Distinct Functions Of The Fshr Ck2 Consensus Sequence And Ck2 Kinase Activity In Fsh Action,
2011
University at Albany, State University of New York
Distinct Functions Of The Fshr Ck2 Consensus Sequence And Ck2 Kinase Activity In Fsh Action, Kerri S. Kluetzman
Legacy Theses & Dissertations (2009 - 2024)
Human reproduction in the female is a complex process requiring coordinated control of gonadotropic hormone signaling in a temporal, spatial and contextually defined manner. Paracrine and autocrine signaling between granulosa cells and oocytes of the developing ovarian follicle result in production of steroids, inhibin and growth factors that dictate maturation, ovulation or atresia. Follicular stimulating hormone (FSH) stimulation of the FSH receptor (FSHR), a G-protein coupled receptor (GPCR) is a key regulator of these processes. Recent developments in GPCR molecular and structural biology have helped define activation and signaling mechanisms that will aid in further defining the etiology of infertility …
The Role Of Trm9 In Stress Responses,
2011
University at Albany, State University of New York
The Role Of Trm9 In Stress Responses, Ashish Ravindra Patil
Legacy Theses & Dissertations (2009 - 2024)
Cells need to respond appropriately to environmental changes in order to maintain homeostasis. The cellular response to an environmental stress is regulated at transcriptional, translational and post translational levels. The tRNA, which acts as an adaptor molecule between the mRNA and the protein, plays an important role in the translational regulation of cellular responses to stress and is one of the most heavily modified biomolecules. In Saccharomyces cerevisiae , the wobble uracil of the tRNA(3'-UCU-5') Arg, tRNA(3'-UUC-5') Glu and certain other specific tRNAs are modified to 5-methoxycarbonylmethyluridine (mcm5U) and 5-methoxycarbonylmethyl-2-thiouridine (mcm5s2U) residues by the tRNA methyltransferase 9 (Trm9). Modifications at …
Regulation Of The Aryl Hydrocarbon Receptor And The Signal Transducer And Activator Of Transcription 1 By Long-Term Estrogen Exposure In Breast Carcinoma Cells,
2011
University at Albany, State University of New York
Regulation Of The Aryl Hydrocarbon Receptor And The Signal Transducer And Activator Of Transcription 1 By Long-Term Estrogen Exposure In Breast Carcinoma Cells, Neal Englert
Legacy Theses & Dissertations (2009 - 2024)
The risk of developing breast cancer is known to be associated with a woman's lifetime exposure to estrogens, both endogenous and exogenous. Increased exposure to estrogens stimulates cellular proliferation, which is a widely accepted theory of estrogen receptor positive mammary carcinogenesis. The molecular mechanisms of gene expression regulation in response to long-term estrogen exposure (LTEE) of MCF-7 breast cancer cells were addressed in this study, with a focus on the aryl hydrocarbon receptor (AHR) and signal transducer and activator of transcription 1 (STAT1).
Advanced Statistical Methods For Biochemical And Forensic Applications Of Raman Spectroscopy,
2011
University at Albany, State University of New York
Advanced Statistical Methods For Biochemical And Forensic Applications Of Raman Spectroscopy, Vitali Sikirzhytski
Legacy Theses & Dissertations (2009 - 2024)
This work is dedicated to the development and application of advanced statistical methods for biochemical and forensic applications of Raman spectroscopy. We developed a new concept of multidimensional Raman signatures for forensic identification of body fluid traces, which was successfully applied to the study of dried blood, semen, saliva, sweat and vaginal fluid stains. Several alternative advanced chemometric techniques were also successfully tested for the problems of pure body fluids discrimination and mixture analysis. Studies of body fluid mixtures with low blood and semen concentrations indicated that the detection limit of a minor contributor was as low as a few …
Structure And Function Of Coding And Non-Coding Rna Domains,
2011
University at Albany, State University of New York
Structure And Function Of Coding And Non-Coding Rna Domains, Fei Liu
Legacy Theses & Dissertations (2009 - 2024)
As a versatile molecule, RNA exhibits an astonishing variety of functional activities, which is typically attributed to its particular structure-forming capacity. There are an increasing number of established roles and systems where RNA structures, in particular, RNA pseudoknots, affect specific biological processes based on their structural features. The structure-function-relationships of RNA in three systems has been invesgated: the telomerase RNA pseudoknot domain from S. cerevisiae, a poteintial unusual H-type pseudoknot forming region near the 3'-splice-site in the influenza virus NS1 mRNA, and the 5'-untranslated-region of the CC16 mRNA where mutations in the wildtype sequence have been related to asthma. UV-monitored …
Design And Application Of Composite Rna Aptamers,
2011
University at Albany, State University of New York
Design And Application Of Composite Rna Aptamers, Shengchun Wang
Legacy Theses & Dissertations (2009 - 2024)
aptamers are being developed as an essential tool in many fields of biological research. Their utility is not limited to being protein inhibitors; a lot of novel functions can be realized. However, in vivo application of RNA aptamers still faces many challenges. The aim of this dissertation is to design and apply composite aptamers in multiple expression and delivery systems to address some critical issues, such as correct folding, high level production, degradation by nucleases, excessive consumption of cellular resource and potential toxic effect.
Homologous And Heterologous Crystallin Protein Interactions As The Molecular Basis Of Inherited Cataract,
2011
University at Albany, State University of New York
Homologous And Heterologous Crystallin Protein Interactions As The Molecular Basis Of Inherited Cataract, Priya Ranjan Banerjee
Legacy Theses & Dissertations (2009 - 2024)
Age-related cataract is the most common cause of blindness worldwide. Nearly fifty percent of Americans above the age of 75 are diagnosed with this disease (http://www.nei.nih.gov/eyedata/pbd_tables.asp), and surgical intervention is the sole method of treatment at present (http://www.nei.nih.gov/healthyvision/objective/cataracts.asp). In the developing world, even this treatment is not readily available. These are compelling reasons to search for better treatments to delay, prevent or arrest cataract formation. Recent evidence suggests that age-related cataracts also have a genetic component. Therefore, determining the mechanisms underlying genetic cataracts with a known association to a protein-mutation is one important strategy towards understanding the molecular basis for …
Biophysical Investigations Of The Molecular Basis Of Cataract Associated With The R76s Mutation In Human Gammad-Crystallin,
2011
University at Albany, State University of New York
Biophysical Investigations Of The Molecular Basis Of Cataract Associated With The R76s Mutation In Human Gammad-Crystallin, Vurghun Ahmadov
Legacy Theses & Dissertations (2009 - 2024)
Cataract disease results when the eye lens becomes opaque and scatters a significant part of the incoming light into the eye. The lens contains very high concentrations of the lens proteins, called crystallins, which are present at concentrations comparable to those found in protein crystals (about 400-600 mg/mL). Chemical modifications of the crystallins, such as oxidation and deamidation, or genetic mutations are known to result in increased light-scattering in vitro, and are implicated in cataract formation in vivo. Here we present the in vitro work on a mutant protein of human gammaD crystallin (HGD), namely R76S (i.e. Arg 76 to …
Tca Cycle Inactivation In Staphylococcus Aureus Alters Nitric Oxide Production In Raw 264.7 Cells,
2011
University of Nebraska-Lincoln
Tca Cycle Inactivation In Staphylococcus Aureus Alters Nitric Oxide Production In Raw 264.7 Cells, Chandirasegaran Massilamany, Arunakumar Gangaplara, Donald J. Gardner, James M. Musser, David J. Steffen, Greg A. Somerville, Jay Reddy
Jay Reddy Publications
Inactivation of the Staphylococcus aureus tricarboxylic acid (TCA) cycle delays the resolution of cutaneous ulcers in a mouse soft tissue infection model. In this study, it was observed that cutaneous lesions in mice infected with wild-type or isogenic aconitase mutant S. aureus strains contained comparable inflammatory infiltrates, suggesting the delayed resolution was independent of the recruitment of immune cells. These observations led us to hypothesize that staphylococcal metabolism can modulate the host immune response. Using an in vitro model system involving RAW 264.7 cells, the authors observed that cells cultured with S. aureus aconitase mutant strains produced significantly lower amounts …
Avoiding Proteolysis During Protein Chromatography.,
2011
Technological University Dublin
Avoiding Proteolysis During Protein Chromatography., Barry Ryan
Books/Book Chapters/ Proceedings
All cells contain proteases which effect catalytic hydrolysis of the peptide bond between amino acids in the protein backbone. Typically, proteinases are prevented from non-specific proteolysis by regulation and physical separation into different sub-cellular compartments; however, this segregation is not retained during cell lysis to release a protein of interest. Prevention of proteolysis during protein purification often takes the form of a two-pronged approach; firstly inhibition of proteolysis in situ, followed by the separation of the protease from the protein of interest via chromatographical purification. Proteinase inhibitors are routinely used to limit the effect of the proteinases before they are …
The Role Of Zip Superfamily Of Metal Transporters In Chronic Diseases, Purification & Characterization Of A Bacterial Zip Transporter: Zupt.,
2011
Wayne State University
The Role Of Zip Superfamily Of Metal Transporters In Chronic Diseases, Purification & Characterization Of A Bacterial Zip Transporter: Zupt., Iryna King
Wayne State University Theses
In mammals zinc is the second most abundant essential trace metal. Since Zn2 is a small, hydrophilic, and a highly charged ion, it cannot be transported across the plasma or intracellular organelle membrane by passive diffusion. Different types of cells require a different constant concentration of zinc at all times. Presence of excess free Zn ions can be toxic to the cell. All cells must have tightly regulated homeostatic mechanisms in order to preserve healthy levels and proper compartmentalization of zinc. This is accomplished through the actions of specialized proteins that facilitate zinc uptake, efflux and compartmentalization. If the …
Effects Of Dietary Fat Saturation On Lipoprotein Metabolism In Rodents And Humans,
2011
Wayne State University
Effects Of Dietary Fat Saturation On Lipoprotein Metabolism In Rodents And Humans, Deepinder Kaur
Wayne State University Dissertations
Consumption of trans-fatty acids (tFA) and saturated fatty acids (SFA) have been associated with higher incidence of coronary heart disease. Experimental and observational data suggests that consumption of PHVO containing tFA, like SFA leads to increased total cholesterol and LDL-cholesterol (LDL-C) but compared to tFA, SFA raises HDL-cholesterol (HDL-C). An attempt to eliminate PHVO from the food supply has resulted in the need to find alternatives which despite their higher dietary fat saturation as compared to naturally occurring vegetable oils, may be preferable to PHVO. However, amongst SFA, the effects on plasma lipoproteins are variable. Thus, we hypothesized that specific …
Synthesis, Self-Assembly And Biological Properties Of Self-Folding Cu(Ii) Coordination Polymers,
2011
University of Texas at El Paso
Synthesis, Self-Assembly And Biological Properties Of Self-Folding Cu(Ii) Coordination Polymers, Alejandro Arzola-Rubio
Open Access Theses & Dissertations
The synthesis of materials via molecular self-assembly is a powerful bottom-up approach for fabricating matter in the nano- and micro-meter scales. This methodology involves the spontaneous and reversible organization of small molecules that interact with one another to create larger structures driven by non-covalent interactions such as hydrogen bonding, hydrophobic forces and metal-ligand coordination interactions. In this thesis, the design, synthesis and characterization of a new set of molecules that spontaneously self-organize in water to form three-dimensional nanoscale toroidal structures was investigated. These supramolecular structures were designed with an intrinsic affinity to bind and condense DNA strands with the intent …
Hydrolysis Of Amelogenin By Matrix Metalloprotease-20 Accelerates Mineralization In Vitro,
2011
Chapman University
Hydrolysis Of Amelogenin By Matrix Metalloprotease-20 Accelerates Mineralization In Vitro, Vuk Uskoković, Feroz Khan, Haichuan Liu, Halina Ewa Witkowska, Li Zhu, Wu Li, Stefan Habelitz
Pharmacy Faculty Articles and Research
In the following respects, tooth enamel is a unique tissue in the mammalian body: (a) it is the most mineralized and hardest tissue in it comprising up to 95 wt% of apatite; (b) its microstructure is dominated by parallel rods composed of bundles of 40 – 60 nm wide apatite crystals with aspect ratios reaching up to 1:10,000 and (c) not only does the protein matrix that gives rise to enamel guides the crystal growth, but it also conducts its own degradation and removal in parallel. Hence, when mimicking the process of amelogenesis in vitro, crystal growth has to …
Surface Entropy Reduction To Increase The Crystallizability Of The Fab-Rna Complex,
2011
University of Central Florida
Surface Entropy Reduction To Increase The Crystallizability Of The Fab-Rna Complex, Priyadarshini Palaniandy Ravindran
Electronic Theses and Dissertations
Crystallizing RNA has been an imperative facet and a challenging task in the world of RNA research. Assistive methods such as Chaperone Assisted RNA Crystallography (CARC), employing monoclonal antibody fragments (Fabs) as crystallization chaperones have enabled us to obtain RNA crystal structures by increasing the crystal contacts and providing initial phasing information. Using this technology the crystal structure of [delta]C209 P4-P6 RNA (an independent folding domain of the self-splicing Tetrahymena group I intron) complexed to Fab2 (high affinity binding Fab) has been resolved to 1.95 Å (1). Although the complexed class I ligase ribozyme has also been crystallized using CARC …
An Upper Limit For Macromolecular Crowding Effects,
2011
University of North Carolina
An Upper Limit For Macromolecular Crowding Effects, Andrew C. Miklos, Congang Li, Courtney D. Sorell, L. Andrew Lyon, Gary J. Pielak
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Background: Solutions containing high macromolecule concentrations are predicted to affect a number of protein properties compared to those properties in dilute solution. In cells, these macromolecular crowders have a large range of sizes and can occupy 30% or more of the available volume. We chose to study the stability and ps-ns internal dynamics of a globular protein whose radius is similar to 2 nm when crowded by a synthetic microgel composed of poly(N-isopropylacrylamide-co-acrylic acid) with particle radii of similar to 300 nm.
Results: Our studies revealed no change in protein rotational or ps-ns backbone dynamics and only mild …
Biomimetic Precipitation Of Uniaxially Grown Calcium Phosphate Crystals From Full-Length Human Amelogenin Sols,
2011
Chapman University
Biomimetic Precipitation Of Uniaxially Grown Calcium Phosphate Crystals From Full-Length Human Amelogenin Sols, Vuk Uskoković, Wu Li, Stefan Habelitz
Pharmacy Faculty Articles and Research
Human dental enamel forms over a period of 2 – 4 years by substituting the enamel matrix, a protein gel mostly composed of a single protein, amelogenin with fibrous apatite nanocrystals. Self-assembly of a dense amelogenin matrix is presumed to direct the growth of apatite fibers and their organization into bundles that eventually comprise the mature enamel, the hardest tissue in the mammalian body. This work aims to establish the physicochemical and biochemical conditions for the synthesis of fibrous apatite crystals under the control of a recombinant fulllength human amelogenin matrix in combination with a programmable titration system. The growth …
14-3-3Γ Binds To Cam Kkα And Blocks Estrogen Signaling In Mcf-7 Cells,
2011
George Fox University
14-3-3Γ Binds To Cam Kkα And Blocks Estrogen Signaling In Mcf-7 Cells, John M. Schmitt, Amanda P. Ankeny
Faculty Publications - Department of Biological & Molecular Science
Abstract Extracellular Signal-Regulated Kinase (ERK) is activated by estrogen (E2) downstream of CaM KK leading to cell growth in MCF-7 breast cancer cells. Previous studies have shown that ERK activation may be inhibited by cAMP and PKA. PKA has numerous cellular targets including CREB, Src, Raf-1, arrestins, and CaM KK. CaM KK is inhibited by direct PKA phosphorylation and the subsequent interaction with 14-3-3γ . Agonists that activate cAMP and PKA may block CaM KK activation of ERK and cell proliferation. Our goal was to evaluate the ability of cAMP and PKA to antagonize the effects of E2 on MCF-7 …
Transcription Factor Regulation Of Erk And Estrogen In Mcf-7 Cells,
2011
George Fox University
Transcription Factor Regulation Of Erk And Estrogen In Mcf-7 Cells, John M. Schmitt, Jessica N. Magill
Faculty Publications - Department of Biological & Molecular Science
Abstract ERK is activated by increased intracellular calcium downstream of the hormone estrogen (E2). E2 activates ERK via the CaM Kinases, specifically CaM KK and CaM KI in MCF-7 cells. ERK may control cell growth and proliferation through Elk-1, Rsk, SRF, CREB, and numerous other molecules and nuclear targets. Vitamin D, a hormone, has proven to be an effective antagonist of ERK and MCF-7 breast cancer cell growth. Our goal was to evaluate if the E2 pathway working through CaM KK and ERK regulated the transcription factors Elk-1, CREB, and SRF. We also examined the ability of vitamin D to …
Lysophosphatidic Acid Production And Signaling In Platelets,
2011
University of Kentucky
Lysophosphatidic Acid Production And Signaling In Platelets, Zachary Bennett Fulkerson
Theses and Dissertations--Physiology
Lysophosphatidic acid (LPA) belongs to a class of extracellular lipid signaling molecules. In the vasculature, LPA may regulate platelet activation and modulate endothelial and smooth muscle cell function. LPA has therefore been proposed as a mediator of cardiovascular disease.
The bulk of circulating LPA is produced from plasma lysophosphatidylcholine (LPC) by autotaxin (ATX), a secreted lysophospholipase D (lysoPLD). Early studies suggest that some of the production of circulating LPA is platelet-dependent. ATX possesses an N-terminal somatomedin B-like domain suggesting the hypothesis that ATX interacts with platelet integrins which may localize ATX to substrate in the membrane and/or alter the catalytic …
