The Role Of Rnai In Downregulation Of Physcomitrella Patens Defense Genes And The Preliminary Steps Of Peg Mediated Transformation Of Mosses,
2015
Butler University
The Role Of Rnai In Downregulation Of Physcomitrella Patens Defense Genes And The Preliminary Steps Of Peg Mediated Transformation Of Mosses, Adam Beswick
Undergraduate Honors Thesis Collection
When attacked by a pathogen, the moss Physcomitrella patens will undergo both a hypersensitive response (HR) as well as a systematic acquired resistance (SAR) response. The SAR response turns on genes that ready the plant for future pathogen attacks. The hormone jasmonic acid (JA) is one of the products of SAR response in P. patens. In this study interference RNA (RNAi) was used to decrease gene expression of the allene oxide cyclase (ACe) gene, a key gene in the production pathway of JA. Using quantitative reverse transcriptase polymerase chain reaction (qRT-PCR), RNAi was found to significantly lower ACC gene levels …
Studying Cellular And Molecular Interaction With Two-Photon Fluorescence Microscopy,
2015
University of Texas at El Paso
Studying Cellular And Molecular Interaction With Two-Photon Fluorescence Microscopy, Arifur Rahaman
Open Access Theses & Dissertations
Advances in microscopy and fluorescent probes provide new insight into studying cellular and molecular interactions. Two-photon fluorescence microscopy is one of the most important recent inventions in cellular and molecular study. This technology enables noninvasive study at cellular and molecular levels in three dimensions with submicrometer resolution. Two-photon excitation of fluorophores results from the simultaneous absorption of two photons. This excitation process has a number of unique advantages, such as reduced specimen photodamage and enhanced penetration depth. In this study, we used our two-photon microscope to observe predatorial behavior of fast moving bacterivorous marine organism Cafeteria roenbergensis and quantify Mycobacterium …
Self-Cleaning Applications Of Tio2 By Photo-Induced Hydrophilicity And Photocatalysis,
2015
Technological University Dublin
Self-Cleaning Applications Of Tio2 By Photo-Induced Hydrophilicity And Photocatalysis, Swagata Banerjee, Dionysios Dionysiou, Suresh Pillai
Articles
Self-cleaning materials have gained considerable attention for both their unique properties and practical applications in energy and environmental areas. Recent examples of many TiO2-derived materials have been illustrated to understand the fundamental principles of self-cleaning hydrophilic and hydrophobic surfaces. Various models including those proposed by Wenzel, Cassie-Baxter and Miwa-Hashimoto are discussed to explain the mechanism of self-cleaning. Examples of semiconductor surfaces exhibiting the simultaneous occurrence of superhydrophilic and superhydrophobic domains on the same surface are illustrated, which can have various advanced applications in microfluidics, printing, photovoltaic, biomedical devices, anti-bacterial surfaces and water purification.
Several strategies to improve the efficiency of …
Raman Micro-Spectroscopy For Rapid Screening Of Oral Squamous Cell Carcinoma,
2015
Universidade do Vale do Paraiba, Brazil
Raman Micro-Spectroscopy For Rapid Screening Of Oral Squamous Cell Carcinoma, Luis Felipe Carvalho, Franck Bonnier, Kate O'Callaghan, Jeff O'Sullivan, Stephen Flint, Hugh Byrne, Fiona Lyng
Articles
Raman spectroscopy can provide a molecular-level fingerprint of the biochemical composition and structure of cells with excellent spatial resolution and could be useful to monitor changes in composition for dysplasia and early, non-invasive cancer diagnosis (carcinoma in situ), both ex-vivo and in vivo. In this study, we demonstrate this potential by collecting Raman spectra of nucleoli, nuclei and cytoplasm from oral epithelial cancer (SCC- 4) and dysplastic (pre-cancerous, DOK) cell lines and from normal oral epithelial primary cell cultures, in vitro, which were then analysed by principal component analysis (PCA) as a multivariate statistical method to discriminate the spectra. Results …
Identification, Description, And Activity Of Proteins In The Tergal Glands Of The German Cockroach, Blattella Germanica (L.),
2015
Purdue University
Identification, Description, And Activity Of Proteins In The Tergal Glands Of The German Cockroach, Blattella Germanica (L.), Aaron Myers
Open Access Theses
German cockroaches are important urban pests that have been linked to asthma and serious allergic reactions in sensitized individuals. In this research project I, (i) identified different proteins expressed in the tergal glands of male German cockroaches, (ii) determined the expression levels of these proteins in different cockroach life stages and tissues, and (iii) investigated the role of the tergal gland alpha-amylase (BGTG-1) protein. ^ Four major tergal gland proteins were separated on denaturing polyacrylamide gels. With peptide sequencing two of these proteins were identified as alpha-amylase (BGTG-1) and Blattella germanica allergen 2 (Bla g 2). Both of these proteins …
Transcriptional Stress Response In Foodborne Pathogens,
2015
Purdue University
Transcriptional Stress Response In Foodborne Pathogens, Aaron M. Pleitner
Open Access Dissertations
Novel molecular method use is leading to better identification and understanding of microbial presence in food and food processing environments. The application of molecular methods targeting foodborne pathogens provides genetic profiling and targeted intervention methods. Whole-genome sequencing (WGS) provides information on the genomic uniqueness of specific pathogens and is being implemented in epidemiological investigations. Transcriptomic profiling allows for tracking the differential expression of genes and elucidating stress responses. Effective methods and treatments require an understanding of intervention (e.g. sanitizers) and treatment (e.g. antibiotics) mechanisms and efficacies. Accurate novel molecular method use requires proper learning of theory and data management. ^ …
Mach: A Model For Explaining Molecular And Cellular Mechanisms,
2015
Purdue University
Mach: A Model For Explaining Molecular And Cellular Mechanisms, Caleb M. Trujillo
Open Access Dissertations
Biologists use mechanistic explanations to understand behaviors of the immense complexity of molecular and cellular systems. In undergraduate biology courses, students are expected to explain molecular and cellular mechanisms, but teaching this skill presents many challenges due to the highly abstract, intangible nature of the cellular world, the influence of everyday language, and the tendency of students to overestimate how much they can explain. Therefore, across three studies this dissertation addresses these obstacles to teach undergraduate biology students to explain molecular and cellular mechanisms. ^ The first step was to model how biology experts explain molecular and cellular mechanisms, and …
The Therapeutic Targeting Of Folate Receptor Alpha Positive Tumors Via Folate Receptor Selective Novel 5- And 6- Substituted Pyrrolo [2,3-D]Pyrimidine Antifolates",
2015
Wayne State University
The Therapeutic Targeting Of Folate Receptor Alpha Positive Tumors Via Folate Receptor Selective Novel 5- And 6- Substituted Pyrrolo [2,3-D]Pyrimidine Antifolates", Shermaine Kimberly Mitchell-Ryan
Wayne State University Dissertations
Ovarian Cancer is the fifth leading cause of cancer-related death of women in the United States. Epithelial Ovarian Cancer (EOC) constitutes 85-90% of malignancies within the ovary, with an alarming majority of these cases diagnosed at advanced stage. While most patients are initially highly responsive to the current treatment standard, there is a very high probability that they will recur with a drug resistant fatal disease. Currently there is no validated comprehensive model of disease progression for ovarian cancer, although tremendous progress has been made in understanding the origin of this disease and a putative precursor lesion has been identified …
Photodynamic Therapy As An Effective Therapeutic Approach In Mame Models Of Triple Negative And Inflammatory Breast Cancers,
2015
Wayne State University
Photodynamic Therapy As An Effective Therapeutic Approach In Mame Models Of Triple Negative And Inflammatory Breast Cancers, Neha Aggarwal
Wayne State University Dissertations
Introduction: Photodynamic therapy (PDT) is a minimally invasive, FDA approved therapy for
treatment of several indications including endobronchial and esophageal cancers that are
accessible to light. Triple negative breast cancer (TNBC) and inflammatory breast cancer (IBC)
are aggressive and lethal subtypes of breast cancer that spread to chest wall and dermal
lymphatics, respectively, sites that would be accessible to light. Both TNBC and IBC patients
have a relatively poor survival rate due to lack of targeted therapies. Use of PDT is
underexplored for breast cancers but has been proposed for treatment of subtypes for which a
targeted therapy is unavailable. …
Proteasome Inhibition As A Potential Anti-Breast Cancer Therapy: Mechanisms Of Action And Resistance-Reversing Strategies,
2015
Wayne State University
Proteasome Inhibition As A Potential Anti-Breast Cancer Therapy: Mechanisms Of Action And Resistance-Reversing Strategies, Rahul Rajesinh Deshmukh
Wayne State University Dissertations
AMPK activation and Ubiquitin Proteasome System (UPS) inhibition have gained great attention as therapeutic strategies for the treatment of certain types of cancers. While AMPK serves as a master regulator of cellular metabolism, UPS regulates protein homeostasis. Although the crosstalk between them is suggested, the relationship between these two important pathways is not very clear. We observed that proteasome inhibition leads to AMPK activation in human breast cancer cells. We report that a variety of proteasome inhibitors activate AMPK in all of the tested cancer cell lines. Our data using Liver Kinase B1 (LKB1)-deficient cancer cells suggests that proteasome inhibitor-induced …
Design And Synthesis Of Isatin-Based Caspase Inhibitors For Ruthenium Caging Applications,
2015
Wayne State University
Design And Synthesis Of Isatin-Based Caspase Inhibitors For Ruthenium Caging Applications, Kasun Chinthaka Ratnayake
Wayne State University Theses
ABSTRACT
DESIGN AND SYNTHESIS OF ISATIN BASED CASPASE INHIBITORS FOR RUTHENIUM CAGING APPLICATIONS
by
KASUN CHINTHAKA RATNAYAKE
August 2015
Advisor: Jeremy J. Kodanko, Ph.D.
Major: Chemistry (Organic)
Degree: Master of Science
Apoptosis is the energy dependent programmed cell death. Improper function of apoptosis could lead to diseases such as cancers, strokes, Alziemer’s disease. Caspases are the enzymes involved in the later stage of this process. Peptidyl and non-peptidyl caspase inhibitors have been synthesized recently. These non-peptidyl compound classes which consist of pyrrolidinyl-5-sulfo isatins have showed a greater potency against executioner caspases, caspase-3 and -7. According to literature and for further …
The Structural Heterogeneity And Dynamics Of Base Stacking And Unstacking In Nucleic Acids,
2015
University at Albany, State University of New York
The Structural Heterogeneity And Dynamics Of Base Stacking And Unstacking In Nucleic Acids, Ada Anna Sedova
Legacy Theses & Dissertations (2009 - 2024)
Base stacking provides stability to nucleic acid duplexes, and base unstacking is involved in numerous biological functions related to nucleic acids, including replication, repair, transcription, and translation. The patterns of base stacking and unstacking in available nucleic acid crystal structures were classified after separation into their individual single strand dinucleotide components and clustering using a k-means-based ensemble clustering method. The A- and B-form proximity of these dinucleotide structures were assessed to discover that RNA dinucleotides can approach B-form-like structures. Umbrella sampling molecular dynamics simulations were used to obtain the potential of mean force profiles for base unstacking at 5'-termini for …
Francisella Tularensis Catalase Restricts Immune Function By Impairing Trpm2 Channel Activity,
2015
University at Albany, State University of New York
Francisella Tularensis Catalase Restricts Immune Function By Impairing Trpm2 Channel Activity, Nicole Lynn Flaherty
Legacy Theses & Dissertations (2009 - 2024)
As an innate defense mechanism, macrophages produce reactive species that weaken pathogens and serve as secondary messengers to modify signaling responses involved in immune function. The gram-negative bacterium F. tularensis utilizes its antioxidant armature to limit the host immune response but the mechanism behind this suppression has not been defined. Here we establish that F. tularensis limits Ca2+ entry thereby limiting actin reorganization and IL-6 production in a redox-dependent fashion. Wild-type (LVS) or catalase deficient F. tularensis (∆katG) show distinct profiles in their H2O2 scavenging capacity, 1 pM/sec and 0.015 pM/sec, respectively. Murine alveolar macrophages infected with ∆katG display distinct …
Rna Aptamer Mediated Manipulation Of The 70 Kilodalton Heat Shock Protein Chaperone Machinery,
2015
University at Albany, State University of New York
Rna Aptamer Mediated Manipulation Of The 70 Kilodalton Heat Shock Protein Chaperone Machinery, Deepak Thirunavukarasu
Legacy Theses & Dissertations (2009 - 2024)
Protein quality control involves refolding of damaged proteins and facilitating degradation of irreparable proteins. Understanding the protein quality control mechanism is critical, since defects in it has been implicated in a number of age-related diseases like neurodegenerative diseases and also in cancer. A vast network of molecular chaperones and proteolytic systems collaborate to maintain protein quality control. The 70 kilodalton Heat shock protein (Hsp70) is a highly conserved and ubiquitous chaperone, which interacts with a variety of protein substrates including newly synthesized polypeptides, unfolded, partially misfolded and native proteins to maintain protein quality control. Hsp70 chaperone function is coupled to …
Novel Nmr Based Technologies To Study Macromolecular Structures,
2015
University at Albany, State University of New York
Novel Nmr Based Technologies To Study Macromolecular Structures, Subhabrata Majumder
Legacy Theses & Dissertations (2009 - 2024)
Nuclear Magnetic Resonance Spectroscopy (NMR) is one of the principle tools in structural biology to probe macromolecular structures and interactions. The atomic resolution afforded by this technique has been widely used to probe protein-protein, and protein-ligand interactions in-vitro. However, the natural milieu of the proteins is the living cell and the cellular cytoplasm is extremely heterogeneous. The NMR studies of folded protein in-cell, till now, have been limited by non-specific interactions of the cytosol. This thesis outlays a general methodology to study protein structure/interactions inside the living cells using NMR. In a closely related objective, it also describes the use …
Rna Aptamers For Molecular Chaperones Hsp27 And Hsp90,
2015
University at Albany, State University of New York
Rna Aptamers For Molecular Chaperones Hsp27 And Hsp90, Sathishkumar Kumar Munusamy
Legacy Theses & Dissertations (2009 - 2024)
Hsp90 and Hsp27 are members of the heat shock protein family of chaperones that perform multiple roles in cellular maintenance through protein folding and inhibition of apoptosis. They are abundantly expressed in cells and are over-expressed during conditions of stress. Hsp90 requires ATP for its chaperone function while Hsp27 self-associates into higher order oligomers enclosing its substrate. Their ability to interact with other proteins or with themselves lies at the heart of their mechanisms. The specific consequences of each of their interactions on global cellular health have not yet been fully discovered. The sheer diversity of proteins that interact with …
Structure And Stability Of Amyloid Fibrils Studied By Advanced Vibrational Spectroscopy,
2015
University at Albany, State University of New York
Structure And Stability Of Amyloid Fibrils Studied By Advanced Vibrational Spectroscopy, Marudachalam Shanmugasundaram
Legacy Theses & Dissertations (2009 - 2024)
Protein misfolding often leads to the formation of refractory protein aggregates like amyloid fibrils. These fibrils possess a highly ordered structure and are implicated in over 25 severe diseases including Alzheimer’s, Parkinson’s and prion diseases. This work was focused on understanding the morphology and conformation of amyloid fibrils and their stability after formation. The deconstruction of fibrils as well as other aggregates like inclusion bodies under mild conditions was also investigated using Archaeal chaperones.
Myoepithelial Cell Morphogenesis And Differentiation In The Mouse Submandibular Salivary Gland In Development And Disease,
2015
University at Albany, State University of New York
Myoepithelial Cell Morphogenesis And Differentiation In The Mouse Submandibular Salivary Gland In Development And Disease, Elise Marie Gervais
Legacy Theses & Dissertations (2009 - 2024)
Organogenesis is the process by which tissues organize, gain considerable size, and undergo cellular differentiation or specialization to form fully functional organs. To study the processes involved in organogenesis of branched organs, the mouse submandibular salivary gland is frequently used as a model system, as it can undergo morphogenesis and differentiation and be genetically manipulated ex vivo. The mouse submandibular salivary gland undergoes a specific process of outgrowth and invagination known as branching morphogenesis which allows for the significant increase in gland size and complexity, as well as maximization of surface area for secretion of saliva. Surrounding the mouse submandibular …
Genome-Scale Analyses Of Transcription And Transcriptional Regulation In Bacteria,
2015
University at Albany, State University of New York
Genome-Scale Analyses Of Transcription And Transcriptional Regulation In Bacteria, Devon Marie Fitzgerald
Legacy Theses & Dissertations (2009 - 2024)
The textbook model of bacterial transcription regulation posits that promoters occur immediately upstream of genes and that transcription factors (TFs) modulate transcription through promoter-proximal binding. However, the recent application of unbiased genome-wide approaches, such as ChIP-seq and RNA-seq, has revealed a much more complex picture, including TF binding and transcription initiation occurring in unexpected locations. This dissertation describes the use of deep sequencing-based approaches to evaluate the genome-wide binding of transcription-related proteins and identify locations of transcription initiation. I have assessed the genome-wide binding of three Escherichia coli TFs and an alternative σ factor. Additionally, I have analyzed genome-wide patterns …
Vitamin D Regulates Metabolic Gene Expression, Glutamate And Glutamine Utilization, And Mitochondrial Function In Human Mammary Epithelial Cells,
2015
University at Albany, State University of New York
Vitamin D Regulates Metabolic Gene Expression, Glutamate And Glutamine Utilization, And Mitochondrial Function In Human Mammary Epithelial Cells, Sarah Beaudin
Legacy Theses & Dissertations (2009 - 2024)
Exposure to 1,25-Dihydroxyvitamin D (1,25D) decreases proliferation and induces differentiation in telomerase-immortalized human mammary epithelial (hTERT-HME1) cells. The studies described here addressed the mechanisms by which these effects are exerted. Microarray experiments were used to identify a subset of metabolic genes and pathways that are altered by 1,25D. In particular, genes involved in glutamate and glutamine utilization, including SLC1A1 and GLUL, were studied. Interestingly, qPCR analysis in a panel of six cell lines, representing either normal epithelial tissue or breast cancer, demonstrated diverse gene expression responses to 1,25D. In an isogenic model of mammary cell transformation, 1,25D altered gene expression …
