Nanophotonics And Nanomaterials For Microbial Inactivation,
2022
University of South Florida
Nanophotonics And Nanomaterials For Microbial Inactivation, Sharad Ambardar
USF Tampa Graduate Theses and Dissertations
The study of light-matter interaction at nanoscale, also termed as nanophotonics, has gained vast attention due to its multidisciplinary application in the field of chemical engineering for the synthesis of nanomaterials, in the field of physics to study non-linear optical processes and optical phenomena in nanocavities and in the field of biology, biomedicine to study and develop novel optical nanoprobes for diagnostics, nanobiosensing and near-field imaging.
We studied UV-irradiation-based inactivation of SARS-CoV-2 and other respiratory viruses. In this work, we fabricated a device comprising a pulsed nanosecond 266 nm UV laser coupled to an integrating cavity (LIC), composed of a …
Gain-Of-Signal Assays For Probing Inhibition Of Sars-Cov-2 Mpro/3clpro In Living Cells,
2022
The Texas Medical Center Library
Gain-Of-Signal Assays For Probing Inhibition Of Sars-Cov-2 Mpro/3clpro In Living Cells, Seyed Arad Moghadasi, Morgan A Esler, Yuka Otsuka, Jordan T Becker, Sofia N Moraes, Constance B Anderson, Srinivas Chamakuri, Christopher Belica, Chloe Wick, Daniel A Harki, Damian W Young, Louis Scampavia, Timothy P Spicer, Ke Shi, Hideki Aihara, William L Brown, Reuben S Harris
Faculty, Staff and Students Publications
The main protease, Mpro, of SARS-CoV-2 is required to cleave the viral polyprotein into precise functional units for virus replication and pathogenesis. Here, we report quantitative reporters for Mpro function in living cells in which protease inhibition by genetic or chemical methods results in robust signal readouts by fluorescence (enhanced green fluorescent protein [eGFP]) or bioluminescence (firefly luciferase). These gain-of-signal systems are scalable to high-throughput platforms for quantitative discrimination between Mpro mutants and/or inhibitor potencies as evidenced by validation of several reported inhibitors. Additional utility is shown by single Mpro amino acid variants and structural information combining to demonstrate that …
Deciphering Phosphoprotein Phosphatase Signaling Networks Using Proteomics Approaches,
2022
Dartmouth College
Deciphering Phosphoprotein Phosphatase Signaling Networks Using Proteomics Approaches, Brooke Brauer
Dartmouth College Ph.D Dissertations
Protein phosphorylation is a highly regulated mechanism of cell signaling control and its deregulation is implicated in disease. The kinases that catalyze the addition of phosphate groups onto their substrate proteins have been well studied, their signaling pathways mapped, and their effects on cell and organismal health observed. Knowledge of the phosphatases that reverse the reaction only recently began to come into focus. Phosphoprotein phosphatases (PPPs), long thought to be housekeeping enzymes, are now known to be exquisitely specific towards their substrates, but the exact nature of phosphatase regulation—both upstream and downstream of the phosphatase—is unclear.
PPPs recognize substrates through …
Ten Steps To Organize A Virtual Scientific Symposium And Engage Your Global Audience,
2022
CUNY Graduate Center
Ten Steps To Organize A Virtual Scientific Symposium And Engage Your Global Audience, Jiye Son, Jasmine Sabio, Ankit Jain, Rein V. Ulijn
Publications and Research
The paper describes guidelines for the planning, organization, and successful execution of virtual, global scientific conferences for global audiences. The guidelines are based on experience and lessons learned during the organization of the 3-day 2020 Virtual Systems Chemistry Symposium hosted on Zoom webinar and Twitter, held on May 2020 with over 1000 registered participants from 46 different countries.
Variation On A Theme: The Structures And Biosynthesis Of
Specialized Fatty Acid Natural Products In Plants,
2022
University of Minnesota Duluth
Variation On A Theme: The Structures And Biosynthesis Of Specialized Fatty Acid Natural Products In Plants, Samuel Scott, Edgar B. Cahoon, Lucas Busta
Department of Biochemistry: Faculty Publications
Plants are able to construct lineage-specific natural products from a wide array of their core metabolic pathways. Considerable progress has been made toward documenting and understanding, for example, phenylpropanoid natural products derived from phosphoenolpyruvate via the shikimate pathway, terpenoid compounds built using isopentyl pyrophosphate, and alkaloids generated by the extensive modification of amino acids. By comparison, natural products derived from fatty acids have received little attention, except for unusual fatty acids in seed oils and jasmonate-like oxylipins. However, scattered but numerous reports show that plants are able to generate many structurally diverse compounds from fatty acids, including some with highly …
Crispr/Cas13 Effectors Have Differing Extents Of Off-Target Effects That Limit Their Utility In Eukaryotic Cells,
2022
The Texas Medical Center Library
Crispr/Cas13 Effectors Have Differing Extents Of Off-Target Effects That Limit Their Utility In Eukaryotic Cells, Yuxi Ai, Dongming Liang, Jeremy E Wilusz
Faculty, Staff and Students Publications
CRISPR/Cas13 effectors have garnered increasing attention as easily customizable tools for detecting and depleting RNAs of interest. Near perfect complementarity between a target RNA and the Cas13-associated guide RNA is required for activation of Cas13 ribonuclease activity. Nonetheless, the specificity of Cas13 effectors in eukaryotic cells has been debated as the Cas13 nuclease domains can be exposed on the enzyme surface, providing the potential for promiscuous cleavage of nearby RNAs (so-called collateral damage). Here, using co-transfection assays in Drosophila and human cells, we found that the off-target effects of RxCas13d, a commonly used Cas13 effector, can be as strong as …
Ceramide-1-Phosphate: A Novel Regulator Of Golgi Fragmentation, Golgi-Er Vesicle Trafficking, And Anaplasma Phagocytophilum Pathogenesis,
2022
University of South Florida
Ceramide-1-Phosphate: A Novel Regulator Of Golgi Fragmentation, Golgi-Er Vesicle Trafficking, And Anaplasma Phagocytophilum Pathogenesis, Anika Nayar Ali
USF Tampa Graduate Theses and Dissertations
Anaplasma phagocytophilum, the etiologic agent of human granulocytic anaplasmosis (HGA), is a tick transmitted obligate intracellular bacterium that infects granulocytes, bone marrow progenitor cells and endothelial cells. HGA exhibits symptoms of febrile illness including fever, chills, headache, malaise, leukopenia and elevated liver enzymes which are treatable by antibiotics. However, elderly and immunocompromised patients are at a greater risk of developing fatal complications. Inside the host cell A.phagocytophilum resides in host cell derived vacuole called A.phagocytophilum occupied vacuole (ApV) where it undergoes its biphasic lifecycle. Being an intracellular pathogen, A.phagocytophilum relies heavily on nutrient acquisition from host cell and to obtain …
Exploring Melatonin As A Treatment For Oral Ulcers,
2022
Brigham Young University
Exploring Melatonin As A Treatment For Oral Ulcers, William H. Sutherland
Undergraduate Honors Theses
The hormone melatonin is best known for its role in the sleep-wake cycle, but its anti-inflammatory and antioxidant effects have significant implications that have not been fully explored in oral health. Some studies use melatonin to treat gastrointestinal ulcers, including duodenal ulcers and oral mucositis, but we found no study reporting its effects on more common oral ulcers, like aphthous stomatitis. We hypothesize that the anti-inflammatory and antioxidant characteristics of melatonin could effectively prevent and heal oral ulcers. In this paper, we review the literature on melatonin to propose its use as a treatment for oral ulcers. We also include …
17Β-Estradiol Treatment Improves Acetylcholine-Induced Relaxation Of Mesenteric Arteries In Ovariectomized Uc Davis Type 2 Diabetes Mellitus Rats In Prediabetic State,
2022
University of the Pacific
17Β-Estradiol Treatment Improves Acetylcholine-Induced Relaxation Of Mesenteric Arteries In Ovariectomized Uc Davis Type 2 Diabetes Mellitus Rats In Prediabetic State, Md Rahatullah Razan, Farjana Akther, Rifat Ara Islam, James L. Graham, Kimber L. Stanhope, Peter J. Havel, Roshanak Rahimian
School of Pharmacy Faculty Articles
We recently reported sex differences in mesenteric arterial function of the UC Davis type-2 diabetes mellitus (UCD-T2DM) rats as early as the prediabetic state. We reported that mesenteric arteries (MA) from prediabetic male rats exhibited a greater impairment compared to that in prediabetic females. However, when females became diabetic, they exhibited a greater vascular dysfunction than males. Thus, the aim of this study was to investigate whether the female sex hormone, estrogen preserves mesenteric arterial vasorelaxation in UCD-T2DM female rats at an early prediabetic state. Age-matched female Sprague Dawley and prediabetic (PD) UCD-T2DM rats were ovariectomized (OVX) and subcutaneously implanted …
Luminescence And Scintillation In The Niobium Doped Oxyfluoride Rb4Ge5O9F6:Nb,
2022
University of South Carolina - Columbia
Luminescence And Scintillation In The Niobium Doped Oxyfluoride Rb4Ge5O9F6:Nb, Darren Carone, Vladislav V. Klepov, Scott T. Misture, Joseph C. Schaeperkoetter, Luiz G. Jacobsohn, Mina Aziziha, Juliano Schorne-Pinto, Stuart A. J. Thomson, Adrian T. Hines, Theodore M. Besmann, Hans Conrad Zur Loye
Faculty Publications
A new niobium-doped inorganic scintillating oxyfluoride, Rb4Ge5O9F6:Nb, was synthesized in single crystal form by high-temperature flux growth. The host structure, Rb4Ge5O9F6, crystallizes in the orthorhombic space group Pbcn with lattice parameters a = 6.98430(10) Å, b = 11.7265(2) Å, and c = 19.2732(3) Å, consisting of germanium oxyfluoride layers made up of Ge3O9 units connected by GeO3F3 octahedra. In its pure form, Rb4Ge5O9F6 shows neither luminescence nor scintillation but when doped …
Glucose Homeostasis In Human Diabetic Adipocytes: Role Of Glp1 In Sortilin Alternative Splicing,
2022
University of South Florida
Glucose Homeostasis In Human Diabetic Adipocytes: Role Of Glp1 In Sortilin Alternative Splicing, Ashley Lui
USF Tampa Graduate Theses and Dissertations
Type 2 diabetes mellitus (T2DM) is a chronic and progressive metabolic disease defined by systemic insulin resistance. The inability of cells to respond to insulin and take up glucose results in elevated blood sugar that is detrimental to the overall health of patients. There is no cure for T2DM. Identification of new targets to alleviate hyperglycemia are crucial for treatment and prevention of metabolic diseases. Adipocytes play a central role in glycemic regulation by insulin stimulated glucose uptake, storage of excess nutrients, and secretion of adipokines. Major glucose transporter-4 (Glut4) is the main transporter responsible for postprandial clearance of glucose …
Hepcidin Antimicrobial Peptide (Hamp) Screening For P.Cys70arg Variant And Iron Overload In Β -Thalassemia Major Patients,
2022
School of Biochemistry and Biotechnology, University of the Punjab, Lahore, Pakistan
Hepcidin Antimicrobial Peptide (Hamp) Screening For P.Cys70arg Variant And Iron Overload In Β -Thalassemia Major Patients, Ambreen Kanwal, Malik Siddique Mahmood, Saba Irshad
Journal of Bioresource Management
Hereditary Hemochromatosis is a rare genetic iron overload disorder characterized by iron accumulation in vital body organs such as the lungs, liver, and pancreas. HAMP mutations are reported as one of the principal sources for the disturbance of iron homeostasis. This study was designed to screen the involvement of p.Cys70Arg HAMP variant in iron overload in the β-thalassemia patients. For the purpose, bioinformatics tools were used for the structural and functional manifestation of mutated protein which revealed 1.93 kcal/mol energy differences between the wild-type and mutated proteins, causing the stability decline. Following that, clinical data was collected for 106 β-thalassemia …
Expression And Purification Of E. Coli Yoaa, A Putative Helicase,
2022
Wayne State University School of Medicine
Expression And Purification Of E. Coli Yoaa, A Putative Helicase, Mark Gregory, Vincent Sutera Mr., Susan Lovett Dr.
Medical Student Research Symposium
All cells must maintain their genomic integrity to survive, which they achieve through several repair mechanisms that necessitate unwinding the damaged DNA by helicases. In Escherichia coli (E. coli), YoaA has been genetically shown to be involved in DNA repair and shares conserved sequences with helicase DinG. The goal of our study was to purify YoaA for further biochemical characterization. For expression, YoaA was fused to a His tag and overexpressed in MG1655 E.coli under the lacZ or T7 promoters for 2 hours, 4 hours, or overnight at 24oC, 30oC or 37oC. For purification, crude lysate was applied to a …
Autofluorescence Microscopy: Identifying Bacterial Signals On Rock Samples,
2022
Portland State University
Autofluorescence Microscopy: Identifying Bacterial Signals On Rock Samples, Noel Case
University Honors Theses
One common method for identifying microbes present in fluid and non-fluid samples is fluorescent dye staining, in which samples are stained with a fluorophore - a molecule excited by an external light source that re-emits energy as higher-wavelength light. The excitation wavelength used greatly impacts the observability of microbes in the resulting fluorescence images, and deep ultraviolet excitation (200-280 nm) seems to provide the highest signal-to-noise ratio of any excitation range. By inoculating rock samples (gypsum and marble) with B. subtilis, staining with SYTO 9, Acridine Orange and FM 1-43 dyes, and imaging with deep UV (275 nm), near …
Variants In Asph Cause Exertional Heat Illness And Are Associated With Malignant Hyperthermia Susceptibility,
2022
The Texas Medical Center Library
Variants In Asph Cause Exertional Heat Illness And Are Associated With Malignant Hyperthermia Susceptibility, Yukari Endo, Linda Groom, Alper Celik, Natalia Kraeva, Chang Seok Lee, Sung Yun Jung, Lois Gardner, Marie-Anne Shaw, Susan L Hamilton, Philip M Hopkins, Robert T Dirksen, Sheila Riazi, James J Dowling
Faculty, Staff and Students Publications
Exertional heat illness (EHI) and malignant hyperthermia (MH) are life threatening conditions associated with muscle breakdown in the setting of triggering factors including volatile anesthetics, exercise, and high environmental temperature. To identify new genetic variants that predispose to EHI and/or MH, we performed genomic sequencing on a cohort with EHI/MH and/or abnormal caffeine-halothane contracture test. In five individuals, we identified rare, pathogenic heterozygous variants in ASPH, a gene encoding junctin, a regulator of excitation-contraction coupling. We validated the pathogenicity of these variants using orthogonal pre-clinical models, CRISPR-edited C2C12 myotubes and transgenic zebrafish. In total, we demonstrate that ASPH variants represent …
Dj-1
Is Not A Deglycase And Makes A Modest Contribution To
Cellular Defense Against Methylglyoxal Damage In Neurons,
2022
National Institutes of Health
Dj-1 Is Not A Deglycase And Makes A Modest Contribution To Cellular Defense Against Methylglyoxal Damage In Neurons, Melissa Conti Mazza, Sarah C. Shuck, Jiusheng Lin, Michael Moxley, John Termini, Mark R. Cookson, Mark A. Wilson
Department of Biochemistry: Faculty Publications
Human DJ-1 is a cytoprotective protein whose absence causes Parkinson's disease and is also associated with other diseases. DJ-1 has an established role as a redox-regulated protein that defends against oxidative stress and mitochondrial dysfunction. Multiple studies have suggested that DJ-1 is also a protein/nucleic acid deglycase that plays a key role in the repair of glycation damage caused by methylglyoxal (MG), a reactive α-keto aldehyde formed by central metabolism. Contradictory reports suggest that DJ-1 is a glyoxalase but not a deglycase and does not play a major role in glycation defense. Resolving this issue is important for understanding how …
The Regulation Of Atg9a-Mediated Aggrephagy By An Ulk1-Independent Atg13-Atg101 Complex,
2022
Brigham Young University
The Regulation Of Atg9a-Mediated Aggrephagy By An Ulk1-Independent Atg13-Atg101 Complex, Joshua Youngs
Undergraduate Honors Theses
Aggrephagy, a type of autophagy, is an essential cellular process by which protein aggregates are collected and broken down in the lysosome. Protein aggregates are implicated in several diseases including Alzheimer’s disease, diabetes, and cancer. Here, we investigate the ATG13-ATG101 protein complex, a sub-complex of the canonical ULK1 complex whose regulatory role in aggrephagy is not completely understood. We also develop a protein fragment complementation (PFC) assay using the biotin ligase TurboID to study the functions of the ATG13-ATG101 complex with increased specificity. We demonstrate that ATG13 is required for optimal degradation of p62-ubiquitin condensates. We also show that a …
Overexpression Of Foxf2 In Prostate Cancer Cells Causes An Increase In Cancer Cell Apoptosis And A Decrease In Proliferation,
2022
Seattle Pacific University
Overexpression Of Foxf2 In Prostate Cancer Cells Causes An Increase In Cancer Cell Apoptosis And A Decrease In Proliferation, Vaughn Poon
Honors Projects
FOXF2 is a transcription factor that plays a crucial role in organ development, and recent studies have shown that it suppresses tumor growth and progression in mouse prostate models by attenuating the cancer-associated fibroblasts (CAF) phenotype and transcriptionally downregulating Cxcl5. However, the effects of FOXF2 overexpression in prostate cancer cells have not been extensively studied. Here, we investigate the impact of FOXF2 overexpression in prostate cancer cells and demonstrate that it leads to a significant increase in cell apoptosis and a decrease in proliferation. These findings suggest that FOXF2 may have potential as an immunotherapy drug target for prostate …
Evolutionary Action Of Mutations Reveals Antimicrobial Resistance Genes In Escherichia Coli,
2022
The Texas Medical Center Library
Evolutionary Action Of Mutations Reveals Antimicrobial Resistance Genes In Escherichia Coli, David C Marciano, Chen Wang, Teng-Kuei Hsu, Thomas Bourquard, Benu Atri, Ralf B Nehring, Nicholas S Abel, Elizabeth A Bowling, Taylor J Chen, Pamela D Lurie, Panagiotis Katsonis, Susan M Rosenberg, Christophe Herman, Olivier Lichtarge
Faculty, Staff and Students Publications
Since antibiotic development lags, we search for potential drug targets through directed evolution experiments. A challenge is that many resistance genes hide in a noisy mutational background as mutator clones emerge in the adaptive population. Here, to overcome this noise, we quantify the impact of mutations through evolutionary action (EA). After sequencing ciprofloxacin or colistin resistance strains grown under different mutational regimes, we find that an elevated sum of the evolutionary action of mutations in a gene identifies known resistance drivers. This EA integration approach also suggests new antibiotic resistance genes which are then shown to provide a fitness advantage …
Decoding The Pitx2-Controlled Genetic Network In Atrial Fibrillation,
2022
The Texas Medical Center Library
Decoding The Pitx2-Controlled Genetic Network In Atrial Fibrillation, Jeffrey D Steimle, Francisco J Grisanti Canozo, Minjun Park, Zachary A Kadow, Md Abul Hassan Samee, James F Martin
Faculty, Staff and Students Publications
Atrial fibrillation (AF), the most common sustained cardiac arrhythmia and a major risk factor for stroke, often arises through ectopic electrical impulses derived from the pulmonary veins (PVs). Sequence variants in enhancers controlling expression of the transcription factor PITX2, which is expressed in the cardiomyocytes (CMs) of the PV and left atrium (LA), have been implicated in AF predisposition. Single nuclei multiomic profiling of RNA and analysis of chromatin accessibility combined with spectral clustering uncovered distinct PV- and LA-enriched CM cell states. Pitx2-mutant PV and LA CMs exhibited gene expression changes consistent with cardiac dysfunction through cell type-distinct, PITX2-directed, cis-regulatory …
