damps. Previously, this mutant KaiC was reported …
Purification And Kinetic Characterization Of Mutant R111v Human Cytosolic Malate Dehydrogenase, Jackson Demartino
Purification And Kinetic Characterization Of Mutant R111v Human Cytosolic Malate Dehydrogenase, Jackson Demartino
Chemistry & Biochemistry Student Scholarship
Metabolic profiling for a variety of cancerous cells indicate significant increases in the levels of glucose consumption. To support uncontrolled cell division, cancer cells also present an uncoupling of glycolysis from the citric acid cycle to promote glucose carbons to the synthesis of biomass, therefore, requiring a constant supply of NAD+. Recent studies indicate that cancer cells exhibit upregulated cytosolic malate dehydrogenase (MDH1) activity, which catalyzes the conversion of oxaloacetate to malate with the oxidation of NADH, generating NAD+. Given its increased activity, MDH1 may serve as a valuable target for treating cancer. Here we report …
Synthesis Of Trifluoromethyl Ketones By (Diethylamino) Sulfur Trifluoride (Dast)-Mediated Nucleophilic Trifluoromethylation Of Benzoic Acids, Michael A. Vescio
Synthesis Of Trifluoromethyl Ketones By (Diethylamino) Sulfur Trifluoride (Dast)-Mediated Nucleophilic Trifluoromethylation Of Benzoic Acids, Michael A. Vescio
Honors College Theses
Within the past few decades, the presence of fluorine containing
organic molecules has increased significantly. Many of the
current industrial production methods are not cost-effective,
practical, or inherently safe. This work describes a new methodology
for the synthesis of trifluoromethyl ketones. Our new method involves
the use of benzoic acid and trifluoromethyl trimethylsilane (TMSCF3) as starting
materials along with diethylamino sulfur trifluoride (DAST) as a reagent
to obtain moderate to good yields of expected products in a short
reaction times.
Case 59: Inhibition Of Enzymes Involved In Steroid Synthesis: Implications In Diabetes Treatment, Dr. Kathleen Cornely
Case 59: Inhibition Of Enzymes Involved In Steroid Synthesis: Implications In Diabetes Treatment, Dr. Kathleen Cornely
Chemistry & Biochemistry Case Studies
Drugs used to increase insulin sensitivity may also inhibit enzymes involved in steroid synthesis. Prior to this investigation, it was uncertain whether the drugs inhibited the enzymes directly or whether the decrease in androgen synthesis observed during treatment was a secondary effect.
Targeting Heat Shock 27 Kda Protein Induces Androgen Receptor Degradation, Yaxin Li
Targeting Heat Shock 27 Kda Protein Induces Androgen Receptor Degradation, Yaxin Li
ETD Archive
Glioblastoma (GBM) is the most common and aggressive brain tumor, with very poor prognosis. Androgen receptor (AR) plays a significant role in the progression of GBM, and anti-androgen agents have the potential to be used for the treatment of GBM. However, AR mutation commonly happens in GBM, which makes the anti-androgen agents less effective. Heat shock 27 kDa protein (HSP27) is a well-documented chaperone protein to stabilize AR. Inhibition of HSP27 results in AR degradation regardless the mutation status of AR, which makes HSP27 a good target to abolish AR in GBM. Identified compound I ((N-(3-((2,5-dimethoxybenzyl)oxy)-4-(methylsulfonamido) phenyl)-4-methoxybenzamide) inhibits GBM cell …
Computational Investigations Into Binding Dynamics Of Tau Protein Antibodies: Using Machine Learning And Biophysical Models To Build A Better Reality, Katherine Lee
University Scholar Projects
Misregulation of post-translational modifications of microtubule-associated protein tau is implicated in several neurodegenerative diseases including Alzheimer’s disease. Hyperphosphorylation of tau promotes aggregation of tau monomers into filaments which are common in tau-associated pathologies. Therefore, tau is a promising target for therapeutics and diagnostics. Recently, high-affinity, high-specificity single-chain variable fragment (scFv) antibodies against pThr-231 tau were generated and the most promising variant (scFv 3.24) displayed 20-fold increased binding affinity to pThr-231 tau compared to the wild-type. The scFv 3.24 variant contained five point mutations, and intriguingly none were in the tau binding site. The increased affinity was hypothesized to occur due …
Exploring Indicator Displacement Assays For Phosphate Detection In Seawater, Francis Radics
Exploring Indicator Displacement Assays For Phosphate Detection In Seawater, Francis Radics
Chemistry & Biochemistry Student Scholarship
Francis Radics ’22
Major: Biochemistry
Faculty Mentor: Dr. John Breen, Chemistry and Biochemistry
Indicator displacement assays are based on the optical signal modulation of a noncovalently bound indicator upon dissociation by an analyte species. Our work has focused on exploring the lower detection limits for luminescent displacement assays for inorganic phosphate in seawater using complex ions containing two di(2-picolyl)amine ligands (also called DPA or bis(2-pyridylmethyl)amine), each coordinating a zinc cation. Following the work of B.D. Smith and coworkers, we have prepared three ligands by covalently attaching two DPA moieties, 2,6-bis(chloromethyl) benzene, and 2,6-bis(chloromethyl)-4-methylphenol, and 1,2-phenylenedimethylamine, for assays with 6,7-dihydroxy-4-methanesulfonic acid …
The Discovery And Analysis Of Mycobacteriophage “Rita”, Anna Fakhri
The Discovery And Analysis Of Mycobacteriophage “Rita”, Anna Fakhri
Chemistry & Biochemistry Student Scholarship
Anna Fakhri ’24
Major: Biochemistry
Faculty Mentor: Dr. Kathleen Cornely, Chemistry and Biochemistry
Mycobacteriophage “Rita” was isolated on Mycobacterium smegmatis mc2155 from an enriched soil sample from North Easton, Massachusetts. As Rita infects Mycobacterium smegmatis, further study of the phage was completed in order to determine its ability to be utilized in phage therapy for infections caused by pathogenic Mycobacterium, such as Mycobacterium tuberculosis and Mycobacterium abscessus. Once isolated, the phage DNA was analyzed through PCR to determine the phage belonged to cluster F and subcluster F1. The phage DNA was sequenced, and a genome annotation was completed. The annotation …
Characterization Of Immunity Systems In A Cluster Phages, Katherine Cleary
Characterization Of Immunity Systems In A Cluster Phages, Katherine Cleary
Chemistry & Biochemistry Student Scholarship
Katherine Cleary ’23
Major: Biochemistry
Faculty Mentor: Dr. Kathleen A. Cornely, Chemistry and Biochemistry
Bacteriophages are viruses that infect bacteria. Bacteriophages may use two different cycles to infect their hosts, which are the lytic cycle and the lysogenic cycle. During the lysogenic cycle, the phage genome integrates into the bacteria chromosome and becomes a part of the host. If a phage remains in the lysogenic cycle, the host is susceptible to infection from other bacteriophages. This process is known as superinfection and it can have a variety of outcomes. Homoimmunity occurs when the phages have similar repressor proteins. Heteroimmunity occurs …
Fast Photochemical Oxidation And Footprinting Of Proteins Via Trifluoromethyl Radical Chemistry, Elaine Morrow
Fast Photochemical Oxidation And Footprinting Of Proteins Via Trifluoromethyl Radical Chemistry, Elaine Morrow
Honors Theses
Fast photochemical oxidation of proteins (FPOP) is a useful tool in proteomics because of the ability for modifications to occur on the scale of microseconds which reduces the modifications to tertiary and quaternary structure allowing for more accurate labeling of the protein. Labels for FPOP are generated from various radicals in our experiments which include hydroxyl radicals and trifluoromethyl radicals. Hydroxyl radicals are easily generated by using an excimer laser (KrF laser, 248 nm) or a UV flash lamp (as a part of the Fox™ System) by the photolysis of hydrogen peroxide. Trifluoromethyl radicals, however, need hydroxyl radicals to be …
Proline To Serine Mutation In The Active Site Loop Of Malate Dehydrogenase Alters Substrate Specificity, Olivia J. Schmitt
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, Ethan N. Dionne
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 …