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Articles 61 - 82 of 82
Full-Text Articles in Molecular Biology
Mutational Analysis Of An Rna Aptamer, Deblina Biswas
Mutational Analysis Of An Rna Aptamer, Deblina Biswas
Legacy Theses & Dissertations (2009 - 2024)
Aptamers are oligonucleotide molecules (DNA or RNA) that are selected against specific target proteins, nucleic acids or small molecules by using the well established technique of SELEX (Systemic Evolution of Ligands by Exponential Enrichment). Their ability to bind with high affinity and specificity has opened up a wide arena of scientific applications. Aptamers have been shown to have many potential therapeutic and bioanalytical contributions such as in the treatment of diseases like cancer, cardiovascular and other major ailments. The aim of this dissertation is to study and analyze double transversion involving 4 bases in a RNA aptamer molecule: MinB4-au-flipS clamp …
A Study Of The Effects Of Inosine Incorporation Into Dna Due To Defects In Purine Biosynthesis In Escherichia Coli, Jonathan Spence Church
A Study Of The Effects Of Inosine Incorporation Into Dna Due To Defects In Purine Biosynthesis In Escherichia Coli, Jonathan Spence Church
Legacy Theses & Dissertations (2009 - 2024)
Deamination of purine bases can result in the formation of xanthine and hypoxanthine which can be miscoding and mutagenic in DNA. There are several mechanisms for the introduction of deaminated bases into DNA including simple hydrolysis, nitrosative chemistry and through the action of deaminase enzymes. A fourth method was recently presented which describes how deaminated purines can be incorporated into DNA due to defects in purine biosynthesis. Using fluctuation analysis, spontaneous mutation rates were studied in bacterial mutants that were deficient in specific genes involved in purine biosynthesis and dNTP precursor pool maintenance, including purA (adenylosuccinate synthetase), guaA (GMP synthetase), …
Characterization Of The Calmodulin-Ryanodine Receptor Interaction By Cryo-Electron Microscopy, Xiaojun Huang
Characterization Of The Calmodulin-Ryanodine Receptor Interaction By Cryo-Electron Microscopy, Xiaojun Huang
Legacy Theses & Dissertations (2009 - 2024)
Ryanodine receptor (RyR) is a key player in excitation-contraction coupling (E-C coupling). Calmodulin (CaM) is one of the important regulatory factors of RyR. Two mammalian RyR isoforms, RyR1 and RyR2, are highly enriched in skeletal and cardiac muscle, respectively. Apo-calmodulin weakly activates RyR1 but inhibits RyR2, whereas Ca2+-calmodulin inhibits both the isoforms. Previous cryo-electron microscopy studies showed distinctly different binding locations on RyR1 for the two states of calmodulin. However, recent studies employing fluorescence resonance energy transfer appeared to challenge these findings. In chapter 1, using cryo-electron microscopy, we have determined that a mutant calmodulin, which is incapable of binding …
The Role Of Chromatin And Cofactors In The Transcriptional Memory Effect Exerted In Saccharomyces Cerevisiae, Emily Leigh Paul
The Role Of Chromatin And Cofactors In The Transcriptional Memory Effect Exerted In Saccharomyces Cerevisiae, Emily Leigh Paul
Legacy Theses & Dissertations (2009 - 2024)
Abf1 and Rap1 are functionally similar general regulatory factors (GRFs) found in Saccharomyces cerevisiae . Abf1, in its role as a transcriptional activator, exerts a memory effect on some genes under its control. This effect results in transcription levels remaining steady when Abf1 dissociates from its binding site in a conditional mutant. In contrast, Rap1 fails to elicit the same effect on its regulatory targets. Transcriptional memory effects have been observed in many fields of study, including immunology, cancer, and stem cells, and conservation of transcription machinery will allow studies in yeast to be applied to higher organisms.
Inhibition Of Glutamate Receptors By Constructing Bipartite Rna Aptamers, Jeffrey Hebert
Inhibition Of Glutamate Receptors By Constructing Bipartite Rna Aptamers, Jeffrey Hebert
Legacy Theses & Dissertations (2009 - 2024)
The relationship of excessive activity of AMPA-type glutamate receptors, and cell death, has long provided researchers a means of investigating neurodegenerative disorders, such as Parkinson's Disease (PD) and amyotrophic lateral sclerosis (ALS). Inhibitors of AMPA receptor channels, including chemical and nucleic acid molecules such as RNA aptamers, have served as potential therapeutic agents and treatment of neurodegenerative disorders. In this study, building bipartite aptamers to enhance inhibitory potency, as compared with a monomeric aptamer of AMPA receptor, is described. An enhanced potency is due, at least in part; to the proximity effect in bipartite structures or binding of a monomeric …
The Role Of Ess1 In Survival, Morphogenetic Switching And Transcription In The Fungal Pathogen Candida Albicans, Dhanushki Poornima Samaranayake
The Role Of Ess1 In Survival, Morphogenetic Switching And Transcription In The Fungal Pathogen Candida Albicans, Dhanushki Poornima Samaranayake
Legacy Theses & Dissertations (2009 - 2024)
Candida albicans is a fungal pathogen that causes serious infections among immune-compromised patients and premature infants. C. albicans can become drug resistant, therefore, identifying new antifungal drug targets is an important goal. Here, we study a peptidyl-prolyl cis/trans isomerase called Ess1 as a potential drug target. Ess1 is conserved among pathogenic fungi, and therefore, potential inhibitors of Ess1 should display a broad spectrum of activity. We confirm that Ess1 is essential for growth in Candida albicans, but unlike the previously published find, deleting one copy of the C. albicans ESS1 gene did not affect morphogenetic switching. However, further reducing activity …
Dna Repair Fidelity And Cancer : Structural And Kinetic Insights From Dna Polymerase Beta Mutator Variants, Chelsea Lynne Gridley
Dna Repair Fidelity And Cancer : Structural And Kinetic Insights From Dna Polymerase Beta Mutator Variants, Chelsea Lynne Gridley
Legacy Theses & Dissertations (2009 - 2024)
DNA polymerases are essential for genome replication and DNA repair in all living organisms. Precise DNA replication is critical for the preservation of genomic stability. Any insult, endogenous/exogenous, to cellular DNA requires properly functioning repair polymerases. In eukaryotes, DNA polymerase beta, a small enzyme (39 kDa), plays an important role in DNA repair during the base excision repair pathway. Pol beta catalyzes the incorporation of nucleotides in small stretches (1-6 nucleotides) of damaged double-stranded DNA. Should gap-filling synthesis by pol beta be compromised, mutations in genomic DNA accumulate, which are frequently linked to human diseases, including cancers. For this reason, …
Gld-1 Represses Its Puf Mrna Targets Prior To/At Initiation Of Translation In The C.Elegans Germline, Gautham Sarathy
Gld-1 Represses Its Puf Mrna Targets Prior To/At Initiation Of Translation In The C.Elegans Germline, Gautham Sarathy
Legacy Theses & Dissertations (2009 - 2024)
The C.elegans germline offers an ideal system to study posttranscriptional regulation of gene expression as it is a major mechanism through which the control over gene expression is achieved. GLD-1 (defective in GermLine Development) is a maxi-KH motif containing RNA binding protein that controls various aspects of germline development from decision over germcell proliferation vs. meiotic entry to the production of mature gametes suggesting that GLD-1 likely controls many mRNA targets.
Distinct Functions Of The Fshr Ck2 Consensus Sequence And Ck2 Kinase Activity In Fsh Action, Kerri S. Kluetzman
Distinct Functions Of The Fshr Ck2 Consensus Sequence And Ck2 Kinase Activity In Fsh Action, Kerri S. Kluetzman
Legacy Theses & Dissertations (2009 - 2024)
Human reproduction in the female is a complex process requiring coordinated control of gonadotropic hormone signaling in a temporal, spatial and contextually defined manner. Paracrine and autocrine signaling between granulosa cells and oocytes of the developing ovarian follicle result in production of steroids, inhibin and growth factors that dictate maturation, ovulation or atresia. Follicular stimulating hormone (FSH) stimulation of the FSH receptor (FSHR), a G-protein coupled receptor (GPCR) is a key regulator of these processes. Recent developments in GPCR molecular and structural biology have helped define activation and signaling mechanisms that will aid in further defining the etiology of infertility …
The Role Of Trm9 In Stress Responses, Ashish Ravindra Patil
The Role Of Trm9 In Stress Responses, Ashish Ravindra Patil
Legacy Theses & Dissertations (2009 - 2024)
Cells need to respond appropriately to environmental changes in order to maintain homeostasis. The cellular response to an environmental stress is regulated at transcriptional, translational and post translational levels. The tRNA, which acts as an adaptor molecule between the mRNA and the protein, plays an important role in the translational regulation of cellular responses to stress and is one of the most heavily modified biomolecules. In Saccharomyces cerevisiae , the wobble uracil of the tRNA(3'-UCU-5') Arg, tRNA(3'-UUC-5') Glu and certain other specific tRNAs are modified to 5-methoxycarbonylmethyluridine (mcm5U) and 5-methoxycarbonylmethyl-2-thiouridine (mcm5s2U) residues by the tRNA methyltransferase 9 (Trm9). Modifications at …
Regulation Of The Aryl Hydrocarbon Receptor And The Signal Transducer And Activator Of Transcription 1 By Long-Term Estrogen Exposure In Breast Carcinoma Cells, Neal Englert
Legacy Theses & Dissertations (2009 - 2024)
The risk of developing breast cancer is known to be associated with a woman's lifetime exposure to estrogens, both endogenous and exogenous. Increased exposure to estrogens stimulates cellular proliferation, which is a widely accepted theory of estrogen receptor positive mammary carcinogenesis. The molecular mechanisms of gene expression regulation in response to long-term estrogen exposure (LTEE) of MCF-7 breast cancer cells were addressed in this study, with a focus on the aryl hydrocarbon receptor (AHR) and signal transducer and activator of transcription 1 (STAT1).
Design And Application Of Composite Rna Aptamers, Shengchun Wang
Design And Application Of Composite Rna Aptamers, Shengchun Wang
Legacy Theses & Dissertations (2009 - 2024)
aptamers are being developed as an essential tool in many fields of biological research. Their utility is not limited to being protein inhibitors; a lot of novel functions can be realized. However, in vivo application of RNA aptamers still faces many challenges. The aim of this dissertation is to design and apply composite aptamers in multiple expression and delivery systems to address some critical issues, such as correct folding, high level production, degradation by nucleases, excessive consumption of cellular resource and potential toxic effect.
Group Ii Intron Dynamics In Heterologous Hosts, Venkata Raghavendra Aditya Chalamcharla
Group Ii Intron Dynamics In Heterologous Hosts, Venkata Raghavendra Aditya Chalamcharla
Legacy Theses & Dissertations (2009 - 2024)
Group II introns are ribozymes with an innate ability to self-splice. They are found predominantly in bacterial and bacterial-derived organellar genomes, but not in the nuclear genomes of eukaryotes. In bacteria, group II introns often behave as mobile retroelements, invading host DNA and exploiting its machinery to complete the retromobility process. The object of my studies is the group II intron found in the Lactococcus lactis relaxase gene. To determine the nature of the group II intron-host relationship, we performed a genetic screen and identified several host factors that affect group II intron retromobility in Escherichia coli, which provides a …
Preparation And Application Of Transgenic And Knockout Mouse Models For Studies On Cytochrome P450 Functions, Yuan Wei
Legacy Theses & Dissertations (2009 - 2024)
The overall objective of this dissertation is to study the in vivo function of microsomal cytochrome P450 monooxygenases (P450s), which metabolize numerous drugs, chemical carcinogens, environmental pollutants, as well as endogenous signaling molecules such as steroid hormones and eicosanoids. The major research tool of this study involves the development of transgenic and knockout mouse models. The specific aims are 1) to study the in vivo function of NADPH-cytochrome P450 reductase (CPR) and CPR-dependent enzymes using a mouse model with a reversible hypomorphic Cpr gene; 2) to study the in vivo function of CYP2A13 with a CYP2A13- transgenic model; and 3) …
Saturation Transfer Difference Nmr Studies : Pyrazinamide And Pyrazinamide Analogs Coordinating With Mycobacterium Tuberculosis Fatty Acid Synthase I (Fas I), Halimah Sayahi
Legacy Theses & Dissertations (2009 - 2024)
One third of the world's population is infected with M. tuberculosis, the causative agent of tuberculosis (TB) that claims the life of approximately 2 million people every year. The rapid spread of multidrug-resistance tuberculosis as well the emergence of extensively drug resistance strains that are resistant to virtually any known antibiotic, has transformed this once curable disease into a major public health challenge. To regain control of this disease and the associated mortality and morbidity new antibiotics are urgently needed.
The Impact Of Environment On Virulence Of The Pathogenic Yeast Cryptococcus Gattii, Deborah Jean Springer
The Impact Of Environment On Virulence Of The Pathogenic Yeast Cryptococcus Gattii, Deborah Jean Springer
Legacy Theses & Dissertations (2009 - 2024)
Four serotypes of Cryptococcus are responsible for most human and animal infections. C. gattii , serotype B and C, are the primary the causative agent of cryptococcosis in immune competent individuals whilst, C. neoformans var. neoformans serotype D, and C. neoformans var. grubii serotype A are most prevalent in immunocompromised hosts world-wide. C. gattii is recognized as a species distinct from C. neoformans based on differences in clinical manifestations, morphology, biological characteristics, and environmental niche. We used the plant model Arabidopsis thaliana plants and plant derived substrates as a model to explore C. gattii interactions in its ecological niche. C. …
A Locus-Based Paradigm For Generating Systems Biological Inferences From Large Scale Functional Genomics Datasets, Ajish Dominic George
A Locus-Based Paradigm For Generating Systems Biological Inferences From Large Scale Functional Genomics Datasets, Ajish Dominic George
Legacy Theses & Dissertations (2009 - 2024)
Genomics data is growing at a exponential rate. The ability to integrate new results with existing knowledge about genomic biology is rapidly becoming the limiting factor as there no universal language with which to describe genomic functional elements. To integrate and compare new and existing genomic data, we define our basic functional unit of a genome to be a locus -- a set of positional coordinates along any genome with an arbitrary amount of functional annotations attached. The locus concept enables addressing genomic elements and annotations at any level of granularity from entire swaths of chromosomes to single base-positions. We …
Opportunism And Diversity In The Lifestyle Of A Group Ii Intron, Arthur R. Beauregard
Opportunism And Diversity In The Lifestyle Of A Group Ii Intron, Arthur R. Beauregard
Legacy Theses & Dissertations (2009 - 2024)
Group II introns are mobile retroelements. They invade the cognate intron-minus gene in an efficient process known as retrohoming. They can also retrotranspose to ectopic sites at low frequency. Retrohoming occurs by the intron RNA reverse-splicing into double-stranded DNA (dsDNA) through an endonuclease-dependent pathway. However, in retrotransposition in Lactoccocus lactis, the intron inserts predominantly into single-stranded DNA (ssDNA), in an endonuclease-independent manner. Unlike in L. lactis, in Escherichia coli the Ll.LtrB intron retrotransposes frequently into dsDNA, and the process is dependent on the endonuclease activity of the intron-encoded protein. Further, the endonuclease-dependent integrations preferentially occurred around the origin and terminus …
Role Of Cyp2a5 In Drug Metabolism, Chemical Toxicity, And Maintenance Of Steroid Hormone Homeostasis : Insights From Studies On A Novel Cyp2a5-Null Mouse Model, Xin Zhou
Legacy Theses & Dissertations (2009 - 2024)
The central hypothesis is that CYP2A5 plays an important role in the metabolism of xenobiotic substrates, and in the toxicity induced by over-exposure to drugs, as well as in the metabolism of endogenous compounds and regulation of steroid hormone homeostasis. The specific aims are: 1) to generate and characterize a Cyp2a5-null mouse; 2) to determine the role of CYP2A5 in the systemic clearance of nicotine and cotinine; and 3) to explore the mechanisms underlying the resistance of the lateral nasal gland (LNG) of male Cyp2g1-null/Cyp2a5-low mouse and Cyp2a5-null mouse to acetaminophen (AP) toxicity.
An Rnai Screen Targeting The Protein Tyrosine Kinases Identifies Bruton's Tyrosine Kinase (Btk) As A Breast Cancer Cell Survival Factor, Cheryl Lynne Eifert
An Rnai Screen Targeting The Protein Tyrosine Kinases Identifies Bruton's Tyrosine Kinase (Btk) As A Breast Cancer Cell Survival Factor, Cheryl Lynne Eifert
Legacy Theses & Dissertations (2009 - 2024)
The receptor protein tyrosine kinases (RPTKs) and the non- receptor protein tyrosine kinases (PTKs) are among the most commonly up-regulated genes found in all types of cancers. Although, a large body of data implicates a majority of tyrosine kinases (TKs) in cancer, few have been extensively evaluated for any potential therapeutic benefit in any of the many subtypes of breast cancer. We have used RNA interference (RNAi) to perform a large-scale loss-of-function analysis to facilitate the identification of individual factors necessary for the survival of an ErbB2 positive breast cancer cell line. We have found that 30% of the TKs …
Molecular Evolution Of Genes Underlying Phenotypic Differences Between Humans And Chimpanzees, Santhoshi Bandla
Molecular Evolution Of Genes Underlying Phenotypic Differences Between Humans And Chimpanzees, Santhoshi Bandla
Legacy Theses & Dissertations (2009 - 2024)
Chimpanzees (Pan troglodytes) and bonobos (P. paniscus) are often used as models to study the genetic and morphological changes on the lineage leading to the modern humans (Homo sapiens). Results of this dissertation suggest that, in comparison to other hominoids, chimpanzees and bonobos are more derived in their relative testes sizes and promiscuous mating systems. Phylogenetic analysis of genes that might underlie increased testes size revealed that, in addition to being a sex-determining gene, SRY displays Pan-specific amino acid replacements that make it a compelling candidate as a testes-size determining gene. Strikingly, SRY and another candidate gene, DMRT3, display patterns …
Study Of Dynamic Processes In Protein Synthesis Using Heterogeneous Ribosome Specimens, Jie Fu
Study Of Dynamic Processes In Protein Synthesis Using Heterogeneous Ribosome Specimens, Jie Fu
Legacy Theses & Dissertations (2009 - 2024)
Single-particle reconstruction from cryo-electron microscopy (cryo-EM) images is a widely used technique in studying the structure of macromolecular complexes. This technique allows the visualization of molecules in their native hydrated state. The heterogeneity of two-dimensional projection images, resulting from the co-existence of different states of a macromolecular complex, remains a major obstacle, as it impairs the validity of reconstruction and limits the progress toward higher resolution. On the other hand, co-existing structures, if successfully extracted from a single dataset, can provide valuable information about the equilibrium and dynamics of the biological system being studied.