Plaster Creek Floodplain And Adjacent Ravines Near Stanaback Park: Botanical Inventory Highlights And Management Considerations,
2021
Calvin University
Plaster Creek Floodplain And Adjacent Ravines Near Stanaback Park: Botanical Inventory Highlights And Management Considerations, David Warners, Garrett Crow, Haley Weesies
Faculty and Professional Research
In the summer of 2021, the research team visited this area of ravines and floodplain a total of twenty-one times to conduct our field research. During the visits, they carefully walked throughout different sections of the study site, identifying each vascular plant species they saw growing there and observing how the flora developed throughout the season. In addition to keeping detailed field notes, they documented permanent records of the findings of our inventory by collecting voucher specimens that have been deposited in the Calvin University Herbarium. Additionally, they sent duplicate specimens to the Michigan State University Herbarium and/or University of …
Botanical Inventory Highlights And Management Considerations For Covenant Park,
2021
Calvin University
Botanical Inventory Highlights And Management Considerations For Covenant Park, David Warners, Garrett Crow, Haley Weesies
Faculty and Professional Research
In the spring and summer of 2021, Calvin University students and faculty conducted a botanical inventory and assessment of the natural areas in Covenant Park, located at 3724 Shaffer Avenue SE, Kentwood, MI 49512. Given that the property was recently acquired by the City of Kentwood Parks & Recreation, the purpose of this inventory is to inform Kentwood Parks and Recreation staff about the site’s floristic quality, diversity, and ecological significance. The specific objectives of this study are to 1) provide a comprehensive inventory of the species of plants occurring on the property, 2) identify particular areas that would benefit …
Clpxp Degradation System In Escherichia Coli, A Study Of Its Energy Sources And Its Applications In Managing The Expression Levels Of Targeted Membrane And Soluble Proteins,
2021
University of Kentucky
Clpxp Degradation System In Escherichia Coli, A Study Of Its Energy Sources And Its Applications In Managing The Expression Levels Of Targeted Membrane And Soluble Proteins, Thilini Abeywansha
Theses and Dissertations--Chemistry
ClpXP is an Escherichia coli protease that carries out energy-dependent intracellular proteolysis. In recent years, this system has been widely studied due to its importance as protein regulatory machinery and a virulence factor. Protein substrates of ClpXP contain degrons with a specific protein sequence. SsrA tag is one of the five degrons known to designate proteins for ClpXP degradation. SsrA is an 11 amino acid peptide added to the C-terminus of nascent polypeptide chains translated from aberrant messenger RNAs lacking stop codons via a process called trans-translation.
ClpXP was known to targets only cytosolic proteins with degrons until recently, …
Investigation Of Multidrug Efflux Transporter Acrb In Escherichia Coli: Assembly, Degradation And Dynamics,
2021
University of Kentucky
Investigation Of Multidrug Efflux Transporter Acrb In Escherichia Coli: Assembly, Degradation And Dynamics, Prasangi Irosha Rajapaksha
Theses and Dissertations--Chemistry
The Resistant Nodulation Division (RND) super family member, tripartite AcrA-AcrB-TolC efflux pump, is a major contributor in conferring multidrug-resistance in Escherichia coli. The structure of the pump complex, and drug translocation by functional rotation mechanism have been widely studied. Despite of all these data, the dynamics of the assembly process of the pump and AcrB during functional rotation in the process of drug efflux remains poorly understood. My thesis focuses on understanding the pump assembly process, dynamics of AcrB in functional rotation mechanism, and also investigate the mechanism of degradation of AcrB facilitated by a C-terminal ssrA tag.
In the …
Characterization Of Potential Anti-Infective Agents By Targeting Burkholderia Pseudomallei And Escherichia Coli Ispf,
2021
Northern Illinois University
Characterization Of Potential Anti-Infective Agents By Targeting Burkholderia Pseudomallei And Escherichia Coli Ispf, Dakota Lane Grote
Graduate Research Theses & Dissertations
With the likelihood of contracting an antibiotic resistant infection increasing, the need for novel anti-infective agents is critical. The development of novel anti-infective agents benefits from the identification of new target pathways necessary for the survival of the pathogen. One such target is the methylerythritol phosphate (MEP) pathway, responsible for the synthesis of the isoprenoid precursors isopentyl pyrophosphate (IPP) and dimethylallyl pyrophosphate (DMAPP) in bacteria and other pathogenic organisms. The MEP pathway is an attractive target because it is specific to a wide range of pathogenic organisms, while humans have a separate pathway, the mevalonate (MVA) pathway, for the biosynthesis …
Development Of Fluorescence Microscopy Approaches To Study Subcellular Protein Transport And Enzymatic Activity,
2021
Eastern Illinois University
Development Of Fluorescence Microscopy Approaches To Study Subcellular Protein Transport And Enzymatic Activity, Anchal Singh
Masters Theses
Understanding the subcellular localization of proteins and their activity is important in understanding their normal function in eukaryotic cells. Fluorescence cellular imaging techniques can selectively and sensitively visualize subcellular biochemistry. Using this approach, two different methods were employed in this thesis. The first focused on studying protein import into peroxisome and the other on monitoring the activity of an endoplasmic reticulum (ER)-localized enzyme, human carboxylesterase 1 (CES1).
Peroxisomes are mainly known as the center for long chain fatty acid b-oxidation as well as the production and detoxification of hydrogen peroxide. Proteins which are needed in the peroxisomes are encoded in …
Xylan-Derived Carbon Nutrient Acquisition By Caulobacter Crescentus,
2021
Eastern Illinois University
Xylan-Derived Carbon Nutrient Acquisition By Caulobacter Crescentus, Rhoda Ekuama Inkoom
Masters Theses
Bacterial decomposition of xylan and uptake of xylan-derived carbon compounds require a combination of enzymes, proteins, and complex molecular mechanisms. Bacteria have evolved molecular mechanisms for its utilization depending on its environment and source of xylan. Caulobacter crescentus, a Gram-negative bacterium which lives in an aquatic oligotrophic environment, exhibits asymmetric division which is an adaptive feature for its nutrient poor habitat. Although aromatic hydrocarbon and cellulose-derived mono-, di- and oligosaccharide utilization has been reported in literature, its xylan-derived carbon compound utilization is yet to be characterized. In this study, C. crescentus utilizes xylan-derived monomers arabinose, xylose and acetate as …
Developing Synthetic Strategies For Multifaceted Applications Of Stable Gold-Based Complexes,
2021
University of Kentucky
Developing Synthetic Strategies For Multifaceted Applications Of Stable Gold-Based Complexes, Randall Tyler Mertens
Theses and Dissertations--Chemistry
Development of stable gold-based complexes has been a rapidly advancing field due to the popularity of gold complexes, particularly for use in biomedical research and catalytic transformations. Given that auranofin, a gold(I) complex with FDA approval for the treatment of rheumatoid arthritis is used in the clinic, the development of stable gold-based molecules of clinical relevance is urgently needed. Herein are reported, synthetic strategies used for the development of new classes of gold(I) and gold(III) complexes for advancement in mitochondrial modulation for use as chemotherapeutics as well as application to gold catalysis due to the unique geometry of complexes presented …
Flavin Modification And Redox Tuning In The Bifurcating Electron Transfer Flavoprotein From Rhodopseudomonas Palustris: Two Arginines With Different Roles,
2021
University of Kentucky
Flavin Modification And Redox Tuning In The Bifurcating Electron Transfer Flavoprotein From Rhodopseudomonas Palustris: Two Arginines With Different Roles, Nishya Mohamed-Raseek
Theses and Dissertations--Chemistry
Electron bifurcation is considered as a third fundamental mode of energy conservation mechanism in addition to two well-known mechanisms, substrate level phosphorylation and Oxidative phosphorylation, in electron bifurcation endergonic and exergonic redox reactions are coupled. The newly discovered flavin based electron bifurcation in electron transfer flavoproteins (ETFs) helps to reduce low potential ferredoxin, which provides electrons to drive biologically demanding reactions such as atmospheric dinitrogen fixation in diazotroph and methane production in methanogens.
Current research demonstrates the capacity for electron bifurcation in the Rhodopseudomonas palustris ETF (RpalETF) system. RpalETF contains two chemically identical but functionally different FADs: …
Tet1-Mediated Dna Hydroxymethylation Regulates Adult Remyelination In Mice,
2021
CUNY Advanced Science Research Center
Tet1-Mediated Dna Hydroxymethylation Regulates Adult Remyelination In Mice, Sarah Moyon, Rebecca Frawley, Damien Marechal, Dennis Huang, Katy L.H. Marshall-Phelps, Linde Kegel, Boguslawa Sadowski, Yong-Hui Jiang, David A. Lyons, Wiebke Möbius, Patrizia Casaccia
Advanced Science Research Center
The mechanisms regulating myelin repair in the adult central nervous system (CNS) are unclear. Here, we identify DNA hydroxymethylation, catalyzed by the Ten-Eleven- Translocation (TET) enzyme TET1, as necessary for myelin repair in young adults and defective in old mice. Constitutive and inducible oligodendrocyte lineage-specific ablation of Tet1 (but not of Tet2), recapitulate this age-related decline in repair of demyelinated lesions. DNA hydroxymethylation and transcriptomic analyses identify TET1-target in adult oligodendrocytes, as genes regulating neuro-glial communication, including the solute carrier (Slc) gene family. Among them, we show that the expression levels of the Na+/K+/Cl− transporter, SLC12A2, are …
Elucidation Of The Structure Of Supramolecular Polymorphs In Peptide Nanofibres Using Raman Spectroscopy,
2021
Centre for Molecular Nanometrology, WestCHEM, Department of Pure and Applied Chemistry, Technology and Innovation, Glasgow, Scotland
Elucidation Of The Structure Of Supramolecular Polymorphs In Peptide Nanofibres Using Raman Spectroscopy, Sian Sloan-Dennison, Ayala Lampel, Eileen Raßlenberg, Rein V. Ulijn, Ewen Smith, Karen Faulds, Duncan Graham
Advanced Science Research Center
Peptide fibre formation via molecular self-assembly is a key step in a range of cellular processes and increasingly considered as an approach to produce supramolecular biomaterials. We previously demonstrated the self-assembly of the tripeptide lysine-dityrosine (KYY) as a substrate for the formation of proton-conducting melanin-like materials. Point based Raman scattering is one of several techniques which were used to characterise the secondary structure of the KYY nanofibre but as is often the case with this type of fibre, the spectra are rather complex and in addition there were variations in intensity between samples making interpretation difficult. Using Raman mapping we …
Development Of Linked-Domain Protein Inhibitors Of The E2-Conjugating Enzyme Ube2d,
2021
University of the Pacific
Development Of Linked-Domain Protein Inhibitors Of The E2-Conjugating Enzyme Ube2d, Anneroos E. Nederstigt
University of the Pacific Theses and Dissertations
In most eukaryotic organisms, the ubiquitination pathway is one of the most important and versatile signaling systems in use. It is integral to processes such as protein degradation and homeostasis, DNA repair cell cycle regulation, signaling and regulation, epigenetics, and many more. Ubiquitin (Ub) is a short polypeptide of 8.6 kDa, 76 residues that functions as a reversible post-translation modification (PTM). It furthermore contains 7 different lysine residues (K6, K11, K27, K29, K33, K48, K63), all of which can form isopeptide linkages with one another to link individual Ub moieties to form unique polyUb chains onto substrates. The type of …
In Silico And In Vitro Tudies For Identification Of Novel Egfr Tyrosine Kinase Inhibitors,
2021
Faculty of Science
In Silico And In Vitro Tudies For Identification Of Novel Egfr Tyrosine Kinase Inhibitors, Duangjai Todsaporn
Chulalongkorn University Theses and Dissertations (Chula ETD)
Epidermal growth factor receptor (EGFR) has been identified as a promising target in the treatment of non-small cell lung cancer (NSCLC). Mutations, including L858R/T790M double and L858R/T790M/C797S triple mutations, in the TK domain of EGFR have been linked to the severity of several cancers, especially NSCLC. A combination of comprehensive molecular modeling and in vitro kinase inhibition assay was used to unravel the mutational effects of EGFR on the susceptibility of five commercial drugs (erlotinib, gefitinib, afatinib, dacomitinib, and osimertinib) from each generation of EGFR in comparison with the wild-type EGFR. The binding affinity of five-FDA-approved drugs towards the L858R/T790M …
Neuroprotective Effect Of Passiflora Edulissims Against Amyloid Beta-Induced Neurotoxicity,
2021
Faculty of Allied Health Sciences
Neuroprotective Effect Of Passiflora Edulissims Against Amyloid Beta-Induced Neurotoxicity, Shuqin Cao
Chulalongkorn University Theses and Dissertations (Chula ETD)
Alzheimer’s disease (AD) is a common and devastating disease characterized by pathological aggregations of beta-amyloid (Aβ) plaques extracellularly, and Tau tangles intracellularly. While our understandings of the aetiologies of AD have greatly expanded over the decades, there is no drug available to stop disease progression. This study involves two parts. First, we demonstrate the potential of P. edulis pericarp (PP) extract in protecting against Aβ-mediated neurotoxicity in mammalian cells and Caenorhabditis elegans models of AD. We show PP protects against memory deficit, neuronal loss, and promotes longevity in the Aβ model of AD via stimulation of mitophagy, the selective cellular …
Substrate Binding Mechanism Of Glycerophosphodiesterase Towards Pesticides And Improvement Of Stability By Mutational Analysis,
2021
Faculty of Science
Substrate Binding Mechanism Of Glycerophosphodiesterase Towards Pesticides And Improvement Of Stability By Mutational Analysis, Nayana Bhat
Chulalongkorn University Theses and Dissertations (Chula ETD)
Molecular dynamics studies have been providing a great number of atomistic details of biological systems to understand enzymatic activity and underlying reaction mechanisms. Herein, molecular dynamic (MD) simulations were employed to study the binding mechanisms of organophosphate pesticides towards two metallohydrolases, i.e., glycerophosphodiesterase (GpdQ) and methyl parathion hydrolase (MPH). OPH are the class of enzymes which breaks down harmful organophosphates, including the pesticides and warfare agents into less harmful byproducts. Hence, these enzymes are excellent candidates for bioremediation. In the present study, various nonspecific organophosphate pesticides were docked into GpdQ and MPH enzymes to construct the pesticide/protein complex for performing …
Functional Characterization Of Rice Malate Synthase In Arabidopsis Responding To Salt Stress,
2021
Faculty of Sciences
Functional Characterization Of Rice Malate Synthase In Arabidopsis Responding To Salt Stress, Supisara Thanabut
Chulalongkorn University Theses and Dissertations (Chula ETD)
Salt stress is one of the major abiotic stresses that seriously limit plant growth and development and can lead to a significant reduction in crop yield, especially rice. Salt stress affects plants via ionic toxicity and osmotic stress. Osmotic stress results in a reduction of water absorption ability. Ionic toxicity causes Na+ toxicity, which disrupts photosynthesis, protein synthesis, and enzyme activity. The previous study of KDML105 rice transcriptome profile and qRT-PCR revealed that rice malate synthase (OsMS) encoding malate synthase, which is one of the key enzymes in glyoxylate cycle was up-regulated under salt stress, so OsMS may involve in …
In Silico And In Vitro Screening Of Newly Designed Compounds Against Coxsackivirus A16 And Enterovirus A71,
2021
Faculty of Science
In Silico And In Vitro Screening Of Newly Designed Compounds Against Coxsackivirus A16 And Enterovirus A71, Amita Sripattaraphan
Chulalongkorn University Theses and Dissertations (Chula ETD)
Outbreaks of hand, foot, and mouth disease (HFMD) occur around the world. It is caused by the Coxsackievirus-A16 (CV-A16) and Enterovirus-A71 (EV-A71) that belong to the Enterovirus genus. Unfortunately, neither an anti-HFMD drug nor a vaccine is currently available. Rupintrivir, one of the drug candidates for HFMD treatment, has been attractive for the development of its analogs with broad biological activities. This drug is an inhibitor for 3C protease of CV-A16 and EV-A71, an enzyme that plays a crucial role in the viral replication process. ). In the present study, we focused on designing 50 novel rupintrivir analogs against CV-A16 …
In Silico And In Vitro Studies On Inclusion Complexation Of Anthraquinone Derivatives With Beta-Cyclodextrin Derivatives,
2021
Faculty of Science
In Silico And In Vitro Studies On Inclusion Complexation Of Anthraquinone Derivatives With Beta-Cyclodextrin Derivatives, Amy Oo
Chulalongkorn University Theses and Dissertations (Chula ETD)
In this study, we investigated the cytotoxicity of 6 anthraquinones (ventilanone K, emodin, chrysophanol, aurantio-obtusin, 1-O-methyl-2-methyoxychrysophanol, and questin) toward A549 lung cancer cells and emodin (ED) exerted the most potent cytotoxicity with IC50 value of 34.27 ± 1.27 µM. The anti-cancer activity of ED has been well reported but its usage in practical applications has been restricted due to its poor solubility. To address this issue, we performed inclusion complexation of ED with βCD, hydroxypropyl-β-cyclodextrin (HPβCD), 2,6-di-O-methyl-β-cyclodextrin (DMβCD), and sulfobutylether-β-cyclodextrin (SBEβCD) theoretically using molecular dynamics simulations and experimentally using phase solubility study and cytotoxicity screening toward cholangiocarcinoma cell lines (KKU-213A …
Mechanistic Insights Of Mitochondrial Reactive Oxygen Species In Alzheimer's Disease Models,
2021
Virginia Commonwealth University
Mechanistic Insights Of Mitochondrial Reactive Oxygen Species In Alzheimer's Disease Models, Jakob C. Green
Theses and Dissertations
Alzheimer’s disease (AD) is a neurodegenerative disease that results in impaired cognition, disorientation, confusion, poor judgement, and behavioral changes. The mitochondrial cascade hypothesis (MCH), which postulates that accumulating oxidative stress and mitochondrial dysfunction plays an integral role in the development of the disease, potentially upstream, in conjunction with or independent of Aβ and tau. The literature supports the critical role of mitochondrial dysfunction in the progression and development of AD, but is inconclusive about what precise role, as initiator or delegate, it performs. Regardless, the impact that oxidative stress and mitochondrial dysfunction have on AD deserves further study and investigation. …
Cryogenic Electron-Microscopy (Cryo-Em) Analysis Of Mscs, Ynai, Connexin 26 And Bioinformatic Analysis Of Cysteine And Serine In Experimental Protein Structures,
2021
Virginia Commonwealth University
Cryogenic Electron-Microscopy (Cryo-Em) Analysis Of Mscs, Ynai, Connexin 26 And Bioinformatic Analysis Of Cysteine And Serine In Experimental Protein Structures, Claudio Catalano
Theses and Dissertations
Functional insights into macromolecules lie in the arrangement of their molecular structures. Investigating the atomic framework of a biomolecule could unwind its biochemical mechanism, providing aid to many relevant biological questions, thus facilitating drug discovery processes. Two approaches have been used to gain knowledge at the atomic level of a protein function: experimental and computational methodologies.
From an experimental perspective, membrane proteins (MPs) were investigated. Such proteins represent ~20% of the human proteome, and ~60% of them are drug targets since they are exposed to the surface of cells and are responsible for a wide range of fundamental functions like …
