Open Access. Powered by Scholars. Published by Universities.®
Biochemistry, Biophysics, and Structural Biology Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Institution
-
- University of Nebraska - Lincoln (492)
- Old Dominion University (34)
- University of Central Florida (32)
- University of Kentucky (27)
- United Arab Emirates University (24)
-
- California Polytechnic State University, San Luis Obispo (17)
- City University of New York (CUNY) (17)
- Technological University Dublin (16)
- Munster Technological University (10)
- Purdue University (10)
- LSU New Orleans (9)
- University of Malaya (9)
- University of Texas at Tyler (8)
- Virginia Commonwealth University (8)
- Universitas Indonesia (7)
- Michigan Technological University (6)
- Stephen F. Austin State University (6)
- University of Arkansas, Fayetteville (6)
- Chapman University (5)
- Harrisburg University of Science and Technology (5)
- Marshall University (5)
- The Texas Medical Center Library (5)
- The University of Akron (5)
- University of New Mexico (5)
- University of South Carolina (5)
- West Virginia University (5)
- Western Kentucky University (5)
- Wright State University (5)
- American University in Cairo (4)
- University of Connecticut (4)
- Keyword
-
- Biotechnology (14)
- DNA (12)
- Biochemistry (11)
- Microbiology (10)
- Mitochondria (10)
-
- Cancer (9)
- Electroporation (9)
- 1.6 BIOLOGICAL SCIENCES (7)
- Arabidopsis thaliana (7)
- Atherosclerosis (7)
- Biofuels (7)
- Chloroplast (7)
- Genetics (7)
- Metabolism (7)
- Metabolomics (7)
- Reactive oxygen species (7)
- Synthetic biology (7)
- Apoptosis (6)
- Biosensor (6)
- Cellular senescence (6)
- Immunotherapy (6)
- Metabolic engineering (6)
- Oxidative stress (6)
- Photosynthesis (6)
- Yeast (6)
- Abiotic stress (5)
- Arabidopsis (5)
- Archaea (5)
- CRISPR (5)
- Diabetes (5)
- Publication Year
- Publication
-
- Department of Biochemistry: Faculty Publications (480)
- Electronic Theses and Dissertations (36)
- Bioelectrics Publications (17)
- Biology Theses (16)
- Articles (13)
-
- Theses (13)
- Dissertations, Theses, and Capstone Projects (11)
- Theses and Dissertations (11)
- STAR Program Research Presentations (10)
- The Summer Undergraduate Research Fellowship (SURF) Symposium (10)
- LSU New Orleans Theses and Dissertations (9)
- Department of Biological Sciences Publications (8)
- Master's Theses (7)
- Biotechnology Theses (6)
- Dissertations, Master's Theses and Master's Reports (6)
- Theses and Dissertations--Pharmacy (6)
- Faculty Works (5)
- Makara Journal of Science (5)
- Theses and Dissertations--Plant and Soil Sciences (5)
- Williams Honors College, Honors Research Projects (5)
- Biology Faculty Publications (4)
- Computer Science Faculty Publications (4)
- Dissertations and Theses (Open Access) (4)
- Faculty Publications (4)
- Journal of Bioresource Management (4)
- Student Works (2020-2029) (4)
- Biological Sciences Faculty Research (3)
- Chemistry & Biochemistry Faculty Publications (3)
- Entomology Faculty Publications (3)
- Graduate Theses and Dissertations (3)
- Publication Type
- File Type
Articles 241 - 270 of 902
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
'Induction Of Apoptosis, Cytotoxicity And Radiosensitization By Novel 3,4-Dihydroquinazolinone Derivatives, Eman Ramadan, Amira Khalil
'Induction Of Apoptosis, Cytotoxicity And Radiosensitization By Novel 3,4-Dihydroquinazolinone Derivatives, Eman Ramadan, Amira Khalil
Pharmacy
Twenty new quinazolinone derivatives bearing a piperonyl moiety were designed and synthesized. The structures of the target compounds were in agreement with the microanalytical and spectral data. Compounds 4-10, 13, 14 and 17-27 were screened for their cytotoxic activity against HepG-2 and MCF-7 cancer cell lines. The target compounds showed IC50 in the range of 2.46-36.85 µM and 3.87-88.93 µM for HepG-2 and MCF-7, respectively. The promising compounds 7, 19, 26 and 27 were selected to measure their EGFR inhibitory activity. The IC50 values of the promising compounds were in the range of 146.9-1032.7 nM for EGFR in …
Comparison Of Standard And Environmental Dna Methods For Estimating Chinook Salmon Smolt Abundance In The Klamath River, California, Doyle Joseph Coyne
Comparison Of Standard And Environmental Dna Methods For Estimating Chinook Salmon Smolt Abundance In The Klamath River, California, Doyle Joseph Coyne
Cal Poly Humboldt theses and projects
Evaluating abundance of juvenile salmonids is critical to conservation and management. Current abundance estimation involves use of rotary screw traps and mark-recapture studies. Use of environmental DNA (eDNA) in water samples offers a noninvasive and less expensive approach that may potentially improve or eventually replace traditional monitoring. Here I evaluate the utility of eDNA to predict weekly abundance estimates of outmigrating Chinook salmon (Oncorhynchus tshawytscha) smolts in the Klamath River, California. A total of 15 water samples were collected per week over the 17-week smolt outmigration in both 2019 and 2020. Chinook salmon eDNA concentration in each water …
Applications Of Machine Learning In Microbial Forensics, Ryan B. Ghannam
Applications Of Machine Learning In Microbial Forensics, Ryan B. Ghannam
Dissertations, Master's Theses and Master's Reports
Microbial ecosystems are complex, with hundreds of members interacting with each other and the environment. The intricate and hidden behaviors underlying these interactions make research questions challenging – but can be better understood through machine learning. However, most machine learning that is used in microbiome work is a black box form of investigation, where accurate predictions can be made, but the inner logic behind what is driving prediction is hidden behind nontransparent layers of complexity.
Accordingly, the goal of this dissertation is to provide an interpretable and in-depth machine learning approach to investigate microbial biogeography and to use micro-organisms as …
Titanium Dioxide Nanoparticles Binding To Human Blood Plasma Proteins, Morgan Miller
Titanium Dioxide Nanoparticles Binding To Human Blood Plasma Proteins, Morgan Miller
Williams Honors College, Honors Research Projects
Titanium Dioxide (TiO2, titania) nanoparticles are widely studied in cosmetology, food administration, and medical fields. This is due to the nanoparticles’ suitable properties, specific combination of strength and high corrosion resistance. With the increasing attention to these particles, there is concern with potential health complications. Some of the complications involved with titania nanoparticles include blood clots and immune reactions (Sit et al., 2019). In this study, we continue the study conducted in the Sahai research group (J. Chen. MS thesis, 2020), on the binding of titania nanoparticles with blood plasma proteins, focusing on potential effects of shape only. …
Long Non-Coding Rna Meg3 Deficiency Impairs Glucose Homeostasis And Insulin Signaling By Inducing Cellular Senescence Of Hepatic Endothelium In Obesity, Xiao Cheng, Mohamed Sham Shihabudeen Haider Ali, Matthew Moran, Martonio Ponte Viana, Sarah L. Schlichte, Matthew C. Zimmerman, Oleh Khalimonchuk, Mark W. Feinberg, Xinghui Sun
Long Non-Coding Rna Meg3 Deficiency Impairs Glucose Homeostasis And Insulin Signaling By Inducing Cellular Senescence Of Hepatic Endothelium In Obesity, Xiao Cheng, Mohamed Sham Shihabudeen Haider Ali, Matthew Moran, Martonio Ponte Viana, Sarah L. Schlichte, Matthew C. Zimmerman, Oleh Khalimonchuk, Mark W. Feinberg, Xinghui Sun
Department of Biochemistry: Faculty Publications
Obesity-induced insulin resistance is a risk factor for diabetes and cardiovascular disease. However, the mechanisms underlying endothelial senescence in obesity, and how it impacts obesity-induced insulin resistance remain incompletely understood. In this study, transcriptome analysis revealed that the long non-coding RNA (lncRNA) Maternally expressed gene 3 (Meg3) is one of the top differentially expressed lncRNAs in the vascular endothelium in diet-induced obese mice. Meg3 knockdown induces cellular senescence of endothelial cells characterized by increased senescence-associated β–galactosidase activity, increased levels of endogenous superoxide, impaired mitochondrial structure and function, and impaired autophagy. Moreover, Meg3 knockdown causes cellular senescence of hepatic endothelium in …
Teaching Metabolism In Upper-Division Undergraduate Biochemistry Courses Using Online Computational Systems And Dynamical Models Improves Student Performance, Christine S. Booth, Changsoo Song, Michelle E. Howell, Achilles Rasquinha, Aleš Saska, Resa M. Helikar, Sharmin M. Sikich, Brain A. Couch, Karin Van Dijk, Rebecca Roston, Tomáš Helikar
Teaching Metabolism In Upper-Division Undergraduate Biochemistry Courses Using Online Computational Systems And Dynamical Models Improves Student Performance, Christine S. Booth, Changsoo Song, Michelle E. Howell, Achilles Rasquinha, Aleš Saska, Resa M. Helikar, Sharmin M. Sikich, Brain A. Couch, Karin Van Dijk, Rebecca Roston, Tomáš Helikar
Department of Biochemistry: Faculty Publications
Understanding metabolic function requires knowledge of the dynamics, interdependence, and regulation of metabolic networks. However, multiple professional societies have recognized that most undergraduate biochemistry students acquire only a surface-level understanding of metabolism. We hypothesized that guiding students through interactive computer simulations of metabolic systems would increase their ability to recognize how individual interactions between components affect the behavior of a system under different conditions. The computer simulations were designed with an interactive activity (i.e., module) that used the predict–observe–explain model of instruction to guide students through a process in which they iteratively predict outcomes, test their predictions, modify the interactions …
The Need For Research-Grade Systems Modeling Technologies For Life Science Education, Tomáš Helikar
The Need For Research-Grade Systems Modeling Technologies For Life Science Education, Tomáš Helikar
Department of Biochemistry: Faculty Publications
The coronavirus disease 2019 (COVID-19) pandemic not only challenged deeply-rooted daily patterns but also put a spotlight on the role of computational modeling in science and society. Amid the impromptu upheaval of in-person education across the world, this article aims to articulate the need to train students in computational and systems biology using research-grade technologies. ...
Life sciences education needs multiple technical infrastructures explicitly designed to support this field’s vast computational needs. Developing and sustaining effective, scientifically authentic educational technologies is not easy. It requires expertise in software development and the scientific domain as well as in education and education …
Covid19 Disease Map, A Computational Knowledge Repository Of Virus–Host Interaction Mechanisms, Marek Ostaszewski, Tomáš Helikar, Bhanwar Lal Puniya, A Host Of Co-Authors, Covid-19 Disease Map Community
Covid19 Disease Map, A Computational Knowledge Repository Of Virus–Host Interaction Mechanisms, Marek Ostaszewski, Tomáš Helikar, Bhanwar Lal Puniya, A Host Of Co-Authors, Covid-19 Disease Map Community
Department of Biochemistry: Faculty Publications
We need to effectively combine the knowledge from surging literature with complex datasets to propose mechanistic models of SARS-CoV-2 infection, improving data interpretation and predicting key targets of intervention. Here, we describe a large-scale community effort to build an open access, interoperable and computable repository of COVID-19 molecular mechanisms. The COVID-19 Disease Map (C19DMap) is a graphical, interactive representation of disease-relevant molecular mechanisms linking many knowledge sources. Notably, it is a computational resource for graph-based analyses and disease modelling. To this end, we established a framework of tools, platforms and guidelines necessary for a multifaceted community of biocurators, domain experts, …
Association Of The Malate Dehydrogenase‑Citrate Synthase Metabolon Is Modulated By Intermediates Of The Krebs Tricarboxylic Acid Cycle, Joy Omini, Izabela Wojciechowska, Aleksandra Skirycz, Hideaki Moriyama, Toshihiro Obata
Association Of The Malate Dehydrogenase‑Citrate Synthase Metabolon Is Modulated By Intermediates Of The Krebs Tricarboxylic Acid Cycle, Joy Omini, Izabela Wojciechowska, Aleksandra Skirycz, Hideaki Moriyama, Toshihiro Obata
Department of Biochemistry: Faculty Publications
Mitochondrial malate dehydrogenase (MDH)-citrate synthase (CS) multi-enzyme complex is a part of the Krebs tricarboxylic acid (TCA) cycle ‘metabolon’ which is enzyme machinery catalyzing sequential reactions without diffusion of reaction intermediates into a bulk matrix. This complex is assumed to be a dynamic structure involved in the regulation of the cycle by enhancing metabolic flux. Microscale Thermophoresis analysis of the porcine heart MDH-CS complex revealed that substrates of the MDH and CS reactions, NAD+ and acetyl-CoA, enhance complex association while products of the reactions, NADH and citrate, weaken the affinity of the complex. Oxaloacetate enhanced the interaction only when it …
Molecular And Genetic Studies On A Sipd/Ipad-Related Virulence Spike Protein From Immune-Suppressive Particles Of A Drosophila Parasitoid, Carlo Miguel A. Sevilla
Molecular And Genetic Studies On A Sipd/Ipad-Related Virulence Spike Protein From Immune-Suppressive Particles Of A Drosophila Parasitoid, Carlo Miguel A. Sevilla
Dissertations and Theses
Parasitoid wasps are effective biological control agents that have evolved intricate host immune suppression strategies to overcome host immune defenses. The most important anti-parasite defense mechanism is encapsulation, where the host’s blood cells surround the wasp egg. In the Drosophila/Leptopilina host-parasitoid system, extracellular vesicles (EVs) are oviposited along with the wasp egg. The EVs possess spikes and contain hundreds of proteins, some of which enable wasp eggs to escape encapsulation by changing the morphology and function of hemocytes, or killing them. Previous studies have identified an abundant surface/spike protein (SSp40) from Leptopilina heterotoma EVs. While p40, a predicted …
Development Of Fluorescence Microscopy Approaches To Study Subcellular Protein Transport And Enzymatic Activity, Anchal Singh
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 …
Single-Fluorophore Sensors For Mechanical Force In Living Cells, Sarah Kricheff
Single-Fluorophore Sensors For Mechanical Force In Living Cells, Sarah Kricheff
Honors Scholar Theses
Mechanotransduction is the process by which a mechanical stimulus is converted to a cellular signal. This process is heavily influential of cell morphology, differentiation, and behavior. However, altered levels of mechanical stimuli are also found in many pathological contexts. For example, cancerous cells have stiffer surrounding tissue than healthy cells, and research suggests that this alters cell behavior and promotes metastasis. Despite these findings, the cellular processes behind these signaling alterations remain widely unknown. Understanding these cascades is critical, as involved proteins can give us a deeper understanding of the role of mechanotransduction, and certain proteins can potentially be targeted …
Sestrins: Emerging Dynamic Stress-Sensors In Metabolic And Environmental Health, Seung Hyun Ro, Julianne Fay, Cesar I. Cyuzuzo, Yura Jang, Naeun Lee, Hyun Seob Song, Edward N. Harris
Sestrins: Emerging Dynamic Stress-Sensors In Metabolic And Environmental Health, Seung Hyun Ro, Julianne Fay, Cesar I. Cyuzuzo, Yura Jang, Naeun Lee, Hyun Seob Song, Edward N. Harris
Department of Biochemistry: Faculty Publications
Proper timely management of various external and internal stresses is critical for metabolic and redox homeostasis in mammals. In particular, dysregulation of mechanistic target of rapamycin complex (mTORC) triggered from metabolic stress and accumulation of reactive oxygen species (ROS) generated from environmental and genotoxic stress are well-known culprits leading to chronic metabolic disease conditions in humans. Sestrins are one of the metabolic and environmental stress-responsive groups of proteins, which solely have the ability to regulate both mTORC activity and ROS levels in cells, tissues and organs. While Sestrins are originally reported as one of several p53 target genes, recent studies …
Ionic Mechanism Of Lysosomal Function And Cell Metabolism, Jian Xiong
Ionic Mechanism Of Lysosomal Function And Cell Metabolism, Jian Xiong
Dissertations and Theses (Open Access)
Two Pore Channels (TPCs) are endolysosomal ion channels that are permeable to sodium and calcium. Defects in TPCs have been implicated to impair vesicle trafficking, autophagy and cell metabolism control; however, the detailed mechanism remains largely unknown. In this study, I show that TPCs are critical for appropriate cargo delivery to the lysosomes and deletion of either TPC1 or TPC2 leads to delayed clearance of autophagosomes, resulting in enlarged lysosomes and accumulated contents inside the lysosomes. Cells with both TPC deleted also exhibit 50% reduction in lysosomal amino acids under normal culture conditions, leading to reduced homeostatic mTORC1 activation.
Glutamine …
Editorial: Structure And Function Of Chloroplasts - Volume Ii, Yan Lu, Lu Ning Liu, Rebecca L. Roston, Jurgen Soll, Hongbo Gao
Editorial: Structure And Function Of Chloroplasts - Volume Ii, Yan Lu, Lu Ning Liu, Rebecca L. Roston, Jurgen Soll, Hongbo Gao
Department of Biochemistry: Faculty Publications
No abstract provided.
A Co-Opted Steroid Synthesis Gene, Maintained In Sorghum But Not Maize, Is Associated With A Divergence In Leaf Wax Chemistry, Lucas Busta, Elizabeth Schmitz, Dylan K. Kosma, James C. Schnable, Edgar B. Cahoon
A Co-Opted Steroid Synthesis Gene, Maintained In Sorghum But Not Maize, Is Associated With A Divergence In Leaf Wax Chemistry, Lucas Busta, Elizabeth Schmitz, Dylan K. Kosma, James C. Schnable, Edgar B. Cahoon
Department of Biochemistry: Faculty Publications
Virtually all land plants are coated in a cuticle, a waxy polyester that prevents nonstomatal water loss and is important for heat and drought tolerance. Here, we describe a likely genetic basis for a divergence in cuticular wax chemistry between Sorghum bicolor, a drought tolerant crop widely cultivated in hot climates, and its close relative Zea mays (maize). Combining chemical analyses, heterologous expression, and comparative genomics, we reveal that: 1) sorghum and maize leaf waxes are similar at the juvenile stage but, after the juvenile-to-adult transition, sorghum leaf waxes are rich in triterpenoids that are absent from maize; 2) biosynthesis …
In Vitro Invistigation Of The Heterodimerization Between Angiotensin Ii And Thrombin Receptors, Isra Mansur Al Zamel
In Vitro Invistigation Of The Heterodimerization Between Angiotensin Ii And Thrombin Receptors, Isra Mansur Al Zamel
Biology Theses
The renin angiotensin system (RAS) through its hormone angiotensin (AngII) and the protease thrombin are two major physiological regulators of vascular and renal functions. RAS is involved in the regulation of blood pressure and water-electrolytes hemostasis, while thrombin has a crucial role in platelets activation and thrombosis. The interplay between these two systems at the physiological and the pathophysiological levels has been documented in many studies. However, such an interplay at the pharmacological level between the AngII and thrombin receptors still has not been explored. Our study aimed to explore the interplay between the AngII type 1 receptor (AT1R) and …
Molecular And Physiological Assessment Of Salinity Stress Tolerance In Transgenic Arabidopsis Lines Expressing A Solanum Tuberosum Ribosome-Binding Protein, Onoud Rashed Saeed Ali Alyammahi
Molecular And Physiological Assessment Of Salinity Stress Tolerance In Transgenic Arabidopsis Lines Expressing A Solanum Tuberosum Ribosome-Binding Protein, Onoud Rashed Saeed Ali Alyammahi
Biology Theses
Ribosomal proteins are highly conserved components of basal cellular organelles, primarily associated with translation of mRNA leading to protein synthesis. Additionally, some of these proteins are known to play critical role in plants RNA metabolism during stress responses, growth, and development. In this study, transgenic Arabidopsis plants expressing a ribosomal protein S27 (hereafter D26) isolated from Solanum tuberosum was subjected to NaCl-induced salinity stress conditions, to evaluate their putative stress resistance. Transgenic plants were exposed to high salinity stress, induced by 200 mM NaCl and physiological and biochemical assays were performed. The D26 transgenic plants demonstrated improved plant height and …
Identification Of Inherited And De Novo Exomic Variations In An Emirati Family With Neurodevelopmental Disorders, Asmaa Samir Muhammed Abdelaziz Refaey
Identification Of Inherited And De Novo Exomic Variations In An Emirati Family With Neurodevelopmental Disorders, Asmaa Samir Muhammed Abdelaziz Refaey
Biology Theses
Neurodevelopmental disorders (NDDs) are a heterogenous group of disorders that affect children at any point of development and lead to mental and motor function deficits. Often, the underlying cause could be genetic and inherited. This study investigated possible genetic variations that could have led to these neurological abnormalities and other genetic disorders in an Emirati family. Whole exome sequencing (WES) was used to sequence the protein-coding regions of the genome to identify potential de novo and inherited variants that are associated with disorders in this family.
WES of DNA from the parents and ten children were performed. Several variants were …
Prevalence Of Brca1 And Brca2 Mutations Among Breast And Ovarian Cancer Patients In Northern Emirates, Zahra Ahmed Mohammed Saeed
Prevalence Of Brca1 And Brca2 Mutations Among Breast And Ovarian Cancer Patients In Northern Emirates, Zahra Ahmed Mohammed Saeed
Theses
Breast Cancer (BC) is the most common cancer and the second most cause of death among women. Mutations in BRCA1 and BRCA2 genes confer high susceptibility to both breast and ovarian cancer. However, data on the prevalence of the BRCA1/2 mutations among breast and ovarian cancer patients is limited. The genetic component of breast cancer in the UAE is largely unknown and no study has evaluated the BRCA mutations status in breast and ovarian cancer patients in the UAE population. This retrospective study aimed to establish mutation frequencies of the BRCA genes in breast and ovarian cancer patients from the …
Antibacterial Action Of Graphene Oxide Towards Bacteria And Its Toxicological Effects On Human Epidermal Keratinocytes, Thiruchelvi Pulingam
Antibacterial Action Of Graphene Oxide Towards Bacteria And Its Toxicological Effects On Human Epidermal Keratinocytes, Thiruchelvi Pulingam
Student Works (2020-2029)
The antibacterial nature of graphene oxide (GO) has stimulated wide interest in the medical field. Although the antibacterial activity of GO towards bacteria has been well studied, a deeper understanding of the mechanism of action of GO is still lacking. The objectives of the study were to characterize the physicochemical properties of GO, to determine the antibacterial and antibiofilm activity and the mechanistic action of GO against Gram-positive Staphylococcus aureus and Enterococcus faecalis and Gram-negative Escherichia coli and Pseudomonas aeruginosa, to determine the synergistic behaviour of GO with selected antibiotics against bacterial cells in suspension and biofilm and to determine …
Curie Temperature Engineering In A Novel 2d Analog Of Iron Ore (Hematene) Via Strain, Renu Singla, Timothy A. Hackett, Sarvesh Kumar, Jyotsna Sharma, Manish K. Kashyap
Curie Temperature Engineering In A Novel 2d Analog Of Iron Ore (Hematene) Via Strain, Renu Singla, Timothy A. Hackett, Sarvesh Kumar, Jyotsna Sharma, Manish K. Kashyap
Department of Biochemistry: Faculty Publications
As a newly exfoliated magnetic 2D material from hematite, hematene is the most far-reaching ultrathin magnetic indirect bandgap semiconductor. We have carried out a detailed structural analysis of hematene via prefacing strain by means of first-principles calculations based on density functional theory (DFT). Hematene in the pristine form emerges out to be a magnetic semiconductor with a bandgap of 1.0/2.0 eV for the majority/minority spin channel. The dependence of magnetic anisotropy energy (MAE), TC, and the bandgap on compressive and tensile strains has been scanned exclusively. It is examined that TC depends firmly on the compressive strain …
Performance Analysis Of Bacterial Genome Assemblers Using Illumina Next Generation Sequencing Data, Nur ‘ Ain Mohd Ishak
Performance Analysis Of Bacterial Genome Assemblers Using Illumina Next Generation Sequencing Data, Nur ‘ Ain Mohd Ishak
Student Works (2020-2029)
The advancement of next generation sequencing (NGS) technology has revolutionized the field of genomic and genetic studies. As compared to conventional methods, NGS generate comprehensive genomic data at a fraction of the cost with a higher percentage of accuracy. One of the processing and analyzing NGS data is genome assembly. De novo assembly is a process of assembling short reads into contiguous sections of sequence without a reference which is different with conventional mapping technique. De Bruijn graph is one of the assembly algorithms that are widely used for short reads sequences produced from NGS platforms. In this study, the …
Changes In Lipid Profiles Of Epileptic Mouse Mode, Alicia Johnson, Ryan A. Grove, Deepak Madhavan, Cory H.T. Boone, Camila Pereira Braga, Hannah Kyllo, Kaeli K. Samson, Kristina A. Simeone, Timothy A. Simeone, Tomáš Helikar, Corrine K. Hanson, Jiri Adamec
Changes In Lipid Profiles Of Epileptic Mouse Mode, Alicia Johnson, Ryan A. Grove, Deepak Madhavan, Cory H.T. Boone, Camila Pereira Braga, Hannah Kyllo, Kaeli K. Samson, Kristina A. Simeone, Timothy A. Simeone, Tomáš Helikar, Corrine K. Hanson, Jiri Adamec
Department of Biochemistry: Faculty Publications
Introduction Approximately 1% of the world’s population is impacted by epilepsy, a chronic neurological disorder characterized by seizures. One-third of epileptic patients are resistant to AEDs, or have medically refractory epilepsy (MRE). One non-invasive treatment that exists for MRE includes the ketogenic diet (KD), a high-fat, low-carbohydrate diet. Despite the KD’s success in seizure attenuation, it has a few risks and its mechanisms remain poorly understood. The KD has been shown to improve metabolism and mitochondrial function in epileptic phenotypes. Potassium channels have implications in epileptic conditions as they have dual roles as metabolic sensors and control neuronal excitation.
Objectives …
A Practical Guide To Mechanistic Systems Modeling In Biology Using A Logic-Based Approach, Anna Niarakis, Tomáš Helikar
A Practical Guide To Mechanistic Systems Modeling In Biology Using A Logic-Based Approach, Anna Niarakis, Tomáš Helikar
Department of Biochemistry: Faculty Publications
Mechanistic computational models enable the study of regulatory mechanisms implicated in various biological processes. These models provide a means to analyze the dynamics of the systems they describe, and to study and interrogate their properties, and provide insights about the emerging behavior of the system in the presence of single or combined perturbations. Aimed at those who are new to computational modeling, we present here a practical hands-on protocol breaking down the process of mechanistic modeling of biological systems in a succession of precise steps. The protocol provides a framework that includes defining the model scope, choosing validation criteria, selecting …
Cautionary Tale Of Using Tris(Alkyl)Phosphine Reducing Agents With Nad+-Dependent Enzymes, Sagar M. Patel, Thomas G. Smith, Martha Morton, Kyle M. Stiers, Javier Seravalli, Stephen J. Mayclin, Thomas E. Edwards, John J. Tanner, Donald F. Becker
Cautionary Tale Of Using Tris(Alkyl)Phosphine Reducing Agents With Nad+-Dependent Enzymes, Sagar M. Patel, Thomas G. Smith, Martha Morton, Kyle M. Stiers, Javier Seravalli, Stephen J. Mayclin, Thomas E. Edwards, John J. Tanner, Donald F. Becker
Department of Biochemistry: Faculty Publications
Protein biochemistry protocols typically include disulfide bond reducing agents to guard against unwanted thiol oxidation and protein aggregation. Commonly used disulfide bond reducing agents include dithiothreitol, β-mercaptoethanol, glutathione, and the tris(alkyl)phosphine compounds tris(2-carboxyethyl)phosphine (TCEP) and tris(3-hydroxypropyl)phosphine (THPP). While studying the catalytic activity of the NAD(P)H-dependent enzyme Δ1-pyrroline-5-carboxylate reductase, we unexpectedly observed a rapid non-enzymatic chemical reaction between NAD+ and the reducing agents TCEP and THPP. The product of the reaction exhibits a maximum ultraviolet absorbance peak at 334 nm and forms with an apparent association rate constant of 231–491 M−1 s−1. The reaction is …
Characterization Of The Overexpression Of The Native H+-Pumping Pyrophosphatase In The Microalga Picochlorum Soloecismus, Kimberly T. Wright
Characterization Of The Overexpression Of The Native H+-Pumping Pyrophosphatase In The Microalga Picochlorum Soloecismus, Kimberly T. Wright
Biology ETDs
Microalgae are of interest for the creation of sustainable and cost competitive alternatives to petroleum-based fuels and chemicals. However, cultivation, extraction and processing of algal biomass requires improved yields to achieve economic feasibility. The advancement of microalgal biotechnology and various genetic engineering techniques allow the improvement of microalgae biomass for this purpose. Here, the characterization of the overexpression of the native vacuolar H+ pumping pyrophosphate (AVP1) in Picochlorum soloecismus was examined. AVP1 overexpression causes biomass increase in relevant plant crops. When overexpressed in this microalga it increases carbon storage in the form of starch in a closed laboratory photobioreactor. However, …
Enzymatic In-Situ Transesterification Of Neutral Lipids From Simulated Wastewater Cultured Chlorella Emersonii And Pseudokirchneriella Subcapitata To Sustainably Produce Fatty Acid Methyl Esters, Priyanka Priyanka, Gemma K. Kinsella, Gary Henehan, Barry J. Ryan
Enzymatic In-Situ Transesterification Of Neutral Lipids From Simulated Wastewater Cultured Chlorella Emersonii And Pseudokirchneriella Subcapitata To Sustainably Produce Fatty Acid Methyl Esters, Priyanka Priyanka, Gemma K. Kinsella, Gary Henehan, Barry J. Ryan
Articles
Alternative, more sustainable and environmentally positive, sources of energy are one of the current global challenges. One approach to achieving more sustainable sources of energy is to use waste from one system as a raw material for energy production, following the circular biosystem philosophy. This study successfully adopted this approach whereby microalgae strains Chlorella emersonii and Pseudokirchneriella subcapitata were bioprospected and metabolically engineered in simulated wastewater supplemented with glucose to produce neutral lipids. Using a two-step cultivation approach neutral lipid content was enhanced in Chlorella emersonii and Pseudokirchneriella subcapitata biomass. Via in-situ transesterification, these neutral lipids were subsequently bioconverted to …
In Vivo Biosynthesis Of Inorganic Nanomaterials Using Eukaryotes - A Review, Ashiqur Rahman, Julia Lin, Francisco E. Jaramillo, Dennis A. Bazylinski, Clayton Jeffryes, Si Amar Dahoumane
In Vivo Biosynthesis Of Inorganic Nanomaterials Using Eukaryotes - A Review, Ashiqur Rahman, Julia Lin, Francisco E. Jaramillo, Dennis A. Bazylinski, Clayton Jeffryes, Si Amar Dahoumane
Life Sciences Faculty Research
Bionanotechnology, the use of biological resources to produce novel, valuable nanomaterials, has witnessed tremendous developments over the past two decades. This eco-friendly and sustainable approach enables the synthesis of numerous, diverse types of useful nanomaterials for many medical, commercial, and scientific applications. Countless reviews describing the biosynthesis of nanomaterials have been published. However, to the best of our knowledge, no review has been exclusively focused on the in vivo biosynthesis of inorganic nanomaterials. Therefore, the present review is dedicated to filling this gap by describing the many different facets of the in vivo biosynthesis of nanoparticles (NPs) using living eukaryotic …
Analysis Of Biofilm Remediation Capacity For Octenyl Succinic Anhydride (Osa), A Bioactive Food Starch Modifier Compound, Matthew R. Borglin
Analysis Of Biofilm Remediation Capacity For Octenyl Succinic Anhydride (Osa), A Bioactive Food Starch Modifier Compound, Matthew R. Borglin
Master's Theses
Matthew R. Borglin
This thesis demonstrates efficacy of Octenyl Succinic Anhydride (OSA), as a biofilm sanitizer. Biofilms allow bacteria to adhere to solid surfaces with the use of excreted polymeric compounds. For example, surfaces found in food production or processing facilities such as the interior of a raw milk holding tank, are some of the most susceptible to biofilm contamination. When present, biofilms can cause a variety of negative effects, which include; reduction of product shelf life, corrosion, and outbreaks of foodborne illnesses. The close association of biofilms with the majority of foodborne illness cases led the US Environmental Protection …