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2016

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Articles 691 - 720 of 820

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

The Nobel Prize In Chemistry 2015: Exciting Discoveries In Dna Repair By Aziz Sancar, David K. Orren Jan 2016

The Nobel Prize In Chemistry 2015: Exciting Discoveries In Dna Repair By Aziz Sancar, David K. Orren

Toxicology and Cancer Biology Faculty Publications

On October 7, 2015, the Nobel Prize in Chemistry for 2015 was awarded to three deserving scientists for their pioneering research on DNA repair. Tomas Lindahl was recognized for studies that uncovered the inherent instability of DNA as well as the mechanism of the base excision repair pathway, Paul Modrich for characterization of the mismatch repair pathway, and Aziz Sancar for mechanistic elucidation of the nucleotide excision repair (NER) pathway. For me, the announcement of these awards in my area of research was extremely gratifying, particularly so because Aziz was my mentor during my Ph.D. studies that examined the steps …


High Borate Glasses For The Controlled Release Of Therapeutic Metal Ions, Kathleen O'Connell Jan 2016

High Borate Glasses For The Controlled Release Of Therapeutic Metal Ions, Kathleen O'Connell

Theses

Within the biomaterial community significant effort has been directed towards engineering materials that induce precise host responses, which are tailored to specific applications. However, this has also seen an increase in the complexity of some biomaterials, which is being increasingly criticised within the literature, as it is attributed to hindering their clinical utility. In this context the release of therapeutic metal ions from glass-based biomaterials have been shown to promote hard tissue repair and regeneration through angiogenesis and osteogenesis processes. Within this thesis project two separate quaternary high borate glass systems were prepared containing the therapeutic metal ions strontium and …


Novel Cell Penetrating Peptide-Adaptors Effect Intracellular Delivery And Endosomal Escape Of Protein Cargos, John C. Salerno, Verra M. Ngwa, Scott J. Nowak, Carol A. Chrestensen, Allison N. Healey, Jonathan L. Mcmurry Jan 2016

Novel Cell Penetrating Peptide-Adaptors Effect Intracellular Delivery And Endosomal Escape Of Protein Cargos, John C. Salerno, Verra M. Ngwa, Scott J. Nowak, Carol A. Chrestensen, Allison N. Healey, Jonathan L. Mcmurry

Faculty Articles

The use of cell penetrating peptides (CPPs) as biomolecular delivery vehicles holds great promise for therapeutic and other applications, but development has been stymied by poor delivery and lack of endosomal escape. We have developed a CPP-adaptor system capable of efficient intracellular delivery and endosomal escape of user-defined protein cargos. The cell penetrating sequence of HIV transactivator of transcription was fused to calmodulin, which binds with subnanomolar affinity to proteins containing a calmodulin binding site. Our strategy has tremendous advantage over prior CPP technologies because it utilizes high affinity noncovalent, but reversible coupling between CPP and cargo. Three different cargo …


Chlamydia Trachomatis Transformants Show A Significant Reduction In Rates Of Invasion Upon Removal Of Key Tarp Domains, Christopher Parrett Jan 2016

Chlamydia Trachomatis Transformants Show A Significant Reduction In Rates Of Invasion Upon Removal Of Key Tarp Domains, Christopher Parrett

Electronic Theses and Dissertations

Chlamydia trachomatis is an obligate, intracellular bacterium which is known to cause multiple human infections including nongonococcal urethritis (serovars D-K), lymphogranuloma venereum (serovars L1, L2, L3) and trachoma (serovars A-C). The infectious form of the bacterium, called the elementary body (EB), harbors a type III secreted effector known as Tarp (translocated actin recruiting phosphoprotein) which is a candidate virulence factor and is hypothesized to play a role in C. trachomatis' ability to invade and grow within epithelial cells in a human host. C. trachomatis L2 Tarp harbors five unique protein domains which include the Phosphorylation Domain, the Proline Rich Domain, …


Attempted Identification Of The Calcium-Dependent Sodium Channel Gene In Paramecium Tetraurelia Using Rnai, Gwendolyn Kuzmishin Jan 2016

Attempted Identification Of The Calcium-Dependent Sodium Channel Gene In Paramecium Tetraurelia Using Rnai, Gwendolyn Kuzmishin

Senior Independent Study Theses

Ion channels play an important role in the swimming behavior of Paramecium tetraurelia. Electrophysiological experiments indicate that a calcium-dependent sodium channel exists in Paramecium, but a gene has not been identified for this channel. It is hypothesized that this channel evolved from a voltage-dependent sodium channel after a whole genome duplication event. In this paper, 13 candidate genes were identified from the Paramecium genome based on their similarity to a reference human voltage-dependent sodium channel. Bioinformatics analysis of the selectivity filter of these putative ion channel genes suggested that at least 8 of the candidate genes were sodium channels …


Investigation Of Dna Interaction With Bis-Cationic Imidazolium Salts, Kyle Daily 6440928 Jan 2016

Investigation Of Dna Interaction With Bis-Cationic Imidazolium Salts, Kyle Daily 6440928

Williams Honors College, Honors Research Projects

Imidazolium salt compounds have shown promise in vitro against non-small cell lung cancer (NSCLC) lines, but the exact mechanism of activity these compounds is still unknown. Due to their planar aromatic structure, we hypothesized that our bis-cation imidazolium salt series could act through DNA intercalation similar to known intercalators ethidium bromide, acridine orange, and echinomycin. Here, we tested bis-cation imidazolium salts with linkers of 2, 4, 10, and 12 carbons for DNA intercalation via viscosity and fluorescent intercalator displacement (FID) assays. Despite some solubility issues that may have decreased results, we found that our butyl and dodecyl linked compounds had …


Lipid-Protein Interactions Via Fluorescence Quenching In Small Unilamellar Vesicles, Talia Kordahi Jan 2016

Lipid-Protein Interactions Via Fluorescence Quenching In Small Unilamellar Vesicles, Talia Kordahi

Williams Honors College, Honors Research Projects

Studying peptide interactions with model membranes have aided in understanding protein-lipid interactions more clearly. In this report, fluorescent small unilamellar vesicles (SUVs) of a known composition were made. Two peptides, RND1 and MARCKS, were also fluorescently labeled and added to a solution of SUVs. The interactions between these were observed via fluorescence quenching, read out with a spectrofluorimeter. In addition, two environments of buffer were tested: 1X PBS and 0.1X PBS. After obtaining data, it was concluded that MARCKS quenched the SUVs more than RND1. This could be due to the presence of more lysine amino acids in MARCKS, which …


The Role Of Tgfβ1 And Ep Receptors In The Differentiation Of Normal And Diseased Lung Fibroblasts, Madison A. Hexter Jan 2016

The Role Of Tgfβ1 And Ep Receptors In The Differentiation Of Normal And Diseased Lung Fibroblasts, Madison A. Hexter

Williams Honors College, Honors Research Projects

Fibroblasts, and their differentiation into myofibroblasts, are important in the pathology of several lung diseases including asthma and idiopathic pulmonary fibrosis (IPF). The differentiation process is dependent on several factors, such as soluble factors like transforming growth factor beta 1 (TGFβ1) and mechanical signals such as matrix stiffness. Additionally, the soluble arachidonic acid metabolite Prostaglandin E2 (PGE2) prevents TGFβ1 induced differentiation of fibroblasts to myofibroblasts, but the molecular mechanism is not completely understood15. Transient Receptor Potential Vanilloid 4 (TRPV4), a mechanosensitive ion channel, has previously been implicated in the differentiation of cardiac fibroblasts12,13. …


Comparative Proteomic Analysis Of Extracellular Vesicles From Prostate Cancer-Derived Cell Lines, Gloria Polanco Jan 2016

Comparative Proteomic Analysis Of Extracellular Vesicles From Prostate Cancer-Derived Cell Lines, Gloria Polanco

Open Access Theses & Dissertations

Prostate cancer (PCa) is the leading non-cutaneous malignancy and the second deadliest among American men. PCa mortality rates among African American men are much higher than any other ethnic group, and the same is true for men of African ancestry world-wide. There is also a lack of reliable diagnostic markers and effective treatment options. Extracellular vesicles (EVs) have been observed to play an important role in cancer processes such as promotion of tumor growth and metastasis. They are also a promising source of diagnostic markers. This study addresses these problems by studying the proteome of EVs derived from PCa cells …


Identification And Characterization Of Small Molecules Targeting Fkbp52 As A Novel Treatment For Prostate Cancer, Naihsuan C. Guy Jan 2016

Identification And Characterization Of Small Molecules Targeting Fkbp52 As A Novel Treatment For Prostate Cancer, Naihsuan C. Guy

Open Access Theses & Dissertations

Prostate cancer (PCa) is one of the most commonly diagnosed diseases and the second leading cause of cancer deaths among men worldwide. Its growth is dependent upon androgen receptor (AR) signaling and the mainstay for treatment is hormone-ablation therapy using antiandrogens and/or androgen-deprivation therapies (ADT). Treatment of PCa with antiandrogens and/or ADT are initially effective; they act to repress the AR by directly competing with androgens for the ligand binding domain (LBD) and prevent activation of the receptor resulting in tumor regression. Unfortunately, the resistance to these treatments invariably emerges and results in a much more aggressive form of tumor …


Two-Photon Excitation Based Photochemistry And Neural Imaging, Kevin Andrew Hatch Jan 2016

Two-Photon Excitation Based Photochemistry And Neural Imaging, Kevin Andrew Hatch

Open Access Theses & Dissertations

Two-photon microscopy is a fluorescence imaging technique which provides distinct advantages in three-dimensional cellular and molecular imaging. The benefits of this technology may extend beyond imaging capabilities through exploitation of the quantum processes responsible for fluorescent events. This study utilized a two-photon microscope to investigate a synthetic photoreactive collagen peptidomimetic, which may serve as a potential material for tissue engineering using the techniques of two-photon photolysis and two-photon polymerization. The combination of these techniques could potentially be used to produce a scaffold for the vascularization of engineered three-dimensional tissues in vitro to address the current limitations of tissue engineering. Additionally, …


Defining And Characterizing The Step In The Hiv-1 Viral Life Cycle Affected By Fullerene Derivatives, Zachary Sean Martinez Jan 2016

Defining And Characterizing The Step In The Hiv-1 Viral Life Cycle Affected By Fullerene Derivatives, Zachary Sean Martinez

Open Access Theses & Dissertations

Fullerene derivatives, both C60 and C70, were synthesized and characterized to test their activity against HIV-1 infection. The derivatives tested have previously been reported to inhibit HIV-1 replication and/or in vitro activity of reverse transcriptase. It was found that viruses produced in the presence of low micromolar concentrations of most of these fullerene derivatives exhibit a reduction in viral infectivity greater than 99%. Quantification of virion-associated viral RNA and p24 indicates that RNA packaging and viral production were unremarkable in these viruses. These compounds did not affect infectivity of mature virions, indicating no effect on the early steps of the …


Elucidating The Molecular Mechanism Of Action By Which Rs1-208b Induces Apoptosis In Hematological Cancers, Ruben Israel Calderon Jan 2016

Elucidating The Molecular Mechanism Of Action By Which Rs1-208b Induces Apoptosis In Hematological Cancers, Ruben Israel Calderon

Open Access Theses & Dissertations

The 26S proteasome has been successfully targeted to treat multiple myeloma. However, the effect can sometimes be reversed as cells acquire resistance to chemotherapy. Recently, combining proteasome inhibitors with indirect proteasome inhibitors has been proposed in order to delay and even reverse resistance. Small molecules derived from 4-piperidinone that maintain an unsaturated β-carbonyl group are thought to interact with the thiol group of catalytically active cysteine residues in deubiquitinases that associate with the 26S proteasome, effectively inhibiting the proteasome.

RS1-208b was selected following a high-throughput screening of a small library of 4-piperidinone derived curcumin structural analogs due to its selectivity …


Vascularization In Interconnected 3d Printed Ti-6al-4v Foams With Hydrogel Matrix For Biomedical Bone Replacement Implants, Victor Correa Jan 2016

Vascularization In Interconnected 3d Printed Ti-6al-4v Foams With Hydrogel Matrix For Biomedical Bone Replacement Implants, Victor Correa

Open Access Theses & Dissertations

Abstract:

Vascularization or angiogenesis on newly implanted metal orthopedic implants has remained a challenge in the field of tissue engineering. In this research, an interconnected foam structure of Ti-6Al-4V was micro-fabricated by Electron Beam Melting (EBM) technique. The foam in question has a density of 1.77g/cm3 with 60% porosity and a tensile strength of 18GPa. An Extracellular Matrix based hydrogel was added as an aqueous matrix to the foam in question. Hypoxia mimetic stress has been closely related to many wound healing biomedical applications as it increases survival and proliferation molecular signals. To that end, increased expression of Hypoxia-Inducible Factor-1α …


Improved Sugar Yields From Biomass Sorghum Feedstocks: Comparing Low‑Lignin Mutants And Pretreatment Chemistries, Bruno Godin, Nick Nagle, Scott Satler, Richard Agneessens, Jérôme Delcarte, Edward Wolfrum Jan 2016

Improved Sugar Yields From Biomass Sorghum Feedstocks: Comparing Low‑Lignin Mutants And Pretreatment Chemistries, Bruno Godin, Nick Nagle, Scott Satler, Richard Agneessens, Jérôme Delcarte, Edward Wolfrum

United States Department of Agriculture-Agricultural Research Service / University of Nebraska-Lincoln: Faculty Publications

Background: For biofuel production processes to be economically efficient, it is essential to maximize the production of monomeric carbohydrates from the structural carbohydrates of feedstocks. One strategy for maximizing carbohydrate production is to identify less recalcitrant feedstock cultivars by performing some type of experimental screening on a large and diverse set of candidate materials, or by identifying genetic modifications (random or directed mutations or transgenic plants) that provide decreased recalcitrance. Economic efficiency can also be increased using additional pretreatment processes such as deacetylation, which uses dilute NaOH to remove the acetyl groups of hemicellulose prior to dilute acid pretreatment. In …


Effects Of Synthetic Ligands On Heterodimer Pairs Regarding Full-Length Human Pparα, Rxrα And Lxrα, Emily Delman Jan 2016

Effects Of Synthetic Ligands On Heterodimer Pairs Regarding Full-Length Human Pparα, Rxrα And Lxrα, Emily Delman

Browse all Theses and Dissertations

Nuclear receptor study is critically relevant in therapeutic medicine since the intricate details of disease states pertaining to atherosclerosis and diabetes are poorly understood. Three nuclear receptors of interest regulate target genes pertaining to cholesterol and fatty acid regulation, linking these receptors to therapeutic medicine. The first is the peroxisome proliferator-activated receptor alpha (PPARa), which resides in liver and muscle, coordinating lipoprotein and fatty acid homeostasis [1]. Cholesterol homeostasis is dictated by the liver X receptor alpha (LXRa), targeting genes pertaining to the kidney, intestine, liver and adipose tissues [2]. A common partner receptor to PPARa and LXRa is known …


Instability At Trinucleotide Repeat Dnas, Rujuta Yashodhan Gadgil Jan 2016

Instability At Trinucleotide Repeat Dnas, Rujuta Yashodhan Gadgil

Browse all Theses and Dissertations

Trinucleotide repeats (TNRs) are sequences prone to formation of non-B DNA structures and mutations; undergo expansions in vivo to cause various inherited neurodegenerative diseases. Hairpin structures formed during DNA replication or repair can cause replication fork stalling and if left unrepaired could cause single or double strand DNA breaks. To test and study this hypothesis we have devised a novel two color marker gene assay to detect DNA breaks at TNRs. By inducing replication stress our results show that TNRs are prone to DNA strand breaks and it is dependent on the repeat tract length. Double strand breaks at structured …


Investigation Of Mutations In Nuclear Genes That Affect The Atp Synthase, Russell Dsouza Jan 2016

Investigation Of Mutations In Nuclear Genes That Affect The Atp Synthase, Russell Dsouza

Wayne State University Dissertations

The F1 domain is the catalytic subunit of the mitochondrial ATP synthase. Studies with respiratory-deficient yeast identified ATP1 and ATP2 as nuclear genes encoding the alpha and beta subunits, respectively, of the mitochondrial F1-ATPase. The mutations in the atp1 and atp2 genes were cloned and sequenced, and they appear to affect the ATP synthase. Most yeast strains with mutations in the or the subunit primarily show an F1 assembly defective phenotype. This feature is similar to the assembly-defective mutants missing the chaperones required for assembly of the F1 oligomer or either the alpha/beta subunits.

Some of the atp2 and atp1 …


Insights Into De Novo Fes-Cluster Biogenesis Via The Eukaryotic Fes-Cluster (Isc) Pathway In Vitro, Stephen Paul Dzul Jan 2016

Insights Into De Novo Fes-Cluster Biogenesis Via The Eukaryotic Fes-Cluster (Isc) Pathway In Vitro, Stephen Paul Dzul

Wayne State University Dissertations

Fe-S clusters are iron-containing cofactors utilized by numerous proteins within several biological pathways essential to life. In eukaryotes, the primary pathway for Fe-S cluster production is the iron-sulfur cluster (ISC) pathway. The eukaryotic ISC pathway, localized primarily within the mitochondria, has been best characterized within Saccharomyces cerevisiae. In yeast, de novo Fe-S cluster formation is accomplished through coordinated assembly of the substrates iron and sulfur on the primary scaffold assembly protein “Isu1”. The sulfur used for cluster assembly is provided by the cysteine desulfurase “Nfs1”, a protein that works in union with its accessory protein “Isd11”. Frataxin “Yfh1” helps direct …


Effective Drug Treatment Induces Drug Resistance Through Rapid Genome Alteration-Mediated Cancer Evolution, Steven Horne Jan 2016

Effective Drug Treatment Induces Drug Resistance Through Rapid Genome Alteration-Mediated Cancer Evolution, Steven Horne

Wayne State University Dissertations

The central paradox associated with current cancer therapeutic strategies is initially effective treatment, which eliminates a high tumor cell count, consistently results in successful drug resistance. Mathematical and evolutionary modeling have previously suggested that therapeutic intervention could provide selective pressure for the expansion of resistant variants. Drug-related stress has been associated with genome chaos, a common phenomenon in cancer characterized as rapid, stochastic genomic fragmentation and reorganization. Since cancer represents an evolutionary process, analysis within the context of genome-mediated cancer evolution can shed light on this key problem of therapeutics. We propose that genomic change is a general response to …


Genome Wide Analysis Identifies Sphingolipid Metabolism As A New Target Of Valproic Acid, Shyamalagauri Jadhav Jadhav Jan 2016

Genome Wide Analysis Identifies Sphingolipid Metabolism As A New Target Of Valproic Acid, Shyamalagauri Jadhav Jadhav

Wayne State University Dissertations

Bipolar disorder (BD), which is characterized by depression and mania, affects about 1% of the total world population. Current treatments are effective in only 40-60% of cases and cause severe side effects. Valproic acid (VPA), a branched short-chain fatty acid, is one of the most widely used drugs for the treatment of BD. Although many hypotheses have been postulated to explain the molecular mechanism of action of this drug in BD, the therapeutic mechanism is not understood. This knowledge gap has hampered the development of new drugs to treat this disorder. To identify candidate pathways affected by VPA, I performed …


A Novel Role For Repetitive Sequences In Recognition Of The Drosophila Melanogaster X Chromosome, Sonal Suresh Joshi Jan 2016

A Novel Role For Repetitive Sequences In Recognition Of The Drosophila Melanogaster X Chromosome, Sonal Suresh Joshi

Wayne State University Dissertations

In humans and fruit flies, males have one X chromosome while females have two. This imbalance in gene dosage is potentially lethal, and the process of dosage compensation corrects it. The MSL (Male Specific Lethal) complex, which is composed of five proteins and one of two functionally redundant long non-coding roX (RNA on the X) RNAs, brings about dosage compensation in Drosophila melanogaster. In fruit fly dosage compensation, all the genes on the single male X chromosome are upregulated approximately twofold, via chromatin modifications, to equalize gene dosage with the two X chromosomes of females. This process calls for highly …


An Analysis Of The Interaction Between Sin3 And Methionine Metabolism In Drosophila, Mengying Liu Jan 2016

An Analysis Of The Interaction Between Sin3 And Methionine Metabolism In Drosophila, Mengying Liu

Wayne State University Dissertations

Chromatin modification and cellular metabolism are tightly connected. The mechanism for this cross-talk, however, remains incompletely understood. SIN3 controls histone acetylation through association with the histone deacetylase RPD3. In this study, my major goal is to explore the mechanism of how SIN3 regulates cellular metabolism.

Methionine metabolism generates the major methyl donor S-adenosylmethionine (SAM) for histone methylation. In collaboration with others, I report that reduced levels of some enzymes involved in methionine metabolism and histone demethylases lead to lethality, as well as wing development and cell proliferation defects in Drosophila melanogaster. Additionally, disruption of methionine metabolism can directly affect histone …


Modeling The Mechanism Underlying Environmental And Genetic Determinants Of Gene Expression And Complex Traits, Gregory Alan Moyerbrailean Jan 2016

Modeling The Mechanism Underlying Environmental And Genetic Determinants Of Gene Expression And Complex Traits, Gregory Alan Moyerbrailean

Wayne State University Dissertations

Advances in next-generation sequencing technologies and functional genomics strategies have allowed researchers to identify both common and rare genetic variation, to deeply profile gene expression, and even to determine regions of active gene transcription.

While these technologies and strategies have contributed greatly to our understanding of complex traits and diseases, there are many biological questions and analytical issues to be addressed.

Genome-wide association studies (GWAS) have successfully identified large numbers of genetic variants associated with complex traits and diseases. However, in many cases the mechanistic link between the phenotype and associated variant remains unclear. This may be because most variants …


The Role Of Foxo Transcription Factors In Alcohol-Induced Deficient Fracture Repair, Philip M. Roper Jan 2016

The Role Of Foxo Transcription Factors In Alcohol-Induced Deficient Fracture Repair, Philip M. Roper

Dissertations

Proper and complete repair of a bone fracture is essential in quality of life maintenance, but poor healing and fracture malunion are still medically and socially relevant problems. Alcohol abuse impairs normal fracture healing, leading to delayed or incomplete union. This dissertation aims to clarify mechanisms behind this alcohol-induced impaired healing, thereby elucidating potential methods of intervention.

Alcohol-induced oxidative stress has been linked to many morbidities associated with alcohol abuse. This dissertation elucidates a potential mechanism through which alcohol inhibits fracture healing by increasing oxidative stress. Using a rodent model, I found that alcohol exposure decreases fracture callus formation and …


Integrin Α6Β4 Promotes Pancreatic Cancer Invasion By Altering Dna Repair-Mediated Epigenetics, Brittany L. Carpenter Jan 2016

Integrin Α6Β4 Promotes Pancreatic Cancer Invasion By Altering Dna Repair-Mediated Epigenetics, Brittany L. Carpenter

Theses and Dissertations--Molecular and Cellular Biochemistry

Integrin α6β4 is upregulated in pancreatic carcinoma, where signaling promotes metastatic properties, in part by altering the transcriptome. Such alterations can be accomplished through DNA demethylation of specific promoters, as seen with the pro-metastatic gene S100A4. I found that signaling from integrin α6β4 dramatically upregulates expression of amphiregulin (AREG) and epiregulin (EREG), ligands for the epidermal growth factor receptor (EGFR), and that these ligands promote pancreatic carcinoma invasion. To determine if AREG and EREG are regulated by DNA methylation, pancreatic cancer cells with low AREG and EREG expression were treated with the DNA methyltransferase inhibitor 5-aza-2’-deoxycytidine (5-Aza-CdR), resulting in stable …


Calcineurin: From Activation To Inhibition, Erik C. Cook Jan 2016

Calcineurin: From Activation To Inhibition, Erik C. Cook

Theses and Dissertations--Molecular and Cellular Biochemistry

Calcineurin is a Ser/Thr phosphatase whose function is implicated in critical physiological processes such as immune system activation, fetal heart development, and long-term depression in neurons. Calcineurin has been implicated in the progression of Alzheimer’s disease and cardiac hypertrophy. It is not well understood how calcineurin is activated on a molecular level by Ca2+ and its activating protein calmodulin. Previous data from our lab show that calmodulin interaction induces the folding of the intrinsically disordered regulatory domain of calcineurin in two discrete and distant regions into α-helical conformations and that this folding is critical for complete activation of calcineurin. …


A Pipeline For Creation Of Genome-Scale Metabolic Reconstructions, Shaun W. Norris Jan 2016

A Pipeline For Creation Of Genome-Scale Metabolic Reconstructions, Shaun W. Norris

Theses and Dissertations

The decreasing costs of next generation sequencing technologies and the increasing speeds at which they work have lead to an abundance of 'omic datasets. The need for tools and methods to analyze, annotate, and model these datasets to better understand biological systems is growing. Here we present a novel software pipeline to reconstruct the metabolic model of an organism in silico starting from its genome sequence and a novel compilation of biological databases to better serve the generation of metabolic models. We validate these methods using five Gardnerella vaginalis strains and compare the gene annotation results to NCBI and the …


The Effect Of Posttranslational Modifications On Protein Aggregation, Morphology, And Toxicity, Mu Yang Jan 2016

The Effect Of Posttranslational Modifications On Protein Aggregation, Morphology, And Toxicity, Mu Yang

Dissertations, Master's Theses and Master's Reports

Proteins are one of the most versatile macromolecules in the biological system. The function or activity of a protein highly depends on its 3D native structure. However, under stress, they are at risk of misfolding/aggregation, leading to formation of structures that can indicate loss of function or gain of toxicity. In severe cases, protein aggregation can result in many diseases, including neurodegenerative diseases, such as Alzheimer’s, Parkinson’s, Huntington’s, and amyotrophic lateral sclerosis. Due to the heterogeneous nature of cellular environment and protein molecules, mechanism of in vivo folding and related toxicity still remains elusive. To have a better understanding of …


Sensing And Mapping Of Surface Hydrophobicity Of Proteins By Fluorescent Probes, Nethaniah Dorh Jan 2016

Sensing And Mapping Of Surface Hydrophobicity Of Proteins By Fluorescent Probes, Nethaniah Dorh

Dissertations, Master's Theses and Master's Reports

Surface hydrophobic interactions in proteins play a critical role in molecular recognition, influence biological functions, and play a central role in many protein misfolding diseases. As significance of surface hydrophobic interactions in age-related proteinopathies is becoming clear; it has led to an increased demand for better probes and tools to sense and characterize protein surface hydrophobicity. Current commercially available fluorescent probes such as 8-anilino-1-naphthalene sulfonic acid (ANS), 4,4′ -dianilino-1,1′-binaphthyl-5,5′-disulfonic acid (Bis-ANS), 6-propionyl-2-(N,N-dimethylamino)naphthalene (PRODAN), tetraphenylethene derivative, and Nile Red can sense proteins average hydrophobicity. However, probe limitations prevents their application for measuring the protein surface hydrophobicity. Some of the major deficiencies …