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2020

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Articles 571 - 600 of 806

Full-Text Articles in Biochemistry, Biophysics, and Structural Biology

Pseudomonas And Bacillus Soil Isolates Produce Antibiotics, Chelsea Brandt, Dr. Lori Scott Jan 2020

Pseudomonas And Bacillus Soil Isolates Produce Antibiotics, Chelsea Brandt, Dr. Lori Scott

Identifying and Characterizing Novel Antibiotic Producing Microbes From the Soil

The recent emergence of antibiotic resistance bacterial strains presents a significant challenge and threat to human healthcare. While new methods of treatment such as bacteriophage therapy and combinations of existing antibiotics are being researched, the human population is in dire need of new antibiotics to replace those that are ineffective. This research addresses this need by identifying antibiotic producing bacteria in a soil sample from Davenport, IA. This project is a collaboration with the Tiny Earth Project Initiative (TEPI), which is a global network of educators and students focused on studentsourcing antibiotic discovery from soil. Microbiology lab techniques and 16S …


Synthesis And Preliminary Ex Vivo Testing Of Sirna Targeting Tcrb: A Proposed Therapy For The Treatment Of Autoimmunity, Nicholas J. Magazine Jan 2020

Synthesis And Preliminary Ex Vivo Testing Of Sirna Targeting Tcrb: A Proposed Therapy For The Treatment Of Autoimmunity, Nicholas J. Magazine

LSU Doctoral Dissertations

Abstract

Background:

As of 2018, the United States National Institutes of Health estimate that over half a billion people worldwide are affected by autoimmune disorders. Though these conditions are prevalent, treatment options remain relatively poor, relying primarily on various forms of immunosuppression which carry potentially severe side effects and often lose effectiveness overtime. Given this, new forms of therapy are needed. We propose small-interfering RNA (siRNA) for hypervariable regions of the T-cell receptor β-chain gene (TCRb) as a highly targeted, novel means of therapy for the treatment of autoimmune disorders.

Objectives:

To develop methods to produce siRNA targeting …


The Mitochondrial Hsp90 Paralog Trap1 Forms An Oxphos-Regulated Tetramer And Is Involved In Mitochondrial Metabolic Homeostasis, Abhinav Joshi, Li Dai, Yanxin Liu, Jungsoon Lee, Nastaran Mohammadi Ghahhari, Gregory Segala, Kristin Beebe, Lisa M Jenkins, Gaelyn C Lyons, Lilia Bernasconi, Francis T F Tsai, David A Agard, Len Neckers, Didier Picard Jan 2020

The Mitochondrial Hsp90 Paralog Trap1 Forms An Oxphos-Regulated Tetramer And Is Involved In Mitochondrial Metabolic Homeostasis, Abhinav Joshi, Li Dai, Yanxin Liu, Jungsoon Lee, Nastaran Mohammadi Ghahhari, Gregory Segala, Kristin Beebe, Lisa M Jenkins, Gaelyn C Lyons, Lilia Bernasconi, Francis T F Tsai, David A Agard, Len Neckers, Didier Picard

Faculty, Staff and Students Publications

BACKGROUND: The molecular chaperone TRAP1, the mitochondrial isoform of cytosolic HSP90, remains poorly understood with respect to its pivotal role in the regulation of mitochondrial metabolism. Most studies have found it to be an inhibitor of mitochondrial oxidative phosphorylation (OXPHOS) and an inducer of the Warburg phenotype of cancer cells. However, others have reported the opposite, and there is no consensus on the relevant TRAP1 interactors. This calls for a more comprehensive analysis of the TRAP1 interactome and of how TRAP1 and mitochondrial metabolism mutually affect each other.

RESULTS: We show that the disruption of the gene for TRAP1 in …


A Transcriptional Regulatory System Of The S. Cerevisiae Ole1 Gene Responds To Fatty Acid Species And Intracellular Amount, And Not Simply Membrane Status, Marshall Willey, Matthew Ochs, Clara Schriemer, Virginia Mcdonough Jan 2020

A Transcriptional Regulatory System Of The S. Cerevisiae Ole1 Gene Responds To Fatty Acid Species And Intracellular Amount, And Not Simply Membrane Status, Marshall Willey, Matthew Ochs, Clara Schriemer, Virginia Mcdonough

Faculty Publications

We examined the effects of unsaturated fatty acid (UFA) species and their concentration on the expression of OLE1, which encodes the stearoyl CoA desaturase, in Saccharomyces cerevisiae. We controlled the amount of UFA taken up by the cell by varying the concentration of tergitol in the medium. When cultured with 1 mM fatty acid in 0.1% tergitol, cells took up much more fatty acid than when cultured with the same concentration of fatty acid at 1% tergitol, although the amount incorporated was dependent on UFA species. For each fatty acid tested, we found that the higher uptake (0.1% tergitol condition) …


Dominant Negative Effects By Inactive Spa47 Mutants Inhibit T3ss Function And Shigella Virulence, Jamie L. Burgess, Heather B. Case, R. Alan Burgess, Nicholas E. Dickenson Jan 2020

Dominant Negative Effects By Inactive Spa47 Mutants Inhibit T3ss Function And Shigella Virulence, Jamie L. Burgess, Heather B. Case, R. Alan Burgess, Nicholas E. Dickenson

Chemistry and Biochemistry Faculty Publications

Type three secretion systems (T3SS) are complex nano-machines that evolved to inject bacterial effector proteins directly into the cytoplasm of eukaryotic cells. Many high-priority human pathogens rely on one or more T3SSs to cause disease and evade host immune responses, underscoring the need to better understand the mechanisms through which T3SSs function and their role(s) in supporting pathogen virulence. We recently identified the Shigella protein Spa47 as an oligomerization-activated T3SS ATPase that fuels the T3SS and supports overall Shigella virulence. Here, we provide both in vitro and in vivo characterization of Spa47 oligomerization and activation in the presence and absence …


Case 34: Kinetics Of Alkaline Phosphatase, Dr. Kathleen Cornely Jan 2020

Case 34: Kinetics Of Alkaline Phosphatase, Dr. Kathleen Cornely

Chemistry & Biochemistry Case Studies

Kinetic studies are carried out using the alkaline phosphatase, an enzyme that has an important role in skeletal mineralization.


Rhoa-Rock Signaling As A Therapeutic Target In Traumatic Brain Injury, Shalaka Mulherkar, Kimberley F Tolias Jan 2020

Rhoa-Rock Signaling As A Therapeutic Target In Traumatic Brain Injury, Shalaka Mulherkar, Kimberley F Tolias

Faculty, Staff and Students Publications

Traumatic brain injury (TBI) is a leading cause of death and disability worldwide. TBIs, which range in severity from mild to severe, occur when a traumatic event, such as a fall, a traffic accident, or a blow, causes the brain to move rapidly within the skull, resulting in damage. Long-term consequences of TBI can include motor and cognitive deficits and emotional disturbances that result in a reduced quality of life and work productivity. Recovery from TBI can be challenging due to a lack of effective treatment options for repairing TBI-induced neural damage and alleviating functional impairments. Central nervous system (CNS) …


Development And Characterization Of A Wee1 Kinase Degrader, Zhengnian Li, Benika J Pinch, Calla M Olson, Katherine A Donovan, Radosław P Nowak, Caitlin E Mills, David A Scott, Zainab M Doctor, Nicholas A Eleuteri, Mirra Chung, Peter K Sorger, Eric S Fischer, Nathanael S Gray Jan 2020

Development And Characterization Of A Wee1 Kinase Degrader, Zhengnian Li, Benika J Pinch, Calla M Olson, Katherine A Donovan, Radosław P Nowak, Caitlin E Mills, David A Scott, Zainab M Doctor, Nicholas A Eleuteri, Mirra Chung, Peter K Sorger, Eric S Fischer, Nathanael S Gray

Faculty, Staff and Students Publications

The G1/S cell cycle checkpoint is frequently dysregulated in cancer, leaving cancer cells reliant on a functional G2/M checkpoint to prevent excessive DNA damage. Wee1 regulates the G2/M checkpoint by phosphorylating CDK1 at Tyr15 to prevent mitotic entry. Previous drug development efforts targeting Wee1 resulted in the clinical-grade inhibitor, AZD1775. However, AZD1775 is burdened by dose-limiting adverse events, and has off-target PLK1 activity. In an attempt to overcome these limitations, we developed Wee1 degraders by conjugating AZD1775 to the cereblon (CRBN)-binding ligand, pomalidomide. The resulting lead compound, ZNL-02-096, degrades Wee1 while sparing PLK1, induces G2/M accumulation at 10-fold lower doses …


Structure Of The Cell-Binding Component Of The Clostridium Difficile Binary Toxin Reveals A Di-Heptamer Macromolecular Assembly, Xingjian Xu, Raquel Godoy-Ruiz, Kaylin A. Adipietro, Christopher Peralta, Danya Ben-Hail, Kristeny M. Varney, Mary E. Cook, Braden M. Roth, Paul T. Wilder, Thomas Cleveland, Alexander Grishaev, Heather M. Neu, Sarah L. J. Michel, Wenbo Yu, Dorothy Beckett, Richard R. Rustand, Catherine Lancaster, John W. Loughney, Adam Kristopeit, Sianny Christantii, Jessica W. Olson, Alexander D. Mackerell, Amedee Des Georges, Edwin Pozharski, David J. Weber Jan 2020

Structure Of The Cell-Binding Component Of The Clostridium Difficile Binary Toxin Reveals A Di-Heptamer Macromolecular Assembly, Xingjian Xu, Raquel Godoy-Ruiz, Kaylin A. Adipietro, Christopher Peralta, Danya Ben-Hail, Kristeny M. Varney, Mary E. Cook, Braden M. Roth, Paul T. Wilder, Thomas Cleveland, Alexander Grishaev, Heather M. Neu, Sarah L. J. Michel, Wenbo Yu, Dorothy Beckett, Richard R. Rustand, Catherine Lancaster, John W. Loughney, Adam Kristopeit, Sianny Christantii, Jessica W. Olson, Alexander D. Mackerell, Amedee Des Georges, Edwin Pozharski, David J. Weber

Advanced Science Research Center

Targeting Clostridium difficile infection is challenging because treatment options are limited, and high recurrence rates are common. One reason for this is that hypervirulent C. difficile strains often have a binary toxin termed the C. difficile toxin, in addition to the enterotoxins TsdA and TsdB. The C. difficile toxin has an enzymatic component, termed CDTa, and a pore-forming or delivery subunit termed CDTb. CDTb was characterized here using a combination of singleparticle cryoelectron microscopy, X-ray crystallography, NMR, and other biophysical methods. In the absence of CDTa, 2 di-heptamer structures for activated CDTb (1.0 MDa) were solved at atomic resolution, including …


An Evolutionarily Conserved Iron-Sulfur Cluster Underlies Redox Sensory Function Of The Chloroplast Sensor Kinase, Iskander M. Ibrahim, Huan Wu, Roman Ezhov, Gilbert E. Kayanja, Stanislav D. Zakharov, Yanyan Du, Weiguo Andy Tao, Yulia Pushkar, William A. Cramer, Sujith Puthiyaveetil Jan 2020

An Evolutionarily Conserved Iron-Sulfur Cluster Underlies Redox Sensory Function Of The Chloroplast Sensor Kinase, Iskander M. Ibrahim, Huan Wu, Roman Ezhov, Gilbert E. Kayanja, Stanislav D. Zakharov, Yanyan Du, Weiguo Andy Tao, Yulia Pushkar, William A. Cramer, Sujith Puthiyaveetil

Purdue University Libraries Open Access Publishing Fund

Photosynthetic efficiency depends on equal light energy conversion by two spectrally distinct, serially-connected photosystems. The redox state of the plastoquinone pool, located between the two photosystems, is a key regulatory signal that initiates acclimatory changes in the relative abundance of photosystems. The Chloroplast Sensor Kinase (CSK) links the plastoquinone redox signal with photosystem gene expression but the mechanism by which it monitors the plastoquinone redox state is unclear. Here we show that the purified Arabidopsis and Phaeodactylum CSK and the cyanobacterial CSK homologue, Histidine kinase 2 (Hik2), are iron-sulfur proteins. The Fe-S cluster of CSK is further revealed to be …


Analyzing The Effect On Ligand Sensitivity For Xenopus Tropicalis Mc1r, Mc3r, Mc4r, And Mc5r As A Result Of Coexpression With Gallus Gallus Mrap1 In Chinese Hamster Ovary Cells, Avery Niemann, Robert Dores Jan 2020

Analyzing The Effect On Ligand Sensitivity For Xenopus Tropicalis Mc1r, Mc3r, Mc4r, And Mc5r As A Result Of Coexpression With Gallus Gallus Mrap1 In Chinese Hamster Ovary Cells, Avery Niemann, Robert Dores

DU Undergraduate Research Journal Archive

Some melanocortin receptors and the accessory protein MRAP1 have been found to interact in novel ways when co-expressed in the same cells following stimulation with either ACTH (1-24) or αMSH. These interactions have been seen for mammalian, bird, and some bony fish melanocortin receptors. Such analysis has not been done yet on the amphibian melanocortin receptors, MC1R, MC3R, MC4R, and MC5R. To this end, this study was done on the effects regarding ligand sensitivity for ACTH (1-24) and αMSH, when the MC1R, MC3R, MC4R, and MC5R paralogs of the amphibian, Xenopus tropicalis were expressed in Chinese Hamster Ovary cells either …


Faculty Spotlight—Dr. Robert Dores, Anit Tyagi, William Moody Jan 2020

Faculty Spotlight—Dr. Robert Dores, Anit Tyagi, William Moody

DU Undergraduate Research Journal Archive

Robert Dores Interview

Edited by Will Moody


A Proposed Mechanism To Induce Multi-Layer Polydiacetylene-Coated Filter Color Response To Bacteria , Timothy Hanks Jan 2020

A Proposed Mechanism To Induce Multi-Layer Polydiacetylene-Coated Filter Color Response To Bacteria , Timothy Hanks

Chemistry Publications

The purpose of this study was to develop a multi-layer diacetylene (PDA)-coated filter and to verify the proposed color response mechanism of PDA-coated filters to bacteria. Unlike other reports which immobilize PDA lipo- somes on solid support or create monolayer Langmuir films, multi-layer PDA-coated filters were generated by directly evaporating organic solvents. Different from incorporating functional headgroups or inserting phospho- lipids into PDA, we reported that bacterial growth can trigger the color change of PDA sensors without any mod- ification or phospholipid insertion. The mechanism that pH change from bacteria metabolites lead to color change of PDA filter was proposed …


Deregulation Of Polycomb Repressive Complex-2 In Mantle Cell Lymphoma Confers Growth Advantage By Epigenetic Suppression Of, Christos Demosthenous, Shiv K Gupta, Jing Sun, Yongsen Wang, Tammy P Troska, Mamta Gupta Jan 2020

Deregulation Of Polycomb Repressive Complex-2 In Mantle Cell Lymphoma Confers Growth Advantage By Epigenetic Suppression Of, Christos Demosthenous, Shiv K Gupta, Jing Sun, Yongsen Wang, Tammy P Troska, Mamta Gupta

Biochemistry and Molecular Medicine Faculty Publications

The polycomb repressive complex 2 (PRC2) maintains the transcriptional repression of target genes through its catalytic component enhancer of zeste homolog 2 (EZH2). Through modulating critical gene expression, EZH2 also plays a role in cancer development and progression by promoting cancer cell survival and invasion. Mutations in EZH2 are prevalent in certain B-cell lymphoma subtypes such as diffuse large cell lymphoma and follicular lymphoma; while no EZH2 mutation has been reported in the mantle cell lymphoma (MCL). Here we demonstrate that the PRC2 components EZH2, EED and SUZ12 are upregulated in the MCL cells as compared to normal B-cells. Moreover, …


Apoptosis And Necrosis Drive Muscle Fiber Loss In Lipin1 Deficient Skeletal Muscle, Sandhya Ramani Sattiraju Jan 2020

Apoptosis And Necrosis Drive Muscle Fiber Loss In Lipin1 Deficient Skeletal Muscle, Sandhya Ramani Sattiraju

Browse all Theses and Dissertations

Mutations in lipin1 are suggested to be a common cause of massive rhabdomyolysis episodes in children, however, the molecular mechanism involved in the regulation of myofiber death by lipin1 is not known. In this study, we utilized the skeletal muscle from cell-type-specific lipin1 knockout (Lipin1Myf5cKO) mice to define cell death pathways involved in lipin1 deficient muscles. We observed a significant increase in centrally nucleated fibers and embryonic myosin heavy chain (EMyHC)-positive regenerating fibers in Lipin1Myf5cKO mice compared to wild-type (WT) mice, indicating an increased cycle of degeneration and regeneration in lipin1 deficient muscles. Lipin1 deficient muscles had significantly elevated pro-apoptotic …


An Evaluation Of Co-Culture Parameters Effecting Antibiotic Production In Soil Microbes, Rebecca Lindow Jan 2020

An Evaluation Of Co-Culture Parameters Effecting Antibiotic Production In Soil Microbes, Rebecca Lindow

Master's Theses and Doctoral Dissertations

The rise of infections caused by antibiotic resistant bacteria, compounded by a reduction in antibiotic discovery and development, jeopardizes human health. Historically, antibiotics derive from secondary metabolites produced by soil microbes in pure culture, but recent genetic evidence suggests that microbes can produce more secondary metabolites than are currently observed. The modified crowded plate technique directly identifies antibiotic-producing soil microbes that were co-plated with a target pathogen. Here, this technique was refined by testing the effect of a D-alanine auxotrophic target pathogen rather than a prototrophic pathogen as well as investigating conditions most conducive to antibiotic production. Antibiotic producing conditions …


Full Issue-- Volume 3 Issue 1, 2020, Issue 1 Volume 3 Jan 2020

Full Issue-- Volume 3 Issue 1, 2020, Issue 1 Volume 3

Pursue: Undergraduate Research Journal

PURSUE: Undergraduate Research Journal

Volume 3 Issue 1, 2020

Article 1 - Harvesting Electrical Energy Produced by Electrogenic Bacteria in Microbial Fuel Cells

Article 2 – The Effects of Fertilizer Rate on the Growth of Egyptian Spinach in a Greenhouse

Article 3 – Exploring the Association Between Nutrition and Mental Health in Adolescence: A Systematic Literature Review

Article 4— Biological Pathways Associated with Wild and Domestic Animals


Examining Artifacts Of The Watershed Segmentation, Emily Jo Armitage Jan 2020

Examining Artifacts Of The Watershed Segmentation, Emily Jo Armitage

Electronic Theses and Dissertations

The watershed segmentation is an algorithm used to systematically track cell intercalary behaviors during germ band extension of the Drosophila embryo. Neighboring cells share a contracting vertical interface, called a T1, which continues contracting to a single point, a T2, and extending in the horizontal direction to create what is called a T3 interface (Fig. 1). Additionally, higher order vertices called rosettes occur when five or more cells meet at a common vertex. Simulated T2 events demonstrate that cell angle and not noise level in the image contributes to the incorrect detection of artifactual T1s in more acute angled cells …


Quantification Of Mitochondrial Zinc Homeostasis And Analysis Of Zinc And Polyamine-Mediated Axonal Trafficking, Dylan Hunt Fudge Jan 2020

Quantification Of Mitochondrial Zinc Homeostasis And Analysis Of Zinc And Polyamine-Mediated Axonal Trafficking, Dylan Hunt Fudge

Electronic Theses and Dissertations

The zinc ion is an important emerging signaling molecule for biological processes. In this work we engineered improved zinc sensors based on our previously developed fluorescent sensor GZnP1 to provide sensors with a higher fluorescent readout, faster kinetics, and a superior sensitivity to zinc. We utilized these zinc sensors and further developed the sensors to answer questions pertaining to biological zinc. We showed the labile zinc concentration in the mitochondrial matrix was less than 1 pM while the labile zinc concentration in the cytosol and mitochondrial IMS were comparable (~100 pM) across four different cell lines. Using these zinc sensors …


Cellular And Developmental Insights Into The Early Evolution Of Muscle, Jeffrey J. Colgren Jan 2020

Cellular And Developmental Insights Into The Early Evolution Of Muscle, Jeffrey J. Colgren

Electronic Theses and Dissertations

Whereas a great deal has been learned about the molecular underpinnings of morphological evolution in animals, much less is known about the origin of novel cell and tissue types. During the time in which the earliest animal lineages were diversifying, fundamental cell and tissue types, such as muscles, arose. Sponges are one of two animal lineages that lack muscles, yet they undergo coordinated full body contractions. Whereas the signaling processes have been studied, the physical mechanisms of contraction are completely uncharacterized. The main purpose of this work is to understand the primary contractile tissue of the sponge Ephydatia muelleri, …


Characterization Of The Dimerization And Salt Dependent Aggregation Of The Als-Linked Protein Tdp-43, Elizabeth Ehrhardt Jan 2020

Characterization Of The Dimerization And Salt Dependent Aggregation Of The Als-Linked Protein Tdp-43, Elizabeth Ehrhardt

Electronic Theses and Dissertations

Trans-active response (TAR) DNA-binding protein 43 (TDP-43) is essential for RNA processing but can also form toxic cytoplasmic inclusions in neurons of patients with amyotrophic lateral sclerosis (ALS) and frontotemporal lobar degeneration (FTLD). RNA-binding has been shown to have the potential to decrease or inhibit the aggregation of TDP-43, indicating that supplying RNA therapeutics may be a solution to treat these neurodegenerative disorders. However, the mechanism of aggregation, transitioning from TDP-43’s native dimeric state to small oligomers to toxic aggregates, is still relatively unknown. This needs to be established before determining how to target and disrupt this aggregation. Using GFP-TDP-43, …


A Look At Gene Control: Tracking The Ccnd1 Gene, Bryan Anders Jan 2020

A Look At Gene Control: Tracking The Ccnd1 Gene, Bryan Anders

Mahurin Honors College Capstone Experience/Thesis Projects

Cancer occurs when the cell does not properly control its own cell cycle. It then replicates in an out of control fashion leading to the death of various organs and then the demise of the organism as a whole. As it seems to have always been a problem for cell-based life, certain safeguards against cancer have been evolved over time. One such method comes in the form of prevention via cyclin proteins, which are encoded from cyclin genes. The gene that is the focus of this research is the CCND1, or cyclin D1, gene that controls the progression through various …


Development And Application Of Chemical Tools To Identify Kinase-Substrate Interactions, Aparni Kithulgoda Gamage Jan 2020

Development And Application Of Chemical Tools To Identify Kinase-Substrate Interactions, Aparni Kithulgoda Gamage

Wayne State University Dissertations

Post translational modifications regulate a variety of biological processes inside the cell.Protein phosphorylation is one such PTM modification catalyzed by protein kinases, which aid to transfer a signal from one place to another inside the cell. However, irregularities in kinase-mediated signaling are often implicated in many diseases, making kinases effective drug targets. To understand kinase-related disease formation and to discover drugs to treat these diseases, it is crucial to have a clear understanding on kinase-mediated cell signaling networks. A current gap in the kinase biology field is a lack of tools to identify which kinase phosphorylates which protein substrate inside …


How Cellular Metabolic State And The Chaperone Protein Hsp104 Interact To Affect The Spontaneous Formation Of The Yeast Prion [Ure3], Demyia Graham Jan 2020

How Cellular Metabolic State And The Chaperone Protein Hsp104 Interact To Affect The Spontaneous Formation Of The Yeast Prion [Ure3], Demyia Graham

Merge

No abstract provided.


The Effects Of Rolipram, A Selective Phosphodiesterase Inhibitor, On Immortalized Schwann Cell Proliferation, Kyle Kenney, Amanda Bohn, Angela Asirvatham Jan 2020

The Effects Of Rolipram, A Selective Phosphodiesterase Inhibitor, On Immortalized Schwann Cell Proliferation, Kyle Kenney, Amanda Bohn, Angela Asirvatham

Student Research Poster Presentations 2020

The regulation of Schwann cell growth in vitro is facilitated by heregulin, a neuron-secreted growth factor, and an unknown mitogen that activates the cyclic adenosine monophosphate (cAMP) pathway. The quantity of cAMP available to Schwann cells can determine if they become a myelinating or proliferating phenotype. The abundance of intracellular cAMP available to the cell is widely regulated by a family of enzymes called phosphodiesterases (PDEs). PDE inhibitors such as rolipram have therapeutic potential in various disorders and function by increasing the levels of cAMP in the cell. This study was undertaken to determine the concentration of rolipram that would …


Acetoacetate Enhances Oxidative Metabolism And Response To Toxicants Of Cultured Renal Cells, Trudi Maria Denoon Jan 2020

Acetoacetate Enhances Oxidative Metabolism And Response To Toxicants Of Cultured Renal Cells, Trudi Maria Denoon

Theses and Dissertations

In vitro methods can be cost effective and facilitate large scale drug screening in the pharmaceutical industry. Renal proximal tubular cells have been a prime target for drug induced toxicity. LLC-PK1 cells possess many transport functions of the proximal tubule epithelia, however, its energy metabolism differs from the highly oxidative tubule metabolism in vivo. This may impact its reliability in predicting toxicity. Modulating the growth media composition has been shown to shift cultured liver and muscle cells from high glycolytic activity to increased oxidative metabolism, but few studies have been done on renal cells. This study is designed to test …


Structure-Guided Molecular Grafting Of A Complex Broadly Neutralizing Viral Epitope, G. Bajic, M. J. Maron, T. M. Caradonna, M. Tian, Adam Mermelstein , '21, Daniela Fera, G. Kelsoe, M. Kuraoka, A. G. Schmidt Jan 2020

Structure-Guided Molecular Grafting Of A Complex Broadly Neutralizing Viral Epitope, G. Bajic, M. J. Maron, T. M. Caradonna, M. Tian, Adam Mermelstein , '21, Daniela Fera, G. Kelsoe, M. Kuraoka, A. G. Schmidt

Chemistry & Biochemistry Faculty Works

Antigenic variation and viral evolution have thwarted traditional influenza vaccination strategies. The broad protection afforded by a “universal” influenza vaccine may come from immunogens that elicit humoral immune responses targeting conserved epitopes on the viral hemagglutinin (HA), such as the receptor-binding site (RBS). Here, we engineered candidate immunogens that use noncirculating, avian influenza HAs as molecular scaffolds to present the broadly neutralizing RBS epitope from historical, circulating H1 influenzas. These “resurfaced” HAs (rsHAs) remove epitopes potentially targeted by strain-specific responses in immune-experienced individuals. Through structure-guided optimization, we improved two antigenically different scaffolds to bind a diverse panel of pan-H1 and …


Rab39 And Klp98a Are Required For Furrow Formation During Early Drosophila Embryogenesis, Megan R. Millage Jan 2020

Rab39 And Klp98a Are Required For Furrow Formation During Early Drosophila Embryogenesis, Megan R. Millage

Electronic Theses and Dissertations

The formation of a plasma membrane furrow is an essential process during development. Furrow formation is necessary for successful cell division and cytokinesis in addition to the ability to create multicellular tissues. Here, I will explore the role of the Golgi-associated Rab protein Rab39 in furrow formation during early Drosophila embryogenesis. Rab39 is one of eight Rab proteins that has been shown to localize to discrete puncta by live imaging in early Drosophila embryos, but its function and pathway have not been well characterized. In this thesis will I show that Rab39 forms dynamic, tubular structures that colocalize with trans-Golgi …


Sorting Of Cargo Proteins Within The Regulated Secretory Pathway: The Peripheral Membrane Protein Hid-1 As A Sorting And Vesicle Biogenesis Factor, Blake H. Hummer Jan 2020

Sorting Of Cargo Proteins Within The Regulated Secretory Pathway: The Peripheral Membrane Protein Hid-1 As A Sorting And Vesicle Biogenesis Factor, Blake H. Hummer

Electronic Theses and Dissertations

Large dense core vesicles (LDCVs) form at the trans-Golgi network (TGN) and mediate the regulated release of neuropeptides and peptide hormones. Despite their central role to physiology, the mechanisms controlling biogenesis and sorting to LDCVs is not well understood. Optimizing the retention using selective hooks (RUSH) method in neuroendocrine cells, we show it is possible to visualize sorting to the constitutive and regulated secretory pathways in real-time and that the bulk of transmembrane LDCV cargoes do not sort directly onto LDCVs, but exit the TGN into non-regulated vesicles to be incorporated to LDCVs at a later step. Additionally, we characterize …


Structure, Formation, And Biological Interactions Of Supported Lipid Bilayers (Slb) Incorporating Lipopolysaccharide, Palak Sondhi, Dhanbir Lingden, Keith Stine Jan 2020

Structure, Formation, And Biological Interactions Of Supported Lipid Bilayers (Slb) Incorporating Lipopolysaccharide, Palak Sondhi, Dhanbir Lingden, Keith Stine

Chemistry & Biochemistry Faculty Works

Biomimetic membrane systems play a crucial role in the field of biosensor engineering. Over the years, significant progress has been achieved creating artificial membranes by various strategies from vesicle fusion to Langmuir transfer approaches to meet an ever-growing demand for supported lipid bilayers on various substrates such as glass, mica, gold, polymer cushions, and many more. This paper reviews the diversity seen in the preparation of biologically relevant model lipid membranes which includes monolayers and bilayers of phospholipid and other crucial components such as proteins, characterization techniques, changes in the physical properties of the membranes during molecular interactions and the …