Mutational Analysis Of An Rna Aptamer,
2013
University at Albany, State University of New York
Mutational Analysis Of An Rna Aptamer, Deblina Biswas
Legacy Theses & Dissertations (2009 - 2024)
Aptamers are oligonucleotide molecules (DNA or RNA) that are selected against specific target proteins, nucleic acids or small molecules by using the well established technique of SELEX (Systemic Evolution of Ligands by Exponential Enrichment). Their ability to bind with high affinity and specificity has opened up a wide arena of scientific applications. Aptamers have been shown to have many potential therapeutic and bioanalytical contributions such as in the treatment of diseases like cancer, cardiovascular and other major ailments. The aim of this dissertation is to study and analyze double transversion involving 4 bases in a RNA aptamer molecule: MinB4-au-flipS clamp …
Structural Biology Of The Receptor For Advanced Glycation End Products (Rage),
2013
University at Albany, State University of New York
Structural Biology Of The Receptor For Advanced Glycation End Products (Rage), Jing Xue
Legacy Theses & Dissertations (2009 - 2024)
The receptor for advanced glycated end products (RAGE), due to its location in the major histocompatibility complex class III (MHC III) region, suggests its involvement in immune responses. Because RAGE has been linked to complications of diabetes and chronic inflammation, the severity of Alzheimer's disease and cancer, it's significant to understanding the biological mechanism of signal transduction of RAGE.
New Tools To Study Amyloid Fibrils And Intrinsically Disordered Proteins In Vitro And In Vivo,
2013
University at Albany, State University of New York
New Tools To Study Amyloid Fibrils And Intrinsically Disordered Proteins In Vitro And In Vivo, Jacqueline D. Washington
Legacy Theses & Dissertations (2009 - 2024)
Amyloid fibrils are β-sheet-rich protein aggregates commonly found in the organs and tissues of patients with various amyloid-associated diseases. The structure of insulin fibrils was characterized by deep ultraviolet resonance Raman and Nuclear Magnetic Resonance spectroscopy combined with hydrogen-deuterium exchange. Our new approach of combining NMR and Raman spectroscopy with molecular dynamic simulations for characterizing amyloid fibrils provided exclusive knowledge about fibril structure at amino acid residue resolution.
Y-Family Dna Polymerases : Mechanism Of Single-Base Deletion And Effect Of Pcna Interaction,
2013
University at Albany, State University of New York
Y-Family Dna Polymerases : Mechanism Of Single-Base Deletion And Effect Of Pcna Interaction, Yifeng Wu
Legacy Theses & Dissertations (2009 - 2024)
Translesional synthesis (TLS) by specialized Y-family DNA polymerases is a DNA damage tolerance pathway to bypass DNA lesions that have not been repaired by other DNA repair mechanisms. Despite their valuable lesion bypass ability, the Y-family DNA polymerases display a much lower fidelity upon replicating undamaged DNA. Their activity therefore needs to be well regulated in the cell. In our first project, we examined how an archaeal Y-family DNA polymerase, Dpo4, makes single-base deletions during replication. Dpo4 belongs to the DinB subfamily which is known to make single-base deletions. Although previous studies suggested that it uses a dNTP-stabilized misalignment mechanism, …
Characterizing The Effects Of Glutaraldehyde On The Ryanodine Receptor Calcium Release Channel,
2013
University at Albany, State University of New York
Characterizing The Effects Of Glutaraldehyde On The Ryanodine Receptor Calcium Release Channel, Joshua Dov Strauss
Legacy Theses & Dissertations (2009 - 2024)
Ryanodine receptors (RyR) are large intracellular calcium release channels, which
Structure-Activity Relationship Of 2,3-Benzodiazepin-4-Ones As Noncompetitive Ampa Receptor Antagonists,
2013
University at Albany, State University of New York
Structure-Activity Relationship Of 2,3-Benzodiazepin-4-Ones As Noncompetitive Ampa Receptor Antagonists, Mohammad Shaban Qneibi
Legacy Theses & Dissertations (2009 - 2024)
2,3-Benzodiazepin-4-one (BDZ-11) derivatives are a special group of 2,3-benzodiazepine compounds. These compounds have been previously synthesized as AMPA receptor inhibitors, and they are also potential drugs for the treatment of various neurological diseases involving excessive AMPA receptor activity. AMPA receptors are a subtype of glutamate ion channel proteins and are responsible for the majority of excitatory neurotransmission in the mammalian central nervous system. Specifically, they are critically involved in neuronal development and brain activities, including learning and memory. Overstimulation of AMPA receptors is associated with some neurological diseases such as ALS, stroke and Alzheimer's disease. Despite the fact that hundreds …
The Sxrna Platform : Biophysical Characterization Of Trans-Acting Rna Switches For Gene Expression Control,
2013
University at Albany, State University of New York
The Sxrna Platform : Biophysical Characterization Of Trans-Acting Rna Switches For Gene Expression Control, Christine Bazinet
Legacy Theses & Dissertations (2009 - 2024)
In the past decade, microRNAs (miRNAs) have become a hot topic in biochemical research. These very short ~ 22 nucleotide strands of RNA have been recognized as a functional RNA group and found to play a key role in mediating gene regulation along with RNA-binding proteins (RBPs). For example, by binding to the histone stem-loop (HSL) region of the target mRNA, normally in the 3'- untranslated region (UTR), gene expression can either be activated or deactivated for up or down regulation of the gene product. The majority of miRNAs have been found to down regulate gene expression upon binding to …
2'-O-Methyl Substitutions In The Yeast Telomerase Pseudoknot And Their Effects On Telomerase Activity,
2013
University at Albany, State University of New York
2'-O-Methyl Substitutions In The Yeast Telomerase Pseudoknot And Their Effects On Telomerase Activity, Katelyn Mae Jasper
Legacy Theses & Dissertations (2009 - 2024)
Telomerase is a ribonucleoprotein (RNP) complex that synthesizes telomeric repeats at the ends of linear chromosomes to form the DNA–protein complexes known as telomeres. Telomeres protect the ends of chromosomes from degradation during replication due to the end-replication problem. When replication occurs, gaps are created at the beginning of the lagging and leading strands that result in the loss of a small amount of DNA at every replication cycle. By adding thousands of copies of telomeric repeats, the repeats are lost in the replication process and not precious genetic information. The telomerase RNA varies drastically among different species both in …
(S)-Trifluoroselenomethionine : A New Non-Natural Amino Acid With Enhanced Methioninase-Induced Cytotoxicity Toward Human Colon Cancer Cells,
2013
University at Albany, State University of New York
(S)-Trifluoroselenomethionine : A New Non-Natural Amino Acid With Enhanced Methioninase-Induced Cytotoxicity Toward Human Colon Cancer Cells, Stephene Nathele Lodge
Legacy Theses & Dissertations (2009 - 2024)
Abstract
Voltage-Controlled Enzyme-Catalyzed Glucose–Gluconolactone Conversion Using A Field-Effect Enzymatic Detector,
2013
Cleveland State University
Voltage-Controlled Enzyme-Catalyzed Glucose–Gluconolactone Conversion Using A Field-Effect Enzymatic Detector, Siu Tung Yau, Yan Xu, Yang Song, Ye Feng, Jiapeng Wang
Chemistry Faculty Publications
The field-effect enzymatic detection (FEED) technique was used to control the kinetics of the enzymatic conversion of glucose to gluconolactone. The glucose–gluconolactone conversion occurring at an enzyme-immobilized electrode, a well-studied process, was confirmed using mass spectrometry. Electrochemical studies showed that the glucose oxidation current depends on the gating voltage VG and the ion concentration of the sample solution. Additionally, the depletion of glucose in the sample also showed a dependence on VG. FEED was used to detect H2O2 on the zepto-molar level in order to show the ultrasensitive detection capability of the technique. These results, while providing evidence for the …
Rhodotorula Minuta Fungemia In A Ewe Lamb,
2013
USDA-ARS
Rhodotorula Minuta Fungemia In A Ewe Lamb, C. G. Chitko-Mckown, K. A. Leymaster, M. P. Heaton, D. D. Griffin, J. K. Veatch, S. A. Jones, M. L. Clawson
School of Veterinary and Biomedical Sciences: Faculty Publications
An 8-month-old crossbred ewe, normal upon physical examination, was humanely euthanized for tissue collection. After approximately 3 weeks in tissue culture, fungi began budding out of cells obtained from the choroid plexus. After an additional 3 weeks, budding was observed in kidney cell cultures and eventually in monocyte cultures as well. Serum from the lamb was submitted to the Veterinary Diagnostic Laboratory at Colorado State University for fungal diagnosis and was found negative for Aspergillus, Blastomyces, Coccidioidomycosis and Histoplasmosis. DNA was isolated from fungi collected from tissue culture supernatants and used in a set of pan-fungal PCR assays with …
Interferon Inducible Protein Ifi35 Negatively Regulates Rig-I Antiviral Signaling And Supports Vesicular Stomatitis Virus Replication,
2013
University of Nebraska-Lincoln
Interferon Inducible Protein Ifi35 Negatively Regulates Rig-I Antiviral Signaling And Supports Vesicular Stomatitis Virus Replication, Anshuman Das, Phat X. Dinh, Debasis Panda, Asit K. Pattnaik
School of Veterinary and Biomedical Sciences: Faculty Publications
In a genome-wide siRNA screen, we recently identified the interferon (IFN) inducible protein 35 (IFI35, also known as IFP35) as a factor required for VSV infection. Studies reported here were conducted to further understand the role and requirement of IFI35 in VSV infection. Consistent with the siRNA screening data, we found that depletion of IFI35 led to reduced VSV replication at the level of viral gene expression. Although no direct interaction of IFI35 with the viral replication machinery was observed, we found that IFI35 negatively regulated the host innate immune response and rescued poly(I:C)-induced inhibition of VSV replication. Promoter-driven reporter …
Sequence-Optimized And Targeted Double-Stranded
Rna As A Therapeutic Antiviral Treatment
Against Infectious Myonecrosis Virus In
Litopenaeus Vannamei,
2013
University of Nebraska-Lincoln
Sequence-Optimized And Targeted Double-Stranded Rna As A Therapeutic Antiviral Treatment Against Infectious Myonecrosis Virus In Litopenaeus Vannamei, J. Dustin Loy, Duan S. Loy, Mark A. Mogler, Bruce Janke, Kurt Kamrud, D. L. Hank Harris, Lyric C. Bartholomay
School of Veterinary and Biomedical Sciences: Faculty Publications
Infectious myonecrosis virus (IMNV) is a significant and emerging pathogen that has a tremendous impact on the culture of the Pacific white shrimp Litopenaeus vannamei. IMNV first emerged in Brazil in 2002 and subsequently spread to Indonesia, causing large economic losses in both countries. No existing therapeutic treatments or effective interventions currently exist for IMNV. RNA interference (RNAi) is an effective technique for preventing viral disease in shrimp. Here, we describe the efficacy of a double-stranded RNA (dsRNA) applied as an antiviral therapeutic following virus challenge. The antiviral molecule is an optimized dsRNA construct that targets an IMNV sequence …
Bovine Herpes Virus 1 (Bhv-1) And Herpes Simplex Virus
Type 1 (Hsv-1) Promote Survival Of Latently Infected
Sensory Neurons, In Part By Inhibiting Apoptosis,
2013
University of Nebraska - Lincoln
Bovine Herpes Virus 1 (Bhv-1) And Herpes Simplex Virus Type 1 (Hsv-1) Promote Survival Of Latently Infected Sensory Neurons, In Part By Inhibiting Apoptosis, Clinton Jones
School of Veterinary and Biomedical Sciences: Faculty Publications
α-Herpesvirinae subfamily members, including herpes simplex virus type 1 (HSV-1) and bovine herpes virus 1 (BHV-1), initiate infection in mucosal surfaces. BHV-1 and HSV-1 enter sensory neurons by cell-cell spread where a burst of viral gene expression occurs. When compared to non-neuronal cells, viral gene expression is quickly extinguished in sensory neurons resulting in neuronal survival and latency. The HSV-1 latency associated transcript (LAT), which is abundantly expressed in latently infected neurons, inhibits apoptosis, viral transcription, and productive infection, and directly or indirectly enhances reactivation from latency in small animal models. Three anti-apoptosis genes can be substituted for LAT, which …
Molecular Considerations In The Design Of Novel Alpha/Beta Hydrolase Inhibitors,
2013
University of Mississippi
Molecular Considerations In The Design Of Novel Alpha/Beta Hydrolase Inhibitors, Shana Victoria Stoddard
Electronic Theses and Dissertations
Alpha/beta hydrolases (ABHs) are a superfamily of hydrolytic enzymes that process a wide variety of substrates. A subfamily of ABHs called carboxylesterases (CEs) are important enzymes that catalyze biological detoxification, hydrolysis of certain pesticides, and metabolism of many esterified drugs. The chemotherapy drug irinotecan used for treatment of colorectal cancer is metabolized to SN-38, the active drug metabolite, by two CE isozymes CES1 (localized in the liver) and CES2 (localized in the small intestines). CES2's ability to activate irinotecan at a faster rate than CES1 creates a localization of activated SN-38 in the gut epithelium, resulting in the dose limiting …
Role Of The Endocannabinoid System In Cardiac Remodeling,
2013
University of Mississippi
Role Of The Endocannabinoid System In Cardiac Remodeling, Monica Gole
Electronic Theses and Dissertations
The endocannabinoid system and CB1 and CB2 cannabinoid receptors have been implicated in cardiac remodeling with CB1 inhibition and CB2 activation reported to be beneficial. However, the role of these receptors in cardiac remodeling secondary to hypertension is not known. Moreover, the functions of the CB1 and CB2 cannabinoid receptors in cardiac ventricular fibroblasts and their downstream fibrotic pathways has not yet been elucidated. This study was designed to determine the temporal myocardial expression pattern of CB1 and CB2 receptors in cardiac remodeling secondary to pressure overload (PO) induced hypertension at 3, 5, 14 and 28 days. The expression of …
The Mononuclear Metal Center Of Type-I Dihydroorotase From Aquifex Aeolicus,
2013
Wayne State University School of Medicine
The Mononuclear Metal Center Of Type-I Dihydroorotase From Aquifex Aeolicus, Brian Fp Edwards, Roshini Fernando, Philip D. Martin, Edward Grimley, Melissa Cordes, Asmita Vaishnav, Joseph S. Brunzelle, Hedeel Evans, David R. Evans
Wayne State University Associated BioMed Central Scholarship
Abstract
Background
Dihydroorotase (DHO) is a zinc metalloenzyme, although the number of active site zinc ions has been controversial. E. coli DHO was initially thought to have a mononuclear metal center, but the subsequent X-ray structure clearly showed two zinc ions, α and β, at the catalytic site. Aquifex aeolicus DHO, is a dodecamer comprised of six DHO and six aspartate transcarbamoylase (ATC) subunits. The isolated DHO monomer, which lacks catalytic activity, has an intact α-site and conserved β-site ligands, but the geometry of the second metal binding site is completely disrupted. However, the putative β-site is restored when the …
Disulfide By Design 2.0: A Web-Based Tool For Disulfide Engineering In Proteins,
2013
Wayne State University School of Medicine
Disulfide By Design 2.0: A Web-Based Tool For Disulfide Engineering In Proteins, Douglas B. Craig, Alan A. Dombkowski
Wayne State University Associated BioMed Central Scholarship
Abstract
Background
Disulfide engineering is an important biotechnological tool that has advanced a wide range of research. The introduction of novel disulfide bonds into proteins has been used extensively to improve protein stability, modify functional characteristics, and to assist in the study of protein dynamics. Successful use of this technology is greatly enhanced by software that can predict pairs of residues that will likely form a disulfide bond if mutated to cysteines.
Results
We had previously developed and distributed software for this purpose: Disulfide by Design (DbD). The original DbD program has been widely used; however, it has a number …
Role Of Phosphoylation Of The Mycobacterium Tuberculosis Proteasome In Oxidative Stress Response And Regulation Of Homoserine Kinase (Thrb) In Corynebacterium Glutamicum,
2013
Wayne State University
Role Of Phosphoylation Of The Mycobacterium Tuberculosis Proteasome In Oxidative Stress Response And Regulation Of Homoserine Kinase (Thrb) In Corynebacterium Glutamicum, Heather Baun
Wayne State University Theses
Part 1:
One-third of the world's population is infected with the latent form of Mycobacterium tuberculosis. M. tuberculosis must be able to control this latent even in response to nitrosative and oxidative stress conferred by the host. It is not well known how M. tuberculosis controls this state.
One possibility for this control is through its eleven eukaryotic-like serine/threonine protein kinases. Our lab has focused research on two eukaryotic-like ser/thr protein kinases, PknA and PknB. It has been found that PknA expression may affect the stability or the assembly of the proteasome complex, which is essential for M. tuberculosis to …
Spliceosomal Prp24 Unwinds A Minimal U2/U6 Complex From Yeast,
2013
Wayne State University
Spliceosomal Prp24 Unwinds A Minimal U2/U6 Complex From Yeast, Chandani Manoja Warnasooriya
Wayne State University Theses
Splicing plays a major role in eukaryotic gene expression by processing pre-mRNA to form mature mRNA. Pre-mRNAs undergo splicing to remove introns, non–protein coding regions, and religate exons, protein coding regions. This process is catalyzed by the spliceosome, which consists of five small nuclear ribonucleoprotein particles (snRNPs: U1, U2, U4, U5 and U6) and numerous protein factors. Proper assembly of spliceosomal components is critical for function, and thus, defects in assembly can be lethal. Several spliceosomal proteins facilitate structural rearrangements important for spliceosomal assembly and function. Prp24 is an essential factor in U6 snRNP assembly, and it has been proposed …
