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Articles 151 - 180 of 278

Full-Text Articles in Biochemistry, Biophysics, and Structural Biology

Ampk Activators Regulate Contractile Function Of Mesenteric Arteries, Victoria Locke Apr 2014

Ampk Activators Regulate Contractile Function Of Mesenteric Arteries, Victoria Locke

Theses and Dissertations

Vasoconstrictor tone in the splanchnic circulation redistributes blood flow during hemorrhage and resuscitation. A metabolic sensor, 5’adenosine monophosphate-activated protein kinase (AMPK), has been proposed to relax arteries by inhibiting myosin light chain (MLC) kinase (MLCK) and rho kinase (ROCK) activities. Because AMPK activation might be beneficial in re-establishing splanchnic blood flow during resuscitation, we sought to explore the relative ability of AMPK activators (AICAR, A769662, berberine (BBR) and simvastatin (SIMV)) to relax mesenteric artery (MA) contraction. Our data revealed that these drugs caused vasorelaxation when tissues were stimulated either with KCl (producing primarily a Ca2+ dependent contraction) or phenylephrine (PE; …


Regulation And Mechanistic Functions Of Caspase-9 Rna Splicing, Ngoc T. Vu Jan 2014

Regulation And Mechanistic Functions Of Caspase-9 Rna Splicing, Ngoc T. Vu

Theses and Dissertations

Caspase-9 has two splice variants, pro-apoptotic caspase-9a and anti-apoptotic caspase-9b, and dysregulation of caspase-9 splice variant ratio or expression of caspase-9b isoform has been linked to augmentation of the anchorage-independent growth and tumorigenic capacity of non-small cell lung cancer (NSCLC) cells. This study focuses on cell signaling pathway(s) regulating the alternative splicing of caspase-9 pre-mRNA and mechanistic roles of caspase-9b in a certain oncogenic/survival pathway. In regards to the former, we have identified hnRNP U as a novel splice-enhancer associated with exon 3 of caspase-9 (C9/E3). Moreover, hnRNP U binds specifically to C9/E3 at an RNA cis-element previously reported …


Structural And Functional Characterization Of The Mbd2-Nurd Co-Repressor Complex, Megha Desai Jan 2014

Structural And Functional Characterization Of The Mbd2-Nurd Co-Repressor Complex, Megha Desai

Theses and Dissertations

The MBD2-NuRD co-repressor complex is an epigenetic regulator of the developmental silencing of embryonic and fetal β-type globin genes in adult erythroid cells as well as aberrant methylation-dependent silencing of tumor suppressor genes in neoplastic diseases. Biochemical characterization of the MBD2-NuRD complex in chicken erythroid cells identified RbAp46/48, HDAC1/2, MTA1/2/3, p66α/β, Mi2α/β and MBD2 to comprise this multi-protein complex.

In the work presented in Chapter 2, we have pursued biophysical and molecular studies to describe a previously uncharacterized domain of human MBD2 (MBD2IDR). Biophysical analyses show that MBD2IDR is an intrinsically disordered region (IDR). Despite this inherent …


The Group Iva Cytosolic Phospholipase A2/C1p Interaction And Its Role In Eicosanoid Synthesis And Inflammation, Jennifer A. Mietla Jan 2014

The Group Iva Cytosolic Phospholipase A2/C1p Interaction And Its Role In Eicosanoid Synthesis And Inflammation, Jennifer A. Mietla

Theses and Dissertations

In the presented study, we demonstrate that the interaction of group IVA cytosolic phospholipase A2 and ceramide-1-phosphate is crucial for production of eicosanoid synthesis in inflammation. Inflammation is a critical component of many disease states including anaphylaxis, cancer, cardiovascular disease, rheumatoid arthritis, diabetes and asthma. Eicosanoids are well established mediators of inflammation, and the initial rate limiting step in the production of eicosanoids is the liberation of arachidonic acid (AA) from membrane phospholipids by a phospholipase A2 (PLA2). The major phospholipase involved in this liberation of AA during the inflammatory response is group IVA cytosolic phospholipase A2 (cPLA2α). Previous studies …


Developing C. Elegans As A Model To Study Type 2 Diabetes Mellitus, Jheesoo Ahn Jan 2014

Developing C. Elegans As A Model To Study Type 2 Diabetes Mellitus, Jheesoo Ahn

Theses and Dissertations

Caenorhabditis elegans has been studied as a model organism in various areas of biomedical research because it shares many conserved functions at molecular and genetic levels with humans. Specifically, it is an ideal organism to study heterogeneous metabolic syndromes such as Type 2 Diabetes Mellitus (T2DM) as C. elegans can be used to delineate molecular pathways that are at the core of its problems. A growing number of populations worldwide are faced with chronic T2DM, which also manifests several complications, such as blindness, neuropathy and cardiovascular diseases. Currently, metformin is the first-line drug of choice administered to treat T2DM. While …


Integrating Phage Therapy Into Western Medicine, Jacob B. Jaminet Jan 2014

Integrating Phage Therapy Into Western Medicine, Jacob B. Jaminet

Undergraduate Research Posters

The World Health Organization has described the rise of antibiotic use as a “global heath security emergency” (who.int). With the growing concern about antibiotic resistant bacteria, there has been an increased interest in bacteriophages. Bacteriophages are high-specific viruses that only infect bacteria. The use of bacteriophages medicinally to treat bacteria is called phage therapy. Research in phage therapy gained momentum until the introduction of antibiotics. While the USA and other Western countries accepted antibiotics, the Soviet Union and their satellite nations still continued to research phages. Since the funding for research was supplied by the Soviet military, the results of …


Group Via Calcium-Independent Phospholipase A2 Regulates Bcl-Xl Protein Levels In Mice Lung, Sang-Jin Nam Jan 2014

Group Via Calcium-Independent Phospholipase A2 Regulates Bcl-Xl Protein Levels In Mice Lung, Sang-Jin Nam

Theses and Dissertations

With previous indication of the Group VIA phospholipase A2 (iPLA2β) enzyme regulating ER-stress induced apoptosis in β-cells by regulating the anti-apoptotic protein Bcl-xL via alternative splicing, our lab postulated iPLA2β to be utilizing a similar mechanism to regulate apoptosis in mice lung. Our previous lab work has shown implications of lung function compromise in iPLA2β-/- mice, and we speculated the cause to be due altered lung architecture stemming from the attenuation of apoptosis. The western blot analysis in this study suggested that iPLA2β is involved in the regulation of Bcl-xL, but the mRNA ratios of the splice variants suggested that …


Atm, Brca1, And Aurora A: Mechanisms Of G2/M Checkpoint Control In Human Embryonic Stem Cells, Jason Beckta Jan 2014

Atm, Brca1, And Aurora A: Mechanisms Of G2/M Checkpoint Control In Human Embryonic Stem Cells, Jason Beckta

Theses and Dissertations

When cultured in vitro, human embryonic stem cells (hESCs) acquire genetic abnormalities that have slowed their therapeutic use. As hESCs have a “leaky” G1/S boundary, the pressure of ensuring genetic integrity falls on the G2/M checkpoint, which can be activated by failed chromosomal decatenation (among other stimuli). It is hypothesized that hESCs have a deficient decatenation checkpoint, but little data supports this. Evidence suggests that the ataxia telangiectasia mutated (ATM) kinase controls the G2/M decatenation and DNA damage checkpoints, though previous reports are conflicting on this point. My work demonstrates that inhibition of decatenation activates ATM and arrests hESCs in …


The Cytotoxic Effect Of The Bcl-2 Family Of Proteins In Breast Cancer Cells, Yamileth Chin Jan 2014

The Cytotoxic Effect Of The Bcl-2 Family Of Proteins In Breast Cancer Cells, Yamileth Chin

Theses and Dissertations

Breast cancer is the second leading cause of death amongst women ages 20 to 59. Despite advancements in cancer therapies, more research is necessary to improve the diagnoses and treatment of several types of breast cancer. Paclitaxel (Taxol) is a commonly utilized anti-cancer drug for various types of solid tumors. However, the molecular mechanism utilized by paclitaxel to induce cell death is still elusive. Previous studies in our laboratory have shown that the pro-apoptotic BCL-2 family protein, BAK (BCL-2 homologous antagonist/killer) plays an important role in paclitaxel-induced cell death. In untreated breast cancer cells, BAK is associated with the anti-apoptotic …


Folate Conjugated Dendrimers For Targeted Anticancer Therapy, Shannon Andrews Jan 2014

Folate Conjugated Dendrimers For Targeted Anticancer Therapy, Shannon Andrews

Theses and Dissertations

Anticancer therapeutics are often limited to suboptimal doses due to their lack of selectivity for tumor cells and resultant damage to healthy tissue. These limitations motivated researchers to develop tumor-specific delivery systems for improved therapeutic efficacy and reduced unintended cytotoxicity. Polyamidoamine dendrimers offer an ideal platform for designing targeted therapeutics with tunable characteristics that optimize pharmacokinetic behavior and targeting specificity. Ligand conjugation to dendrimer provides the biochemical interaction necessary to activate tumor-specific receptors for receptor-mediated endocytosis and effective internalization of polyplexes. Tumor-specific receptors overexpressed in carcinomas, like folate receptor-alpha (FOLRα), are targeted by ligand-conjugated dendrimer to allow enhanced internalization of …


Regulation Of Ykl-40 In Sterile Inflammation And Its Role In Glioblastoma In Vivo, Reetika Bhardwaj Jan 2014

Regulation Of Ykl-40 In Sterile Inflammation And Its Role In Glioblastoma In Vivo, Reetika Bhardwaj

Theses and Dissertations

YKL-40 is a secreted glycoprotein, which is a shared biomarker of chronic inflammation and oncogenic transformation. Indeed, YKL-40 expression is up-regulated in many diseases including multiple sclerosis, Alzheimer disease, viral encephalitis, HIV-associated dementia, brain infarction, and traumatic brain injury. YKL-40 is also expressed by several solid tumors, such as osteosarcoma, ovarian carcinoma and glioblastoma multiforme (GBM). It promotes the migration and invasion of astrocytes as well as GBM cells. Serum YKL-40 levels have been shown to directly correlate with tumor grade and potentially tumor burden in GBM. In contrast to the numerous reports documenting elevated expression of YKL-40, relatively little …


Developing A Caenorhabditis Elegans Model For Marfan Syndrome, Pauline Fotopoulos Jan 2014

Developing A Caenorhabditis Elegans Model For Marfan Syndrome, Pauline Fotopoulos

Theses and Dissertations

Marfan Syndrome (MFS) is one of the most common monogenic diseases and affects approximately 1 in 5,000 individuals worldwide. The syndrome is characterized by elongated extremities, tall stature, slender frame, and cardiac, and vision abnormalities due to severe connective tissue defects. It is caused by mutations in the fbn1 gene, which encodes an extracellular matrix glycoprotein, and is required for proper cardiac and skeletal development and for sequestration of TGFβ (transforming growth factor beta) and BMP (bone morphogenetic protein) within the extracellular matrix (ECM). The primary objective of this study was to establish a C.elegans MFS model and use this …


Evolution And Divergence Of The Structural And Physical Properties Of Dna Binding By Methyl-Cytosine Binding Domain Family Members 2 And 3, Jason Cramer Jan 2014

Evolution And Divergence Of The Structural And Physical Properties Of Dna Binding By Methyl-Cytosine Binding Domain Family Members 2 And 3, Jason Cramer

Theses and Dissertations

The studies presented in this dissertation, Evolution And Divergence Of The Structural And Physical Properties Of DNA Binding By Methyl-Cytosine Binding Domain Family Members 2 And 3, pertain primarily to two key epigenetic regulators involved with the biological interpretation of methylated DNA marks. We provide insights into the emergence and evolution of the MBD2 and MBD3 and how those molecular entities influence heritable changes in gene activity. We further provide details regarding the mystery surrounding MBD3 function and the MBD2-mediated capacity of primitive animals to carry out methylation-specific epigenetic mechanisms. In chapter two, we describe the DNA binding properties of …


Structural Studies Of Interferon Regulatory Factor 4: A Molecular Perspective Of Its Regulatory Mechanism, Soumya Govinda Remesh Jan 2014

Structural Studies Of Interferon Regulatory Factor 4: A Molecular Perspective Of Its Regulatory Mechanism, Soumya Govinda Remesh

Theses and Dissertations

Interferon (IFN) regulatory factor family member 4 (IRF4) is a transcription factor that serves specific roles in transcriptional regulation of IFN responsive genes and is indispensable in B- & T-cell differentiation. IRF4 like the other members of the family has two major domains- the N-terminal DNA binding domain (DBD) essential for its recognition and binding to the Interferon Stimulated Response Element DNA sequence and a C-terminal Interferon activation domain (IAD) thought to maintain IRF4 in an auto-inhibited inactive state and is also critical in its activation. A putative unstructured linker connects the DBD and IAD. Activation in most members of …


Metabolic Remodeling And Mitochondrial Dysfunction In Maladaptive Right Ventricular Hypertrophy Secondary To Pulmonary Arterial Hypertension, Jose Gomez-Arroyo Dec 2013

Metabolic Remodeling And Mitochondrial Dysfunction In Maladaptive Right Ventricular Hypertrophy Secondary To Pulmonary Arterial Hypertension, Jose Gomez-Arroyo

Theses and Dissertations

Right ventricular dysfunction is the most frequent cause of death in patients with pulmonary arterial hypertension. Although abnormal energy substrate use has been implicated in the development of chronic left heart failure, data describing such metabolic remodeling in failing right ventricular tissue remain incomplete. In the present dissertation we sought to characterize metabolic gene expression changes and mitochondrial dysfunction in functional and dysfunctional RV hypertrophy. Two different rat models of RV hypertrophy were studied. The model of right ventricular failure (SU5416/hypoxia) exhibited a significantly decreased gene expression of peroxisome proliferator-activated receptor- coactivator-1α, peroxisome proliferator- activated receptor-α and estrogen-related receptor-α. The …


Regulation Of Satiety Quiescence: Cyclic Gmp, Tgf Beta, And The Asi Neuron, Thomas Gallagher Dec 2013

Regulation Of Satiety Quiescence: Cyclic Gmp, Tgf Beta, And The Asi Neuron, Thomas Gallagher

Theses and Dissertations

The worm Caenorhabditis elegans is a well-studied model organism in numerous aspects of its biology. This small free living nematode has less than 1,000 cells, but shows clear conservation in both signaling and behavior to mammals in aspects of appetite control. This is of importance to humans, where failure of appetite control is a major factor in the unprecedented obesity epidemic that we see today. In general, worm behavior reflects its internal nutritional state and the availability and quality of food. Specifically, worms show a behavioral state that mimics aspects of the mammalian behavioral satiety sequence, which has been termed …


Lapatinib And Sorafenib Kill Gbm Tumor Cells In A Greater Than Additive Manner, Seyedmehrad Tavallai Nov 2013

Lapatinib And Sorafenib Kill Gbm Tumor Cells In A Greater Than Additive Manner, Seyedmehrad Tavallai

Theses and Dissertations

Glioblastoma multiforme (GBM) is the most common and malignant brain tumor in adults, affecting thousands of people worldwide every year, with a life expectancy, post diagnosis of 12 months. Surgery, radiotherapy and chemotherapy together, result in an overall mean survival not exceeding 15 months. Targeted therapeutic agents sorafenib, an oral multi kinase inhibitor, and lapatinib, an epidermal growth factor receptor (EGFR) inhibitor, used in combination have been shown to kill GBM cells be through inhibition of major growth mediating signaling pathways that are frequently over expressed in gliomas, including mitogen-activated protein kinase (MAPK) and phosphatidylinositol 3-kinase/ protein kinase B (PI3K/AKT). …


Variation And Modulation Of Micrornas In Prostate Cancer And Biological Fluids, Sarah Seashols Nov 2013

Variation And Modulation Of Micrornas In Prostate Cancer And Biological Fluids, Sarah Seashols

Theses and Dissertations

Prostate cancer is the second-most diagnosed and fatal carcinoma for males in the United States, and better diagnostic markers and potential therapies are needed. microRNAs are small, single-stranded RNA molecules that affect protein expression at the translational level, and dysregulation can dramatically affect cell metabolism. Comparison of 736 microRNA expression levels between the poorly metastatic SV40T immortalized prostate epithelial cell line P69 to its highly tumorigenic and metastatic subline M12 identified 231 miRs that were overexpressed and 150 miRs that showed loss of expression in the M12 cell line. Further evaluation of fourteen identified miRs was accomplished using other prostate …


Intra And Extracellular Functions Of Sphingosine-1-Phosphate In Sterile Inflammation., Jessie Yester Aug 2013

Intra And Extracellular Functions Of Sphingosine-1-Phosphate In Sterile Inflammation., Jessie Yester

Theses and Dissertations

Sterile inflammation is a key component of a variety of diseases including, gout, arthritis, type 1 diabetes, Alzheimer’s disease and multiple sclerosis (MS). Sterile inflammation induces the recruitment of immune cells via chemokines, such as CCL5 and CXCL10. Expression of these chemokines is dependent on IRF-1. Recently the FDA has approved the use of a pro-drug, FTY720 that after phosphorylation becomes a S1P mimetic for the treatment of MS. This report describes two novel and opposing mechanisms of S1P action in sterile inflammation. First, intracellular S1P acts as a cofactor of cIAP2 that inducesIL-1-dependent K63-polyubiquitination of IRF-1, which leads to …


Identification Of Multiple Levels Of Trauma Induced Coagulopathy, Jason Newton Jun 2013

Identification Of Multiple Levels Of Trauma Induced Coagulopathy, Jason Newton

Theses and Dissertations

Trauma continues to be a major cause of death across the globe. While the exact causes of trauma differ greatly between the military and civilian lifestyles, the ability to stop bleeding after trauma is paramount for survival. Over the past decade coagulation research has transitioned from a classical understanding of plasma based protein coagulation to the current cell focused research. As part of this shift, platelets have become a central player in hemostasis. Unfortunately little is currently understood about how platelet function is affected by trauma. In an effort to better define platelet function during trauma and the resulting shock …


Differential Effects Of Growth Factors On Glycolysis In Ovarian Cancer Cells, Fang Yuan May 2013

Differential Effects Of Growth Factors On Glycolysis In Ovarian Cancer Cells, Fang Yuan

Theses and Dissertations

Lysophosphatidic acid (LPA), a naturally-occurring, simple phospholipid, is present at elevated levels in the blood and ascites of ovarian cancer patients. LPA is a ligand of seven cell surface G protein-coupled receptors. It has been known as an oncogenic growth factor in ovarian cancer and other types of human malignancies. However, the precise biological functions of LPA in ovarian oncogenesis remain to be fully elucidated. Our laboratory is interested in studying the potential role of LPA, as a tumor microenvironment factor, in regulation of cancer cell metabolism. A fundamental change associated with most cancer is the switch of glucose metabolism …


Structural And Functional Characterization Of Sortase A, Vishaka Santosh Apr 2013

Structural And Functional Characterization Of Sortase A, Vishaka Santosh

Theses and Dissertations

Sortases have been known to be essential in Gram-positive bacteria for attaching proteins onto the peptidoglycan layer of the bacterium. Sortase A has been found to be useful as a “molecular stapler”, although; in vivo, the enzyme is responsible for attaching proteins to the peptidoglycan layer of Gram-positive bacteria. It accomplishes both of these tasks by joining two proteins together via an LPXTG sorting sequence. The enzyme has been proven to be very useful in attaching any two proteins together without worrying about recombinant techniques to generate the fusion protein. The problem with this enzyme is that the catalytic diad, …


The Activation, Receptor Complexing And Endogenous Regulation Of The Type-I Interferon Response As It Pertains To Innate Immunity, James D. Marion Jr. Apr 2013

The Activation, Receptor Complexing And Endogenous Regulation Of The Type-I Interferon Response As It Pertains To Innate Immunity, James D. Marion Jr.

Theses and Dissertations

To defend against pathogen challenge, multi-cellular organisms mount an immune response that recognizes, sequesters and eradicates invading infectious agents. Critical to this safeguard is the receptor-mediated detection of pathogens. Pathogen recognition then initiates a variety of signaling cascades that lead to the modulation of genes orchestrating an immune response. Toll-like receptor 3 (TLR3), a transmembrane receptor found in endosomes, is vital to the innate immune response against viruses. Double-stranded RNA (dsRNA) stimulation of TLR3 initiates a signaling cascade that leads to the production of type-I interferons and proinflammatory cytokines necessary to trigger the protective defenses of the immune system. Critical …


The Metabolic Transitions Regulated By The Estrogen-Related Receptor (Err) In Drosophila Melanogaster, Yan Li Jan 2013

The Metabolic Transitions Regulated By The Estrogen-Related Receptor (Err) In Drosophila Melanogaster, Yan Li

Theses and Dissertations

In multicellular organism, bioenergetic metabolism is strictly regulated toward efficient generation of ATP. However, in certain situations, such as in limiting oxygen or in the rapidly proliferating system like growing juvenile or cancer cells, organisms apply the metabolic strategy that favors the production of biomass (e.g., nucleotides, amino acids, and lipids) over efficiency of ATP generation. The conserved estrogen-related receptors (ERRs) are master regulators in controlling metabolic homeostasis, and good candidates for mediating the metabolic transition induced by hypoxia and development. First, we investigate how dERR influences hypoxic adaptation in Drosophila melanogaster. We find that dERR is required for a …


Sorafenib Enhances Pemetrexed-Induced Cytotoxicity Through And Autophagy-Dependent Mechanism In Cancer Cells, Bareford Mary Aug 2012

Sorafenib Enhances Pemetrexed-Induced Cytotoxicity Through And Autophagy-Dependent Mechanism In Cancer Cells, Bareford Mary

Theses and Dissertations

Acquired cellular resistance to traditional chemotherapeutics is a common obstacle in the treatment of most cancer cell types. This resistance occurs as a result of changes in the underlying molecular mechanisms of disease progression. The development of novel chemotherapeutic approaches designed to enhance the efficacy of protypical anti-cancer drugs is important in order to overcome this issue. Such approaches will aid in understanding the biomolecular phenomena responsible for drug resistance and disease progression. Combining signaling pathway inhibitors has become an effective strategy for enhancing tumor cell death by targeting multiple pathways known to regulate cell survival. Pemetrexed, an FDA-approved anti-folate …


Spag16 Is A Bifunctional Gene Regulating Male Fertility, David R. Nagarkatti-Gude Jul 2012

Spag16 Is A Bifunctional Gene Regulating Male Fertility, David R. Nagarkatti-Gude

Theses and Dissertations

SPAG16 is the murine orthologue of Chlamydomonas reinhardtii PF20, a protein known to be essential to the structure and function of the “9 + 2” axoneme. The “9 + 2” axoneme provides the cytoskeletal core of all eukaryotic motile cilia and flagella. In Chlamydomonas, the Pf20 gene encodes a single protein present in the central pair of the axoneme. Loss of Pf20 prevents central pair assembly and results in flagellar paralysis. The murine Spag16 gene encodes two proteins. While 71 kDa SPAG16L is found in all murine cells with motile cilia or flagella, 35 kDa SPAG16S transcript and protein are …


Characterizing The Interaction Between Ve-Ptp, Tie2 And Ve-Cadherin, Sharif Ossai Muhammad Jul 2012

Characterizing The Interaction Between Ve-Ptp, Tie2 And Ve-Cadherin, Sharif Ossai Muhammad

Theses and Dissertations

Many signaling pathways have been shown to be involved in the formation of the vascular system. Among them are the endothelial specific receptor families such as VEGF, Ang/Tie, as well as other signaling pathways such as semaphorins, which are also involved, in axonal guidance. It is known that the interaction between receptor tyrosine kinase, Tie2, VE-Cadherin, and VE-PTP mediate endothelial cell quiescence and adhesion. However, the structural basis of these interactions is not well understood. The aim of our study is to characterize the binding interactions between these players. Another important part of our study is describing the cross-talk between …


Mda-7/Il-24; A Promising Cancer Therapeutic Agent, Hossein Hamed Jun 2012

Mda-7/Il-24; A Promising Cancer Therapeutic Agent, Hossein Hamed

Theses and Dissertations

Glioblastoma multiforme (GBM) is an aggressive cancer that affects millions of patients per year. Conventional therapies combining chemotherapeutic agents with radiation can only extend survival by a few months; therefore, there is a dire need for an effective means of treating this deadly disease. Melanoma differentiation-associated gene-7/interleukin-24 (mda-7/IL-24), currently in the early stages of FDA pre-IND drug trials, has proven to be an effective cancer specific cytokine, able to trigger the onset of mitochondrial dysfunction and/or autophagy. GBM’s have mutations that often result in the activation of cytoprotective cell signaling pathways, preventing cancer therapeutics and even MDA-7/IL-24 treatments from being …


Opposing Roles Of The Μ-Opioid And Nociceptin/Orphanin Fq Receptors In Oligodendrocyte Development And Myelination, Allison Vestal-Laborde Jan 2012

Opposing Roles Of The Μ-Opioid And Nociceptin/Orphanin Fq Receptors In Oligodendrocyte Development And Myelination, Allison Vestal-Laborde

Theses and Dissertations

While the classical function of myelin is to facilitate saltatory conduction, this membrane and the myelin-making oligodendrocytes (OLGs) are now recognized as regulators of plasticity and remodeling in the central nervous system (CNS). Thus, OLG maturation and myelination are highly vulnerable processes along CNS development. We previously showed that rat brain myelination is altered by perinatal exposure to buprenorphine, an opioid analogue in clinical trials for the treatment of pregnant opioid addicts. We now found that the in vivo effects on myelination could result from direct alteration in the balance between μ-opioid receptor (MOR) and nociceptin/orphanin FQ receptor (NOPR) activities …


Non-Canonical Roles For Stat1 And Stat2 In Mitochondrial Biogenesis And Fasting Homeostasis., Jennifer Sisler Jan 2012

Non-Canonical Roles For Stat1 And Stat2 In Mitochondrial Biogenesis And Fasting Homeostasis., Jennifer Sisler

Theses and Dissertations

The signal transducer and activator of transcription 1 (STAT1) and 2 (STAT2) are primarily activated by interferons and play a central role in orchestrating responses to a variety of pathogens by activating the transcription of nuclear encoded genes that mediate antiviral, antigrowth and immune surveillance responses. In addition to their nuclear effects, we report that STAT1 and STAT2 inhibit the expression of mitochondrial encoded mRNAs by activating type I interferons (IFNβ) under basal conditions. STAT1-/- livers also exhibit elevated levels of nuclear encoded components of the electron transport chain (ETC). Treatment of wild-type mice with IFNβ inhibits both mitochondrial and …