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Articles 3031 - 3060 of 6985

Full-Text Articles in Biochemistry

Interleukin-6 And Exercise; Early Evidence Of A Novel Myokine, Brendan Hogg Mr. Jan 2018

Interleukin-6 And Exercise; Early Evidence Of A Novel Myokine, Brendan Hogg Mr.

Graduate Student Theses, Dissertations, & Professional Papers

Interleukin-6 (IL-6) was first identified as a pleiotropic cytokine, with a host of body-wide functions. Cytokine functions are characterized by chronically elevated levels within various inflammatory states. In this regard, IL-6 is largely associated with the acute phase response to many stimuli and performs specific actions when produced from certain cell types. Accrued evidence indicates IL-6 release from skeletal muscle often includes myokine functions. Novel myokine functions are adaptive in nature, and as compared to inflammatory/cytokine roles, exhibit a transient time course. Following exercise plasma IL-6 peaks and returns to resting levels within 1-2 hours. In contrast, IL-6 is observed …


Dielectric Properties Of Isolated Adrenal Chromaffin Cells Determined By Microfluidic Impedance Spectroscopy, A. C. Sabuncu, M. Stacey, G. L. Graviso, N. Semenova, P. T. Vernier, N. Leblanc, I. Chatterjee, J. Zaklit Jan 2018

Dielectric Properties Of Isolated Adrenal Chromaffin Cells Determined By Microfluidic Impedance Spectroscopy, A. C. Sabuncu, M. Stacey, G. L. Graviso, N. Semenova, P. T. Vernier, N. Leblanc, I. Chatterjee, J. Zaklit

Bioelectrics Publications

Knowledge of the dielectric properties of biological cells plays an important role in numerical models aimed at understanding how high intensity ultrashort nanosecond electric pulses affect the plasma membrane and the membranes of intracellular organelles. To this end, using electrical impedance spectroscopy, the dielectric properties of isolated, neuroendocrine adrenal chromaffin cells were obtained. Measured impedance data of the cell suspension, acquired between 1 kHz and 20 MHz, were fit into a combination of constant phase element and Cole-Cole models from which the effect of electrode polarization was extracted. The dielectric spectrum of each cell suspension was fit into a Maxwell-Wagner …


Photosystem Ii Subunit S Overexpression Increases The Efficiency Of Water Use In A Field-Grown Crop, Katarzyna Glowacka, Johannes Kromdijk, Katherine Kucera, Jiayang Xie, Amanda P. Cavanagh, Lauriebeth Leonelli, Andrew D. B. Leakey, Donald R. Ort, Krishna K. Niyogi, Stephen P. Long Jan 2018

Photosystem Ii Subunit S Overexpression Increases The Efficiency Of Water Use In A Field-Grown Crop, Katarzyna Glowacka, Johannes Kromdijk, Katherine Kucera, Jiayang Xie, Amanda P. Cavanagh, Lauriebeth Leonelli, Andrew D. B. Leakey, Donald R. Ort, Krishna K. Niyogi, Stephen P. Long

Department of Biochemistry: Faculty Publications

Insufficient water availability for crop production is a mounting barrier to achieving the 70% increase in food production that will be needed by 2050. One solution is to develop crops that require less water per unit mass of production. Water vapor transpires from leaves through stomata, which also facilitate the influx of CO2 during photosynthetic assimilation. Here, we hypothesize that Photosystem II Subunit S (PsbS) expression affects a chloroplastderived signal for stomatal opening in response to light, which can be used to improve wateruse efficiency. Transgenic tobacco plants with a range of PsbS expression, from undetectable to 3.7 …


Simulation Of Stimulation: Cytokine Dosage And Cell Cycle Crosstalk Driving Timing-Dependent T Cell Differentiation, Matteo Barberis, Tomáš Helikar, Paul Verbruggen Jan 2018

Simulation Of Stimulation: Cytokine Dosage And Cell Cycle Crosstalk Driving Timing-Dependent T Cell Differentiation, Matteo Barberis, Tomáš Helikar, Paul Verbruggen

Department of Biochemistry: Faculty Publications

Triggering an appropriate protective response against invading agents is crucial to the effectiveness of human innate and adaptive immunity. Pathogen recognition and elimination requires integration of a myriad of signals from many different immune cells. For example, T cell functioning is not qualitatively, but quantitatively determined by cellular and humoral signals. Tipping the balance of signals, such that one of these is favored or gains advantage on another one, may impact the plasticity of T cells. This may lead to switching their phenotypes and, ultimately, modulating the balance between proliferating and memory T cells to sustain an appropriate immune response. …


Computational Systems Biology Approach For The Study Of Rheumatoid Arthritis: From A Molecular Map To A Dynamical Model, Vidisha Singh, Marek Ostaszewski, George D. Kalliolias, Gilles Chiocchia, Robert Olaso, Elisabeth Petit-Teixeira, Tomáš Helikar, Anna Niarakis Jan 2018

Computational Systems Biology Approach For The Study Of Rheumatoid Arthritis: From A Molecular Map To A Dynamical Model, Vidisha Singh, Marek Ostaszewski, George D. Kalliolias, Gilles Chiocchia, Robert Olaso, Elisabeth Petit-Teixeira, Tomáš Helikar, Anna Niarakis

Department of Biochemistry: Faculty Publications

In this work we present a systematic effort to summarize current biological pathway knowledge concerning Rheumatoid Arthritis (RA). We are constructing a detailed molecular map based on exhaustive literature scanning, strict curation criteria, re-evaluation of previously published attempts and most importantly experts’ advice. The RA map will be web-published in the coming months in the form of an interactive map, using the MINERVA platform, allowing for easy access, navigation and search of all molecular pathways implicated in RA, serving thus, as an on line knowledgebase for the disease. Moreover the map could be used as a template for Omics data …


The Colomoto Interactive Notebook: Accessible And Reproducible Computational Analyses For Qualitative Biological Networks, Aurelien Naldi, Celine Hernandez, Nicolas Levy, Gautier Stoll, Pedro T. Monteiro, Claudine Chaouiya, Tomáš Helikar, Andrei Zinovyev, Laurence Calzone, Sarah Cohen-Boulakia, Denis Thieffry, Loic Pauleve Jan 2018

The Colomoto Interactive Notebook: Accessible And Reproducible Computational Analyses For Qualitative Biological Networks, Aurelien Naldi, Celine Hernandez, Nicolas Levy, Gautier Stoll, Pedro T. Monteiro, Claudine Chaouiya, Tomáš Helikar, Andrei Zinovyev, Laurence Calzone, Sarah Cohen-Boulakia, Denis Thieffry, Loic Pauleve

Department of Biochemistry: Faculty Publications

Analysing models of biological networks typically relies on workflows in which different software tools with sensitive parameters are chained together,many times with additional manual steps. The accessibility and reproducibility of such workflows is challenging, as publications often overlook analysis details, and because some of these tools may be difficult to install, and/or have a steep learning curve. The CoLoMoTo Interactive Notebook provides a unified environment to edit, execute, share, and reproduce analyses of qualitative models of biological networks. This framework combines the power of different technologies to ensure repeatability and to reduce users’ learning curve of these technologies. The framework …


A Mechanistic Computational Model Reveals That Plasticity Of Cd4+ T Cell Differentiation Is A Function Of Cytokine Composition And Dosage, Bhanwar Lal Puniya, Robert G. Todd, Akram Mohammed, Deborah M. Brown, Matteo Barberis, Tomáš Helikar Jan 2018

A Mechanistic Computational Model Reveals That Plasticity Of Cd4+ T Cell Differentiation Is A Function Of Cytokine Composition And Dosage, Bhanwar Lal Puniya, Robert G. Todd, Akram Mohammed, Deborah M. Brown, Matteo Barberis, Tomáš Helikar

Department of Biochemistry: Faculty Publications

CD4+ T cells provide cell-mediated immunity in response to various antigens. During an immune response, naïve CD4+ T cells differentiate into specialized effector T helper (Th1, Th2, and Th17) cells and induced regulatory (iTreg) cells based on a cytokine milieu. In recent studies, complex phenotypes resembling more than one classical T cell lineage have been experimentally observed. Herein, we sought to characterize the capacity of T cell differentiation in response to the complex extracellular environment. We constructed a comprehensive mechanistic (logical) computational model of the signal transduction that regulates T cell differentiation. The model’s dynamics were characterized and analyzed under …


Reactive Oxygen Species In Chronic Obstructive Pulmonary Disease, Samia Boukhenouna, Mark A. Wilson, Karim Bahmed, Beata Kosmider Jan 2018

Reactive Oxygen Species In Chronic Obstructive Pulmonary Disease, Samia Boukhenouna, Mark A. Wilson, Karim Bahmed, Beata Kosmider

Department of Biochemistry: Faculty Publications

Chronic obstructive pulmonary disease (COPD) includes chronic bronchitis and emphysema. Environmental exposure, primarily cigarette smoking, can cause high oxidative stress and is the main factor of COPD development. Cigarette smoke also contributes to the imbalance of oxidant/antioxidant due to exogenous reactive oxygen species (ROS). Moreover, endogenously released ROS during the inflammatory process and mitochondrial dysfunction may contribute to this disease progression. ROS and reactive nitrogen species (RNS) can oxidize different biomolecules such as DNA, proteins, and lipids leading to epithelial cell injury and death. Various detoxifying enzymes and antioxidant defense systems can be involved in ROS removal. In this review, …


Investigating Phosphorylation Patterns And Their Effect On The Activity Of Transcription Factor Taabf1 In Imbibing Cereal Grains, Grace Uwase Jan 2018

Investigating Phosphorylation Patterns And Their Effect On The Activity Of Transcription Factor Taabf1 In Imbibing Cereal Grains, Grace Uwase

Honors Theses

The wheat transcription factor TaABF1 plays an important role in hormone-mediated regulation of seed dormancy and germination of cereal grains. Evidence shows that TaABF1 activity is regulated by phosphorylation, and previous work in our lab showed that when serine residues in its conserved regions; S36, S37, S113, S115 were altered to phosphomimetic aspartate, the 4xD TaABF1 mutant had increased activity as a transcription factor. However, when only S113 was altered, TaABF1’s activity was greatly reduced. The work presented here explored whether the S36D/S37D/S115D mutant would have stronger activity than the 4xD mutant. Using the particle bombardment technique to introduce the …


Haloferax Volcanii For Carotenoid Production, Erika Smith Jan 2018

Haloferax Volcanii For Carotenoid Production, Erika Smith

Honors Theses

Carotenoids are used as natural colorants and have been shown to have numerous health benefits, making these molecules highly desirable in the aquaculture, pharmaceutical, and nutraceutical markets. There is increasing consumer demand for the natural synthesis of carotenoids, but current methods are limited by the cost and difficulty of extraction from organisms. The halophilic archaeon Haloferax volcanii is amenable to extraction and has an endogenous carotenoid biosynthetic pathway that culminates in the accumulation of the carotenoid bacterioruberin; however, H. volcanii also synthesizes important precursors that can be converted into more highly-desired carotenoids, such as β-carotene and astaxanthin, in the presence …


The Biogeochemical Cycling Of Iron, Copper, Nickel, Cadmium, Manganese, Cobalt, Lead, And Scandium In A California Current Experimental Study, Travis Mellett, Matthew T. Brown, P. Dreux Chappell, Carolyn Duckham, Jessica N. Fitzsimmons, Claire P. Till, Robert M. Sherrell, Maria T. Maldonado, Kristen N. Buck Jan 2018

The Biogeochemical Cycling Of Iron, Copper, Nickel, Cadmium, Manganese, Cobalt, Lead, And Scandium In A California Current Experimental Study, Travis Mellett, Matthew T. Brown, P. Dreux Chappell, Carolyn Duckham, Jessica N. Fitzsimmons, Claire P. Till, Robert M. Sherrell, Maria T. Maldonado, Kristen N. Buck

OES Faculty Publications

A 3-day shipboard incubation experiment was conducted in the California Current System in July 2014 to investigate the cycling of iron (Fe), copper (Cu), nickel (Ni), cadmium (Cd), manganese (Mn), cobalt (Co), lead (Pb), and scandium (Sc) under a range of light and particle conditions. Filtered (< 0.2 μm) and unfiltered treatments were incubated under the following light conditions: Dark, light (“UV”), and light without the ultraviolet (UV) wavelengths (“noUV”). The experiment was sampled for carbon and Fe uptake rates, dissolved trace metal concentrations (Fe, Cu, Ni, Cd, Mn, Co, Pb, Sc), Fe and Cu speciation, size-fractionated concentrations of Cd and Fe, and diatom community composition from DNA sequencing. Exposure to UV light increased phytoplankton Fe uptake in the first 24 h of the incubation relative to the noUV treatment, suggesting that a fraction of the ambient ligand-bound Fe was photoreactive. Fe-binding organic ligand production was observed in the unfiltered light treatments in association with increasing chlorophyll a, and evidence for Cu-binding ligand production in these treatments was also observed. Biological uptake of Cd and Co was observed along with scavenging of dissolved Pb. Manganese appeared to be rapidly oxidized by Mn-oxidizing bacteria with concomitant drawdown of dissolved Ni. Scandium displayed similar trends to Fe, reinforcing the limited observations …


Zebrafish Model Of Mll-Rearranged Acute Myeloid Leukemia, Alex J. Belt Jan 2018

Zebrafish Model Of Mll-Rearranged Acute Myeloid Leukemia, Alex J. Belt

Theses and Dissertations

Acute myeloid leukemia (AML) is the second most common type of leukemia and accounts for 80% of adult acute leukemia cases and is characterized by the accumulation of poorly or undifferentiated myeloid blast cells. Standard treatment includes chemotherapy, which if unsuccessful, is followed by more rigorous chemotherapy as well as stem cell transplantation. Considering most patients are over the age of 45, these more rigorous therapies are not always possible, and as such, new therapies must be developed. Furthermore, AML patients harboring a chromosomal rearrangement involving Multiple Lineage Leukemia (MLL) that results in the expression of an MLL fusion protein …


Synergistic Effect Of Smac-Mimetic And Poly (I:C) On Apoptosis Of Cholangiocarcinoma Cells, Thanpisit Lomphithak Jan 2018

Synergistic Effect Of Smac-Mimetic And Poly (I:C) On Apoptosis Of Cholangiocarcinoma Cells, Thanpisit Lomphithak

Chulalongkorn University Theses and Dissertations (Chula ETD)

Cholangiocarcinoma (CCA), a malignancy transformed from cholangiocytes in the bile ducts is more common in Asia and has the highest incidence rate in Thailand. CCA is an aggressive malignancy which has high mortality, high recurrence rate and poor prognosis due to late diagnosis and lack of effective treatment, therefore identification of novel therapeutic targets could lead to the development of more efficient therapy. CCA is associated with chronic inflammation that could upregulate Toll-like receptor 3 (TLR3) in CCA cells. TLR3 agonist, poly(I:C) has been reported to directly induce apoptosis in selected cancers and also activates anti-tumor immunity. However, in some …


Engineering Of Two-Color Atp-Binding Cassette Biosensor Proteins For Discovery Of Novel Substrates And Modulators, Bremansu Osa-Andrews Jan 2018

Engineering Of Two-Color Atp-Binding Cassette Biosensor Proteins For Discovery Of Novel Substrates And Modulators, Bremansu Osa-Andrews

Electronic Theses and Dissertations

ATP-binding cassette (ABC) transporter proteins are a vast, ubiquitous superfamily of proteins most of which unlock the energy from ATP-binding and hydrolysis to influx or efflux a wide spectrum of structurally dissimilar substrates across cell membranes. All eukaryotic ABC transporters including P-gp and MRP1 only exist as efflux pumps whose prominent expression in cells is associated with multidrug resistance of antiretrovirals, antiepileptics, antimalarials and anticancer agents. P-gp and MRP1 reduce the bioavailability and efficacy of chemotherapeutic drugs by actively pumping out these drugs, thereby, leading to poor clinical outcomes during chemotherapy. Due to their clinical importance, profiling of the interaction …


Structural Features And Domain Movements Controlling Substrate Binding And Cofactor Specificity In Class Ii Hmg-Coa Reductase, Bradley R. Miller, Yan Kung Jan 2018

Structural Features And Domain Movements Controlling Substrate Binding And Cofactor Specificity In Class Ii Hmg-Coa Reductase, Bradley R. Miller, Yan Kung

Chemistry Faculty Research and Scholarship

The key mevalonate pathway enzyme 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase (HMGR) uses the cofactor NAD(P)H to reduce HMG-CoA to mevalonate in the production of countless metabolites and natural products. Although inhibition of HMGR by statin drugs is well-understood, several mechanistic details of HMGR catalysis remain unresolved, and the structural basis for the wide range of cofactor specificity for either NADH or NADPH among HMGRs from different organisms is also unknown. Here, we present crystal structures of HMGR from Streptococcus pneumoniae (SpHMGR) alongside kinetic data of the enzyme’s cofactor preferences. Our structure of SpHMGR bound with its kinetically preferred NADPH cofactor …


Steroid-Coa Ligases, Fadd17a1 And Fadd19a1, And Their Role In Cholesterol Side-Chain Degradation In Mycobacterium Tuberculosis, Johnathan Salim Abou-Fadel Jan 2018

Steroid-Coa Ligases, Fadd17a1 And Fadd19a1, And Their Role In Cholesterol Side-Chain Degradation In Mycobacterium Tuberculosis, Johnathan Salim Abou-Fadel

Open Access Theses & Dissertations

Mycobacterium tuberculosis (Mtb) is a serious health issue arising from the increasing incidence of multi-drug resistant (MDR-TB) strains that are becoming more prevalent in high-risk countries, especially here in the Texas/Mexico border. Confirmed cases and outbreaks in schools and hospitals are more frequent in this region due to the high-volume pedestrian traffic between the two cities, and the lack of a modernized health system in Mexico. Identification of new Mtb metabolic pathways for development of novel antitubercular drugs is urgently needed. The goal of this current work investigates two Mtb fatty acyl-CoA ligase enzymes' (FadD17A1 and FadD19A1) to explore whether …


Coordination Of Different Ligands To Copper(Ii) And Cobalt(Iii) Metal Centers Enhances Zika Virus And Dengue Virus Loads In Both Arthropod Cells And Human Keratinocytes, Shovan Dutta, Michael J. Celestine, Supreet Khanal, Alexis Huddleston, Colin Simms, Jessa Faye Arca, Amlam Mitra, Loree Heller, Piotr Kraj, Michael Ledizet, John F. Anderson, Girish Neelakanta, Alvin A. Holder, Hameeda Sultana Jan 2018

Coordination Of Different Ligands To Copper(Ii) And Cobalt(Iii) Metal Centers Enhances Zika Virus And Dengue Virus Loads In Both Arthropod Cells And Human Keratinocytes, Shovan Dutta, Michael J. Celestine, Supreet Khanal, Alexis Huddleston, Colin Simms, Jessa Faye Arca, Amlam Mitra, Loree Heller, Piotr Kraj, Michael Ledizet, John F. Anderson, Girish Neelakanta, Alvin A. Holder, Hameeda Sultana

Biological Sciences Faculty Publications

Trace elements such as copper and cobalt have been associated with virus-host interactions. However, studies to show the effect of conjugation of copper(II) or cobalt(III) metal centers to thiosemicarbazone ligand(s) derived from either food additives or mosquito repellent such as 2-acetylethiazole or citral, respectively, on Zika virus (ZIKV) or dengue virus (serotype 2; DENV2) infections have not been explored. In this study, we show that four compounds comprising of thiosemicarbazone ligand derived from 2-acetylethiazole viz., (E)-N-ethyl-2-[1-(thiazol-2-yl)ethylidene]hydrazinecarbothioamide (acetylethTSC) (compound 1), a copper(II) complex with acetylethTSC as a ligand (compound 2), a thiosemicarbazone ligand-derived from citral (compound 3) and a cobalt(III) complex …


Rack1 Is A Critical Component In Ires-Mediated Translation, Ethan Asher Lafontaine Jan 2018

Rack1 Is A Critical Component In Ires-Mediated Translation, Ethan Asher Lafontaine

Legacy Theses & Dissertations (2009 - 2024)

Due to its sheer number of interacting partners, core ribosomal protein RACK1 is a key player in many cellular processes and has been shown to play a vital role of translation initiation of the Hepatitis C virus RNA. The HCV 5′ untranslated region contains an internal ribosome entry site. IRES-mediated translation is a process employed in eukaryotes by select viruses and some cellular mRNAs by which translation initiation bypasses the canonical mRNA cap-dependent pathway by means of an RNA secondary structure (the IRES). While cap-dependent translation requires the recruitment of a suite of initiation factors, IRES-mediated translation requires few to …


Technology Development For Detection Of Circulating Disease Biomarkers From Liquid Biopsies Using Multifunctional Nanomaterials, Mustafa Balcioglu Jan 2018

Technology Development For Detection Of Circulating Disease Biomarkers From Liquid Biopsies Using Multifunctional Nanomaterials, Mustafa Balcioglu

Legacy Theses & Dissertations (2009 - 2024)

Despite the advance health care, devastating health conditions such as cancer and infectious diseases that affect populations worldwide are too often not diagnosed until morbid symptoms become apparent in the late phase. Obtaining an early and accurate diagnosis that reveal a hidden lethal threat before the disease becomes complicated may dramatically reduce the severity of its impact on the patient’s life and increase the probability of survival. For example, in the case of ovarian cancer, which is the fifth most common malignancy and the fifth leading cause of cancer mortality in women in the US, the 5-year relative survival is …


Dna Functionalized Nanoparticles In Nanobiosensor And Sensor Array Development For Molecular Diagnostics And In Vitro Identification Of Biomolecules, Mustafa Salih Hizir Jan 2018

Dna Functionalized Nanoparticles In Nanobiosensor And Sensor Array Development For Molecular Diagnostics And In Vitro Identification Of Biomolecules, Mustafa Salih Hizir

Legacy Theses & Dissertations (2009 - 2024)

Nucleic acid technology along with vast variety of nanomaterials has demonstrated a great potential in many applications from biosensing studies to molecular diagnostics, from biomedical and bioanalytical research to environmental analysis. Especially short single stranded (ss) DNA molecules, called oligonucleotides, are extraordinary biopolymers featuring diverse functionality on the nanoparticles thanks to their high degree of programmability, target-specific binding or cleavage, molecular recognition ability, structure-switching capability, and unique interactions at the bio-nano interfaces. Among those, there have been many biosensing applications utilizing ss DNAs and numerous nanomaterials through various detection techniques such as fluorometric, colorimetric or electrochemical methods. Although many groundbreaking …


The Dissemination, Regulatory Role, And Evolution Of Mycobacterial Inteins, Danielle Skye Kelley Jan 2018

The Dissemination, Regulatory Role, And Evolution Of Mycobacterial Inteins, Danielle Skye Kelley

Legacy Theses & Dissertations (2009 - 2024)

Inteins are intervening protein elements, capable of coordinating escape from a host protein through a self-catalyzed mechanism, called protein splicing. This results in free intein and a mature host protein product. Inteins are also mobile elements and many contain homing endonucleases that enable the targeting to ectopic sites and invasion of novel niches. Inteins have been found across all three domains of life and are often present in replication, recombination, and repair proteins. However, it is unclear if the observed distribution is simply a factor of endonuclease preference or if inteins have been selectively maintained due to an adaptation that …


Circular Rna : A Review Of History, Diseases, And Diagnostic Potential, Daniel Conley Jan 2018

Circular Rna : A Review Of History, Diseases, And Diagnostic Potential, Daniel Conley

Legacy Theses & Dissertations (2009 - 2024)

Abstract


Heteromeric Assemblies Of Glua3 Flip And Flop Shows Differences In Their Channel Opening Kinetics, Nicholas Karl Jan 2018

Heteromeric Assemblies Of Glua3 Flip And Flop Shows Differences In Their Channel Opening Kinetics, Nicholas Karl

Legacy Theses & Dissertations (2009 - 2024)

Prior studies of α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptors, including that of GluA3 AMPA receptor subunit, have shown that alternative mRNA splicing, which generates flip and flop variants with different amino acid sequences, gives rise to functional differences between the two variants. The goal of this MS thesis is to investigate the basic gating properties of the heteromeric complex channels formed from GluA2R/GluA3 AMPA receptor subunits and the different variants between the two subunits. The hypothesis to be tested is whether different GluA3 variants affect the channel gating properties when each of the variants is in a complex with the Q/R-site edited …


Functional Modulation Of Ampa Receptors By R/G Editing And Auxiliary Subunits, Wei Wen Jan 2018

Functional Modulation Of Ampa Receptors By R/G Editing And Auxiliary Subunits, Wei Wen

Legacy Theses & Dissertations (2009 - 2024)

The propagation of information in the central nervous system is, in essence, the flow of ions. Neurons connect with each other to form neural circuits that perform distinct functions, and these connections are formed through synapses. Excitatory and inhibitory synapses determine the excitability of a neuron, which further dictates the firing of action potentials. The major ion channels that mediate the transmission at the excitatory synapses are ionotropic glutamate receptors, among which AMPA receptors are responsible for the fast excitatory transmission. Therefore, the functionalities of AMPA receptors substantially affect the information flow, and dysfunction of them could potentially cause many …


The Development Of Bioaffinity-Based Concepts For On-Site Forensic Analyses : Blood, Sweat, And ... Fingerprints?, Crystal Huynh Jan 2018

The Development Of Bioaffinity-Based Concepts For On-Site Forensic Analyses : Blood, Sweat, And ... Fingerprints?, Crystal Huynh

Legacy Theses & Dissertations (2009 - 2024)

There have been many advances in forensic science over the recent years, but a majority of the tests currently preformed are still heavily reliant upon laboratory-based processes. This means that valuable pieces of information are left unexamined until a crime scene has been completely processed and evidence is moved to a crime lab. In some cases, the evidence may even be left in a queue due to backlogs from previous cases. The delay resulting from the time necessary for crime scene processing and transportation, as well as additional time spent waiting on lab equipment availability, hinders an investigator’s ability to …


Genetically Engineered Polypeptides As Biomimetic Light Harvesting Optical Antenna, Jason P. Seeley Jan 2018

Genetically Engineered Polypeptides As Biomimetic Light Harvesting Optical Antenna, Jason P. Seeley

Legacy Theses & Dissertations (2009 - 2024)

Natural resources useful for the generation of energy are limited. The development of efficient materials capable of utilizing the abundant free solar radiation is of considerable interest. Utilization of otherwise wasted energy sources, including solar radiation, is a progressive step in the quest for sustainable energy. Solar radiation incident upon the earth’s surface exceeds current energy requirements and motivates scientists to investigate and develop functional devices and nanomaterials including light harvesting complexes (LHC) capable of capturing solar radiation for energy conversion and storage.


Methionine Sulfoximine: A Novel Anti Inflammatory Agent, Tyler Peters Jan 2018

Methionine Sulfoximine: A Novel Anti Inflammatory Agent, Tyler Peters

Wayne State University Dissertations

ABSTRACT

METHIONINE SULFOXIMINE: A NOVEL ANTI-INFLAMMATORY AGENT

by

TYLER J. PETERS

October 2018

Advisor: William Brusilow

Major: Biochemistry and Molecular Biology

Degree: Doctor of Philosophy

The glutamine synthetase inhibitor methionine sulfoximine (MSO), shown previously to prevent death caused by an inflammatory liver response in mice, was tested on in vitro production of cytokines by mouse peritoneal macrophages triggered with lipopolysaccharide (LPS). MSO significantly reduced the production of Interleukin 6 (IL-6) and Tumor Necrosis Factor Alpha (TNFα) at 4 and 6 hours after LPS-treatment. This reduction did not result from decreased transcription of IL-6 and TNFα genes, and therefore appeared to …


Computational Design Of Levansucrase For Production Of Tailor-Made Length Levan-Type Fructo-Oligosaccharides, Pongsakorn Kanjanatanin Jan 2018

Computational Design Of Levansucrase For Production Of Tailor-Made Length Levan-Type Fructo-Oligosaccharides, Pongsakorn Kanjanatanin

Chulalongkorn University Theses and Dissertations (Chula ETD)

Levansucrase (LS) is an exocellular fructosyltransferase catalyzing the hydrolysis of sucrose and polymerization of levan and levan-type fructo-oligosaccharides (LFOs) that have various potentials in pharmaceutical and biological applications such as prebiotics and anticancer agents. LFOs with the chain length of 5 (LFO5 or GF4) showed inhibition activity against the SW480 colorectal cell lines up to about 83%. Although LFO5 has beneficial properties, the ability to produce LFO5 in large quantity is still limited. This study aimed to explore conformational diversity and elucidate the structural and molecular properties of LFO5, LFO10 and LFO15 as well as to redesign the active site …


Algae Biofuel Triacylglyceride Transesterification Optimization, Erik Ferenczy Jan 2018

Algae Biofuel Triacylglyceride Transesterification Optimization, Erik Ferenczy

Senior Honors Theses

Algae biofuels may hold the key to solving the problem of fossil fuel consumption by being comparable in content, renewable, and carbon-neutral. Many biofuel researchers and corporations have undertaken to increase the production rate or capacity of triacylglycerides (TAG), the fat precursor to biodiesel fuel produced by algae, in algae cultures and published articles documenting their findings. This research is devoted to evaluating the effect of water that may be present in samples on the conversion efficiency of TAG into fatty acid methyl esters (FAME), commonly referred to as biodiesel. Therefore, that efficiency was studied to find the water content …


Split Deoxyribozyme Probe For Efficient Detection Of Highly Structured Rna Targets, Sheila Raquel Solarez Jan 2018

Split Deoxyribozyme Probe For Efficient Detection Of Highly Structured Rna Targets, Sheila Raquel Solarez

Honors Undergraduate Theses

Transfer RNAs (tRNAs) are known for their role as adaptors during translation of the genetic information and as regulators for gene expression; uncharged tRNAs regulate global gene expression in response to changes in amino acid pools in the cell. Aminoacylated tRNAs play a role in non-ribosomal peptide bond formation, post-translational protein labeling, modification of phospholipids in the cell membrane, and antibiotic biosynthesis. [1] tRNAs have a highly stable structure that can present a challenge for their detection using conventional techniques. [2] To enable signal amplification and lower detection limits, a split probe - split deoxyribozyme (sDz or BiDz) probe, which …