The Retinoblastoma Protein Mediates Metabolic Reprogramming In Lung Cancer.,
2020
University of Louisville
The Retinoblastoma Protein Mediates Metabolic Reprogramming In Lung Cancer., Lindsey R. Conroy
Electronic Theses and Dissertations
Lung cancer is among the most frequently diagnosed cancers and is the leading cause of cancer-related deaths worldwide. One of the hallmark events in lung cancer pathogenesis is deregulation of the cell cycle. The retinoblastoma protein (pRb) is a tumor suppressor that is deleted, mutated, or inactivated in most lung cancer cases. Canonically, pRb functions to regulate cell cycle progression by repressing the transcriptional activity of the E2F family of transcription factors, inhibiting S phase entry. Although the cell cycle functions of pRb have been well established, recent studies have highlighted a functional role for pRb in controlling cellular metabolism. …
Novel Cyanoximates As An Alternative In Cancer Chemotherapy,
2020
Missouri State University
Novel Cyanoximates As An Alternative In Cancer Chemotherapy, Kafayat Aderonke Yusuf
Graduate Theses/Dissertations
Chemotherapy is one of the most effective treatment plans for several cancer types. The recurrent side effects derived from chemotherapy agents have warranted the search for novel chemical compounds with better efficacy and minimal side effects. In line with this idea, I investigated effects of a group of newly synthesized metal based chemical compounds called cyanoximates on HeLa human cancer cells. Cyanoximates used were Pt(DECO)2, Pt(MCO)2, and Pd(DECO)2 along with the chemotherapy drug cisplatin as a positive control. I found that the metal cyanoximates reduced cell viability via apoptosis, and that Pt(DECO)2 was most …
Myosin V-Mediated Cargo Traffic Toward The Trans-Golgi Network And Myosin V Implications In Snc1 Exocytosis,
2020
Missouri State University
Myosin V-Mediated Cargo Traffic Toward The Trans-Golgi Network And Myosin V Implications In Snc1 Exocytosis, Vy Ngoc Khanh Nguyen
Graduate Theses/Dissertations
Retrieval of cargo proteins from the endosome towards the trans-Golgi network (TGN) is a crucial intracellular process for cellular homeostasis. Its dysfunction is associated with pathogenesis of Alzheimer and Parkinson's diseases. Myosin family proteins are cellular motors walking along actin filaments by utilizing the chemical energy from ATP hydrolysis, known to involve in pleiotropic cellular trafficking pathways. However, the question of whether myosins play a role in the trafficking of Snc1 and Vps10 has not been addressed yet. The present study assesses the potential roles of all five yeast myosins in the recycling of two membrane cargo, Snc1 and …
Effects Of Penfluridol On Integrin-Fak Signaling And Tumor Cell Killing In Combination With Oncolytic Hsv In Glioblastoma,
2020
The University of Texas MD Anderson Cancer Center UTHealth Graduate School of Biomedical Sciences
Effects Of Penfluridol On Integrin-Fak Signaling And Tumor Cell Killing In Combination With Oncolytic Hsv In Glioblastoma, Mitra Nair
Dissertations and Theses (Open Access)
Integrins are known to play an important role in activating multiple intracellular pathways, one of which is focal adhesion kinase (FAK). Phosphorylation of FAK can lead to the activation of various downstream signaling pathways that can increase tumor cell growth and proliferation, making it an ideal target for cancer therapeutics. Due to the fact that many FAK inhibitors are limited in their penetration of the blood brain barrier, we investigated the use of Penfluridol, an antipsychotic drug known to attenuate integrin expression at a transcriptional level, in combination with oncolytic herpes simplex I virus (oHSV) in a glioblastoma model. We …
Surface Runoff Alters Cave Microbial Community Structure And Function,
2020
University of South Florida
Surface Runoff Alters Cave Microbial Community Structure And Function, Madison Davis, Maria A. Messina, Giuseppe Nicolosi, Salvatore Petralia, Melvin D. Baker, Christiana K. S. Mayne, Chelsea M. Dinon, Christina J. Moss, Bogdan P. Onac, James R. Garey
Molecular Biosciences Faculty Publications
Caves formed by sulfuric acid dissolution have been identified worldwide. These caves can host diverse microbial communities that are responsible for speleogenesis and speleothem formation. It is not well understood how microbial communities change in response to surface water entering caves. Illumina 16S rRNA sequencing and bioinformatic tools were used to determine the impact of surface water on the microbial community diversity and function within a spring pool found deep in the Monte Conca Cave system in Sicily, Italy. Sulfur oxidizers comprised more than 90% of the microbial community during the dry season and were replaced by potential anthropogenic contaminants …
Temporary Membrane Permeabilization Via The Pore-Forming Toxin Lysenin,
2020
Boise State University
Temporary Membrane Permeabilization Via The Pore-Forming Toxin Lysenin, Nisha Shrestha, Christopher A. Thomas, Devon Richtsmeier, Andrew Bogard, Rebecca Hermann, Malyk Walker, Gamid Abatchev, Raquel J. Brown, Daniel Fologea
Physics Faculty Publications and Presentations
Pore-forming toxins are alluring tools for delivering biologically-active, impermeable cargoes to intracellular environments by introducing large conductance pathways into cell membranes. However, the lack of regulation often leads to the dissipation of electrical and chemical gradients, which might significantly affect the viability of cells under scrutiny. To mitigate these problems, we explored the use of lysenin channels to reversibly control the barrier function of natural and artificial lipid membrane systems by controlling the lysenin’s transport properties. We employed artificial membranes and electrophysiology measurements in order to identify the influence of labels and media on the lysenin channel’s conductance. Two cell …
Innovative Biological Solutions For Nitrogen Fixation,
2020
Utah State University
Innovative Biological Solutions For Nitrogen Fixation, Mathangi Soundararajan
All Graduate Theses and Dissertations, Spring 1920 to Summer 2023
Nitrogen is an important part of biological molecules like proteins and DNA and hence is essential for life as we know it. The most commonly found form of nitrogen is dinitrogen gas (N2) in the atmosphere, which is not accessible to most organisms. Conversion of N2 into a usable form (ammonia), occurs through an energy-demanding reaction called nitrogen fixation. As we think about sending humans to Mars, there is a need to develop technologies for nitrogen fixation to produce fertilizer and other valuable compounds to support life in those harsh conditions.
The Haber-Bosch process is used in …
Hexadecane Petroleum, And Biofuel Utilization In Marine Bacteria Isolated From Ballast Tanks,
2020
University of Texas Permian Basin
Hexadecane Petroleum, And Biofuel Utilization In Marine Bacteria Isolated From Ballast Tanks, Alex Yashchenko
Graduate Theses
This study characterized the growth of bacteria isolated from ballast tank fluids in hexadecane, petroleum, plant, and algae-derived fuels. The study was performed to explore the capacity of ballast tank isolates to survive and grow within fuels that may be stored within ballast tanks. Results of the hexadecane analysis indicated that most isolates had higher viable cell counts in media supplemented with hexadecane. Members of Alteromonas, Pseudoalteromonas, and a single Brevundimonas species had viable cell counts that were one or several orders ofmagnitude greater than that of controls. Results offuel analysis indicated higher viable cell counts in pure JP-5 and …
An Extended View Of The Temporal Dynamics Of Caspase Activity During The Extrinsic Pathway Of Apoptosis In Jurkat T-Lymphocytes,
2020
University of Mary Washington
An Extended View Of The Temporal Dynamics Of Caspase Activity During The Extrinsic Pathway Of Apoptosis In Jurkat T-Lymphocytes, Catherine Zwemer
Departmental Honors & Graduate Capstone Projects
Apoptosis, a process in which a cell systematically triggers its own death in response to DNA damage or external stimuli, is widely utilized in the body to maintain a homeostatic quantity of cells. Malfunctions in this process can result in numerous consequences, particularly tumor development. For a cell to undergo apoptosis, there are two major pathways, dependent upon the method of induction: the extrinsic and intrinsic pathways. The goal of this research is to elucidate the temporal dynamics of apoptosis in Jurkat T-lymphocytes with respect to caspase activity in the extrinsically-activated pathway, using fluorescence microscopy. Microfluidic devices were fabricated from …
Cellular Basis Of Missense Variants Causing Familial Hypercholesterolemia In Uae,
2020
United Arab Emirates University
Cellular Basis Of Missense Variants Causing Familial Hypercholesterolemia In Uae, Aseel Adnan Jawabri
Biochemistry Theses
Familial hypercholesterolemia is an autosomal dominant disorder characterized by elevated levels of low-density lipoprotein (LDL) carrying cholesterol in the blood. FH is mainly caused by mutations in the gene encoding the low-density lipoprotein receptor (LDLR) which causes altered lipid metabolism. LDLR is synthesized and initially modified by glycosylation in the endoplasmic reticulum (ER) and transferred to the plasma membrane by Golgi to carry out LDL clearance from the bloodstream. Defective LDLR can, therefore, lead to increased levels of LDL in the blood which may lead to atherosclerosis and premature coronary artery diseases.
For the past few years, cardiovascular diseases have …
Cloning And Expression Of Hydra Innexin 2, A Gap Junction Protein Required For Coordinated Contraction Of The Body Column,
2020
Buffalo State College
Cloning And Expression Of Hydra Innexin 2, A Gap Junction Protein Required For Coordinated Contraction Of The Body Column, Ashley O'Brien
Biology Theses
In invertebrates gap junctions are formed by the innexin family of proteins. Remarkably, the genome of Hydra magnipapillata contains 17 innexin genes. This study focused on Hydra innexin-2 (h-Inx2) which is expressed in nerve cells and plays a role in contraction of the body column. The gene sequence of H-Inx2 was obtained from the National Center for Biotechnology Information (NCBI), the gene was synthesized externally and transferred to a vector suitable for expression in Xenopus oocytes (pcDNA3.1 CT-GFP TOPO). The TOPO CT-GFP vector includes a priming site for RNA polymerase which allows in vitro preparation of RNA. Another advantage is …
Functional Analysis Of A Critical Glycine (Glycine 12) In Beta-Type Connexins Of Human Skin,
2020
SUNY Buffalo State University
Functional Analysis Of A Critical Glycine (Glycine 12) In Beta-Type Connexins Of Human Skin, Rasheed Bailey
Biology Theses
At least five beta-type connexins are expressed in various layers of the skin (Cx26, Cx30, Cx30.3, Cx31, and Cx32) and all include a glycine residue at position 12. Glycine12 (G12) is located about halfway through the cytoplasmic amino terminus and has been the focus of several studies related to connexin diseases and gap junction channel structure. The importance of this residue is evident in the severity and diversity of diseases associated with amino acid substitutions at G12 including hereditary forms of skin disease, deafness and neuropathy. This study uses bioinformatic analysis in combination with mutational analysis and electrophysiology to better …
Structure And Mechanism Of Human Diacylglycerol O-Acyltransferase 1,
2020
The Texas Medical Center Library
Structure And Mechanism Of Human Diacylglycerol O-Acyltransferase 1, Lie Wang, Hongwu Qian, Yin Nian, Yimo Han, Zhenning Ren, Hanzhi Zhang, Liya Hu, B V Venkataram Prasad, Arthur Laganowsky, Nieng Yan, Ming Zhou
Faculty, Staff and Students Publications
Diacylglycerol O-acyltransferase-1 (DGAT1) synthesizes triacylglycerides and is required for dietary fat absorption and fat storage in humans1. DGAT1 belongs to the superfamily of membrane-bound O-acyltransferases (MBOAT) that are found in all kingdoms of life and involved in acylation of lipids and proteins2,3. It remains unclear how human DGAT1 (hDGAT1) or other mammalian members of the MBOAT family recognize their substrates and catalyze their reactions. The absence of three-dimensional structures also hampers rational targeting of hDGAT1 for therapeutic purposes. Here we present the structure of hDGAT1 in complex with a substrate oleoyl Coenzyme A solved …
Cloning, Expression, Purification And Characterization Of Heparin-Binding Pocket Of Recombinant Fgf1,
2020
University of Arkansas, Fayetteville
Cloning, Expression, Purification And Characterization Of Heparin-Binding Pocket Of Recombinant Fgf1, Quratulayn Ashraf
Graduate Theses and Dissertations
Fibroblast growth factors are polypeptide members of the FGF family, which to date comprises of at least 22 members. They belong to a group of growth factors and are involved in a variety of cellular processes including wound healing, angiogenesis, differentiation and development (organogenesis). Amongst FGF members, human acidic FGF-1 and basic FGF-2 are the most characterized. FGF-1 and FGF-2 are known to share more than 80% sequence similarity and have an identical structural fold. However, their biological roles are quite different. FGFs bind to heparin and heparan sulfate ligands through their heparin-binding pockets. The interactions are primarily electrostatic in …
The Role Of Slc7a11 In Controlling Extracellular And Intracellular Redox Environments Of Lung Fibroblasts - Potential Targets For Intervention In Aging And Idiopathic Pulmonary Fibrosis.,
2020
University of Louisville
The Role Of Slc7a11 In Controlling Extracellular And Intracellular Redox Environments Of Lung Fibroblasts - Potential Targets For Intervention In Aging And Idiopathic Pulmonary Fibrosis., Yuxuan Zheng
Electronic Theses and Dissertations
Idiopathic pulmonary fibrosis (IPF) is a fatal lung disease characterized by extracellular matrix deposition by fibroblasts. Aging and oxidative stress increase the susceptibility to IPF. Redox couples, cysteine/cystine (Cys/CySS) and glutathione/glutathione disulfide (GSH/GSSG), and their redox potentials (Eh) quantify oxidative stress. Fibroblasts from old mice maintain more oxidized extracellular Eh(Cys/CySS) than young mice. Microarray shows down-regulation of Slc7a11 potentially mediates this age-related oxidation. Slc7a11 is the key component of system Xc-, an antiporter that imports CySS and exports glutamate. The first aim of this dissertation is to investigate the mechanistic link between Slc7a11 …
Size-Dependent Inhibitory Effects Of Antibiotic Nanocarriers On Filamentation Of E. Coli,
2020
Old Dominion University
Size-Dependent Inhibitory Effects Of Antibiotic Nanocarriers On Filamentation Of E. Coli, Preeyaporn Songkiatisak, Feng Ding, Pavan Kumar Cherukuri, Xiao-Hong Nancy Xu
Chemistry & Biochemistry Faculty Publications
Multidrug membrane transporters exist in both prokaryotic and eukaryotic cells and cause multidrug resistance (MDR), which results in an urgent need for new and more effective therapeutic agents. In this study, we used three different sized antibiotic nanocarriers to study their mode of action and their size-dependent inhibitory effects against Escherichia coli (E. coli). Antibiotic nanocarriers (AgMUNH–Oflx NPs) with 8.6 × 102, 9.4 × 103 and 6.5 × 105 Oflx molecules per nanoparticle (NP) were prepared by functionalizing Ag NPs (2.4 ± 0.7, 13.0 ± 3.1 and 92.6 ± 4.4 nm) with a monolayer …
Serpinb1 Effects On Human Pancreatic Ductal Cells,
2020
University of Louisville
Serpinb1 Effects On Human Pancreatic Ductal Cells, Praneeth Goli
College of Arts & Sciences Senior Theses
Rebuilding or expanding the body’s ability to regulate blood glucose levels by restoring or increasing the body’s ability to produce insulin, long-term, would be a major advancement in diabetes (type-1 and type-2) treatment and could serve as a potential cure [1]. Therefore, the holy grail of diabetes treatment and cure research is to regenerate or increase the insulin producing cells in diabetic individuals (type-1 and type-2) [1, 2]. SerpinB1 has been implicated as a biomolecular signal that stimulates an increase in insulin cell mass in murine and zebrafish models that exhibit physiologically normal compensatory islet hyperplasia. In humans, SerpinB1 is …
Liver Transcriptomic Analysis After Short- And Long-Term Feeding Of Soy Protein Isolate And Its Ability To Reduce Liver Steatosis In Obese Zucker Rats,
2020
University of Arkansas, Fayetteville
Liver Transcriptomic Analysis After Short- And Long-Term Feeding Of Soy Protein Isolate And Its Ability To Reduce Liver Steatosis In Obese Zucker Rats, Melisa Kozaczek
Graduate Theses and Dissertations
According to the Centers for Disease Control and Prevention (CDC) the prevalence of obesity in adults in the United States during 2017-2018 was a 42.4%, a high number considering all the risks factors associated with this disorder, such as cardiovascular disease, insulin resistance, diabetes type 2, and fatty liver disease, among others. Fatty liver disease is the accumulation of lipids in the liver that can account for more than 5 to 10% of the liver’s weight. There are two types of fatty liver disease, alcoholic fatty liver disease (AFLD), and non-alcoholic fatty liver disease (NAFLD). AFLD is the detrimental accumulation …
Probing Nanoelectroporation And Resealing Of The Cell Membrane By The Entry Of Ca2+ And Ba2+ Ions,
2020
Old Dominion University
Probing Nanoelectroporation And Resealing Of The Cell Membrane By The Entry Of Ca2+ And Ba2+ Ions, Wenfei Bo, Mantas Silkunas, Uma Mangalanathan, Vitalij Novickij, Maura Casciola, Iurii Semenov, Shu Xiao, Olga N. Pakhomova, Andrei G. Pakhomov
Bioelectrics Publications
The principal bioeffect of the nanosecond pulsed electric field (nsPEF) is a lasting cell membrane permeabilization, which is often attributed to the formation of nanometer-sized pores. Such pores may be too small for detection by the uptake of fluorescent dyes. We tested if Ca2+, Cd2+, Zn2+, and Ba2+ ions can be used as nanoporation markers. Time-lapse imaging was performed in CHO, BPAE, and HEK cells loaded with Fluo-4, Calbryte, or Fluo-8 dyes. Ca2+ and Ba2+ did not change fluorescence in intact cells, whereas their entry after nsPEF increased fluorescence within <1 ms. The threshold for one 300-ns pulse was at 1.5–2 kV/cm, much lower than >7 …1>
Structural And Functional Characterization Of Mitochondria With Trna Mutations,
2020
University of Arkansas, Fayetteville
Structural And Functional Characterization Of Mitochondria With Trna Mutations, Brooke Henry
Biological Sciences Undergraduate Honors Theses
Mitochondrial encephalopathy, lactic acidosis, and stroke-like episodes (MELAS) is one of the most common disorders associated with mitochondrial tRNA mutations. One of the most common causes of MELAS is mutation in the MT-TL1 gene which codes for mitochondrial tRNA Leucine (UUR). Mutation in MT-TE gene, another mitochondrial gene which encodes for mitochondrial tRNA Glutamate (GAA/G), has been implicated in various mitochondrial related myopathies. It remains unclear how point mutations in these tRNA genes result in disease onset and progression. Here, we report an early comparative analysis of fibroblast cell lines derived from patients carrying two different tRNA mutations: m.3243A>G …
