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Articles 391 - 420 of 618
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
The Role Of Cardiolipin In Iron Homeostasis And Glutathione Metabolism, Vinay A. Patil
The Role Of Cardiolipin In Iron Homeostasis And Glutathione Metabolism, Vinay A. Patil
Wayne State University Dissertations
Cardiolipin (CL) is the signature phospholipid of mitochondrial membranes, where it is synthesized locally and plays a critical role in mitochondrial bioenergetic functions. Inside the mitochondria, CL is a critical target of mitochondrial generated reactive oxygen species (ROS) and regulates signaling events related to apoptosis and aging. CL deficiency causes perturbation of signaling pathways outside the mitochondria, including the PKC-Slt2 cell integrity pathway and the high osmolarity glycerol (HOG) pathway, and is a key player in the cross-talk between the mitochondria and the vacuole. The importance of CL in human health is underscored by the observation that perturbation of CL …
Synthesis And Application Of Atp Analogs For Phosphorylation-Dependent Kinase-Substrate Crosslinking, Satish Kumar Garre Venkata Raghavendra
Synthesis And Application Of Atp Analogs For Phosphorylation-Dependent Kinase-Substrate Crosslinking, Satish Kumar Garre Venkata Raghavendra
Wayne State University Dissertations
Phosphorylation is an important post-translational modification that plays a key role in a variety of signaling cascades and cellular functions. Kinases phosphorylate protein substrates in a highly regulated manner and are promiscuous. Understanding kinase-substrate specificity has been challenging and there is a need for new chemical tools. To this end we developed -phosphate modified ATP photocrosslinking analogs ATP-ArN3 and ATP-BP, that crosslink substrate and kinase in a phosphorylation dependent manner. We have successfully demonstrated that ATP-ArN3 and ATP-BP can be used with natural kinase and substrates using cell lysates in vitro. We used our approach to identify novel kinases of …
Defending Your Dna: Combating Threats Both Foreign And Domestic, James Mcisaac
Defending Your Dna: Combating Threats Both Foreign And Domestic, James Mcisaac
Undergraduate Review
We are under constant assault from forces capable of damaging our DNA. The genetic code of DNA is made up of four nucleotides: adenine (A) which bonds with thymine (T) and guanine (G) which bonds with cytosine (C). If something happens to upset this normal pairing or the nucleotides themselves, our body must spring to action and respond to the damage. When damage to nucleotides prevents the normal replication machinery from doing its job, enzymes like the Y-family polymerases are called in. A special mechanism allows them to identify damage and insert the correct nucleotide or bypass the lesion to …
Studies Of Metabolite–Protein Interactions: A Review, Ryan Matsuda, Cong Bi, Jeanethe Anguizola, Matthew Sobansky, Elliott Rodriguez, John Vargas Badilla, Xiwei Zheng, Benjamin Hage, David S. Hage
Studies Of Metabolite–Protein Interactions: A Review, Ryan Matsuda, Cong Bi, Jeanethe Anguizola, Matthew Sobansky, Elliott Rodriguez, John Vargas Badilla, Xiwei Zheng, Benjamin Hage, David S. Hage
David Hage Publications
The study of metabolomics can provide valuable information about biochemical pathways and processes at the molecular level. There have been many reports that have examined the structure, identity and concentrations of metabolites in biological systems. However, the binding of metabolites with proteins is also of growing interest. This review examines past reports that have looked at the binding of various types of metabolites with proteins. An overview of the techniques that have been used to characterize and study metabolite–protein binding is first provided. This is followed by examples of studies that have investigated the binding of hormones, fatty acids, drugs …
Bioinformatic And Functional Analysis Of 1-Aminocyclopropane-1-Carboxylate (Acc)- Deaminase Homologues In Strains Of Sinorhizobium, Alyssa L. Renn
Bioinformatic And Functional Analysis Of 1-Aminocyclopropane-1-Carboxylate (Acc)- Deaminase Homologues In Strains Of Sinorhizobium, Alyssa L. Renn
Departmental Honors Projects
Nitrogen fixing bacteria like Sinorhiziobia have the ability to convert nitrogen gas into ammonia, allowing its incorporation into proteins and other biological molecules. These organisms form a symbiosis with legume plants such as peas, soybeans, and alfalfa. The symbiotic relationship between Sinorhizobia and legumes requires of the function of many proteins; one is 1- aminocyclopropane-1-carboxylic acid (ACC)-deaminase. Bacteria containing ACC-deaminase enzymes are more effective in nodulation due to their ability to lower the concentration of ethylene and bypass the plant defense systems. Upon examination of the complete DNA sequence of forty-eight Sinorhiziobia strains from different geographical locations, eighteen sequences similar …
Proline Mechanisms Of Stress Survival, Xinwen Liang, Lu Zhang, Sathish Kumar Natarajan, Donald F. Becker
Proline Mechanisms Of Stress Survival, Xinwen Liang, Lu Zhang, Sathish Kumar Natarajan, Donald F. Becker
Department of Biochemistry: Faculty Publications
Significance: The imino acid proline is utilized by different organisms to offset cellular imbalances caused by environmental stress. The wide use in nature of proline as a stress adaptor molecule indicates that proline has a fundamental biological role in stress response. Understanding the mechanisms by which proline enhances abiotic/biotic stress response will facilitate agricultural crop research and improve human health. Recent Advances: It is now recognized that proline metabolism propels cellular signaling processes that promote cellular apoptosis or survival. Studies have shown that proline metabolism influences signaling pathways by increasing reactive oxygen species (ROS) formation in the mitochondria …
Extraction Of Molecular Features Through Exome To Transcriptome Alignment, Prakriti Mudvari, Kamran Kowsari, Charles Cole, Raja Mazumder, Anelia Horvath
Extraction Of Molecular Features Through Exome To Transcriptome Alignment, Prakriti Mudvari, Kamran Kowsari, Charles Cole, Raja Mazumder, Anelia Horvath
Biochemistry and Molecular Medicine Faculty Publications
Integrative Next Generation Sequencing (NGS) DNA and RNA analyses have very recently become feasible, and the published to date studies have discovered critical disease implicated pathways, and diagnostic and therapeutic targets. A growing number of exomes, genomes and transcriptomes from the same individual are quickly accumulating, providing unique venues for mechanistic and regulatory features analysis, and, at the same time, requiring new exploration strategies. In this study, we have integrated variation and expression information of four NGS datasets from the same individual: normal and tumor breast exomes and transcriptomes. Focusing on SNP-centered variant allelic prevalence, we illustrate analytical algorithms that …
Comparative Metabolic Profiling Of Haberlea Rhodopensis, Thellungiella Halophyla, And Arabidopsis Thaliana Exposed To Low Temperature, Maria Benina, Toshihiro Obata, Nikolay Mehterov, Ivan Ivanov, Veselin Petrov, Valentina Toneva, Alisdair R. Fernie, Tsanko S. Gechev
Comparative Metabolic Profiling Of Haberlea Rhodopensis, Thellungiella Halophyla, And Arabidopsis Thaliana Exposed To Low Temperature, Maria Benina, Toshihiro Obata, Nikolay Mehterov, Ivan Ivanov, Veselin Petrov, Valentina Toneva, Alisdair R. Fernie, Tsanko S. Gechev
Department of Biochemistry: Faculty Publications
Haberlea rhodopensis is a resurrection species with extreme resistance to drought stress and desiccation but also with ability to withstand low temperatures and freezing stress. In order to identify biochemical strategies which contribute to Haberlea's remarkable stress tolerance, the metabolic reconfiguration of H. rhodopensis during low temperature (4◦C) and subsequent return to optimal temperatures (21◦C) was investigated and compared with that of the stress tolerant Thellungiella halophyla and the stress sensitive Arabidopsis thaliana. Metabolic analysis by GC-MS revealed intrinsic differences in the metabolite levels of the three species even at 21◦C. H. rhodopensis …
Acanthamoeba Castellanii Of The T4 Genotype Is A Potential Environmental Host For Enterobacter Aerogenes And Aeromonas Hydrophila, Farzana Abubakar Yousuf, Ruqaiyyah Siddiqui, Naveed Ahmed Khan
Acanthamoeba Castellanii Of The T4 Genotype Is A Potential Environmental Host For Enterobacter Aerogenes And Aeromonas Hydrophila, Farzana Abubakar Yousuf, Ruqaiyyah Siddiqui, Naveed Ahmed Khan
Department of Biological & Biomedical Sciences
Background: Acanthamoeba can interact with a wide range of microorganisms such as viruses, algae, yeasts, protists and bacteria including Legionella pneumophila, Pseudomonas aeruginosa, Vibrio cholerae, Helicobacter pylori, Listeria monocytogenes, Mycobacterium spp., and Escherichia coli. In this capacity, Acanthamoeba has been suggested as a vector in the transmission of bacterial pathogens to the susceptible hosts.
Methods: Here, we used a keratitis isolate of A. castellanii of the T4 genotype and studied its interactions with two bacterial genera which have not been tested before, Enterobacter aerogenes, and Aeromonas hydrophila, as well as E. coli. Assays were performed to determine bacterial association with …
How Atomic Level Interactions Drive Membrane Fusion: Insights From Molecular Dynamics Simulations, Navendu Bhatnagar
How Atomic Level Interactions Drive Membrane Fusion: Insights From Molecular Dynamics Simulations, Navendu Bhatnagar
Wayne State University Dissertations
This project is focused on identifying the role of key players in the membrane fusion process at the atomic level with the use of molecular dynamics simulations. Membrane fusion of apposed bilayers is one of the most fundamental and frequently occurring biological phenomena in living organisms. It is an essential step in several cellular processes such as neuronal exocytosis, sperm fusion with oocytes and intracellular fusion of organelles to name a few. Membrane fusion is a frequent process in a living organism but is still not fully understood at the atomic level in terms of the role of various factors …
Development And Optimization Of The First High Throughput In Vitro Fret Assay To Characterize The Saccharomyces Cerevisiae Gpi-T, Sandamali Amarasingha Ekanayaka
Development And Optimization Of The First High Throughput In Vitro Fret Assay To Characterize The Saccharomyces Cerevisiae Gpi-T, Sandamali Amarasingha Ekanayaka
Wayne State University Dissertations
DEVELOPMENT AND OPTIMIZATION OF AN IN VITRO FRET ASSAY TO CHARACTERIZE THE SACCHAROMYCES CEREVISIAE GPI TRANSAMIDASE
By
SANDAMALI AMARASINGHA EKANAYAKA
December 2013
Advisor: Dr. Tamara L. Hendrickson
Major: Biochemistry
Degree: Doctor of Philosophy
The enzyme glycosylphosphatidylinositol transamidase (GPI-T) mediates the attachment of a glycosylphosphatidylinositol (GPI) anchor to the C-terminus of specific proteins to produce GPI anchored proteins. This post-translational modification is essential for viability of eukaryotic organisms. However, very little is known about GPI-T and its catalytic activity. Thus, the research described in this abstract was conducted to develop an in vitro assay to monitor GPI-T. A high-throughput assay for …
Screening Of Quantum Dots For Toxicity On The Growth And Viability Of Escherichia Coli, Jeremy Tharkur
Screening Of Quantum Dots For Toxicity On The Growth And Viability Of Escherichia Coli, Jeremy Tharkur
Electronic Theses and Dissertations
Heavy metal (HM) containing quantum dots (Qdots) are increasingly used in commercial products due to their unique electronic, optoelectronic, optical and magnetic properties. Once disposed to the landfill, environmental weathering is likely to compromise HM Qdot integrity, leading to release of heavy metal ions. To minimize any negative environmental impact of HM Qdots, there is an increasing demand for developing HM free or environmentally-friendly surface modified HM Qdot alternatives. In this study, synthesis of HM free ZnS:Mn/ZnS and surface modified HM CdS:Mn/ZnS Qdots (using N-acetylcysteine, NAC, and Dihydrolipoic acid, DHLA) and their potential toxicity assessment using E. coli as a …
Characterization Of A Novel Fusion Protein Of Ipab And Ipad Of Shigella And Its Potential As A Pan-Shigella Vaccine, F. J. Martinez-Becerra, X. Chen, Nicholas E. Dickenson, S. P. Choudhari, K. Harrison, J. D. Clements, W. D. Picking, L. L. Van De Verg, R. I. Walker, W. L. Picking
Characterization Of A Novel Fusion Protein Of Ipab And Ipad Of Shigella And Its Potential As A Pan-Shigella Vaccine, F. J. Martinez-Becerra, X. Chen, Nicholas E. Dickenson, S. P. Choudhari, K. Harrison, J. D. Clements, W. D. Picking, L. L. Van De Verg, R. I. Walker, W. L. Picking
Chemistry and Biochemistry Faculty Publications
Shigellosis is an important disease in the developing world, where about 90 million people become infected with Shigella spp. each year. We previously demonstrated that the type three secretion apparatus (T3SA) proteins IpaB and IpaD are protective antigens in the mouse lethal pulmonary model. In order to simplify vaccine formulation and process development, we have evaluated a vaccine design that incorporates both of these previously tested Shigella antigens into a single polypeptide chain. To determine if this fusion protein (DB fusion) retains the antigenic and protective capacities of IpaB and IpaD, we immunized mice with the DB fusion and compared …
Acyl-Lipid Metabolism, Younghua Li-Beisson, Basil Shorrosh, Fred Beisson, Mats X. Andersson, Vincent Arondel, Philip D. Bates, Sébastien Baud, David Bird, Allan Debono, Timothy P. Durrett, Rochus B. Franke, Ian A. Graham, Kenta Katayama, Amélie A. Kelly, Tony Larson, Jonathan E. Markham, Martine Miquel, Isabel Molina, Ikuo Nishida, Owen Rowland, Lacey Samuels, Katherine M. Schmid, Hajime Wada, Ruth Welti, Changcheng Xu, Rémi Zallot, John Ohlrogge
Acyl-Lipid Metabolism, Younghua Li-Beisson, Basil Shorrosh, Fred Beisson, Mats X. Andersson, Vincent Arondel, Philip D. Bates, Sébastien Baud, David Bird, Allan Debono, Timothy P. Durrett, Rochus B. Franke, Ian A. Graham, Kenta Katayama, Amélie A. Kelly, Tony Larson, Jonathan E. Markham, Martine Miquel, Isabel Molina, Ikuo Nishida, Owen Rowland, Lacey Samuels, Katherine M. Schmid, Hajime Wada, Ruth Welti, Changcheng Xu, Rémi Zallot, John Ohlrogge
Scholarship and Professional Work - LAS
Acyl lipids in Arabidopsis and all other plants have a myriad of diverse functions. These include providing the core diffusion barrier of the membranes that separates cells and subcellular organelles. This function alone involves more than 10 membrane lipid classes, including the phospholipids, galactolipids, and sphingolipids, and within each class the variations in acyl chain composition expand the number of structures to several hundred possible molecular species. Acyl lipids in the form of triacylglycerol account for 35% of the weight of Arabidopsis seeds and represent their major form of carbon and energy storage. A layer of cutin and cuticular waxes …
The Magnitude And Mechanism Of Charge Enhancement Of Ch∙∙O H-Bonds, U. Adhikari, Steve Scheiner
The Magnitude And Mechanism Of Charge Enhancement Of Ch∙∙O H-Bonds, U. Adhikari, Steve Scheiner
Chemistry and Biochemistry Faculty Publications
Quantum calculations find that neutral methylamines and thioethers form complexes, with N-methylacetamide (NMA) as proton acceptor, with binding energies of 2–5 kcal/mol. This interaction is magnified by a factor of 4–9, bringing the binding energy up to as much as 20 kcal/mol, when a CH3+ group is added to the proton donor. Complexes prefer trifurcated arrangements, wherein three separate methyl groups donate a proton to the O acceptor. Binding energies lessen when the systems are immersed in solvents of increasing polarity, but the ionic complexes retain their favored status even in water. The binding energy is reduced when the methyl …
Cam Kk Mediates Mdm2 Activation In Lncap Cells, John M. Schmitt, Philip Graber
Cam Kk Mediates Mdm2 Activation In Lncap Cells, John M. Schmitt, Philip Graber
Faculty Publications - Department of Biological & Molecular Science
Abstract Agonists and hormones that cause an influx of calcium in LNCaP prostate cancer cells activate the calcium/calmodulin-dependent protein kinase (CaM Kinase) pathway and AKT phosphorylation. CaM KK and AKT are essential for promoting LNCaP cell survival. AKT phosphorylation of MDM2 protein may negatively regulate the tumor suppressor protein, p53. CaM KK and AKT have yet to be demonstrated as upstream regulators of MDM2 and p53 in LNCaP cells. Our goals were to examine the ability of carbachol and testosterone to stimulate MDM2 phosphorylation, its association with p53, and whether CaM KK is upstream of MDM2. Stimulation of LNCaP cells …
Akap7 Regulates Cam Kinase Activation In Mcf-7 Cells, John M. Schmitt, Hannah M. Mcfarland, Kimberly Dodge-Kafka
Akap7 Regulates Cam Kinase Activation In Mcf-7 Cells, John M. Schmitt, Hannah M. Mcfarland, Kimberly Dodge-Kafka
Faculty Publications - Department of Biological & Molecular Science
Abstract Estrogen (E2) activates calcium/calmodulin-dependent protein kinases (CaM Kinases) in MCF-7 breast cancer cells. In particular E2 activates a CaM KK, CaM KI, and ERK pathway to promote proliferation. CaM Kinase activation of ERK may be blocked by PKA in certain cell types through direct phosphorylation and inhibition of CaM KK. The ability of PKA to phosphorylate its cellular targets may be dictated by protein kinase A anchoring proteins (AKAPs). Hormones that elevate cAMP and activate PKA may utilize AKAPs to regulate signal transduction. Our goal was to evaluate the role of AKAPs in regulating E2 activation of the CaM …
Estrogen Regulation Of Jun And Fos In Mcf-7 Cells, John M. Schmitt, Renee Geck, Jessica N. Magill
Estrogen Regulation Of Jun And Fos In Mcf-7 Cells, John M. Schmitt, Renee Geck, Jessica N. Magill
Faculty Publications - Department of Biological & Molecular Science
Abstract C-Fos and c-Jun are transcription factors that form the dimer Activator Protein 1 (AP-1) and bind DNA to initiate transcription. C-Fos, c-Jun are targets of the Extracellular Signal-Regulated Kinase (ERK) in multiple cell types, including MCF-7 breast cancer cells. The hormone estrogen (E2) can increase intracellular calcium levels which activates calcium/calmodulin-dependent kinase (CaM Kinase) proteins, which control ERK and gene transcription. Our goal was to evaluate the ability of E2 to activate c-Fos and c-Jun and induce their dimerization, via CaM KK and ERK, in MCF-7 cells. Interestingly, E2 stimulation of MCF-7 cells triggered phosphorylation of c-Jun and c-Fos …
Mass Spectrometric Analysis Of Oxidized Eicosapentaenoic Acid Sodium Salt, Kelsey D. Jordan, Rita K. Upmacis
Mass Spectrometric Analysis Of Oxidized Eicosapentaenoic Acid Sodium Salt, Kelsey D. Jordan, Rita K. Upmacis
Student-Faculty Research Projects
Eicosapentaenoic acid (EPA) is an omega-3 polyunsaturated fatty acid (PUFA) with 20 carbon atoms and 5 carbon-carbon double bonds. Mammalian cells cannot synthesize long chain PUFAs such as EPA de novo, and, thus, the most effective way to enrich cells in EPA is by dietary intake of fish oils. EPA supplementation causes an increase in its concentration in plasma lipids and in cell membrane phospholipids. Many beneficial effects of EPA supplementation have been noted, including (1) the potential to sensitize cancerous tumors towards chemotherapy, (2) the promotion of cardiovascular health, and (3) the alleviation of some mental disorders, but results …
Polymeric Nanocarriers And Their Oral Inhalation Formulations For The Regional Delivery Of Nucleic Acids To The Lungs, Denise Santos Conti
Polymeric Nanocarriers And Their Oral Inhalation Formulations For The Regional Delivery Of Nucleic Acids To The Lungs, Denise Santos Conti
Wayne State University Dissertations
Gene therapy has attracted attention in the fields of medicine, pharmacy, and bionanotechnology due to the potential for treating a large number of medically relevant diseases. Oral inhalation (OI) is a promising route for the administration of therapeutics, including small molecules and biomacromolecules, such as nucleotides, peptides, and proteins, to (locally) and through (systemically) the lungs. The use of OI is especially attractive for the delivery of nucleic acids as it provides a direct and non-invasive route for targeting the lungs. Pressurized metered-dose inhalers (pMDIs), are the most commonly used OI in treatment of lung diseases and are thus promising …
Computational Approaches To Anti-Toxin Therapies And Biomarker Identification, Rebecca Jane Swett
Computational Approaches To Anti-Toxin Therapies And Biomarker Identification, Rebecca Jane Swett
Wayne State University Dissertations
This work describes the fundamental study of two bacterial toxins with computational methods, the rational design of a potent inhibitor using molecular dynamics, as well as the development of two bioinformatic methods for mining genomic data.
Clostridium difficile is an opportunistic bacillus which produces two large glucosylating toxins. These toxins, TcdA and TcdB cause severe intestinal damage. As Clostridium difficile harbors considerable antibiotic resistance, one treatment strategy is to prevent the tissue damage that the toxins cause. The catalytic glucosyltransferase domain of TcdA and TcdB was studied using molecular dynamics in the presence of both a protein-protein binding partner and …
Novel Role Of Erbb-2 In Inhibition Of Jagged-1-Mediated Trans-Activation Of Notch In Breast Cancer, Kinnari Pandya
Novel Role Of Erbb-2 In Inhibition Of Jagged-1-Mediated Trans-Activation Of Notch In Breast Cancer, Kinnari Pandya
Dissertations
The ErbB-2 gene is amplified and the resulting protein product overexpressed in 15-30% of breast tumors, and associated with aggressive behavior and poor overall survival. Currently, there are two FDA approved therapies targeting ErbB-2 for the treatment of ErbB-2 positive breast cancer: trastuzumab, a humanized monoclonal antibody is directed against the extracellular domain of ErbB-2 and lapatinib, a dual EGFR/ErbB-2 tyrosine kinase inhibitor. Unfortunately, anti-ErbB-2 therapy resistance remains a major problem in metastatic breast cancer. Our data suggested that gene amplification or overexpression of ErbB-2 inhibits Notch-1 transcriptional activity and trastuzumab or lapatinib increased
Notch-1 transcriptional activity. Furthermore, Notch-1 is …
Significance Of Protein Interactions In Mediating Af9 Function, Bhavna Malik
Significance Of Protein Interactions In Mediating Af9 Function, Bhavna Malik
Dissertations
Rearrangements of the MLL gene at chromosome band 11q23 have been associated with a heterogeneous group of lymphoid, myeloid and mixed lineage leukemias. MLL rearrangements occur approximately in 70% of infant leukemias and are also common in therapy-related leukemias where patients were previously treated with topoisomerase II inhibitors. Unfortunately, these patients have a poor prognosis. MLL gene rearrangements give rise to chimeric proteins that contain the N-terminal portion of MLL fused to the C-terminal portion of over 50 different fusion partners. The chimeric proteins cause constitutive expression of some MLL target genes such as HOXA9 and MEIS1, and enhanced proliferation …
Molecular Functions Of Mll Phd3 Binding To Its Ligands Cyp33 And H3k4me3, Gayathree Raman
Molecular Functions Of Mll Phd3 Binding To Its Ligands Cyp33 And H3k4me3, Gayathree Raman
Dissertations
Mixed Lineage Leukemia protein (MLL) is required for proper embryonic development, and hematopoiesis. It is a SET domain containing histone methyl transferase that trimethylates histone H3 on lysine 4 (H3K4Me3), a histone modification that correlates with active transcription. The 3rd PHD finger of MLL binds to H3K4me3. Thus MLL is a "writer" with an embedded "reader" for H3K4Me3. Cyp33 is another known ligand of MLL PHD3. Over expression of Cyp33 results in transcriptional repression of MLL target genes.
The aim of this study is to determine the biological function of MLL PHD3 binding to H3K4Me3 or Cyp33. Cyp33 binding to …
Phase Composition Control Of Calcium Phosphate Nanoparticles For Tunable Drug Delivery Kinetics And Treatment Of Osteomyelitis. Part 2: Antibacterial And Osteoblastic Response, Vuk Uskoković, Tejal A. Dasai
Phase Composition Control Of Calcium Phosphate Nanoparticles For Tunable Drug Delivery Kinetics And Treatment Of Osteomyelitis. Part 2: Antibacterial And Osteoblastic Response, Vuk Uskoković, Tejal A. Dasai
Pharmacy Faculty Articles and Research
Osteomyelitis has been traditionally treated by the combination of long-term antibiotic therapies and surgical removal of diseased tissue. The multifunctional material was developed in this study with the aim to improve this therapeutic approach by: (a) enabling locally delivered and sustained release of antibiotics at a tunable rate, so as to eliminate the need for repetitive administration of systemically distributed antibiotics; and (b) controllably dissolving itself, so as to promote natural remineralization of the portion of bone lost to disease. We report hereby on the effect of the previously synthesized calcium phosphates (CAPs) with tunable solubilities and drug release time …
Revisiting The Fundamentals In The Design And Control Of Nanoparticulate Colloids In The Frame Of Soft Chemistry, Vuk Uskoković
Revisiting The Fundamentals In The Design And Control Of Nanoparticulate Colloids In The Frame Of Soft Chemistry, Vuk Uskoković
Pharmacy Faculty Articles and Research
This review presents thoughts on some of the fundamental features of conceptual models applied in the design of fine particles in the frames of colloid and soft chemistry. A special emphasis is placed on the limitations of these models, an acknowledgment of which is vital in improving their intricacy and effectiveness in predicting the outcomes of the corresponding experimental settings. Thermodynamics of self-assembly phenomena illustrated on the examples of protein assembly and micellization is analyzed in relation to the previously elaborated thesis that each self-assembly in reality presents a co-assembly, since it implies a mutual reorganization of the assembling system …
The Effect Of Visual Wulst Lesions And Trigeminal Nerve Sectioning On The Discrimination Of Magnetic Inclination In The Homing Pigeon (Columba Livia), Merissa Acerbi
Honors Projects
The ability of homing pigeons to return to their loft from unknown places has fascinated scientists for centuries. It is well established that homing pigeons, like migratory birds, posses an innate magnetic inclination compass to determine direction by measuring the angle between the magnetic field vector and the Earth's surface. Recent work has indicated that the avian magnetic compass is light mediated and appears to mediate magnetic information to the brain. This occurs via a visual pathway with processing in the visual Wulst area of the forebrain. There is, however, also evidence from other avian species that magnetic direction may …
Extracellular Proteases Are Key Mediators Of Staphylococcus Aureus Virulence Via The Global Modulation Of Virulence-Determinant Stability, Stacey L. Kolar, J. Antonio Ibarra, Frances E. Rivera, Joe M. Mootz, Jessica E. Davenport, Stanley M. Stevens Jr., Alexander R. Horswill, Lindsey N. Shaw
Extracellular Proteases Are Key Mediators Of Staphylococcus Aureus Virulence Via The Global Modulation Of Virulence-Determinant Stability, Stacey L. Kolar, J. Antonio Ibarra, Frances E. Rivera, Joe M. Mootz, Jessica E. Davenport, Stanley M. Stevens Jr., Alexander R. Horswill, Lindsey N. Shaw
Molecular Biosciences Faculty Publications
Staphylococcus aureus is a highly virulent and successful pathogen that causes a diverse array of diseases. Recently, an increase of severe infections in healthy subjects has been observed, caused by community-associated methicillin-resistant S. aureus (CA-MRSA). The reason for enhanced CA-MRSA virulence is unclear; however, work suggests that it results from hypersecretion of agr-regulated toxins, including secreted proteases. In this study, we explore the contribution of exo-proteases to CA-MRSA pathogenesis using a mutant lacking all 10 enzymes. We show that they are required for growth in peptide-rich environments, serum, in the presence of antimicrobial peptides (AMPs), and in human blood. …
A Transient Α-Helical Molecular Recognition Element In The Disordered N-Terminus Of The Sgs1 Helicase Is Critical For Chromosome Stability And Binding Of Top3/Rmi1, Jessica A. Kennedy, Gary W. Daughdrill, Kristina H. Schmidt
A Transient Α-Helical Molecular Recognition Element In The Disordered N-Terminus Of The Sgs1 Helicase Is Critical For Chromosome Stability And Binding Of Top3/Rmi1, Jessica A. Kennedy, Gary W. Daughdrill, Kristina H. Schmidt
Molecular Biosciences Faculty Publications
The RecQ-like DNA helicase family is essential for the maintenance of genome stability in all organisms. Sgs1, a member of this family in Saccharomyces cerevisiae, regulates early and late steps of double-strand break repair by homologous recombination. Using nuclear magnetic resonance spectroscopy, we show that the N-terminal 125 residues of Sgs1 are disordered and contain a transient α-helix that extends from residue 25 to 38. Based on the residue-specific knowledge of transient secondary structure, we designed proline mutations to disrupt this α-helix and observed hypersensitivity to DNA damaging agents and increased frequency of genome rearrangements. In vitro binding assays …
Identification Of Proteins At Active, Stalled, And Collapsed Replication Forks Using Isolation Of Proteins On Nascent Dna (Ipond) Coupled With Mass Spectrometry, Bianca M. Sirbu, W. Hayes Mcdonald, Huzefa Dungrawala, Akosua Badu-Nkansah, Gina M. Kavanaugh, Yaoyi Chen, David L. Tabb, David Cortez
Identification Of Proteins At Active, Stalled, And Collapsed Replication Forks Using Isolation Of Proteins On Nascent Dna (Ipond) Coupled With Mass Spectrometry, Bianca M. Sirbu, W. Hayes Mcdonald, Huzefa Dungrawala, Akosua Badu-Nkansah, Gina M. Kavanaugh, Yaoyi Chen, David L. Tabb, David Cortez
Molecular Biosciences Faculty Publications
Both DNA and chromatin need to be duplicated during each cell division cycle. Replication happens in the context of defects in the DNA template and other forms of replication stress that present challenges to both genetic and epigenetic inheritance. The replication machinery is highly regulated by replication stress responses to accomplish this goal. To identify important replication and stress response proteins, we combined isolation of proteins on nascent DNA (iPOND) with quantitative mass spectrometry. We identified 290 proteins enriched on newly replicated DNA at active, stalled, and collapsed replication forks. Approximately 16% of these proteins are known replication or DNA …