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Molecular and Cellular Neuroscience Commons

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2020

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Articles 31 - 60 of 77

Full-Text Articles in Molecular and Cellular Neuroscience

Modulating Matrix Metalloproteases And Inflammation In Huntington’S Disease, Alejandro Lopez Ramirez May 2020

Modulating Matrix Metalloproteases And Inflammation In Huntington’S Disease, Alejandro Lopez Ramirez

Natural Sciences and Mathematics | Biological Sciences Master's Theses

Huntington’s disease (HD) is a rare and incurable autosomal neurodegenerative disease affecting 1-10 in every 100,000 people in the world. There is no cure for HD and treatments available alleviate certain symptoms for short periods of time. Evidence suggests that neuropathology of HD begins with the proteolysis of the mutated Huntingtin (mHTT) protein. A variety of proteases, like the matrix metalloproteases, cleave mHTT creating proteinaceous fragments that are thought to be neurotoxic. As these fragments increase in the brain, the damage to neurons also increases, leading to chronic inflammation due to hyper reactive microglia and astrocytes attempting to minimize and …


Generation And Characterization Of A Rack1 Knockout Cell Line, Roy Missall May 2020

Generation And Characterization Of A Rack1 Knockout Cell Line, Roy Missall

Seton Hall University Dissertations and Theses (ETDs)

The µ-opioid receptor (MOR) is an important regulator of nociception, bearing the largest role in analgesia of all opioid receptors. This function has made MOR an effective drug-target for the clinical treatment of pain. However, opioid drugs such as morphine and fentanyl are highly addictive, and prolonged abuse can be fatal due to respiratory depression. A key determinant in the cellular and systemic responses to opioids is MOR. At the transcriptional level, MOR is positively regulated by the transcription factors, including poly-C binding protein 1 (PCBP1). Using the two-hybrid screening, PCBP1 was found to interact with receptor for activated C …


Characterization Of And Cellular Mechanisms Underlying Spinal Non-Viral Interleukin-10 Gene Therapy Formulated With D-Mannose For Treatment Of Peripheral Neuropathic Pain, Arden Grace Vanderwall May 2020

Characterization Of And Cellular Mechanisms Underlying Spinal Non-Viral Interleukin-10 Gene Therapy Formulated With D-Mannose For Treatment Of Peripheral Neuropathic Pain, Arden Grace Vanderwall

Biomedical Sciences ETDs

Anti-inflammatory intrathecal non-viral interleukin-10 (IL-10) gene therapy provides enduring relief of chronic pain in numerous animal pain models. Co-administration of the mannose receptor (MR) ligand D-mannose (DM) improves non-viral IL-10 gene therapeutic efficacy, but questions remain regarding which pain-relevant tissues are critical for non-viral transgene expression resulting in long-lasting pain relief. Additionally, the role of endogenous IL-10 in non-viral IL-10 therapeutic effects is completely unknown.

Chapter I is an Introduction to the studies detailed in this dissertation, providing a historical perspective of the field of neuroinflammation and a framework upon which neuroimmune processes intersect with mechanisms underlying pathological pain. The …


Expression Analyses Of Hippocampal And Cortical Proteins In A Rat Model For Alzheimer’S Disease, Rangon Islam May 2020

Expression Analyses Of Hippocampal And Cortical Proteins In A Rat Model For Alzheimer’S Disease, Rangon Islam

Theses and Dissertations

Currently, Alzheimer’s disease (AD) has no cure. Using a rat AD model, we identified aberrantly expressed proteins during pre-pathology as potential biomarkers. The expression of certain biomarkers was reversed by diazoxide, a repurposed hypertension drug. These results suggest that drug repurposing at an early stage of AD has therapeutic potential.


Hiv-1 Tat Interactions With Opioids Are Modulated By Progesterone And Estradiol, Dejun Jackson May 2020

Hiv-1 Tat Interactions With Opioids Are Modulated By Progesterone And Estradiol, Dejun Jackson

Honors Theses

HIV infection and combined substance abuse are comorbid epidemics. Previous studies show that concurrent opioid drug use may potentiate HIV-1-mediated neurotoxicity partly via interactions with opioids. Preclinical studies suggest that the HIV-1 trans-activator of transcription (Tat), an HIV regulatory protein, can synergize with opioids to exacerbate its already neurotoxic effects. However, its interactions with clinical opioids, such as oxycodone, have yet to be elucidated. Additionally, Tat disrupts a number of systems including the dopaminergic system, which contribute to its capacity to potentiate the rewarding effects of abused drugs. Although the neurotoxic effects of Tat may be inhibited by gonadal steroids …


Sexually Dimorphic Alterations In Brain Morphology Of Astrocyte Conditional System Xc- Knockout Mice, Gabrielle Emily Samulewicz May 2020

Sexually Dimorphic Alterations In Brain Morphology Of Astrocyte Conditional System Xc- Knockout Mice, Gabrielle Emily Samulewicz

Biology - All Scholarship

Astrocytes play a vital role in orchestrating the precise brain wiring that occurs during development and are essential for maintaining homeostasis into adulthood. The cystine/glutamate antiporter, system xc-, in the central nervous system is especially abundant in astrocytes and itself is known to contribute importantly to the basal extracellular glutamate concentration as well as the intracellular and extracellular glutathione levels, either of which, if perturbed, could alter brain development and/or contribute to degeneration. Thus, to determine whether loss of astrocyte system xc- might alter brain morphology, I studied a conditional astrocyte system xc- knockout mouse (AcKO). Tissue was harvested from …


Do Innexins Function In The Extreme Cold Response Of Drosophila Melanogaster, Madison A. Ward May 2020

Do Innexins Function In The Extreme Cold Response Of Drosophila Melanogaster, Madison A. Ward

Masters Theses, 2020-current

Nociception is an organism’s ability to detect, process and reflexively respond to potentially damaging stimuli. While the process of nociception has clear, protective advantages, inappropriate and prolonged signaling can lead to chronic pain in humans. Nociception is a vital and genetically conserved process, thus cold nociception in Drosophilaprovides a model for identifying molecular components required for nociceptor function in vertebrates. Drosophila Class III dendritic arborization (da) neurons have previously been shown to be involved in the cold nociceptive response. Due to the importance of fast response to damaging stimuli, we hypothesize that electrical synapses are involved in cold nociception. …


The Current Neuroscientific Understanding Of Alzheimer's Disease, Rachel A. Brandes May 2020

The Current Neuroscientific Understanding Of Alzheimer's Disease, Rachel A. Brandes

Pursuit - The Journal of Undergraduate Research at The University of Tennessee

Alzheimer’s disease is a degenerative neurological illness characterized by the deterioration of brain regions implicated in memory and cognitive function. While researchers have yet to find a cure or effective treatment, they have gained a better understanding of its pathology and development. Through years of neuroscience research, scientists have discovered much of what happens in the brain during Alzheimer’s disease onset and how this causes its symptoms; many hypotheses regarding this aspect of the illness involve temporal lobe atrophy, neurofibrillary tangles, and amyloid plaques. Although Alzheimer’s disease affects millions of people every day, it seems that most are unaware of …


Neurocognitive Risk Factors And Current Intervention Strategies For Survivors Of Pediatric Acute Lymphoblastic Leukemia, Abigail Taber May 2020

Neurocognitive Risk Factors And Current Intervention Strategies For Survivors Of Pediatric Acute Lymphoblastic Leukemia, Abigail Taber

Senior Honors Theses

The improved survival rate for pediatric cancer patients is one of the greatest triumphs of recent medicine, but the late effects faced by these survivors have been uncovered through this new population of survivors. Many survivors of pediatric acute lymphoblastic leukemia (ALL) experience cognitive deficits in areas such as attention, memory, processing speed, and academic achievement following cancer treatment. Recent research has pointed to chemotherapeutic agents, host risk factors, and genetic predispositions as perpetrators of these deficits, although other factors are also under investigation. Consequently, the search for appropriate interventions for the amelioration of these deficits has dominated the literature …


The Role Of Dopamine In Decision Making Processes In Drosophila Melanogaster, Michelle C. Bowers May 2020

The Role Of Dopamine In Decision Making Processes In Drosophila Melanogaster, Michelle C. Bowers

Undergraduate Honors Theses

Understanding the neural processes that mediate decision making is a relatively new field of investigation in the scientific community. With the ultimate goal of understanding how humans decide between one path and another, simpler models such as Drosophila Melanogaster, the common fruit fly, are often utilized as a way of determining the neural circuits involved in these decision-making processes. One of the most important decisions flies make is the decision of where to lay their eggs (oviposit). Choosing the proper substrate upon which to lay eggs is a crucial decision that can ultimately impact their fecundity. This paper investigates the …


The Role Of Diet In The Onset Of Depression: A Biochemical Connection Between Nutrition And Mental Health, Katlin Wildeman Apr 2020

The Role Of Diet In The Onset Of Depression: A Biochemical Connection Between Nutrition And Mental Health, Katlin Wildeman

Senior Honors Theses

Depression is a major clinical concern, having a complex onset and the presence of multiple, often unidentifiable causes. Depression affects millions of individuals worldwide, with a high prevalence in regions of the world with a Western-style diet as compared to regions with a Mediterranean diet. A Western-style diet consists of foods high in sugar, fat, and processed meats and grains, whereas the Mediterranean diet contains significantly more vegetables, fruits, lean meats, and whole grains. The link between diet and mental health disorders has implications for individuals of all ages who are hesitant to turn to medication. In addition to presenting …


Polyglucosan Body Structure In Lafora Disease, M. Kathryn Brewer, Jean-Luc Putaux, Alberto Rondon, Annette M. Uittenbogaard, Mitchell A. Sullivan, Matthew S. Gentry Apr 2020

Polyglucosan Body Structure In Lafora Disease, M. Kathryn Brewer, Jean-Luc Putaux, Alberto Rondon, Annette M. Uittenbogaard, Mitchell A. Sullivan, Matthew S. Gentry

Lafora Epilepsy Cure Initiative Faculty Publications

Abnormal carbohydrate structures known as polyglucosan bodies (PGBs) are associated with neurodegenerative disorders, glycogen storage diseases (GSDs), and aging. A hallmark of the GSD Lafora disease (LD), a fatal childhood epilepsy caused by recessive mutations in the EPM2A or EPM2B genes, are cytoplasmic PGBs known as Lafora bodies (LBs). LBs result from aberrant glycogen metabolism and drive disease progression. They are abundant in brain, muscle and heart of LD patients and Epm2a-/- and Epm2b-/- mice. LBs and PGBs are histologically reminiscent of starch, semicrystalline carbohydrates synthesized for glucose storage in plants. In this study, we define LB architecture, …


Developing Tadpoles Exhibit Metabolic And Organ Size Plasticity In Competitive Rearing Environments, Emma Kimberly Apr 2020

Developing Tadpoles Exhibit Metabolic And Organ Size Plasticity In Competitive Rearing Environments, Emma Kimberly

Undergraduate Honors Thesis Projects

Abstract

Plasticity is the ability of an organism to respond to environmental variation by expressing different phenotypes. In Red-eyed treefrog tadpoles, Agalychnis callidryas, competitive environments induce long guts and short tails. Despite having a larger gut, tadpoles reared with competition do not increase intake when food becomes available. Pilot data suggest that this is because they have lower metabolic rates. The ability to maintain a larger gut with a depressed metabolic rate is confusing because guts are energetically expensive, and suggests that another energetic trade-off is taking place. The purpose of this study was to investigate the effect of …


Effect Of Reduced Neurogenesis On Microglial Activation, Amelia Smith Apr 2020

Effect Of Reduced Neurogenesis On Microglial Activation, Amelia Smith

Honors Scholars Collaborative Projects

The geriatric population of America has grown exponentially in the past century. Health degradations and expensive medical care are characteristic of this population with many of these costs due to age-related cognitive decline. It is essential to completely understand the mechanisms of normal and abnormal aging in the search for treatments for cognitive decline. A reduction of neurogenesis is a common factor in aging, but this reduction is even more drastic in individuals experiencing cognitive decline. It is unclear what effect reduced neurogenesis has on the extracellular environment, including glial cells. In particular, changes in microglial activation could be related …


Elucidation Of The Mechanisms By Which Anesthetics Induce Blood-Brain Barrier Breakdown And Delirium In The Elderly, George A. Godsey Ii Apr 2020

Elucidation Of The Mechanisms By Which Anesthetics Induce Blood-Brain Barrier Breakdown And Delirium In The Elderly, George A. Godsey Ii

Graduate School of Biomedical Sciences Theses and Dissertations

Delirium is a highly prevalent neuropsychiatric or neurocognitive disorder that presents a major problem to modern healthcare. Patients suffering from delirium normally have a worse prognosis, prolonged hospital stay, increased hospital cost, long-term cognitive impairment, and higher mortality rates. Many factors can predispose one to develop delirium, which makes treating this disorder a daunting task. Unfortunately, delirium is the most common psychiatric syndrome found in the hospital setting. In fact, a form of delirium known as postoperative delirium (POD) is one of the most common postoperative complications faced by elderly patients undergoing surgery.

POD is a major problem in modern …


Serum-Based Biomarkers And Magnetic Resonance Imaging Following Mild Traumatic Brain Injury In Collegiate Athletes Post Return-To-Play, Taylor R. Susa Apr 2020

Serum-Based Biomarkers And Magnetic Resonance Imaging Following Mild Traumatic Brain Injury In Collegiate Athletes Post Return-To-Play, Taylor R. Susa

All NMU Master's Theses

Recently there has been an increase in the use of MRI (Magnetic Resonance Imaging), to measure the effects of traumatic brain injury (TBI). Proteins such as BDNF, S100B, UCH-L1, and Tau have been found to have altered levels in blood serum after TBI. However, there is limited knowledge about the relationship between serum-based and MRI-based biomarkers in concussed athletes post return-to-play. This study aimed to bridge this gap by collecting serum samples from 42 participants across two groups. The first group (n = 21) consisted of recently cleared to return-to-play collegiate athletes after experiencing a sports-related concussion. The second group …


The Effects Of A New Mutation In Lis1 And Its Potential Role In Autism Spectrum Disorder, John A. Slovensky Apr 2020

The Effects Of A New Mutation In Lis1 And Its Potential Role In Autism Spectrum Disorder, John A. Slovensky

Senior Theses

LIS1 is a protein, particularly concentrated in the brain, that is important in regulating the movement and transport capabilities of dynein. Dynein is protein that can move along pathways in the cell, carrying various cellular components and also helping brain cells migrate. These two proteins are crucial during the development of the nervous system, and mutations in them can lead to lissencephaly, a disorder in which the brain does not form properly. This disease causes patients to develop cognitive-motor defects and seizures that can lead to early death. While all previously identified mutations in LIS1 are known to cause lissencephaly, …


Tamalin/Gras-1 Connects Glutamate Receptor Activity To The Insulin/Igf Signaling Cascade To Regulate Neuroprotection In A Nematode Model Of Excitotoxicity, Ayesha Chowdhury Feb 2020

Tamalin/Gras-1 Connects Glutamate Receptor Activity To The Insulin/Igf Signaling Cascade To Regulate Neuroprotection In A Nematode Model Of Excitotoxicity, Ayesha Chowdhury

Dissertations, Theses, and Capstone Projects

Brain ischemia is a major cause of debilitation and death in the United States. Excitotoxicity, a condition that arises from the accumulation of glutamate (Glu) in the synapse that leads to overactivation of Glu receptors (GluRs), is the major mechanism of neuronal damage in brain ischemia / stroke. Although it is commonly acknowledged that over activation of GluRs leads to neurodegeneration, it has been recently shown that even during excitotoxicity Glu has a concurrent important role in regulating neuroprotection. GluR-activated transcription factors seem to mediate this neuroprotection, but it remains unclear which signaling cascades and transcription factors are regulated by …


Distributions Of Hypothalamic Neuron Populations Co-Expressing Tyrosine Hydroxylase And The Vesicular Gaba Transporter In The Mouse., Kenichiro Negishi, Mikayla Payant, Kayla Schumacker, Gabor Wittman, Rebecca Butler, Ronald Lechan, Harry Steinbusch, Arshad Khan, Melissa Chee Jan 2020

Distributions Of Hypothalamic Neuron Populations Co-Expressing Tyrosine Hydroxylase And The Vesicular Gaba Transporter In The Mouse., Kenichiro Negishi, Mikayla Payant, Kayla Schumacker, Gabor Wittman, Rebecca Butler, Ronald Lechan, Harry Steinbusch, Arshad Khan, Melissa Chee

Selected Works Temporary Series

No abstract provided.


Distributions Of Hypothalamic Neuron Populations Co-Expressing Tyrosine Hydroxylase And The Vesicular Gaba Transporter In The Mouse., Negishi, Mikayla Payant, Kayla Schumacker, Gabor Wittman, Rebecca Butler, Ronald Lechan, Harry Steinbusch, Arshad Khan, Melissa Chee Jan 2020

Distributions Of Hypothalamic Neuron Populations Co-Expressing Tyrosine Hydroxylase And The Vesicular Gaba Transporter In The Mouse., Negishi, Mikayla Payant, Kayla Schumacker, Gabor Wittman, Rebecca Butler, Ronald Lechan, Harry Steinbusch, Arshad Khan, Melissa Chee

Departmental Papers (Biology)

No abstract provided.


Transcriptome Analysis Of Neuro-2a Cells Treated With Asiatic And Madecassic Acid, Fatimah M. Alqam Jan 2020

Transcriptome Analysis Of Neuro-2a Cells Treated With Asiatic And Madecassic Acid, Fatimah M. Alqam

Masters Theses

Traditional herbal medicine is ingrained as a source of therapeutic compounds to medicate various diseases. The family Araliaceae (Ginseng family) is rich in traditional medicine species, such as Centella asiatica (CA). For many centuries, CA has been used by the indigenous Indian and Chinese in Ayurvedic and traditional medicine, respectively, to improve intelligence, learning, memory, and cognitive performance. Previous studies on cell culture and animal models supported the beneficial effects of CA on the nervous system. However, the exact composition of CA extract and its molecular mechanism that leads to neuroprotection is still unclear. We examined the effect of asiatic …


Focal Augmentation Of Somatostatin Interneuron Function And Subsequent Circuit Effects In Developmentally Malformed, Epileptogenic Cortex, Nicole Ekanem Jan 2020

Focal Augmentation Of Somatostatin Interneuron Function And Subsequent Circuit Effects In Developmentally Malformed, Epileptogenic Cortex, Nicole Ekanem

Theses and Dissertations

Drug-resistant epilepsy (DRE) is a common clinical sequela of developmental cortical malformations such as polymicrogyria. Unfortunately, much remains unknown about the aberrant GABA-mediated circuit alterations that underlie DRE's onset and persistence in this context. To address this knowledge gap, we utilized the transcranial freeze lesion model in optogenetic mice lines (Somatostatin (SST)-Cre or Parvalbumin (PV)-Cre x floxed channelrhodopsin-2) to dissect features of the SST, PV, and pyramidal neuron microcircuit that are potentially associated with DRE. Investigations took place within developmental microgyria’s known pathological substrate, the adjoined and epileptogenic paramicrogyral region (PMR). As well, microcircuit relationships within the previously unexplored range …


Cell-Type Specific Extracellular Matrix Signaling In The Opioid-Addicted Synapse, Vivian C. Chioma Jan 2020

Cell-Type Specific Extracellular Matrix Signaling In The Opioid-Addicted Synapse, Vivian C. Chioma

MUSC Theses and Dissertations

To date, heroin abuse is a leading cause of drug overdose-related deaths in the United States, highlighting a need for further research elucidating effects of maladaptive neuroadaptations following prolonged heroin use. Activation of the tetrapartite synapse in nucleus accumbens core (NAcore), which comprises of pre- and post-synapse, astrocytic processes, and surrounding extracellular matrix (ECM), has been linked to increased relapse vulnerability. Specifically, degradation of ECM by activated matrix metalloproteinases (MMPs) is involved in extracellular synaptic remodeling both constitutively and transiently in extinguished and drug seeking conditions, respectively. Although increases in MMP-2,9 fluorescence can be localized to soma and dendritic processes …


Tissue-Specific Regulation Of Pnmt By Intron Retention During Neural Development, Meeti Mehta Jan 2020

Tissue-Specific Regulation Of Pnmt By Intron Retention During Neural Development, Meeti Mehta

Digital Repository: Showcase of Undergraduate Research Excellence

No abstract provided.


Involvement Of The Sigma-1 Receptor In Methamphetamine-Mediated Changes To Astrocyte Structure And Function, Richik Neogi Jan 2020

Involvement Of The Sigma-1 Receptor In Methamphetamine-Mediated Changes To Astrocyte Structure And Function, Richik Neogi

Theses and Dissertations--Medical Sciences

Methamphetamine is a highly addictive psychostimulant drug. There are currently no FDA-approved pharmacological treatments for methamphetamine addiction. Pharmacologically, (+)-methamphetamine is a dopamine releasing agent and dopamine transporter substrate that redistributes dopamine from intracellular vesicles via the vesicular monoamine transporter 2 (VMAT2) and reverses the direction of dopamine transport in the dopamine transporter. Methamphetamine, cocaine, and other drugs of abuse are also sigma-1 receptor ligands, and previous studies have demonstrated the role of the sigma-1 receptor in modulating the behavioral and cellular effects of these drugs. However, almost all these studies were conducted in cell culture systems or with emphasis on …


Combination Of Investigational Cell-Based Therapy And Deep Brain Stimulation To Alter The Progression Of Parkinson’S Disease, Nader El Seblani Jan 2020

Combination Of Investigational Cell-Based Therapy And Deep Brain Stimulation To Alter The Progression Of Parkinson’S Disease, Nader El Seblani

Theses and Dissertations--Pharmacy

Parkinson’s disease (PD) is the second most common neurodegenerative disorder and the motor symptoms are caused by progressive loss of midbrain dopamine neurons. There is no current treatment that can slow or reverse PD. Our current “DBS-Plus” clinical trial (NCT02369003) features the implantation in vivo of autologous Schwann cells (SCs) derived from a patient’s sural nerve into the substantia nigra pars compacta (SNpc) in combination with Deep Brain Stimulation (DBS) therapy for treating patients with advanced PD.

The central hypothesis of our research is that transdifferentiated SCs within conditioned nerve tissue will deliver pro-regenerative factors to enhance the survival of …


Divergence In Neuronal Calcium Dysregulation In Brain Aging And Animal Models Of Ad, Adam Ghoweri Jan 2020

Divergence In Neuronal Calcium Dysregulation In Brain Aging And Animal Models Of Ad, Adam Ghoweri

Theses and Dissertations--Pharmacology and Nutritional Sciences

Neuronal calcium dysregulation first garnered attention during the mid-1980’s as a key factor in brain aging, which led to the formulation of the Ca2+ hypothesis of brain aging and dementia. Indeed, many Ca2+-dependent cellular processes that change with age, including an increase in the afterhyperpolarization, a decrease in long-term potentiation, an increased susceptibility to long-term depression, and a reduction in short-term synaptic plasticity, have been identified. It was later determined that increased intracellular Ca2+ with age was due to increased Ca2+ channel density, elevated release from intracellular Ca2+ stores, and decreased Ca2+ buffering …


Apoe As A Metabolic Regulator In Humans, Mice, And Astrocytes, Brandon C. Farmer Jan 2020

Apoe As A Metabolic Regulator In Humans, Mice, And Astrocytes, Brandon C. Farmer

Theses and Dissertations--Physiology

Altered metabolic pathways appear to play central roles in the pathophysiology of late-onset Alzheimer’s disease (AD). Carrier status of the E4 allele of the APOE gene is the strongest genetic risk factor for late-onset AD, and increasing evidence suggests that E4 carriers may be at an increased risk for neurodegeneration based on inherent metabolic impairments. A new appreciation is forming for the role of APOE in cerebral metabolism, and how nutritional factors may impact this role. In chapter 1, the literature on nutritional interventions in E4 carriers aimed at mitigating disease risk is reviewed. Studies investigating the mechanism by which …


Intracellular Localization Of The Novel Polyq Protein Fam171b, Dulanjani Rajaguru Jan 2020

Intracellular Localization Of The Novel Polyq Protein Fam171b, Dulanjani Rajaguru

All Graduate Theses, Dissertations, and Other Capstone Projects

FAM171B is a relatively uncharacterized protein that contains fourteen consecutive glutamine residues within its primary amino acid sequence; thus it is a polyglutamine (polyQ) protein. PolyQ proteins are interesting because mutations within the polyQ tract have been linked to a number of severe neurodegenerative diseases including Huntingtons Disease (HD). To date, there are minimal published data regarding FAM171B and its molecular function, such that both expression levels and intracellular localization have yet to be definitively determined. Using immunohistochemical and in situ hybridization analyses, our lab has recently found that FAM171B is expressed throughout the mouse brain. This current study attempts …


Targeting The Nt17 Of The Huntingtin Protein Via Natural And Chemical Modifications: Impact On Aggregation And Membrane Interactions, Faezeh Sedighi Jan 2020

Targeting The Nt17 Of The Huntingtin Protein Via Natural And Chemical Modifications: Impact On Aggregation And Membrane Interactions, Faezeh Sedighi

Graduate Theses, Dissertations, and Problem Reports (ETD)

Huntington Disease (HD) is a fatal neurodegenerative disorder caused by an expanded polyglutamine domain (polyQ) in the first exon of the huntingtin protein (htt-exon1). The major hallmark of HD is the accumulation of aggregates into proteinaceous inclusion bodies. PolyQ expansion in huntingtin promotes self-assembly into a variety of toxic aggregates such as oligomers, fibrils, and amorphous aggregates. The resulting heterogeneous mixture of distinct species makes it difficult to assign a toxic function to specific aggregate structures. In addition, htt interacts with a variety of membranous surfaces. The first 17 amino acids (Nt17) of htt directly flanking the polyQ domain functions …