Of Donuts And Promo : In Silico Approaches To Identification Of Transcriptional Regulators Of Salivary Acinar Differentiation,
2019
University at Albany, State University of New York
Of Donuts And Promo : In Silico Approaches To Identification Of Transcriptional Regulators Of Salivary Acinar Differentiation, Connor Cillian Duffy
Legacy Theses & Dissertations (2009 - 2024)
The salivary gland is an organ often taken for granted by most people. However, its proper function is essential for several everyday activities, such as speaking, swallowing, and tasting. As such, impaired salivary gland function, such as that caused by Sjögren’s Syndrome or radiotherapy for head and neck cancers, can lead to a significantly reduced quality of life. The cells that produce saliva in salivary glands are known as acinar cells, which arise from proacinar cells generated during embryonic development. As such, in studying the promoter regions of proacinar and acinar genes, it may be possible to identify common transcription …
Developmental Changes In The Activation And Structure Of The Contextual Fear Neural Circuit From Infancy To Adulthood,
2019
University at Albany, State University of New York
Developmental Changes In The Activation And Structure Of The Contextual Fear Neural Circuit From Infancy To Adulthood, Anthony John Santarelli
Legacy Theses & Dissertations (2009 - 2024)
The contextual fear circuit, centered on the basolateral nucleus of the amygdala (BLA), is comprised of projections from the hippocampal formation and prefrontal cortex, and mediates an animals ability to learn and predict associations between the environment and biologically relevant stimuli. While the function and structure of this circuit has been well characterized in adult species, relatively little is known about its development as an animal transitions from infancy to adulthood. Recent evidence has begun to suggest that infants, juveniles, and adolescents may show remarkable heterogeneity in the behavioral, activational, and structural properties of the circuit. In this thesis, I …
Hspg2 Mediates Mandibular Jaw Joint Development,
2019
University of Texas at El Paso
Hspg2 Mediates Mandibular Jaw Joint Development, Barbara Samantha Castellanos
Open Access Theses & Dissertations
We present a patient diagnosed with a multiple congenital anomaly syndrome characterized by scoliosis, intellectual disabilities, and craniofacial defects. Trio-based whole exome sequencing identified compound heterozygous variants in the HSPG2 gene: a maternally inherited c.5998-7A>G variant in the promoter region and a paternally inherited c.4916C>T variant in the coding sequence. HSPG2 encodes for perlecan, a large proteoglycan that plays an important role in cartilage formation, cell adhesion, and basement membrane stability. Mutations in HSPG2 have been associated with Schwartz-Jampel syndrome and Dyssegmental Dysplasia Silverman-Handmaker Type, two disorders characterized by skeletal abnormalities (1). These data indicate a function for …
Tgf-Β, Wnt, And Fgf Signaling Pathways During Axolotl Tail Regeneration And Forelimb Bud Development,
2019
University of Kentucky
Tgf-Β, Wnt, And Fgf Signaling Pathways During Axolotl Tail Regeneration And Forelimb Bud Development, Qingchao Qiu
Theses and Dissertations--Neuroscience
Tgf-β, Wnt, and Fgf signaling pathways are required for many developmental processes. Here, I investigated the requirement of these signaling pathways during tail regeneration and limb development in the Mexican axolotl (Ambystoma mexicanum).
Using small chemical inhibitors during tail regeneration, I found that the Tgf-β signaling pathway was required from 0-24 and 48-72 hours post tail amputation (hpa), the Wnt signaling pathway was required from 0-120 hpa, and the Fgf signaling pathway was required from 0-12hpa. Tgf-β1 was upregulated after amputation and thus may mediate Tgf-β signaling pathway during tail regeneration. Both Smad-mediated and non-Smad mediated Tgf-β signaling …
Examining The Effects Of Fadrozole, An Aromatase Inhibitor, On Testosterone And Estrogen Production Of Domestic Chicken Embryos (Gallus Gallus),
2019
Bucknell University
Examining The Effects Of Fadrozole, An Aromatase Inhibitor, On Testosterone And Estrogen Production Of Domestic Chicken Embryos (Gallus Gallus), Abby E. Joseph
Honors Theses
The hypothalamic-pituitary-gonadal (HPG) axis is responsible for the production of the hormones testosterone and estradiol, and testosterone is thought to contribute to regulation of the axis through a negative feedback mechanism. Regulation by negative feedback involves the product of a pathway turning off that pathway when enough product is made. However, because the enzyme P450 aromatase converts testosterone to estradiol, estradiol may also contribute to regulation of the HPG axis and other phenomena that have been attributed to testosterone, like the inhibition of immune function. Previous studies have injected birds with an aromatase inhibitor (presumably reducing estradiol production) and shown …
Put Your Money Where Your Mouth Is: Reforming Organized Dentistry To Address Persistent Oral Health Disparities In The U.S.,
2019
Claremont Colleges
Put Your Money Where Your Mouth Is: Reforming Organized Dentistry To Address Persistent Oral Health Disparities In The U.S., Aparna Chintapalli
Pomona Senior Theses
The importance of oral health has been largely neglected from the conventional standards of healthcare in terms of public understanding & prioritization, the industrial infrastructure, and the scope of prevention & early-intervention services. Its adjunctive locus to the field of medicine has lead to the bifurcation of the oral cavity from the rest of the human body. As a result of this divide, there have been multiple factors that have allowed socially stratified oral health outcomes to manifest. This thesis examines the determinants of oral health disparities through a multidisciplinary lens (i.e. biology, public policy, infrastructure), and offers evidence of …
The Effects Of Bisphenol F On Embryonic Cardiac Output In Zebrafish,
2019
The University of Akron
The Effects Of Bisphenol F On Embryonic Cardiac Output In Zebrafish, Kyle Monnot
Williams Honors College, Honors Research Projects
Bisphenol F (BPF) is an analog compound of the xenoestrogen bisphenol A (BPA). BPA utilization has decreased dramatically due to its detrimental effects as an endocrine disrupter. In place of BPA, BPF is growing to be a ubiquitous chemical in epoxy resin manufacturing. Recent research has begun to investigate the possible endocrinal effects of BPF as an analog of BPA. This study was performed to examine the potential effects of BPF exposure on cardiac parameters of zebrafish (Danio rerio) embryos. Embryos were exposed to 50 µg/L BPF for 48 hours, and cardiac parameters (stroke volume, heart rate, and …
Stress-Dependent Regulation Of A Major Node Of The Insulin-Like Peptide Network That Modulates Survival,
2019
Wayne State University
Stress-Dependent Regulation Of A Major Node Of The Insulin-Like Peptide Network That Modulates Survival, Rashmi Chandra
Wayne State University Dissertations
Chronic stress disrupts insulin signaling, predisposing human populations to diabetes, cardiovascular disease, Alzheimer’s Disease, and other metabolic and neurological disorders, including post-traumatic disorders (PTSD). Thus, efficient recovery from stress optimizes survival. However, stress recovery in humans is difficult to study, but is much easier to dissect in model organisms. The worm genetic model Caenorhabditis elegans can switch between stressed and non-stressed states, and this switch is largely regulated by insulin signaling. Previously, the Alcedo lab proposed that insulin-like peptides (ILPs), which exist as multiple members of a protein family in both C. elegans and humans, implements a combinatorial coding strategy …
Characterizing Chromosomal Aberrations In Cells Deficient For Both Atm And Msh2,
2019
CUNY City College
Characterizing Chromosomal Aberrations In Cells Deficient For Both Atm And Msh2, Yeliz Inalman
Dissertations and Theses
Ataxia telangiectasia mutated (ATM) and mutS homologue 2 (MSH2) are important DNA repair proteins that participate in DNA repair pathways to maintain genomic integrity. Mice deficient for ATM and MSH2 mice are viable. However, ATM-/- mice show growth retardation, neurological defects, and spontaneous lymphomagenesis. MSH2-/- mice suffer from aggressive lymphoid tumors between two to five months of age and have increased microsatellite instability, which predisposes MSH2-/- mice to carcinomas. However, mice deficient in both ATM and MSH2 are unable to survive beyond postnatal day 21 (P21). The observed lethality in ATM-/-MSH2-/- mice may result …
Canonical Wnt Mechanisms In Neural Crest Induction,
2019
West Virginia University
Canonical Wnt Mechanisms In Neural Crest Induction, Mark Stephen Perfetto
Graduate Theses, Dissertations, and Problem Reports (ETD)
Canonical Wnt signaling is a pathway that is critical for normal development and the progression of disease. The canonical Wnt signaling pathway was put together carefully by synthesizing decades of research. Over those decades, canonical Wnt signaling was found to be crucial for nearly all aspects of development, but of importance to this thesis, is a key regulatory factor for the development of the highly migratory multipotent stem cells, the neural crest. As our knowledge of the importance of canonical Wnt signaling grew, research is being conducted to further our understanding of how canonical Wnt signaling communicates with other signaling …
Reprogramming Of Rat Hepatoma Cells With Fibroblast-Specific Protein Twist1,
2019
Eastern Illinois University
Reprogramming Of Rat Hepatoma Cells With Fibroblast-Specific Protein Twist1, Kezban Ucar Cifci
Masters Theses
In mammalian development, a complex system comprised of regulatory signals causes tissue distinction with unique structures as well as functions. Gene expression controls these functions through specific combinations of transcription factors and cofactors that influence cell differentiation by both activation and repression of genes.
Whole genome microarray studies of fibroblasts have identified candidate genes that can serve as master regulators of fibroblast identity. A previous study showed that Prrx1 and Snai2 play important roles in activating expression of fibroblast identity, and Snai2 overexpression in hepatoma cells (Fg14) activated expression of fibroblast specific genes. Moreover, Snai2 overexpression resulted in repression of …
Spag17 Deficiency Impairs Neuronal Cell Differentiation In Developing Brain,
2019
Virginia Commonwealth University
Spag17 Deficiency Impairs Neuronal Cell Differentiation In Developing Brain, Olivia J. Choi
Theses and Dissertations
The development of the nervous system is a multi-level, time-sensitive process that relies heavily on cell differentiation. However, the molecular mechanisms that control brain development remain poorly understood. We generated a knockout (KO) mouse for the cilia associated gene Spag17. These animals develop hydrocephalus and enlarged ventricles consistent with the role of Spag17 in the motility of ependymal cilia. However, other phenotypes that cannot be explained by this role were also present. Recently, a mutation in Spag17 has been associated with brain malformations and severe intellectual disability in humans. Therefore, we hypothesized that Spag17 plays a crucial role in …
Mob-Ndr Kinase Signaling Components Are Required For Epithelial Tube Formation In The Drosophila Follicular Epithelium,
2018
University of Nevada, Las Vegas
Mob-Ndr Kinase Signaling Components Are Required For Epithelial Tube Formation In The Drosophila Follicular Epithelium, Juan Carlos Duhart
UNLV Theses, Dissertations, Professional Papers, and Capstones
A major goal of developmental biology is to understand how a single fertilized cell can give rise to the many functional tissues and organs, of specific sizes and shapes, that make up the adult body plan. Over the last 25 years, developmental geneticists have uncovered much concerning the cell-to-cell communication systems that are necessary to build complex tissues and organs. For example, throughout development, cells communicate with their neighbors using specialized signaling molecules. These signals are instructive and provide “signal-receiving” cells with information about space and time. That is, signal-receiving cells “learn” precisely where they are located, and, how far …
Prioritizing Chemical Constituents In Tobacco Products And Smoke To Predict Developmental Osteotoxicity In Human Embryonic Stem Cells,
2018
California State University, San Bernardino
Prioritizing Chemical Constituents In Tobacco Products And Smoke To Predict Developmental Osteotoxicity In Human Embryonic Stem Cells, Joseph Madrid
Electronic Theses, Projects, and Dissertations
Though it is well known that tobacco related products can cause prenatal maldevelopment, very little is known on how tobacco products affect bone tissue as it develops in the embryo. Identifying which chemicals can induce the greatest harm to the prenatal skeletal system is an improbable task as there are over 7,000 chemicals in tobacco smoke alone. We hypothesized that the Toxicological Priority Index (ToxPI) program can be used to rank osteogenic cytotoxicity potential to aid in the assessment of what chemicals out of the thousands can cause osteogenic differentiation inhibition. ToxPI aggregates information from various assays and incorporates them …
Prenylation In The Moss Physcomitrella Patens,
2018
University of Louisville
Prenylation In The Moss Physcomitrella Patens, Noela Botaka, Susana Perez-Martinez, Liang Bao, Parul Singh, Mark Running
Posters-at-the-Capitol
Protein prenylation is a post-translational modification that involves the addition of lipid groups to the end of a target protein and is necessary for protein activity. Prenylation has important roles in the cell: targeting and localizing proteins to subcellular compartments and promoting protein-protein interactions. Recently, we have found Protein Prenyltransferase Alpha Subunit-like (PPAL), which shares structural similarities to known prenylation enzymes. However, the biochemical function of PPAL is still unknown. PPAL is present in a single copy in other plants examined to date but is present in two copies in moss. Knockouts in our lab of either PpPAL1 or PpPAL2 …
Effect Of Heat Stress On Bovine Follicular Development And Epigenetic Changes,
2018
Louisiana State University and Agricultural and Mechanical College
Effect Of Heat Stress On Bovine Follicular Development And Epigenetic Changes, Fabian Andres Diaz
LSU Doctoral Dissertations
Climate is one of the most important limiting factors in animal production. Cattle under the effect of heat stress have reduced fertility. Negative effects during gamete maturation and embryo development have been observed at the morphological, biochemical, transcriptional and developmental levels. Epigenetic mechanisms play a fundamental role in the regulation of gamete and embryo development. Several genes activated during gamete maturation and early embryo development are controlled by epigenetic mechanisms. There are no studies evaluating the effect of heat-stress on the epigenetic profile of bovine oocytes and embryos. Similarly, there is no information on the effect of heat stress on …
Effect Of Larval Starvation On Lipid Content Of Drosophila Melanogaster Over 15 Days,
2018
University of Nevada, Las Vegas
Effect Of Larval Starvation On Lipid Content Of Drosophila Melanogaster Over 15 Days, Fabian Leija, Allen Gibbs
LSAMP Poster Presentations
Starvation-resistant Drosophila melanogaster, common fruit flies, deriving from 121 generations of starvation selection, have resulted in genetically, behaviorally, and physiologically different individuals compared to non-resistant counterparts. Starvation-resistant Drosophila are more obese, containing twice as much lipids as control flies.This is a result of starvation-resistant fly larva feeding for 5 days and then entering the pupa stage while non-resistant flies only feed for 4 days.
In this experiment, we hope to answer the question of whether the starvation-resistant flies are genetically predisposed to be substantially more obese than wild populations or if it is a result of this alternate behavior …
Integration Of Bmp And Insulin/Igf-1 Signaling Regulates Multiple Homeostatic Functions In Caenorhabditis Elegans,
2018
CUNY Graduate Center
Integration Of Bmp And Insulin/Igf-1 Signaling Regulates Multiple Homeostatic Functions In Caenorhabditis Elegans, James F. Clark
Dissertations, Theses, and Capstone Projects
The maintenance of homeostatic functions is key to the survival and well-being of an organism. Regulation of homeostasis relies on varied inputs, both intrinsic and extrinsic, to potentiate a web of interconnected signaling relays. Insulin/IGF-1 signaling (IIS) is a well-known regulator of glucose and lipid metabolism, as well as having far reaching effects in other homeostatic mechanisms. On the other hand, bone morphogenetic protein (BMP), a member of the transforming growth factor beta signaling superfamily, is known for its role in differentiation and development, with only recent studies highlighting potential roles in metabolic homeostasis. Here we elucidate new functions for …
Crispr Knockouts Reveal An Endogenous Role For Ancient Neuropeptides In Regulating Developmental Timing In A Sea Anemone,
2018
University of Arkansas, Fayetteville
Crispr Knockouts Reveal An Endogenous Role For Ancient Neuropeptides In Regulating Developmental Timing In A Sea Anemone, Nagayasu Nakanishi, Mark Q. Martindale
Biological Sciences Faculty Publications and Presentations
Neuropeptides are evolutionarily ancient peptide hormones of the nervous and neuroendocrine systems, and are thought to have regulated metamorphosis in early animal ancestors. In particular, the deeply conserved Wamide family of neuropeptides—shared across Bilateria (e.g. insects and worms) and its sister group Cnidaria (e.g. jellyfishes and corals)—has been implicated in mediating life-cycle transitions, yet their endogenous roles remain poorly understood. By using CRISPR-Cas9-mediated reverse genetics, we show that cnidarian Wamide—referred to as GLWamide—regulates the timing of life cycle transition in the sea anemone cnidarian Nematostella vectensis. We find that mutant planula larvae lacking GLWamides transform into morphologically normal polyps …
Identification Of Three Required Positive Cis-Regulated Inputs Of The Sea Urchin Pigment Cell Gene Polyketide Synthase 1,
2018
Valdosta State University
Identification Of Three Required Positive Cis-Regulated Inputs Of The Sea Urchin Pigment Cell Gene Polyketide Synthase 1, Cristina Calestani, Preston Dean, Xiaoman Li
Georgia Journal of Science
Sea urchin pigment cells are single cells of mesodermal origin embedded in the aboral ectoderm. Strongylocentrotus purpuratus polyketide synthase 1 (Sp-PKS1) is required for the biosynthesis of the echinochrome pigment. Evidence suggests that pigment cells are immune cells. In order to reconstruct the gene regulatory network of pigment cells a bottom-up approach combined with comparative genomics has been used in this study. We compared the cis-regulatory regions of five pigment cell genes, Sp-Pks1, flavin monooxygenase 1, 2, and 3 (Sp-Fmo) and sulfotransferase (Sp-Sult), across three different species, Strongylocentrotus purpuratus, Mesocentrotus franciscanus …
