Activation Of The Carbon Concentrating Mechanism By Co2 Deprivation Coincides With Massive Transcriptional Restructuring In Chlamydomonas Reinhardtii,
2012
University of Nebraska-Lincoln
Activation Of The Carbon Concentrating Mechanism By Co2 Deprivation Coincides With Massive Transcriptional Restructuring In Chlamydomonas Reinhardtii, Andrew J. Brueggeman, Dayananda S. Gangadharaiah, Matyas F. Cserhati, David Casero, Donald P. Weeks, Istvan Ladunga
Department of Biochemistry: Faculty Publications
A CO2-concentrating mechanism (CCM) is essential for the growth of most eukaryotic algae under ambient (392 ppm) and very low (ppm) CO2 concentrations. In this study, we used replicated deep mRNA sequencing and regulatory network reconstruction to capture a remarkable scope of changes in gene expression that occurs when Chlamydomonas reinhardtii cells are shifted from high to very low levels of CO2 (£100 ppm). CCM induction 30 to 180 min post-CO2 deprivation coincides with statistically significant changes in the expression of an astonishing 38% (5884) of the 15,501 nonoverlapping C. reinhardtii genes. Of these genes, …
Development And Evaluation Of A Mouse Neocortical Cells Neurodevelopment Assay To Assess The Effects Of Pyrethroids,
2012
Salve Regina University
Development And Evaluation Of A Mouse Neocortical Cells Neurodevelopment Assay To Assess The Effects Of Pyrethroids, Stephanie I. Savino
Pell Scholars and Senior Theses
Pyrethroid insecticides have been used for more than 40 years and account for 25% of the global insecticide market with household, agricultural and public health applications. With increasing use of pyrethroids over recent years, human exposure to these chemicals is likely. The acute toxicity of pyrethroids to mammalian adults has been documented as moderately toxic by the U.S. Environmental Protection Agency. However, little evidence is available regarding the potential toxicological effects of pyrethroids on mammalian neurodevelopment. In this study, a neurodevelopment assay was developed for future investigation of potential pyrethroid effects on the neuronal development of Mus musculus neocortical cells.
Syntaxin 6- And Microtubule- Mediated Intracellular Trafficking Contributes To Golgi And Nuclear Translocation Of Egfr,
2012
The University of Texas Graduate School of Biomedical Sciences at Houston
Syntaxin 6- And Microtubule- Mediated Intracellular Trafficking Contributes To Golgi And Nuclear Translocation Of Egfr, Yi Du
Dissertations and Theses (Open Access)
Receptor-mediated endocytosis is well known for its degradation and recycling trafficking. Recent evidence shows that these cell surface receptors translocate from cell surface to different cellular compartments, including the Golgi, mitochondria, endoplasmic reticulum (ER), and the nucleus to regulate physiological and pathological functions. Although some trafficking mechanisms have been resolved, the mechanism of intracellular trafficking from cell surface to the Golgi is not yet completed understood. Here we report a mechanism of Golgi translocation of EGFR in which EGF-induced EGFR travels to the Golgi via microtubule (MT)-dependent movement by interacting with dynein and fuses with the Golgi through syntaxin 6 …
Structural And Mechanistic Investigations Of Phosphothreonine Lyase Class Of Enzymes,
2012
Utah State University
Structural And Mechanistic Investigations Of Phosphothreonine Lyase Class Of Enzymes, Alok Gopalkrishna Shenoy
All Graduate Theses and Dissertations, Spring 1920 to Summer 2023
Phosphorylation and dephosphorylation are a highly pervasive mechanism in biology that is used by the cell to modulate enzymes and proteins. The presence of a phosphate group can activate or deactivate an enzyme. The phosphate group is linked to a protein by a phosphoester bond that is known to be highly stable in cytoplasmic pH range. Thus the breaking and formation of these bonds need to be effected by enzymes.
Recent discovery of the activity carried out by certain virulence related proteins (OspF released by Shigella and SpvC released by Salmonella) have resulted in a necessity to create a new …
Biochemical Characterization Of Sac9, A Putative Phosphoinositide Phosphatase In Arabidopsis Thaliana, And Its Role In Cellular Abnormalities,
2012
Utah State University
Biochemical Characterization Of Sac9, A Putative Phosphoinositide Phosphatase In Arabidopsis Thaliana, And Its Role In Cellular Abnormalities, Almut H. Vollmer
All Graduate Theses and Dissertations, Spring 1920 to Summer 2023
Since the early colonization of land by fungi and plants some 700 million years ago, plants have been continuously faced with changes in their environment. Unlike animals, plants are not free to move about, and can therefore not evade many stress factors. How plants sense and respond to their environment has been of interest not only to scientific research but also in more practical applications such as agriculture.
Signals (such as light or salinity) from the outside of plant cells trigger a flow of information to the inside of the cell. The final target for most of the information is …
Determining The Genotype-Phenotype Connection In Synthetic Inducible Gene Expression Systems,
2012
The University of Texas Graduate School of Biomedical Sciences at Houston
Determining The Genotype-Phenotype Connection In Synthetic Inducible Gene Expression Systems, Rhys M. Adams
Dissertations and Theses (Open Access)
Introduction Gene expression is an important process whereby the genotype controls an individual cell’s phenotype. However, even genetically identical cells display a variety of phenotypes, which may be attributed to differences in their environment. Yet, even after controlling for these two factors, individual phenotypes still diverge due to noisy gene expression. Synthetic gene expression systems allow investigators to isolate, control, and measure the effects of noise on cell phenotypes. I used mathematical and computational methods to design, study, and predict the behavior of synthetic gene expression systems in S. cerevisiae, which were affected by noise.
Methods I created probabilistic …
Increased Geranylgeranylated K-Ras Contributes To Antineoplastic Effects Of Farnesyltransferase Inhibitors.,
2012
The University of Texas Graduate School of Biomedical Sciences at Houston
Increased Geranylgeranylated K-Ras Contributes To Antineoplastic Effects Of Farnesyltransferase Inhibitors., Mandy A. Hall
Dissertations and Theses (Open Access)
The Ras family of small GTPases (N-, H-, and K-Ras) is a group of important signaling mediators. Ras is frequently activated in some cancers, while others maintain low level activity to achieve optimal cell growth. In cells with endogenously low levels of active Ras, increasing Ras signaling through the ERK and p38 MAPK pathways can cause growth arrest or cell death. Ras requires prenylation – the addition of a 15-carbon (farnesyl) or 20-carbon (geranylgeranyl) group – to keep the protein anchored into membranes for effective signaling. N- and K-Ras can be alternatively geranylgeranylated (GG’d) if farnesylation is inhibited but are …
Regulation Of Protein Degradation In The Heart By Amp-Activated Protein Kinase,
2012
The University of Texas Graduate School of Biomedical Sciences at Houston
Regulation Of Protein Degradation In The Heart By Amp-Activated Protein Kinase, Kedryn K. Baskin
Dissertations and Theses (Open Access)
The degradation of proteins by the ubiquitin proteasome system is essential for cellular homeostasis in the heart. An important regulator of metabolic homeostasis is AMP-activated protein kinase (AMPK). During nutrient deprivation, AMPK is activated and intracellular proteolysis is enhanced through the ubiquitin proteasome system (UPS). Whether AMPK plays a role in protein degradation through the UPS in the heart is not known. Here I present data in support of the hypothesis that AMPK transcriptionally regulates key players in the UPS, which, under extreme conditions can be detrimental to the heart. The ubiquitin ligases MAFbx /Atrogin-1 and MuRF1, key regulators of …
Chemosensitization Of Hepatocellular Carcinoma To Gemcitabine By Non-Invasive Radiofrequency Field-Induced Hyperthermia,
2012
The University of Texas Graduate School of Biomedical Sciences at Houston
Chemosensitization Of Hepatocellular Carcinoma To Gemcitabine By Non-Invasive Radiofrequency Field-Induced Hyperthermia, Mustafa Raoof
Dissertations and Theses (Open Access)
Gemcitabine is a potent nucleoside analogue against solid tumors however drug resistance rapidly emerges. Removal of gemcitabine incorporated in the DNA by repair mechanisms could potentially contribute to resistance in chemo-refractory solid tumors. In this study, we evaluated homologous recombination repair of gemcitabine-stalled replication forks as a potential mechanism contributing to resistance. We also studied the effect of hyperthermia on homologous recombination pathway to explain the previously reported synergy between gemcitabine and hyperthermia. We found that hyperthermia degrades and inhibits localization of Mre11 to gemcitabine-stalled replication forks. Furthermore, gemcitabine-treated cells that were also treated with hyperthermia demonstrate a prolonged passage …
Regulation Of Protein Degradation In The Heart By Amp-Activated Protein Kinase,
2012
The University of Texas Graduate School of Biomedical Sciences at Houston
Regulation Of Protein Degradation In The Heart By Amp-Activated Protein Kinase, Kedryn K. Baskin, Kedryn K. Baskin
Dissertations and Theses (Open Access)
The degradation of proteins by the ubiquitin proteasome system is essential for cellular homeostasis in the heart. An important regulator of metabolic homeostasis is AMP-activated protein kinase (AMPK). During nutrient deprivation, AMPK is activated and intracellular proteolysis is enhanced through the ubiquitin proteasome system (UPS). Whether AMPK plays a role in protein degradation through the UPS in the heart is not known. Here I present data in support of the hypothesis that AMPK transcriptionally regulates key players in the UPS, which, under extreme conditions can be detrimental to the heart. The ubiquitin ligases MAFbx /Atrogin-1 and MuRF1, key regulators of …
A Fast Response Highly Selective Probe For The Detection Of Glutathione In Human Blood Plasma,
2012
Portland State University
A Fast Response Highly Selective Probe For The Detection Of Glutathione In Human Blood Plasma, Yixing Guo, Xiaofeng Yang, Lovemore Hakuna, Aabha Barve, Jorge O. Escobedo, Mark Lowry, Robert M. Strongin
Chemistry Faculty Publications and Presentations
A fluorescent probe for glutathione (GSH) detection was developed. Our study indicates a possible mechanism which couples a conjugate addition and micelle-catalyzed large membered ring formation/elimination sequence. This method enables excellent selectivity towards GSH over other biological thiols such as cysteine (Cys) and homocysteine (Hcy). The proposed method is precise with a relative standard deviation (R.S.D) lower than 6% (n = 3) and has been successfully applied to determine GSH in human plasma with recoveries between 99.2% and 102.3%.
Characterization Of Novel Histone H2b Mutants Associated With Chromosome Segregation Defects In Saccharomyces Cerevisiae,
2012
University of Arkansas, Fayetteville
Characterization Of Novel Histone H2b Mutants Associated With Chromosome Segregation Defects In Saccharomyces Cerevisiae, Thiruchelvam Rajagopal
Graduate Theses and Dissertations
Histones are small basic proteins that associate with DNA to form the basic unit of chromatin, the nucleosome. Histones H3 and H4 form a tetramer that is bound by two H2A-H2B dimers to form the histone octamer, to which approximately 146 bp of DNA wrap around to form the nucleosome. High resolution structural information and recent advances in the understanding of histone post-translational modifications have illuminated the many regulatory functions chromatin exerts in the cell, from the transcriptional control of gene expression to chromosome segregation. However, the specific role that histones play in these processes is not well understood. Previous …
Genome-Wide Identification Of Conditionally Essential Genes In Salmonella Typhimurium Using Tn-Seq Method,
2012
University of Arkansas, Fayetteville
Genome-Wide Identification Of Conditionally Essential Genes In Salmonella Typhimurium Using Tn-Seq Method, Anita Khatiwara
Graduate Theses and Dissertations
ABSTRACT
As more whole genome sequences become available, there is an increasing need for high-throughput methods that link genes to phenotypes and facilitate discovery of new gene functions. The objective of this study was to develop a high-throughput method to study gene functions in bacteria and use this method to study gene functions of S. enterica serotype Typhimurium (S. Typhimurium) under various environmental conditions encountered during its life cycle. Chapter I of this dissertation reviews the history and evolution of functional genomics in bacteria with focus on Salmonella, along with the recent techniques available. Chapter II, deals with the development …
An Investigation Of Trypanosoma Brucei Hexokinases: Localization, Oligomerization, And Inhibition,
2012
Clemson University
An Investigation Of Trypanosoma Brucei Hexokinases: Localization, Oligomerization, And Inhibition, April Joice
All Dissertations
Trypanosoma brucei is the causative agent of African sleeping sickness in humans and nagana in livestock. The parasite inhabits multiple environmental niches including the bloodstream of the mammalian host and the mid-gut of the tsetse fly vector. While in the bloodstream of its mammalian host, the organism depends solely on glycolysis for production of ATP. My studies focus on the first enzyme in glycolysis, hexokinase.
T. brucei has two hexokinases, TbHK1 and TbHK2 that are 98.5% identical at the nucleotide level. The hexokinases are expressed in the glycosomes of both procyclic form and bloodstream form parasites. Glycosomes are peroxisome-like organelles …
Stromal-Epithelial Interactions Modulate Cross Talk Between Prolactin Receptor And Her2/Neu In Breast Cancer,
2012
Clemson University
Stromal-Epithelial Interactions Modulate Cross Talk Between Prolactin Receptor And Her2/Neu In Breast Cancer, Cong Xu
All Dissertations
The tumor microenvironment is a crucial factor in breast tumorigenesis. Tumor epithelial cells maintain 3D structure in tumor stroma and they interact with soluble factors secreted by stromal cells such as cancer associated fibroblasts (CAFs) or directly with the extracellular matrix (ECM). Recent studies have shown that the hormone prolactin (PRL) promotes the proliferation and survival of breast cancer cells in part via the transactivation of human epidermal growth factor receptor 2 (HER2), also known as Neu in rodents. A PRL receptor (PRLR) antagonist, G129R, has been demonstrated not only to be able to directly inhibit PRLR activation but also …
Development Stage-Specific Proteomic Profiling Uncovers Small, Lineage Specific Proteins Most Abundant In The Aspergillus Fumigatus Conidial Proteome,
2012
The J. Craig Venter Institute, Rockville, MD
Development Stage-Specific Proteomic Profiling Uncovers Small, Lineage Specific Proteins Most Abundant In The Aspergillus Fumigatus Conidial Proteome, Moo-Jin Suh, Natalie D. Fedorova, Steven E. Cagas, Susan Hastings, Robert D. Fleischmann, Scott N. Peterson, David S. Perlin, William C. Nierman, Rembert Pieper, Michelle Momany
Biochemistry and Molecular Medicine Faculty Publications
Background
The pathogenic mold Aspergillus fumigatus is the most frequent infectious cause of death in severely immunocompromised individuals such as leukemia and bone marrow transplant patients. Germination of inhaled conidia (asexual spores) in the host is critical for the initiation of infection, but little is known about the underlying mechanisms of this process.
Results
To gain insights into early germination events and facilitate the identification of potential stage-specific biomarkers and vaccine candidates, we have used quantitative shotgun proteomics to elucidate patterns of protein abundance changes during early fungal development. Four different stages were examined: dormant conidia, isotropically expanding conidia, hyphae …
Activation Of An Nlrp3 Inflammasome Restricts Mycobacterium Kansasii Infection,
2012
Industrial Technology Research Institute
Activation Of An Nlrp3 Inflammasome Restricts Mycobacterium Kansasii Infection, Chang-Chieh Chen, Sheng-Hui Tsai, Chia-Chen Lu, Shiau-Ting Hu, Ting-Shu Wu, Tsung-Teng Huang, Najwane Saïd-Sadier, David M. Ojcius, Hsin-Chih Lai
All Dugoni School of Dentistry Faculty Articles
Mycobacterium kansasii has emerged as an important nontuberculous mycobacterium pathogen, whose incidence and prevalence have been increasing in the last decade. M. kansasii can cause pulmonary tuberculosis clinically and radiographically indistinguishable from that caused by Mycobacterium tuberculosis infection. Unlike the widely-studied M. tuberculosis, little is known about the innate immune response against M. kansasii infection. Although inflammasome activation plays an important role in host defense against bacterial infection, its role against atypical mycobacteria remains poorly understood. In this report, the role of inflammasome activity in THP-1 macrophages against M. kansasii infection was studied. Results indicated that viable, but not heat-killed, …
Heterotopic Ossification: Cellular Basis, Symptoms, And Treatment,
2012
Liberty University
Heterotopic Ossification: Cellular Basis, Symptoms, And Treatment, Brian Wolfe
Senior Honors Theses
Heterotopic ossification (HO) is the process by which calcified bone develops in soft tissues. Because of the abnormal calcification, complications such as bone deformation, loss of range of motion, and joint immobility adversely affect patients. There are many genetic types of heterotopic ossification, namely fibrodysplasia ossificans progressiva, progressive osseous heteroplasia, and Albright hereditary osteodystrophy. However, this condition can also arise from surgery, burns, or traumatic injuries, so it is seen as an important area for research in the future. There are various treatments available such as non-steroidal anti-inflammatory drugs and radiation therapy, as well as combinations of the two. The …
31p Nmr Of Backbone Conformation And Dynamics In Dna At Cre Binding Site In Terms Of Sequence Context,
2012
Scripps College
31p Nmr Of Backbone Conformation And Dynamics In Dna At Cre Binding Site In Terms Of Sequence Context, Kelly A. Garton
Scripps Senior Theses
The Cre sequence (ACGT) is a site responsible for the binding of specific transcription factors that determine the activation of genes. Due to its major role in gene transcription, it has become a subject of immense research. The binding of transcription factors to the Cre binding site has been determined to be dependent on DNA conformation. In this study, the effects of flanking sequence around the Cre binding site on the conformation and the dynamics of DNA were investigated. The Cre binding site was studied in its native form with differing flanking sequences to determine the BI/BII profile (conformation) and …
The Role Of Thd2 In Deposition-Related Deactylation And Chromatin Maturation,
2012
Scripps College
The Role Of Thd2 In Deposition-Related Deactylation And Chromatin Maturation, T. Alexandria Dumas
Scripps Senior Theses
During S phase of the cell cycle, newly synthesized histones are acetylated in the cytoplasm in patterns specific to DNA replication. Once incorporated into nucleosomes, these histones are rapidly deacetylated by enzymes known as histone deacetylases. Though common in all organisms, the significance of this molecular mechanism is not fully understood. Homologous to HDAC6 in humans and HDA1 in budding yeast, Tetrahymena histone deacetylase 2 (Thd2) has been identified as the only known histone deacetylase that performs this task in the unicellular eukaryote Tetrahymena thermophila. Localizing to the transcriptionally inactive germline nucleus, the micronucleus, Thd2 has been found to deacetylate …
