Open Access. Powered by Scholars. Published by Universities.®
Cellular and Molecular Physiology Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Medicine and Health Sciences (20)
- Biochemistry, Biophysics, and Structural Biology (13)
- Amino Acids, Peptides, and Proteins (11)
- Biochemistry (11)
- Chemicals and Drugs (11)
-
- Molecular Biology (11)
- Nucleic Acids, Nucleotides, and Nucleosides (10)
- Other Biochemistry, Biophysics, and Structural Biology (10)
- Medical Sciences (6)
- Medical Physiology (5)
- Systems and Integrative Physiology (5)
- Biology (3)
- Cardiovascular Diseases (3)
- Diseases (3)
- Biotechnology (2)
- Endocrinology (2)
- Analytical, Diagnostic and Therapeutic Techniques and Equipment (1)
- Anatomy (1)
- Animal Sciences (1)
- Aquaculture and Fisheries (1)
- Bioimaging and Biomedical Optics (1)
- Biological Engineering (1)
- Biomedical Engineering and Bioengineering (1)
- Cancer Biology (1)
- Cardiovascular System (1)
- Cell and Developmental Biology (1)
- Comparative and Evolutionary Physiology (1)
- Institution
-
- Chapman University (11)
- University of Nebraska Medical Center (4)
- University of Kentucky (3)
- Eastern Illinois University (2)
- Virginia Commonwealth University (2)
-
- Boise State University (1)
- California Polytechnic State University, San Luis Obispo (1)
- East Tennessee State University (1)
- Georgia Southern University (1)
- Old Dominion University (1)
- The Texas Medical Center Library (1)
- The University of San Francisco (1)
- The University of Southern Mississippi (1)
- Thomas Jefferson University (1)
- University of Arkansas, Fayetteville (1)
- University of Louisville (1)
- University of San Diego (1)
- Keyword
-
- Translation (3)
- Adherent cell monolayer (2)
- Angiotensin II (2)
- DMSO (2)
- Heart failure (2)
-
- Manganese superoxide dismutase (2)
- MnSOD (2)
- Osmotic stress (2)
- Oxidative stress (2)
- Reactive oxygen species (2)
- Respiration (OXPHOS) (2)
- 1α-OH-B (1)
- 4-hydroxynonenal (1)
- AT1R (1)
- ATP Synthase (1)
- Acidophilic (1)
- Adenoviridae (1)
- Amino acid (1)
- Aminoacyl tRNA Synthesis (1)
- Aminoacyl tRNA Synthetase (1)
- Aminoacyl-tRNA (1)
- AngII (1)
- Angiotensin type 1 receptor (1)
- Animals (1)
- Anti-oxidant (1)
- Atlantic stingray (1)
- Bacterial Pathogenesis (1)
- Bile acids (1)
- Biomarker (1)
- Blood Pressure (1)
- Publication
-
- Biology, Chemistry, and Environmental Sciences Faculty Articles and Research (10)
- Journal Articles: Cellular & Integrative Physiology (4)
- Undergraduate Honors Theses (3)
- Theses and Dissertations (2)
- Theses and Dissertations--Physiology (2)
-
- Biomedical Engineering (1)
- Boise State University Theses and Dissertations (1)
- Center for Translational Medicine Faculty Papers (1)
- Dissertations and Theses (Open Access) (1)
- Faculty Research & Creative Activity (1)
- Faculty and Staff Scholarship (1)
- Graduate Theses and Dissertations (1)
- Honors College Theses (1)
- Master's Theses (1)
- School of Medical Diagnostics & Translational Sciences Publications (1)
- Student Scholar Symposium Abstracts and Posters (1)
- Surgery Faculty Publications (1)
- Theses (1)
- Publication Type
Articles 1 - 30 of 34
Full-Text Articles in Cellular and Molecular Physiology
Biological And Physiological Condition Of Juvenile California Halibut (Paralichthys Californicus) Exposed To A Contamination Gradient In Mission Bay, Ca, Kevin Stolzenbach
Biological And Physiological Condition Of Juvenile California Halibut (Paralichthys Californicus) Exposed To A Contamination Gradient In Mission Bay, Ca, Kevin Stolzenbach
Theses
Contaminated sediments in marine environments have been shown to be good indicators of ecological risk and a means to assess anthropogenic impacts on marine habitats and the animals that inhabit them (Long et al. 1995, Rattner 2009). Estuarine sediments are especially complex media with regard to physical, chemical, and biological characteristics that trap, store, modify and sometimes release contaminants to the biota (Long et al. 1995). Especially vulnerable are animals that are in constant contact with the sediments, such as flatfishes that partially bury themselves for camouflage (Costa et al. 2011). Impacts can be assessed in a number of ways, …
Regulation Of Dkk1, An Inhibitor Of The Wnt Signaling Pathway, By Dax-1 In Mouse Embryonic Stem Cells, Victor D. Gavallos
Regulation Of Dkk1, An Inhibitor Of The Wnt Signaling Pathway, By Dax-1 In Mouse Embryonic Stem Cells, Victor D. Gavallos
Undergraduate Honors Theses
DAX-1 is known to play a key role in the maintenance of pluripotency in mouse embryonic stem cells (mESC), such that elimination of DAX-1 (through methods such as RNAi) leads to the differentiation of ESC (Khalfallah et al. 2009). Earlier research by the Tzagarakis-Foster lab identified target genes of DAX-1 in mESC through PCR array methodology (Torres 2013). The Dickkopf 1 gene (Dkk1) was identified as a potential target of DAX-1 by these studies and has since been confirmed to be a DAX-1 target in mESC. However, to date very little is understood of the mechanism of DAX-1 repression of …
Effect Of Hydrogen Peroxide On The Biosynthesis Of Heme And Proteins: Potential Implications For The Partitioning Of Glu-TrnaGlu Between These Pathways, Carolina Farah, Gloria Levicán, Michael Ibba, Omar Orellana
Effect Of Hydrogen Peroxide On The Biosynthesis Of Heme And Proteins: Potential Implications For The Partitioning Of Glu-TrnaGlu Between These Pathways, Carolina Farah, Gloria Levicán, Michael Ibba, Omar Orellana
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Glutamyl-tRNA (Glu-tRNAGlu) is the common substrate for both protein translation and heme biosynthesis via the C5 pathway. Under normal conditions, an adequate supply of this aminoacyl-tRNA is available to both pathways. However, under certain circumstances, Glu-tRNAGlu can become scarce, resulting in competition between the two pathways for this aminoacyl-tRNA. In Acidithiobacillus ferrooxidans, glutamyl-tRNA synthetase 1 (GluRS1) is the main enzyme that synthesizes Glu-tRNAGlu. Previous studies have shown that GluRS1 is inactivated in vitro by hydrogen peroxide (H2O2). This raises the question as to whether H2O2 negatively affects …
Prostate Field Cancerization -- Thinking Outside The Tumor, Dor Shoshan, Marco Bisoffi
Prostate Field Cancerization -- Thinking Outside The Tumor, Dor Shoshan, Marco Bisoffi
Student Scholar Symposium Abstracts and Posters
Prostate field cancerization (or field effect) is characterized by the presence of molecular alterations in histologically normal tissues adjacent to adenocarcinomas. Accordingly, our research indicates deregulated expression of several proteins that define this type of molecular pathology. The scope of the present study was to determine the expression of the key transcription factor and potential marker of field cancerization early growth response 1 (EGR-1) in human prostate tissues derived from prostatectomies and biopsy cores.
EGR-1 was detected by immunofluorescence using a polyclonal anti-human EGR-1 and Alexa Fluor 488-conjugated secondary antibodies. EGR-1 expression was quantitated by determining the pixel count per …
Over-Expression Of Copper/Zinc Superoxide Dismutase In The Median Preoptic Nucleus Attenuates Chronic Angiotensin Ii-Induced Hypertension In The Rat., John P. Collister, Mitch Bellrichard, Donna Drebes, David Nahey, Jun Tian, Matthew C. Zimmerman
Over-Expression Of Copper/Zinc Superoxide Dismutase In The Median Preoptic Nucleus Attenuates Chronic Angiotensin Ii-Induced Hypertension In The Rat., John P. Collister, Mitch Bellrichard, Donna Drebes, David Nahey, Jun Tian, Matthew C. Zimmerman
Journal Articles: Cellular & Integrative Physiology
The brain senses circulating levels of angiotensin II (AngII) via circumventricular organs, such as the subfornical organ (SFO), and is thought to adjust sympathetic nervous system output accordingly via this neuro-hormonal communication. However, the cellular signaling mechanisms involved in these communications remain to be fully understood. Previous lesion studies of either the SFO, or the downstream median preoptic nucleus (MnPO) have shown a diminution of the hypertensive effects of chronic AngII, without providing a clear explanation as to the intracellular signaling pathway(s) involved. Additional studies have reported that over-expressing copper/zinc superoxide dismutase (CuZnSOD), an intracellular superoxide (O2·-) scavenging enzyme, in …
Exploring The Glucocorticoid Actions Of 1Α-Hydroxycorticosterone (1Α-Oh-B) In The Elasmobranch Fishes, Faith Nichole Lambert
Exploring The Glucocorticoid Actions Of 1Α-Hydroxycorticosterone (1Α-Oh-B) In The Elasmobranch Fishes, Faith Nichole Lambert
Master's Theses
The corticosteroid 1α-hydroxycorticosterone (1α-OH-B) is unique to the elasmobranch fishes. It is thought that 1α-OH-B acts as both the primary glucocorticoid (GC) and mineralocorticoid (MC) in these fishes, a dual role analogous to that of cortisol in the teleost fishes. The MC characteristics of 1α-OH-B are well supported, but data supporting its GC functions are lacking. In this study, the putative GC actions of 1α-OH-B were examined. The first experiment characterized the physiological stress response of the Atlantic stingray (Dasyatis sabina) to air exposure, with particular regards to the roles of corticosteroids and metabolic fuels. Results demonstrate that …
Regulation Of Functional Expression Of Mechanosensitive Trpv4 Channel In The Distal Nephron By Dietary Potassium And Sodium Intake, Nabila Boukelmoune
Regulation Of Functional Expression Of Mechanosensitive Trpv4 Channel In The Distal Nephron By Dietary Potassium And Sodium Intake, Nabila Boukelmoune
Dissertations and Theses (Open Access)
The Ca2+-permeable TRPV4 channel is predominantly expressed in the distal nephron (DN) and its activity is essential for [Ca2+]i elevations in response to increased tubular flow. Here, I probed the physiological mechanisms controlling TRPV4 function and expression in the DN. I found that renal TRPV4 expression and mRNA levels were significantly increased by high K+ diet (5%) and decreased by dietary K+ restriction (0.003%). In contrast, variations in Na+ regimen had no apparent effect on TRPV4 expression and mRNA levels. Regulation of TRPV4 protein expression by K+ diet was independent of …
Central Role Of Carotid Body Chemoreceptors In Disordered Breathing And Cardiorenal Dysfunction In Chronic Heart Failure., Noah J. Marcus, Rodrigo Del Rio, Harold D. Schultz
Central Role Of Carotid Body Chemoreceptors In Disordered Breathing And Cardiorenal Dysfunction In Chronic Heart Failure., Noah J. Marcus, Rodrigo Del Rio, Harold D. Schultz
Journal Articles: Cellular & Integrative Physiology
Oscillatory breathing (OB) patterns are observed in pre-term infants, patients with cardio-renal impairment, and in otherwise healthy humans exposed to high altitude. Enhanced carotid body (CB) chemoreflex sensitivity is common to all of these populations and is thought to contribute to these abnormal patterns by destabilizing the respiratory control system. OB patterns in chronic heart failure (CHF) patients are associated with greater levels of tonic and chemoreflex-evoked sympathetic nerve activity (SNA), which is associated with greater morbidity and poor prognosis. Enhanced chemoreflex drive may contribute to tonic elevations in SNA by strengthening the relationship between respiratory and sympathetic neural outflow. …
The Non-Canonical Hydroxylase Structure Of Yfcm Reveals A Metal Ion-Coordination Motif Required For Ef-P Hydroxylation, Kan Kobayashi, Assaf Katz, Andrei Rajkovic, Ryohei Ishii, Owen E. Branson, Michael A. Freitas, Ryuichiro Ishitani, Michael Ibba, Osamu Nureki
The Non-Canonical Hydroxylase Structure Of Yfcm Reveals A Metal Ion-Coordination Motif Required For Ef-P Hydroxylation, Kan Kobayashi, Assaf Katz, Andrei Rajkovic, Ryohei Ishii, Owen E. Branson, Michael A. Freitas, Ryuichiro Ishitani, Michael Ibba, Osamu Nureki
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
EF-P is a bacterial tRNA-mimic protein, which accelerates the ribosome-catalyzed polymerization of poly-prolines. In Escherichia coli, EF-P is post-translationally modified on a conserved lysine residue. The post-translational modification is performed in a two-step reaction involving the addition of a β-lysine moiety and the subsequent hydroxylation, catalyzed by PoxA and YfcM, respectively. The β-lysine moiety was previously shown to enhance the rate of poly-proline synthesis, but the role of the hydroxylation is poorly understood. We solved the crystal structure of YfcM and performed functional analyses to determine the hydroxylation mechanism. In addition, YfcM appears to be structurally distinct from any …
Mistranslation Of The Genetic Code, Adil Moghal, Kyle Mohler, Michael Ibba
Mistranslation Of The Genetic Code, Adil Moghal, Kyle Mohler, Michael Ibba
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
During mRNA decoding at the ribosome, deviations from stringent codon identity, or “mistranslation,” are generally deleterious and infrequent. Observations of organisms that decode some codons ambiguously, and the discovery of a compensatory increase in mistranslation frequency to combat environmental stress have changed the way we view “errors” in decoding. Modern tools for the study of the frequency and phenotypic effects of mistranslation can provide quantitative and sensitive measurements of decoding errors that were previously inaccessible. Mistranslation with non‐protein amino acids, in particular, is an enticing prospect for new drug therapies and the study of molecular evolution.
Relaxed Substrate Specificity Leads To Extensive Trna Mischarging By Streptococcus Pneumoniae Class I And Class Ii Aminoacyl-Trna Synthetases, Jennifer Shepherd, Michael Ibba
Relaxed Substrate Specificity Leads To Extensive Trna Mischarging By Streptococcus Pneumoniae Class I And Class Ii Aminoacyl-Trna Synthetases, Jennifer Shepherd, Michael Ibba
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Aminoacyl-tRNA synthetases provide the first step in protein synthesis quality control by discriminating cognate from noncognate amino acid and tRNA substrates. While substrate specificity is enhanced in many instances by cis- and trans-editing pathways, it has been revealed that in organisms such as Streptococcus pneumoniae some aminoacyl-tRNA synthetases display significant tRNA mischarging activity. To investigate the extent of tRNA mischarging in this pathogen, the aminoacylation profiles of class I isoleucyl-tRNA synthetase (IleRS) and class II lysyl-tRNA synthetase (LysRS) were determined. Pneumococcal IleRS mischarged tRNAIle with both Val, as demonstrated in other bacteria, and Leu in a tRNA sequence-dependent …
Translation Initiation Rate Determines The Impact Of Ribosome Stalling On Bacterial Protein Synthesis, Steven J. Hersch, Sara Elgamal, Assaf Katz, Michael Ibba, William Wiley Navarre
Translation Initiation Rate Determines The Impact Of Ribosome Stalling On Bacterial Protein Synthesis, Steven J. Hersch, Sara Elgamal, Assaf Katz, Michael Ibba, William Wiley Navarre
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Ribosome stalling during translation can be caused by a number of characterized mechanisms. However, the impact of elongation stalls on protein levels is variable, and the reasons for this are often unclear. To investigate this relationship, we examined the bacterial translation elongation factor P (EF-P), which plays a critical role in rescuing ribosomes stalled at specific amino acid sequences including polyproline motifs. In previous proteomic analyses of both Salmonella and Escherichia coli efp mutants, it was evident that not all proteins containing a polyproline motif were dependent on EF-P for efficient expression in vivo . The α- and β-subunits of …
Ef-P Dependent Pauses Integrate Proximal And Distal Signals During Translation, Sara Elgamal, Assaf Katz, Steven J. Hersch, David Newsom, Peter White, William Wiley Navarre, Michael Ibba
Ef-P Dependent Pauses Integrate Proximal And Distal Signals During Translation, Sara Elgamal, Assaf Katz, Steven J. Hersch, David Newsom, Peter White, William Wiley Navarre, Michael Ibba
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Elongation factor P (EF-P) is required for the efficient synthesis of proteins with stretches of consecutive prolines and other motifs that would otherwise lead to ribosome pausing. However, previous reports also demonstrated that levels of most diprolyl-containing proteins are not altered by the deletion of efp. To define the particular sequences that trigger ribosome stalling at diprolyl (PPX) motifs, we used ribosome profiling to monitor global ribosome occupancy in Escherichia coli strains lacking EF-P. Only 2.8% of PPX motifs caused significant ribosomal pausing in the Δefp strain, with up to a 45-fold increase in ribosome density observed at …
Cryopreservation Of Hepatocyte (Hepg2) Cell Monolayers: Impact Of Trehalose, Blake Stokich, Quinn Osgood, David Grimm, Shhyam Moorthy, Nilay Chakraborty, Michael A. Menze
Cryopreservation Of Hepatocyte (Hepg2) Cell Monolayers: Impact Of Trehalose, Blake Stokich, Quinn Osgood, David Grimm, Shhyam Moorthy, Nilay Chakraborty, Michael A. Menze
Faculty Research & Creative Activity
A simple method to cryogenically preserve hepatocyte monolayers is currently not available but such a technique would facilitate numerous applications in the field of biomedical engineering, cell line development, and drug screening. We investigated the effect of trehalose and dimethyl sulfoxide (Me2SO) in cryopreservation of human hepatocellular carcinoma (HepG2) cells in suspension and monolayer formats. HepG2 cell monolayers were incubated for 24 h at varying concentrations of trehalose (50–150 mM) prior to cryopreservation to identify the optimum concentration for such preincubation. When trehalose alone was used as the cryoprotective agent (CPA), cells in monolayer format did not survive freezing while …
Cryopreservation Of Hepatocyte (Hepg2) Cell Monolayers: Impact Of Trehalose, Blake Stokich, Quinn Osgood, David Grimm, Shhyam Moorthy, Nilay Chakraborty, Michael Menze
Cryopreservation Of Hepatocyte (Hepg2) Cell Monolayers: Impact Of Trehalose, Blake Stokich, Quinn Osgood, David Grimm, Shhyam Moorthy, Nilay Chakraborty, Michael Menze
Faculty and Staff Scholarship
A simple method to cryogenically preserve hepatocyte monolayers is currently not available but such a technique would facilitate numerous applications in the field of biomedical engineering, cell line development, and drug screening. We investigated the effect of trehalose and dimethyl sulfoxide (Me2SO) in cryopreservation of human hepatocellular carcinoma (HepG2) cells in suspension and monolayer formats. HepG2 cell monolayers were incubated for 24 h at varying concentrations of trehalose (50–150 mM) prior to cryopreservation to identify the optimum concentration for such preincubation. When trehalose alone was used as the cryoprotective agent (CPA), cells in monolayer format did not survive freezing while …
Osteoblast Oncostatin M Signaling In Modeled Spaceflight, Jacob Goyden
Osteoblast Oncostatin M Signaling In Modeled Spaceflight, Jacob Goyden
Boise State University Theses and Dissertations
Bone deterioration is a challenge in long-term spaceflight with significant connections to terrestrial disuse bone loss. Prolonged unloading and radiation exposure, defining characteristics of space travel, have both been associated with changes in inflammatory signaling via IL-6 class cytokines in bone. While there is also some evidence for perturbed IL-6 class signaling in spaceflight, there has been scant examination of the connections between free fall, radiation, and inflammatory stimuli in bone. Our lab and others have shown that the IL-6 class cytokine oncostatin M (OSM) is an important regulator of bone remodeling. We hypothesize that spaceflight alters osteoblast OSM signaling, …
The Effect Of Leucine Supplementation On Biomarkers Of Mitochondrial Biogenesis And Protein Synthesis In Soleus Muscle Of Rats Fed A High-Fat Diet, Gina Davis
Graduate Theses and Dissertations
Mitochondrial dysfunction is a contributing factor to the advancement of various diseases including obesity, diabetes, and cardiovascular disease. Impairment in mitochondria brings about a diminished mitochondrial number and oxidative capacity. Leucine is known to stimulate muscle protein synthesis through transcription and translation of nuclear DNA leading to increases in mitochondrial biogenesis and fatty acid oxidation. However, the effects of leucine on anabolic factors of the mitochondrial genome, during catabolic conditions are not known. PURPOSE: To determine if leucine supplementation alters the negative effects of a high fat (60%) diet (HFD) on the mitochondrial genome by measuring the gene expression of …
Targeting The Wnt/Β-Catenin Signaling Pathway In Liver Cancer Stem Cells And Hepatocellular Carcinoma Cell Lines With Fh535, Roberto Gedaly, Roberto Galuppo, Michael F. Daily, Malay B. Shah, Erin Colleen Maynard, Changguo Chen, Xiping Zhang, Karyn A. Esser, Donald A. Cohen, B. Mark Evers, Jieyun Jiang, Brett T. Spear
Targeting The Wnt/Β-Catenin Signaling Pathway In Liver Cancer Stem Cells And Hepatocellular Carcinoma Cell Lines With Fh535, Roberto Gedaly, Roberto Galuppo, Michael F. Daily, Malay B. Shah, Erin Colleen Maynard, Changguo Chen, Xiping Zhang, Karyn A. Esser, Donald A. Cohen, B. Mark Evers, Jieyun Jiang, Brett T. Spear
Surgery Faculty Publications
Activation of the Wnt/β-catenin pathway has been observed in at least 1/3 of hepatocellular carcinomas (HCC), and a significant number of these have mutations in the β-catenin gene. Therefore, effective inhibition of this pathway could provide a novel method to treat HCC. The purposed of this study was to determine whether FH535, which was previously shown to block the β-catenin pathway, could inhibit β-catenin activation of target genes and inhibit proliferation of Liver Cancer Stem Cells (LCSC) and HCC cell lines. Using β-catenin responsive reporter genes, our data indicates that FH535 can inhibit target gene activation by endogenous and exogenously …
Trnas As Regulators Of Biological Processes, Medha Raina, Michael Ibba
Trnas As Regulators Of Biological Processes, Medha Raina, Michael Ibba
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Transfer RNAs (tRNA) are best known for their role as adaptors during translation of the genetic code. Beyond their canonical role during protein biosynthesis, tRNAs also perform additional functions in both prokaryotes and eukaryotes for example in regulating gene expression. Aminoacylated tRNAs have also been implicated as substrates for non-ribosomal peptide bond formation, post-translational protein labeling, modification of phospholipids in the cell membrane, and antibiotic biosyntheses. Most recently tRNA fragments, or tRFs, have also been recognized to play regulatory roles. Here, we examine in more detail some of the new functions emerging for tRNA in a variety of cellular processes …
Oxidation Of Cellular Amino Acid Pools Leads To Cytotoxic Mistranslation Of The Genetic Code, Tammy J. Bullwinkle, Noah M. Reynolds, Medha Raina, Adil Moghal, Eleftheria Matsa, Andrei Rajkovic, Huseyin Kayadibi, Farbod Fazlollahi, Christopher Ryan, Nathaniel Howitz, Kym F. Faull, Beth A. Lazazzera, Michael Ibba
Oxidation Of Cellular Amino Acid Pools Leads To Cytotoxic Mistranslation Of The Genetic Code, Tammy J. Bullwinkle, Noah M. Reynolds, Medha Raina, Adil Moghal, Eleftheria Matsa, Andrei Rajkovic, Huseyin Kayadibi, Farbod Fazlollahi, Christopher Ryan, Nathaniel Howitz, Kym F. Faull, Beth A. Lazazzera, Michael Ibba
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Aminoacyl-tRNA synthetases use a variety of mechanisms to ensure fidelity of the genetic code and ultimately select the correct amino acids to be used in protein synthesis. The physiological necessity of these quality control mechanisms in different environments remains unclear, as the cost vs benefit of accurate protein synthesis is difficult to predict. We show that in Escherichia coli, a non-coded amino acid produced through oxidative damage is a significant threat to the accuracy of protein synthesis and must be cleared by phenylalanine-tRNA synthetase in order to prevent cellular toxicity caused by mis-synthesized proteins. These findings demonstrate how stress …
Smooth Muscle Cell Organization In The Stem Region Of The Gracilis Collateral Circulation, Amanda Krall
Smooth Muscle Cell Organization In The Stem Region Of The Gracilis Collateral Circulation, Amanda Krall
Biomedical Engineering
Many patients who suffer from the ischemic Peripheral Arterial Occlusive Disease (PAOD) experience intermittent claudication, which can be attributed to impaired vasodilation. Collateral vessels are the primary site of resistance to blood flow downstream; therefore maximizing vasodilation in collaterals is crucial for efficient circulation. Collaterals function as natural bypasses around the occluded arteries and the increase in flow into these vessels causes them to outwardly remodel into conduit vessels. However, functional vasodilation in the stem region of collateral vessels is impaired at day 7 following femoral ligation, which can be attributed to smooth muscle cell malfunction. However, the increase in …
Reduced Amino Acid Specificity Of Mammalian Tyrosyl-Trna Synthetase Is Associated With Elevated Mistranslation Of Tyr Codons, Medha Raina, Adil Moghal, Amanda Kano, Mathew Jerums, Paul D. Schnier, Shun Luo, Rohini Deshpande, Pavel D. Bondarenko, Henry Lin, Michael Ibba
Reduced Amino Acid Specificity Of Mammalian Tyrosyl-Trna Synthetase Is Associated With Elevated Mistranslation Of Tyr Codons, Medha Raina, Adil Moghal, Amanda Kano, Mathew Jerums, Paul D. Schnier, Shun Luo, Rohini Deshpande, Pavel D. Bondarenko, Henry Lin, Michael Ibba
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Quality control operates at different steps in translation to limit errors to approximately one mistranslated codon per 10,000 codons during mRNA-directed protein synthesis. Recent studies have suggested that error rates may actually vary considerably during translation under different growth conditions. Here we examined the misincorporation of Phe at Tyr codons during synthesis of a recombinant antibody produced in tyrosine-limited Chinese hamster ovary (CHO) cells. Tyr to Phe replacements were previously found to occur throughout the antibody at a rate of up to 0.7% irrespective of the identity or context of the Tyr codon translated. Despite this comparatively high mistranslation rate, …
Adrenergic Signaling Regulates Mitochondrial Ca(2+) Uptake Through Pyk2-Dependent Tyrosine Phosphorylation Of The Mitochondrial Ca(2+) Uniporter., Jin O-Uchi, Bong Sook Jhun, Shangcheng Xu, Stephen Hurst, Anna Raffaello, Xiaoyun Liu, Bing Yi, Huiliang Zhang, Polina Gross, Jyotsna Mishra, Alina Ainbinder, Sarah Kettlewell, Godfrey L Smith, Robert T Dirksen, Wang Wang, Rosario Rizzuto, Shey-Shing Sheu
Adrenergic Signaling Regulates Mitochondrial Ca(2+) Uptake Through Pyk2-Dependent Tyrosine Phosphorylation Of The Mitochondrial Ca(2+) Uniporter., Jin O-Uchi, Bong Sook Jhun, Shangcheng Xu, Stephen Hurst, Anna Raffaello, Xiaoyun Liu, Bing Yi, Huiliang Zhang, Polina Gross, Jyotsna Mishra, Alina Ainbinder, Sarah Kettlewell, Godfrey L Smith, Robert T Dirksen, Wang Wang, Rosario Rizzuto, Shey-Shing Sheu
Center for Translational Medicine Faculty Papers
Abstract Aims: Mitochondrial Ca(2+) homeostasis is crucial for balancing cell survival and death. The recent discovery of the molecular identity of the mitochondrial Ca(2+) uniporter pore (MCU) opens new possibilities for applying genetic approaches to study mitochondrial Ca(2+) regulation in various cell types, including cardiac myocytes. Basal tyrosine phosphorylation of MCU was reported from mass spectroscopy of human and mouse tissues, but the signaling pathways that regulate mitochondrial Ca(2+) entry through posttranslational modifications of MCU are completely unknown. Therefore, we investigated α1-adrenergic-mediated signal transduction of MCU posttranslational modification and function in cardiac cells. Results: α1-adrenoceptor (α1-AR) signaling translocated activated proline-rich …
Eggshell Calcium Regulates Calcium Transport Protein Expression In An Oviparous Snake, Hannah Frye
Eggshell Calcium Regulates Calcium Transport Protein Expression In An Oviparous Snake, Hannah Frye
Undergraduate Honors Theses
One hypothesis explaining the numerous independent evolutionary transitions from oviparity to viviparity among squamates (snakes and lizards) proposed that squamate embryonic development is independent of eggshell calcium. Recent research showed at least 25% of the calcium in hatchling oviparous squamates is extracted from the shell. Though not a direct test, these results are inconsistent with the hypothesis. To directly test the hypothesis, we removed eggshell calcium (through peeling) early in development of Pantherophis guttatus (corn snake) eggs. Survivorship to hatching did not differ between peeled and intact eggs. Yet hatchlings from peeled eggs were shorter (273.6 ± 3.4 vs. 261.0 …
Mitoneet: Reduction In Insulin Resistance Through Ameliorated Oxidative Stress?, Nicolas A. Ferry
Mitoneet: Reduction In Insulin Resistance Through Ameliorated Oxidative Stress?, Nicolas A. Ferry
Undergraduate Honors Theses
MitoNEET is a mitochondrial iron-sulfur protein with poorly-understood functions. Proposed functions of mitoNEET include regulating of oxidative capacity, reactive oxygen homeostasis, and other possible roles. Investigating the interactions of mitoNEET with other proteins might help identify functional roles of this protein. MitoNEET was discovered in 2004 to identify physiological targets of pioglitazone hydrochloride, a drug that is commonly used to treat type-2 diabetes. Type-2 diabetes is a metabolic disease and, although the exact pathology is complex, the role of the mitochondrion in cellular energy production and glucose oxidation indicates that this organelle has a role in type-2 diabetes. Because of …
Physiological And Biochemical Consequences Of Sleep Deprivation, Jade Catherine Boykin
Physiological And Biochemical Consequences Of Sleep Deprivation, Jade Catherine Boykin
Honors College Theses
Sleep is a universal phenomenon in vertebrates and lack of sleep has been linked with various abnormal behaviors (Singh et al 2013). Studies have shown that a strong linkage exists between stress and sleep, or lack thereof. In fact, the Better Sleep Council’s 2009 survey revealed that 65% of Americans lose sleep due to elevated stress (Wells and Vaughn 2012). Continual (chronic) elevated stress levels have been linked with serious negative health effects. By using sleep deprivation studies, on a simpler animal model than humans it is our aim to investigate the consequences of sleep deprivation at the physiological and …
The Abcs Of The Ribosome, Kurt Fredrick, Michael Ibba
The Abcs Of The Ribosome, Kurt Fredrick, Michael Ibba
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
An ABC protein that binds the ribosomal exit site suggests a new mechanism for direct regulation of translation in response to changing ATP levels in the cell.
Absence Of Manganese Superoxide Dismutase Delays P53-Induced Tumor Formation., Adam J. Case, Frederick E. Domann
Absence Of Manganese Superoxide Dismutase Delays P53-Induced Tumor Formation., Adam J. Case, Frederick E. Domann
Journal Articles: Cellular & Integrative Physiology
BACKGROUND: Manganese superoxide dismutase (MnSOD) is a mitochondrial antioxidant enzyme that is down-regulated in a majority of cancers. Due to this observation, as well as MnSOD's potent antioxidant enzymatic activity, MnSOD has been suggested as a tumor suppressor for over 30 years. However, testing this postulate has proven difficult due to the early post-natal lethality of the MnSOD constitutive knock-out mouse. We have previously used a conditional tissue-specific MnSOD knock-out mouse to study the effects of MnSOD loss on the development of various cell types, but long-term cancer development studies have not been performed. We hypothesized the complete loss of …
Leptin Regulates Cd16 Expression On Human Monocytes In A Sex-Specific Manner, Joseph G. Cannon, Gyanendra Sharma, Gloria Sloan, Christiana Dimitropoulou, R. Randall Baker, Andrew Mazzoli, Barbara Kraj, Anthony Mulloy, Miriam Cortez-Cooper
Leptin Regulates Cd16 Expression On Human Monocytes In A Sex-Specific Manner, Joseph G. Cannon, Gyanendra Sharma, Gloria Sloan, Christiana Dimitropoulou, R. Randall Baker, Andrew Mazzoli, Barbara Kraj, Anthony Mulloy, Miriam Cortez-Cooper
School of Medical Diagnostics & Translational Sciences Publications
Fat mass is linked mechanistically to the cardiovascular system through leptin, a 16 kDa protein produced primarily by adipocytes. In addition to increasing blood pressure via hypothalamic-sympathetic pathways, leptin stimulates monocyte migration, cytokine secretion, and other functions that contribute to atherosclerotic plaque development. These functions are also characteristics of CD16-positive monocytes that have been implicated in the clinical progression of atherosclerosis. This investigation sought to determine if leptin promoted the development of such CD16-positive monocytes. Cells from 45 healthy men and women with age ranging from 20 to 59 years were analyzed. Circulating numbers of CD14++16++ monocytes, which are primary …
Over-Expressed Copper/Zinc Superoxide Dismutase Localizes To Mitochondria In Neurons Inhibiting The Angiotensin Ii-Mediated Increase In Mitochondrial Superoxide, Shumin Li, Adam J. Case, Rui-Fang Yang, Harold D. Schultz, Matthew C. Zimmerman
Over-Expressed Copper/Zinc Superoxide Dismutase Localizes To Mitochondria In Neurons Inhibiting The Angiotensin Ii-Mediated Increase In Mitochondrial Superoxide, Shumin Li, Adam J. Case, Rui-Fang Yang, Harold D. Schultz, Matthew C. Zimmerman
Journal Articles: Cellular & Integrative Physiology
Angiotensin II (AngII) is the main effector peptide of the renin-angiotensin system (RAS), and contributes to the pathogenesis of cardiovascular disease by exerting its effects on an array of different cell types, including central neurons. AngII intra-neuronal signaling is mediated, at least in part, by reactive oxygen species, particularly superoxide (O2 (•-)). Recently, it has been discovered that mitochondria are a major subcellular source of AngII-induced O2 (•-). We have previously reported that over-expression of manganese superoxide dismutase (MnSOD), a mitochondrial matrix-localized O2 (•-) scavenging enzyme, inhibits AngII intra-neuronal signaling. Interestingly, over-expression of copper/zinc superoxide dismutase (CuZnSOD), which is believed …