Open Access. Powered by Scholars. Published by Universities.®
Biochemistry, Biophysics, and Structural Biology Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Biochemistry (402)
- Medicine and Health Sciences (327)
- Molecular Biology (308)
- Medical Specialties (195)
- Medical Sciences (194)
-
- Biology (182)
- Cell and Developmental Biology (164)
- Physical Sciences and Mathematics (147)
- Chemistry (118)
- Cell Biology (100)
- Genetics and Genomics (90)
- Microbiology (66)
- Immunology and Infectious Disease (65)
- Oncology (65)
- Biotechnology (62)
- Diseases (60)
- Genetics (52)
- Biophysics (51)
- Other Biochemistry, Biophysics, and Structural Biology (49)
- Structural Biology (43)
- Engineering (35)
- Laboratory and Basic Science Research (34)
- Molecular Genetics (33)
- Veterinary Medicine (32)
- Chemicals and Drugs (31)
- Veterinary Microbiology and Immunobiology (31)
- Veterinary Pathology and Pathobiology (31)
- Plant Sciences (28)
- Institution
-
- The Texas Medical Center Library (138)
- University of Kentucky (73)
- University of Nebraska - Lincoln (64)
- City University of New York (CUNY) (31)
- University of Arkansas, Fayetteville (26)
-
- University of South Florida (22)
- Clemson University (21)
- Rowan University (20)
- University of Texas Rio Grande Valley (19)
- Calvin University (13)
- Old Dominion University (12)
- University of Denver (12)
- West Virginia University (12)
- South Dakota State University (11)
- University of Texas at El Paso (11)
- United Arab Emirates University (10)
- Chulalongkorn University (9)
- Dartmouth College (9)
- East Tennessee State University (9)
- University of Mississippi (9)
- Wright State University (9)
- Louisiana State University (8)
- Technological University Dublin (8)
- Utah State University (8)
- Wilfrid Laurier University (8)
- Loyola University Chicago (7)
- University of Nebraska Medical Center (7)
- Virginia Commonwealth University (7)
- Brigham Young University (6)
- Chapman University (6)
- Keyword
-
- Humans (62)
- Animals (48)
- Mice (33)
- Cancer (19)
- DNA (17)
-
- Biochemistry (15)
- Female (15)
- Male (14)
- Apoptosis (12)
- Inflammation (12)
- Mitochondria (12)
- College of Natural Science and Mathematics (11)
- Autophagy (10)
- RNA (10)
- Genetics (9)
- Proteomics (9)
- SARS-CoV-2 (9)
- Epigenetics (8)
- Mass spectrometry (8)
- Bacteria (7)
- Bioinformatics (7)
- Biomarkers (7)
- Proteins (7)
- Aging (6)
- Biological Sciences (6)
- Biophysics (6)
- Breast cancer (6)
- CRISPR (6)
- Chromatin (6)
- Fluorescence (6)
- Publication
-
- Faculty, Staff and Students Publications (124)
- Markey Cancer Center Faculty Publications (48)
- Department of Biochemistry: Faculty Publications (30)
- School of Veterinary and Biomedical Sciences: Faculty Publications (30)
- Electronic Theses and Dissertations (28)
-
- Theses and Dissertations (25)
- USF Tampa Graduate Theses and Dissertations (19)
- Dissertations (18)
- Dissertations, Theses, and Capstone Projects (18)
- Honors Theses (16)
- All Dissertations (13)
- Graduate Theses, Dissertations, and Problem Reports (ETD) (12)
- Summer Research (12)
- Open Access Theses & Dissertations (11)
- Graduate Theses and Dissertations (10)
- Research Symposium (10)
- Chulalongkorn University Theses and Dissertations (Chula ETD) (9)
- Dartmouth College Ph.D Dissertations (8)
- Dissertations and Theses (Open Access) (8)
- Theses (8)
- Honors College Theses (7)
- Publications and Research (7)
- Saha Cardiovascular Research Center Faculty Publications (7)
- Theses & Dissertations (7)
- Theses and Dissertations--Molecular and Cellular Biochemistry (7)
- Faculty, Staff and Student Publications (6)
- Graduate School of Biomedical Sciences Theses and Dissertations (6)
- Master's Theses (6)
- Rowan-Virtua School of Osteopathic Medicine Departmental Research (6)
- Theses and Dissertations (Comprehensive) (6)
- Publication Type
- File Type
Articles 511 - 540 of 857
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
Physics 422 Spring 2023 Syllabus - Medical Physics, Ronald Koder
Physics 422 Spring 2023 Syllabus - Medical Physics, Ronald Koder
Open Educational Resources
This is the Spring 2023 syllabus for Physics 315, Medical Physics, at CCNY
Characterization And Genomic Analysis Of Two Escherichia Coli O157:H7 Bacteriophages Isolated From Pigeons, Mohamad I. Alolama
Characterization And Genomic Analysis Of Two Escherichia Coli O157:H7 Bacteriophages Isolated From Pigeons, Mohamad I. Alolama
Dissertations
Enterohemorrhagic Escherichia coli, also known as EHEC, is a subset of Shiga toxin-producing E. coli (STEC), and it has recently been identified as one of the principal foodborne pathogens. E. coli O157:H7 is the most important serotype of STEC for its role in causing foodborne illnesses. E. coli O157:H7 could cause various gastroenteritis symptoms such as diarrhea, hemolytic uremic syndrome, hemorrhagic colitis, and thrombotic thrombocytopenic purpura and may cause death. Elimination of E. coli O157:H7 during food processing and storage is a possible solution. Bacteriophages have a significant impact on bacterial populations in nature due to their ability to …
Will Populations Of Macroinvertebrate Functional Feeding Groups Survive Precipitation Changes?, Malika Gottfried, Laura Kim, Sophia Zuccala
Will Populations Of Macroinvertebrate Functional Feeding Groups Survive Precipitation Changes?, Malika Gottfried, Laura Kim, Sophia Zuccala
Other Student Projects
Climate change is a pervasive issue that has the potential to have detrimental effects on many freshwater organisms and their habitats. Fluctuations in precipitation, changes in temperature, and other long-term shifts in weather patterns are just a few examples of the ways in which climate change is impacting the world around us (“What is Climate Change?” n.d.). The Mill River in Northampton, Massachusetts is an ideal location to measure some of these impacts on macroinvertebrates in various functional feeding groups. Macroinvertebrates are small organisms that lack an internal skeletal system, and their functional feeding groups refer to “the type of …
In Vitro Characterization Of Fluorogenic Chemical Tools To Study Human Carboxylesterases (Cess), Taylor Parish Spidle
In Vitro Characterization Of Fluorogenic Chemical Tools To Study Human Carboxylesterases (Cess), Taylor Parish Spidle
Undergraduate Honors Theses
Human carboxylesterases (CESs) are enzymes that are responsible for the metabolism of many important pharmaceuticals. Although CESs are key players in the hydrolysis of many ester-containing drugs, they remain understudied. Our group hypothesizes that this is primarily because there are few methods capable of reporting activity in live cells. Here, I report a new series of fluorogenic chemical tools to study the CES activity of one of the two major CESs in humans, CES1, in live cells. MCP-Me, MCP-Et, and MCP-iPr utilize the same carbonate group of a previously developed chemical tool in our group, FCP-1, and work to mimic …
Ins And Outs Of Rocker Switch Mechanism In Major Facilitator Superfamily Of Transporters, Stephanie Sauve, Joseph Williamson, Adithya Polasa, Mahmoud Moradi
Ins And Outs Of Rocker Switch Mechanism In Major Facilitator Superfamily Of Transporters, Stephanie Sauve, Joseph Williamson, Adithya Polasa, Mahmoud Moradi
Chemistry & Biochemistry Faculty Publications and Presentations
The major facilitator superfamily (MFS) of transporters consists of three classes of membrane transporters: symporters, uniporters, and antiporters. Despite such diverse functions, MFS transporters are believed to undergo similar conformational changes within their distinct transport cycles, known as the rocker-switch mechanism. While the similarities between conformational changes are noteworthy, the differences are also important since they could potentially explain the distinct functions of symporters, uniporters, and antiporters of the MFS superfamily. We reviewed a variety of experimental and computational structural data on a select number of antiporters, symporters, and uniporters from the MFS family to compare the similarities and differences …
A Kinome-Wide Crispr Screen Identifies Ck1Α As A Target To Overcome Enzalutamide Resistance Of Prostate Cancer, Jinghui Liu, Yue Zhao, Daheng He, Katelyn M. Jones, Shan Tang, Derek B. Allison, Yanquan Zhang, Jing Chen, Qiongsi Zhang, Xinyi Wang, Chaohao Li, Chi Wang, Lang Li, Xiaoqi Liu
A Kinome-Wide Crispr Screen Identifies Ck1Α As A Target To Overcome Enzalutamide Resistance Of Prostate Cancer, Jinghui Liu, Yue Zhao, Daheng He, Katelyn M. Jones, Shan Tang, Derek B. Allison, Yanquan Zhang, Jing Chen, Qiongsi Zhang, Xinyi Wang, Chaohao Li, Chi Wang, Lang Li, Xiaoqi Liu
Markey Cancer Center Faculty Publications
Enzalutamide (ENZA), a second-generation androgen receptor antagonist, has significantly increased progression-free and overall survival of patients with metastatic prostate cancer (PCa). However, resistance remains a prominent obstacle in treatment. Utilizing a kinome-wide CRISPR-Cas9 knockout screen, we identified casein kinase 1a (CK1a) as a therapeutic target to overcome ENZA resistance. Depletion or pharmacologic inhibition of CK1a enhanced ENZA efficacy in ENZA-resistant cells and patient-derived xenografts. Mechanistically, CK1a phosphorylates the serine residue S1270 and modulates the protein abundance of ataxia telangiectasia mutated (ATM), a primary initiator of DNA double-strand break (DSB)-response signaling, which is compromised in ENZA-resistant cells and patients. Inhibition of …
Identification Of A Nacc1-Regulated Gene Signature Implicated In The Features Of Triple-Negative Breast Cancer, Chrispus Ngule, Hami Hemati, Xingcong Ren, Oluwafunminiyi Obaleye, Amos O. Akinyemi, Felix Oyelami, Xiaofang Xiong, Jianxun Song, Xia Liu, Jin-Ming Yang
Identification Of A Nacc1-Regulated Gene Signature Implicated In The Features Of Triple-Negative Breast Cancer, Chrispus Ngule, Hami Hemati, Xingcong Ren, Oluwafunminiyi Obaleye, Amos O. Akinyemi, Felix Oyelami, Xiaofang Xiong, Jianxun Song, Xia Liu, Jin-Ming Yang
Markey Cancer Center Faculty Publications
Triple-negative breast cancer (TNBC), characterized by a deficiency in estrogen receptor (ER), progesterone receptor (PR), and human epidermal growth factor receptor2 (HER2), is among the most lethal subtypes of breast cancer (BC). Nevertheless, the molecular determinants that contribute to its malignant phenotypes such as tumor heterogeneity and therapy resistance, remain elusive. In this study, we sought to identify the stemness-associated genes involved in TNBC progression. Using bioinformatics approaches, we found 55 up- and 9 downregulated genes in TNBC. Out of the 55 upregulated genes, a 5 gene-signature (CDK1, EZH2, CCNB1, CCNA2, and AURKA) involved in cell regeneration was positively correlated …
In Situ Microwave Fixation Provides An Instantaneous Snapshot Of The Brain Metabolome, Jelena A. Juras, Madison B. Webb, Lyndsay E. A. Young, Kia H. Markussen, Tara R. Hawkinson, Michael D. Buoncristiani, Kayli E. Bolton, Peyton T. Coburn, Meredith I. Williams, Lisa P. Y. Sun, William C. Sanders, Ronald C. Bruntz, Lindsey R. Conroy, Chi Wang, Matthew S. Gentry, Bret N. Smith, Ramon C. Sun
In Situ Microwave Fixation Provides An Instantaneous Snapshot Of The Brain Metabolome, Jelena A. Juras, Madison B. Webb, Lyndsay E. A. Young, Kia H. Markussen, Tara R. Hawkinson, Michael D. Buoncristiani, Kayli E. Bolton, Peyton T. Coburn, Meredith I. Williams, Lisa P. Y. Sun, William C. Sanders, Ronald C. Bruntz, Lindsey R. Conroy, Chi Wang, Matthew S. Gentry, Bret N. Smith, Ramon C. Sun
Markey Cancer Center Faculty Publications
Brain glucose metabolism is highly heterogeneous among brain regions and continues postmortem. In particular, we demonstrate exhaustion of glycogen and glucose and an increase in lactate production during conventional rapid brain resection and preservation by liquid nitrogen. In contrast, we show that these post- mortem changes are not observed with simultaneous animal sacrifice and in situ fixation with focused, high- power microwave. We further employ microwave fixation to define brain glucose metabolism in the mouse model of streptozotocin-induced type 1 diabetes. Using both total pool and isotope tracing analyses, we identified global glucose hypometabolism in multiple brain regions, evidenced by …
Targeting Lncrna Ddit4-As1 Sensitizes Triple Negative Breast Cancer To Chemotherapy Via Suppressing Of Autophagy, Ting Jiang, Jiaojiao Zhu, Shilong Jiang, Zonglin Chen, Ping Xu, Rong Gong, Changxin Zhong, Yueying Cheng, Xinyuan Sun, Wenjun Yi, Jinming Yang, Wenhu Zhou, Yan Cheng
Targeting Lncrna Ddit4-As1 Sensitizes Triple Negative Breast Cancer To Chemotherapy Via Suppressing Of Autophagy, Ting Jiang, Jiaojiao Zhu, Shilong Jiang, Zonglin Chen, Ping Xu, Rong Gong, Changxin Zhong, Yueying Cheng, Xinyuan Sun, Wenjun Yi, Jinming Yang, Wenhu Zhou, Yan Cheng
Markey Cancer Center Faculty Publications
In this study, it is found that the lncRNA, DNA damage inducible transcript 4 antisense RNA1 (DDIT4-AS1), is highly expressed in triple-negative breast cancer (TNBC) cell lines and tissues due to H3K27 acetylation in the promoter region, and promotes the proliferation, migration, and invasion of TNBC cells via activating autophagy. Mechanistically, it is shown that DDIT4-AS1 induces autophagy by stabilizing DDIT4 mRNA via recruiting the RNA binding protein AUF1 and promoting the interaction between DDIT4 mRNA and AUF1, thereby inhibiting mTOR signaling pathway. Furthermore, silencing of DDIT4-AS1 enhances the sensitivity of TNBC cells to chemotherapeutic agents such as paclitaxel both …
Coevolutionary Signals In Metabotropic Glutamate Receptors Capture Residue Contacts And Long-Range Functional Interactions, Eunna Huh, Melina A Agosto, Theodore G Wensel, Olivier Lichtarge
Coevolutionary Signals In Metabotropic Glutamate Receptors Capture Residue Contacts And Long-Range Functional Interactions, Eunna Huh, Melina A Agosto, Theodore G Wensel, Olivier Lichtarge
Faculty, Staff and Students Publications
Upon ligand binding to a G protein-coupled receptor, extracellular signals are transmitted into a cell through sets of residue interactions that translate ligand binding into structural rearrangements. These interactions needed for functions impose evolutionary constraints so that, on occasion, mutations in one position may be compensated by other mutations at functionally coupled positions. To quantify the impact of amino acid substitutions in the context of major evolutionary divergence in the G protein-coupled receptor subfamily of metabotropic glutamate receptors (mGluRs), we combined two phylogenetic-based algorithms, Evolutionary Trace and covariation Evolutionary Trace, to infer potential structure-function couplings and roles in mGluRs. We …
E-Cigarette Aerosols Of Propylene Glycol Impair Bk Channel Activity And Parameters Of Mucociliary Function, Michael D Kim, Samuel Chung, Nathalie Baumlin, Liang Sun, Neerupma Silswal, John S Dennis, Makoto Yoshida, Juan Sabater, Frank T Horrigan, Matthias Salathe
E-Cigarette Aerosols Of Propylene Glycol Impair Bk Channel Activity And Parameters Of Mucociliary Function, Michael D Kim, Samuel Chung, Nathalie Baumlin, Liang Sun, Neerupma Silswal, John S Dennis, Makoto Yoshida, Juan Sabater, Frank T Horrigan, Matthias Salathe
Faculty, Staff and Students Publications
Propylene glycol (PG) is a common delivery vehicle for nicotine and flavorings in e-cigarette (e-cig) liquids and is largely considered safe for ingestion. However, little is known about its effects as an e-cig aerosol on the airway. Here, we investigated whether pure PG e-cig aerosols in realistic daily amounts impact parameters of mucociliary function and airway inflammation in a large animal model (sheep) in vivo and primary human bronchial epithelial cells (HBECs) in vitro. Five-day exposure of sheep to e-cig aerosols of 100% PG increased mucus concentrations (% mucus solids) of tracheal secretions. PG e-cig aerosols further increased the activity …
Simulating A Flexible Water Model As Rigid: Best Practices And Lessons Learned, Raymond Weldon, Feng Wang
Simulating A Flexible Water Model As Rigid: Best Practices And Lessons Learned, Raymond Weldon, Feng Wang
Chemistry & Biochemistry Faculty Publications and Presentations
Two ways to create rigid versions of flexible models are explored. The rigid model can assume the Model’s Geometry (MG) as if the molecule is not interacting with any other molecules or the ensemble averaged geometry (EG) under a particular thermodynamic condition. Although the MG model is more straightforward to create, it leads to relatively poor performance. The EG model behaves similarly to the corresponding flexible model (the FL model) and, in some cases, agrees even better with experiments. While the difference between the EG and the FL models is mostly a result of flexibility, the MG and EG models …
Toward The Yeast Surface Display Of Microviridin B, Jillian Leigh Stafford
Toward The Yeast Surface Display Of Microviridin B, Jillian Leigh Stafford
Chemistry and Chemical Biology ETDs
Humans have turned to natural products for medicinal therapeutics for millennia. In recent years, the ribosomally synthesized and post-translationally modified peptide (RiPP) class of natural products have garnered a lot of attention due to their ability for heterologous expression, relative ease of mutation, and vast biological activates. Microviridins are a family of RiPPs that contain a tricyclic cage-like structure through the formation of two lactone rings and one lactam ring catalyzed by two ATP-grasp ligase family enzymes. Microviridins are potent inhibitors of serine proteases and mutational studies of a small number of residues indicates the potential of peptide engineering protease …
Mutating Tetur02g09850 Originated From Spider Mites To Enhance Crystallization, Hayley Cash
Mutating Tetur02g09850 Originated From Spider Mites To Enhance Crystallization, Hayley Cash
Senior Theses
This study aimed to explain and adequately utilize several common biochemical laboratory techniques to mutate a portion of the nucleic acid sequence within a specific protein. This protein, referred to as Tetur02g09850 is originated from Tetranychus Urticae, or the Two-Spotted Spider Mite. This mite causes excessive damage to crops and is known to be extremely resistant to most common pesticides. For this reason, understanding the protein structure could be used to explain this acaricide resistance and aid in the development of more effective pesticides. Some of the testing utilized was site-directed mutagenesis, IMAC and gel filtration for protein purification, gel …
Lipid Nanoparticle-Mediated Mrna Delivery In Lung Fibrosis, Matteo Massaro, Suhong Wu, Gherardo Baudo, Haoran Liu, Scott Collum, Hyunho Lee, Cinzia Stigliano, Victor Segura-Ibarra, Harry Karmouty-Quintana, Elvin Blanco
Lipid Nanoparticle-Mediated Mrna Delivery In Lung Fibrosis, Matteo Massaro, Suhong Wu, Gherardo Baudo, Haoran Liu, Scott Collum, Hyunho Lee, Cinzia Stigliano, Victor Segura-Ibarra, Harry Karmouty-Quintana, Elvin Blanco
Faculty, Staff and Student Publications
mRNA delivery enables the specific synthesis of proteins with therapeutic potential, representing a powerful strategy in diseases lacking efficacious pharmacotherapies. Idiopathic pulmonary fibrosis (IPF) is a chronic lung disease characterized by excessive extracellular matrix (ECM) deposition and subsequent alveolar remodeling. Alveolar epithelial type 2 cells (AEC2) and fibroblasts represent important targets in IPF given their role in initiating and driving aberrant wound healing responses that lead to excessive ECM deposition. Our objective was to examine a lipid nanoparticle (LNP)-based mRNA construct as a viable strategy to target alveolar epithelial cells and fibroblasts in IPF. mRNA-containing LNPs measuring ∼34 nm had …
The Function Of Transport Protein Mfl1 In Arabidopsis Thaliana, Joseph Qian
The Function Of Transport Protein Mfl1 In Arabidopsis Thaliana, Joseph Qian
LSU Master's Theses
Photosynthesis serves as the primary process for plants to synthesize ATP and sugar molecules, however, this reaction requires many cofactors such as heme, plastoquinone, and iron-sulfur clusters to assist in energy gathering and electron transfer steps. Many of these require trace metals, such as iron, to cross across the chloroplast membranes and be incorporated into proteins and other organic molecules to form useable cofactors. The light-independent reactions of photosynthesis are also inefficient, with up to 25% of the photosynthetic energy wasted to metabolize the toxic waste product glycolate. The cellular logistics of both photorespiration and iron transport have been studied, …
Polyphenolic Content And Radical Scavenging Activities Of The Peel, Pulp And Seed Of Avocado (Persea Americana Mill.) Grown In Tanzania, Ibrahim Juma, Jan-Eric Englund, Rodomiro Ortiz, Mulatu Geleta, Donatha D. Tibuhwa, Anders S. Carlsson, Agnes Nyomora, Moneim Fatih, Helena Persson Hovmalm
Polyphenolic Content And Radical Scavenging Activities Of The Peel, Pulp And Seed Of Avocado (Persea Americana Mill.) Grown In Tanzania, Ibrahim Juma, Jan-Eric Englund, Rodomiro Ortiz, Mulatu Geleta, Donatha D. Tibuhwa, Anders S. Carlsson, Agnes Nyomora, Moneim Fatih, Helena Persson Hovmalm
Tanzania Journal of Science
Avocado is a healthy fruit and the consumption is continuously growing worldwide. The fruit contains polyphenolic compounds with antioxidant effects. Globally, research has been devoted to exploring the fruit quality, especially compounds with antioxidant effects, from different avocado-growing sites. However, the fruit quality of the Tanzanian avocado has so far not been investigated. In this study, the contents of polyphenols in peel, pulp and seed of avocados sampled in south-western Tanzania are described. The levels of total polyphenolic and flavonoid contents were measured, and antioxidant activity was evaluated using a 2,2-diphenyl-1-picrylhydrazyl (DPPH) assay. The total polyphenolic content was highest in …
Traffic Lights For Catalysis: Stimuli-Responsive Molecular And Extended Catalytic Systems, Grace C. Thaggard, Johanna Haimeri, Roland A. Fischer Prof. Dr., Kyoung Chul Park, Natalia B. Shustova Prof. Dr.
Traffic Lights For Catalysis: Stimuli-Responsive Molecular And Extended Catalytic Systems, Grace C. Thaggard, Johanna Haimeri, Roland A. Fischer Prof. Dr., Kyoung Chul Park, Natalia B. Shustova Prof. Dr.
Faculty Publications
The advances made in the field of stimuli-responsive catalysis during the last five years with a focus on the novel recently-emerged directions and applications have been surveyed. Metal-free catalysts and organometallic complexes, as well as biomimetic systems and extended structures, which display switchable catalytic activity for a variety of organic transformations, are discussed. Light-activated systems comprised of photochromic molecules capable of modulating reaction rate, yield, or enantioselectivity based on geometric and electronic changes associated with photoisomerization are the focus of the detailed discussion. Alternative stimuli, including pH and temperature, which could be applied either alone or in combination with light, …
Evaluation Of Free Radical Scavenging Activity Of Sauce And Formulation Of Tamarindus Indica (L.) And Prunus Domestica (L.) Fruits, Zulnoreen Sarfaraz, Mehmooda Munazir, Mubashrah Munir, Asma Ahmed, Rehana Badar, Ayesha Tahir
Evaluation Of Free Radical Scavenging Activity Of Sauce And Formulation Of Tamarindus Indica (L.) And Prunus Domestica (L.) Fruits, Zulnoreen Sarfaraz, Mehmooda Munazir, Mubashrah Munir, Asma Ahmed, Rehana Badar, Ayesha Tahir
Journal of Bioresource Management
The formulation and sauce of Tamarindus indica (L.) and Prusnus dometica (L.) are very popular recipes across globe. But, not even a single study existed on free-radical scavenging activity (FRSA) of afore-mentioned recipes. So, the present study was designed to bridge this gap of information. The FRSA of individual samples were also determined and compared with that of combinations of both. The highest value for FRSA among all samples was that of T. indica (158.9732 ± 12.658 % at 100 μg ml-1). It was followed by that of individual extract of P. domestica fruit (96.647 ± 0.554 %). …
Time And Temperature Stability Of Tritrichomonas Foetus In Phosphate-Buffered Saline As Evaluated By A Reverse Transcription Real-Time Pcr Assay And Field Analysis, Duan S. Loy, Renata Spuri Gomes, Enakshy Dutta, Bruce W. Brodersen, John Dustin Loy
Time And Temperature Stability Of Tritrichomonas Foetus In Phosphate-Buffered Saline As Evaluated By A Reverse Transcription Real-Time Pcr Assay And Field Analysis, Duan S. Loy, Renata Spuri Gomes, Enakshy Dutta, Bruce W. Brodersen, John Dustin Loy
School of Veterinary and Biomedical Sciences: Faculty Publications
Tritrichomonas foetus (TF) is a significant reproductive pathogen of cattle, and sample collection, handling, transport, and testing are significant hurdles to surveillance programs. Recent methods have been developed that allow for the direct detection of TF using a reverse transcription real-time PCR (direct RT-qPCR) approach. To evaluate these methods, a comparative analysis was conducted to assess the technical performance of this assay with a commercially available real- time PCR (qPCR) assay. In addition, the evaluation of two types of collection media (PBS and TF transport tube) was conducted that evaluated sample stability from 0 to 3 days when stored at …
A Forward Genetic Screen Identifies Genes Involved In Gametocyte Development Of The Human Malaria Parasite Plasmodium Falciparum., Jyotsna Chawla
A Forward Genetic Screen Identifies Genes Involved In Gametocyte Development Of The Human Malaria Parasite Plasmodium Falciparum., Jyotsna Chawla
USF Tampa Graduate Theses and Dissertations
Transmission of the deadly malaria parasite Plasmodium falciparum from human to mosquito is achieved by specialized intraerythrocytic sexual forms called gametocytes. Circulating in the vertebrate host, relatively few intraerythrocytic gametocytes are picked up during a bloodmeal to continue sexual development in the mosquito vector. Human-to-vector transmission thus represents an infection bottleneck in the parasite's life cycle for therapeutic interventions to prevent malaria. Though the crucial regulatory mechanisms leading to gametocyte commitment have recently come to light, networks of genes that control sexual development remain to be elucidated. Here, we report a forward genetic approach to identify genes associated with gametocyte …
Stabilizing G-Quadruplex Dna And Rna Structures With Ionic Liquids, Timothy Vaden
Stabilizing G-Quadruplex Dna And Rna Structures With Ionic Liquids, Timothy Vaden
College of Science & Mathematics Departmental Research
Stabilizing DNA and RNA for long-term room-temperature storage is important for many biotechnological applications including oncology pharmaceuticals and mRNA-based vaccines (e.g. Covid vaccines). This poster shows that ionic liquids can improve the thermal stability of G-quadruplex DNA and RNA structures, and motivates further studies of ionic liquid-based materials for DNA / RNA stabilization.
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 …
Synthesis, Characterization, And Cytotoxicity Studies Of A Copper(Ii) Complex With Vanillin 3-Ethyl-Thiosemcarbazone A Ligand, Novia Mann, Ifeoluwa Oyeyemi, Duaa R. Alajroush, Elizabeth A. Tonsel-White, Stephen J. Beebe, Alvin Holder
Synthesis, Characterization, And Cytotoxicity Studies Of A Copper(Ii) Complex With Vanillin 3-Ethyl-Thiosemcarbazone A Ligand, Novia Mann, Ifeoluwa Oyeyemi, Duaa R. Alajroush, Elizabeth A. Tonsel-White, Stephen J. Beebe, Alvin Holder
Undergraduate Research Symposium
Triple-negative breast cancer (TNBC) is one of the most aggressive and challenging breast cancer subtypes to treat, as these cancer cells lack three common receptors: estrogen, progesterone, and human epidermal growth factor receptor 2. The multiple oxidation states transition metals can occupy have made this narrowly explored group popular for anti-cancer research in recent decades. Furthermore, the success of cisplatin, which has platinum as a metal center, while being a cancer-fighting agent with serious side effects, has caused other metal centers to be investigated as possible alternatives as chemotherapeutic drugs. Copper, as a biologically essential metal, makes an attractive candidate …
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 …
Calpain Activity Is Negatively Regulated By A Kctd7-Cullin-3 Complex Via Non-Degradative Ubiquitination, Jaiprakash Sharma, Shalaka Mulherkar, Uan-I Chen, Yan Xiong, Lakshya Bajaj, Byoung-Kyu Cho, Young Ah Goo, Hon-Chiu Eastwood Leung, Kimberley F Tolias, Marco Sardiello
Calpain Activity Is Negatively Regulated By A Kctd7-Cullin-3 Complex Via Non-Degradative Ubiquitination, Jaiprakash Sharma, Shalaka Mulherkar, Uan-I Chen, Yan Xiong, Lakshya Bajaj, Byoung-Kyu Cho, Young Ah Goo, Hon-Chiu Eastwood Leung, Kimberley F Tolias, Marco Sardiello
Faculty, Staff and Students Publications
Calpains are a class of non-lysosomal cysteine proteases that exert their regulatory functions via limited proteolysis of their substrates. Similar to the lysosomal and proteasomal systems, calpain dysregulation is implicated in the pathogenesis of neurodegenerative disease and cancer. Despite intensive efforts placed on the identification of mechanisms that regulate calpains, however, calpain protein modifications that regulate calpain activity are incompletely understood. Here we show that calpains are regulated by KCTD7, a cytosolic protein of previously uncharacterized function whose pathogenic mutations result in epilepsy, progressive ataxia, and severe neurocognitive deterioration. We show that KCTD7 works in complex with Cullin-3 and Rbx1 …
Potassium-Selective Channelrhodopsins, Elena G Govorunova, Oleg A Sineshchekov, John L Spudich
Potassium-Selective Channelrhodopsins, Elena G Govorunova, Oleg A Sineshchekov, John L Spudich
Faculty, Staff and Student Publications
Since their discovery 21 years ago, channelrhodopsins have come of age and have become indispensable tools for optogenetic control of excitable cells such as neurons and myocytes. Potential therapeutic utility of channelrhodopsins has been proven by partial vision restoration in a human patient. Previously known channelrhodopsins are either proton channels, non-selective cation channels almost equally permeable to Na+ and K+ besides protons, or anion channels. Two years ago, we discovered a group of channelrhodopsins that exhibit over an order of magnitude higher selectivity for K+ than for Na+. These proteins, known as “kalium channelrhodopsins” or KCRs, lack the canonical tetrameric …
Apkcs Role In Neuroblastoma Cell Signaling Cascades And Implications Of Apkcs Inhibitors As Potential Therapeutics, Sloan Breedy
Apkcs Role In Neuroblastoma Cell Signaling Cascades And Implications Of Apkcs Inhibitors As Potential Therapeutics, Sloan Breedy
USF Tampa Graduate Theses and Dissertations
Neuroblastoma (NB) is a cancer that develops in the neuroblasts. It is the most common cancer in children under the age of 1 year, accounting for approximately 6% of all cancers. The prognosis of NB is linked to both age and degree of cell differentiation. This results in a range of survival rates for patients, with outcomes ranging from recurrence and mortality to high survival rates and tumor regression. Our previous work indicated that PKC-ι promotes cell proliferation in NB cells through the PKC-ι/Cdk7/Cdk2 cascade. We report on two atypical protein kinase inhibitors as potential therapeutic candidates against BE(2)-C and …
Smad2/3 Signaling In The Uterine Epithelium Controls Endometrial Cell Homeostasis And Regeneration, Maya L Kriseman, Suni Tang, Zian Liao, Peixin Jiang, Sydney E Parks, Dominique I Cope, Fei Yuan, Fengju Chen, Ramya P Masand, Patricia D Castro, Michael M Ittmann, Chad J Creighton, Zhi Tan, Diana Monsivais
Smad2/3 Signaling In The Uterine Epithelium Controls Endometrial Cell Homeostasis And Regeneration, Maya L Kriseman, Suni Tang, Zian Liao, Peixin Jiang, Sydney E Parks, Dominique I Cope, Fei Yuan, Fengju Chen, Ramya P Masand, Patricia D Castro, Michael M Ittmann, Chad J Creighton, Zhi Tan, Diana Monsivais
Faculty, Staff and Students Publications
The regenerative potential of the endometrium is attributed to endometrial stem cells; however, the signaling pathways controlling its regenerative potential remain obscure. In this study, genetic mouse models and endometrial organoids are used to demonstrate that SMAD2/3 signaling controls endometrial regeneration and differentiation. Mice with conditional deletion of SMAD2/3 in the uterine epithelium using Lactoferrin-iCre develop endometrial hyperplasia at 12-weeks and metastatic uterine tumors by 9-months of age. Mechanistic studies in endometrial organoids determine that genetic or pharmacological inhibition of SMAD2/3 signaling disrupts organoid morphology, increases the glandular and secretory cell markers, FOXA2 and MUC1, and alters the genome-wide distribution …
A Multiscale Mechanistic Model Of Human Dendritic Cells For In-Silico Investigation Of Immune Responses And Novel Therapeutics Discovery, Sara Sadat Aghamiri, Bhanwar Lal Puniya, Rada Amin, Tomáš Helikar
A Multiscale Mechanistic Model Of Human Dendritic Cells For In-Silico Investigation Of Immune Responses And Novel Therapeutics Discovery, Sara Sadat Aghamiri, Bhanwar Lal Puniya, Rada Amin, Tomáš Helikar
Department of Biochemistry: Faculty Publications
Dendritic cells (DCs) are professional antigen-presenting cells (APCs) with the unique ability to mediate inflammatory responses of the immune system. Given the critical role of DCs in shaping immunity, they present an attractive avenue as a therapeutic target to program the immune system and reverse immune disease disorders. To ensure appropriate immune response, DCs utilize intricate and complex molecular and cellular interactions that converge into a seamless phenotype. Computational models open novel frontiers in research by integrating large-scale interaction to interrogate the influence of complex biological behavior across scales. The ability to model large biological networks will likely pave the …