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Articles 31 - 60 of 64
Full-Text Articles in Cell Biology
The Consequences Of Disrupting The Mdm2-P53 Balance In Hematopoiesis, Hussein A. Abbas
The Consequences Of Disrupting The Mdm2-P53 Balance In Hematopoiesis, Hussein A. Abbas
Dissertations and Theses (Open Access)
The bone marrow accommodates hematopoietic stem cells and progenitors. These cells provide an indispensible resource for replenishing the blood constituents throughout an organism’s life. A tissue with such a high turn-over rate mandates intact cycling checkpoint and apoptotic pathways to avoid inappropriate cell proliferation and ultimately the development of leukemias. p53, a major tumor suppressor, is a transcription factor that regulates cell cycle, and induces apoptosis and senescence. Mice inheriting a hypomorphic p53 allele in the absence of Mdm2, a p53 inhibitor, have elevated p53 cell cycle activity and die by postnatal day 13 due to hematopoietic failure. Hematopoiesis progresses …
Cip4 And Src In Promoting The Migration And Invasion Of Breast Cancers, Christina S. Pichot
Cip4 And Src In Promoting The Migration And Invasion Of Breast Cancers, Christina S. Pichot
Dissertations and Theses (Open Access)
Cellular invasion represents a critical early step in the metastatic cascade, and many proteins have been identified as part of an “invasive signature.” The non-receptor tyrosine kinase Src is commonly upregulated in breast cancers, often in conjunction with overexpression of EGFR. Signaling from this pathway stimulates cell proliferation, migration, and invasion and frequently involves proteins that regulate the cytoskeleton. My data demonstrates that inhibition of Src, using the small-molecule inhibitor dasatinib, impairs cellular migration and invasion. Furthermore, Src inhibition sensitizes the cells to the effects of the chemotherapeutic doxorubicin resulting in dramatic, synergistic inhibition of proliferation with combination treatments. The …
Inhibition Of Deubiquitinase Activity And Ubiquitination Of Jak2 Blocks Cytokine Signaling And Induces Tumor Cell Apoptosis, Vaibhav Kapuria
Inhibition Of Deubiquitinase Activity And Ubiquitination Of Jak2 Blocks Cytokine Signaling And Induces Tumor Cell Apoptosis, Vaibhav Kapuria
Dissertations and Theses (Open Access)
The Jak-stat pathway is critical for cellular proliferation and is commonly found to be deregulated in many solid tumors as well as hematological malignancies. Such findings have spurred the development of novel therapeutic agents that specifically inhibit Jak2 kinase, thereby suppressing tumor cell growth. Tyrphostin AG490, the first described Jak2 inhibitor, displays poor pharmacology and requires high concentrations for anti-tumor activities. Our research group screened a small library of AG490 structural analogues and identified WP1130 as a potent inhibitor of Jak2 signaling. However, unlike AG490, WP1130 did not directly inhibit Jak2 kinase activity. Our results show that WP1130 induces rapid …
The Ubiquitin Ligase Ube4b Is Required For Efficient Epidermal Growth Factor Receptor Degradation, Natalie Sirisaengtaksin
The Ubiquitin Ligase Ube4b Is Required For Efficient Epidermal Growth Factor Receptor Degradation, Natalie Sirisaengtaksin
Dissertations and Theses (Open Access)
The length of time that integral membrane proteins reside on the plasma membrane is regulated by endocytosis, a process that can inactivate these proteins by removing them from the membrane and may ultimately result in their degradation. Proteins are internalized and pass through multiple distinct intracellular compartments where targeting decisions determine their fate. Membrane proteins initially enter early endosomes, and subsequently late endosomes/multivesicular bodies (MVBs), before being degraded in the lysosome. The MVB is a subset of late endosomes characterized by the appearance of small vesicles in its luminal compartment. These vesicles contain cargo proteins sorted from the limiting membrane …
Cellular And Developmental Functions Of The Xenopus Arvcf-Catenin:Kazrin Complex, Kyucheol Cho
Cellular And Developmental Functions Of The Xenopus Arvcf-Catenin:Kazrin Complex, Kyucheol Cho
Dissertations and Theses (Open Access)
Xenopus ARVCF (xARVCF), a member of p120-catenin subfamily, binds cadherin cytoplasmic domains to enhance cadherin metabolic stability, or when dissociated, modulates Rho-family GTPases. We previously found that xARVCF binds directly to Xenopus KazrinA (xKazrinA), a widely expressed, conserved protein that bears little homology to established protein families. xKazrinA is also known to influence keratinocyte proliferation-differentiation and cytoskeletal activity. In my study, I first evaluated the expression pattern of endogenous Kazrin RNA and protein in Xenopus embryogenesis as well as in adult tissues. We then collaboratively predicted the helical structure of Kazrin’s coiled-coil domain, and I obtained evidence of Kazrin’s dimerization/oligomerization. …
Genetic And Biochemical Studies Of Plasmid Pir52-1 In Lactobacillus Helveticus, Cody Alexander Tramp
Genetic And Biochemical Studies Of Plasmid Pir52-1 In Lactobacillus Helveticus, Cody Alexander Tramp
Undergraduate Honors Capstone Projects
Lactobacillus helveticus is a species of lactic acid bacteria. These bacteria, which produce lactic acid as a major product of carbohydrate metabolism, are used industrially to produce cheese and other fermented dairy products (Ebringer et al., 2008). Many species of lactic acid bacteria also possess probiotic characteristics and when ingested potentially confer increased immune function, regulate gut microbiota, and improve digestion in the host (Reid, 2008). Genetic studies of these probiotic effects and other characteristics of L. helveticus and related species have been hindered by the lack of stably replicating plasmid vectors. Plasmid vectors for several Lactobacillus species have been …
The Rho Family Gtpase: Determining Gef Specificity Through Recombinant Expression, Farrah Steinke
The Rho Family Gtpase: Determining Gef Specificity Through Recombinant Expression, Farrah Steinke
Honors Capstones
Capstone submitted as a graduation requirement for the BSU Honors Program.
Role Of Protein Kinase C In Tbt-Induced Inhibition Of Lytic Function And Mapk Activation In Human Natural Killer Cells, Abraham B. Abraha, Krupa Rana, Margaret M. Whalen
Role Of Protein Kinase C In Tbt-Induced Inhibition Of Lytic Function And Mapk Activation In Human Natural Killer Cells, Abraham B. Abraha, Krupa Rana, Margaret M. Whalen
Chemistry Faculty Research
Human natural killer (NK) cells are lymphocytes that destroy tumor and virally infected cells. Previous studies have shown that exposure of NK cells to tributyltin (TBT) greatly diminishes their ability to destroy tumor cells (lytic function) while activating mitogen-activated protein kinases (MAPK) (p44/42, p38, and JNK) in NK cells. The signaling pathway that regulates NK lytic function appears to include activation of protein kinase C (PKC) as well as MAPK activity. TBT-induced activation of MAPKs would trigger a portion of the NK lytic signaling pathway, which would then leave the NK cell unable to trigger this pathway in response to …
Effects Of Butyltin Exposures On Map Kinase-Dependent Transcription Regulators In Human Natural Killer Cells, Rachel J. Person, Margaret M. Whalen
Effects Of Butyltin Exposures On Map Kinase-Dependent Transcription Regulators In Human Natural Killer Cells, Rachel J. Person, Margaret M. Whalen
Chemistry Faculty Research
Natural killer (NK) cells are a major immune defense mechanism against cancer development and viral infection. The butyltins (BTs), tributyltin (TBT) and dibutyltin (DBT), have been widely used in industrial and other applications and significantly contaminate the environment. Both TBT and DBT have been detected in human blood. These compounds inhibit the lytic and binding function of human NK cells and thus could increase the incidence of cancer and viral infections. Butyltin (BT)-induced loss of NK function is accompanied by activation of mitogen activated protein kinases (MAPKs) and decreases in expression of cell-surface and cytolytic proteins. MAPKs activate components of …
Pcdp1 Is A Central Apparatus Protein That Binds Ca2+-Calmodulin And Regulates Ciliary Motility, Christen G. Dipetrillo, Elizabeth F. Smith
Pcdp1 Is A Central Apparatus Protein That Binds Ca2+-Calmodulin And Regulates Ciliary Motility, Christen G. Dipetrillo, Elizabeth F. Smith
Dartmouth Scholarship
For all motile eukaryotic cilia and flagella, beating is regulated by changes in intraciliary calcium concentration. Although the mechanism for calcium regulation is not understood, numerous studies have shown that calmodulin (CaM) is a key axonemal calcium sensor. Using anti-CaM antibodies and Chlamydomonas reinhardtii axonemal extracts, we precipitated a complex that includes four polypeptides and that specifically interacts with CaM in high [Ca2+]. One of the complex members, FAP221, is an orthologue of mammalian Pcdp1 (primary ciliary dyskinesia protein 1). Both FAP221 and mammalian Pcdp1 specifically bind CaM in high [Ca2+]. Reduced expression of Pcdp1 complex …
Cellular Immunity In Mouse Models Of Viral Encephalitis, Christina Dawn Steel
Cellular Immunity In Mouse Models Of Viral Encephalitis, Christina Dawn Steel
Theses and Dissertations in Biomedical Sciences
Evidence is presented herein that intranasal application of vesicular stomatitis virus (VSV) caused acute infection of the murine central nervous system (CNS) with associated morbidity and significant mortality in mice. However, VSV encephalitis was not invariably fatal, suggesting that the CNS contained a professional antigen-presenting cell (APC) capable of inducing or propagating a protective antiviral immune response. To examine this possibility, we administered VSV via the intranasal route and then characterized the cellular elements that infiltrate the brain as well as the activation status of resident microglia, cells widely believed to represent the major APC population in the CNS. To …
Human Osteoblast Proliferation In Culture Following A Nanosecond Pulsed Electric Field (Nspef), Leonard Joseph Carinci Jr.
Human Osteoblast Proliferation In Culture Following A Nanosecond Pulsed Electric Field (Nspef), Leonard Joseph Carinci Jr.
Biological Sciences Theses & Dissertations
Osteoblasts are mononucleate bone forming cells responsible for the deposition of new bone. Application of mechanical stress on bone reveals its ability to produce and release electric potentials across the cell membrane called piezoelectricity. The electric potentials produced in response to mechanical stress may have a direct correlation on osseous cells and the signaling pathways that regulate proliferation. Nanosecond pulsed electric fields (nsPEFs) are high intensity, ultrashort pulses which have the ability to maintain the integrity of the cell membrane by avoiding traditional electroporation. We delivered 8 nsPEFs (0.5 Hz) of a 25 kV/cm or 35 kV/cm electric field strength …
Dibutyltin Activates Map Kinases In Human Natural Killer Cells, In Vitro, Sabah O. Odman-Ghazi, Abraham Abraha, Erica Taylor Isom, Margaret M. Whalen
Dibutyltin Activates Map Kinases In Human Natural Killer Cells, In Vitro, Sabah O. Odman-Ghazi, Abraham Abraha, Erica Taylor Isom, Margaret M. Whalen
Chemistry Faculty Research
Previous studies have shown that dibutyltin (DBT) interferes with the function of human natural killer (NK) cells, diminishing their capacity to destroy tumor cells, in vitro. DBT is a widespread environmental contaminant and has been found in human blood. As NK cells are our primary immune defense against tumor cells, it is important to understand the mechanism by which DBT interferes with their function. The current study examines the effects of DBT exposures on key enzymes in the signaling pathway that regulates NK responsiveness to tumor cells. These include several protein tyrosine kinases (PTKs), mitogen-activated protein kinases (MAPKs), and mitogen-activated …
Immunosuppressive Effects Of Triclosan, Nonylphenol, And Ddt On Human Natural Killer Cells In Vitro, Felicia Udoji, Tamara Martin, Rachel Etherton, Margaret M. Whalen
Immunosuppressive Effects Of Triclosan, Nonylphenol, And Ddt On Human Natural Killer Cells In Vitro, Felicia Udoji, Tamara Martin, Rachel Etherton, Margaret M. Whalen
Chemistry Faculty Research
Human natural killer (NK) cells are a first-line immune defense against tumor cells and virally-infected cells. If their function is impaired, it leaves an individual more susceptible to cancer development or viral infection. The ability of compounds that contaminate the environment to suppress the function of NK cells could contribute to the increased risk of cancer development. There are a wide spectrum of compounds that significantly contaminate water and food that are consumed by humans, leading to accumulation of some of these compounds in human tissues. In the current study, we examined the ability of three such compounds to diminish …
Activation Of P44/42 Mapk Plays A Role In The Tbt-Induced Loss Of Human Natural Killer (Nk) Cell Function, Fred D. Dudimah, Denisha Griffey, Xiaofei Wang, Margaret M. Whalen
Activation Of P44/42 Mapk Plays A Role In The Tbt-Induced Loss Of Human Natural Killer (Nk) Cell Function, Fred D. Dudimah, Denisha Griffey, Xiaofei Wang, Margaret M. Whalen
Chemistry Faculty Research
Natural killer (NK) cells destroy (lyse) tumor cells, virally infected cells, and antibody-coated cells. Previous studies indicated that exposure to the environmental contaminant tributyltin (TBT) decreases the lytic function of NK cells and activates mitogen-activated protein kinases (MAPK), including p44/42 (Aluoch and Whalen Toxicology 209:263–277, 2005). If activation of p44/42 is required for TBT-induced decreases of lytic function, then activation of p44/42 to similar extents by pharmacological agents such as phorbol 12-myristate 13-acetate (PMA) should mimic to some extent changes induced in NK cells with TBT exposures. NK cells were exposed to PMA concentrations between 0.25 and 10 nM for …
Yeast Cell Adhesion Molecules Have Functional Amyloid-Forming Sequences, Caleen B. Ramsook, Cho Tan, Melissa C. Garcia, Raymond Fung, Gregory Soybelman, Ryan Henry, Anna Litewka, Shanique O’Meally, Henry N. Otoo, Roy A. Khalaf, Anne M. Dranginis, Nand K. Gaur, Stephen A. Klotz, Jason M. Rauceo, Chong K. Jue, Peter N. Lipke
Yeast Cell Adhesion Molecules Have Functional Amyloid-Forming Sequences, Caleen B. Ramsook, Cho Tan, Melissa C. Garcia, Raymond Fung, Gregory Soybelman, Ryan Henry, Anna Litewka, Shanique O’Meally, Henry N. Otoo, Roy A. Khalaf, Anne M. Dranginis, Nand K. Gaur, Stephen A. Klotz, Jason M. Rauceo, Chong K. Jue, Peter N. Lipke
Publications and Research
The occurrence of highly conserved amyloid-forming sequences in Candida albicans Als proteins (H. N. Otoo et al., Eukaryot. Cell 7:776–782, 2008) led us to search for similar sequences in other adhesins from C. albicans and Saccharomyces cerevisiae. The beta-aggregation predictor TANGO found highly beta-aggregation-prone sequences in almost all yeast adhesins. These sequences had an unusual amino acid composition: 77% of their residues were beta-aggregation aliphatic amino acids Ile, Thr, and Val, which is more than 4-fold greater than their prevalence in the S. cerevisiae proteome. High beta-aggregation potential peptides from S. cerevisiae Flo1p and C. albicans Eap1p rapidly formed insoluble …
Structure And Function Of Glycosylated Tandem Repeats From Candida Albicans Als Adhesins, Aaron T. Frank, Caleen B. Ramsook, Henry N. Otoo, Cho Tan, Gregory Soybelman, Jason M. Rauceo, Nand K. Gaur, Stephen A. Klotz, Peter N. Lipke
Structure And Function Of Glycosylated Tandem Repeats From Candida Albicans Als Adhesins, Aaron T. Frank, Caleen B. Ramsook, Henry N. Otoo, Cho Tan, Gregory Soybelman, Jason M. Rauceo, Nand K. Gaur, Stephen A. Klotz, Peter N. Lipke
Publications and Research
Tandem repeat (TR) regions are common in yeast adhesins, but their structures are unknown, and their activities are poorly understood. TR regions in Candida albicans Als proteins are conserved glycosylated 36-residue sequences with cell-cell aggregation activity (J. M. Rauceo, R. De Armond, H. Otoo, P. C. Kahn, S. A. Klotz, N. K. Gaur, and P. N. Lipke, Eukaryot. Cell 5:1664–1673, 2006). Ab initio modeling with either Rosetta or LINUS generated consistent structures of three-stranded antiparallel beta-sheet domains, whereas randomly shuffled sequences with the same composition generated various structures with consistently higher energies. O- and N-glycosylation patterns showed that each TR …
An Analysis Of Phenotypic Marker Presence On Umr-106 Cells Following Acclimation To Media Reduced In Estrogenic Compounds, Levi Castle
Morehead State Theses and Dissertations
A thesis presented to the faculty of the College of Science and Technology at Morehead State University in partial fulfillment of the requirements for the Degree of Master of Science by Levi Castle on February 12, 2010.
Mechanisms Of Er Stress-Mediated Mitochondrial Membrane Permeabilization., Sanjeev Gupta, Lorraine Cuffe, Eva Szegezdi, Susan E Logue, Catherine Neary, Sandra Healy, Afshin Samali
Mechanisms Of Er Stress-Mediated Mitochondrial Membrane Permeabilization., Sanjeev Gupta, Lorraine Cuffe, Eva Szegezdi, Susan E Logue, Catherine Neary, Sandra Healy, Afshin Samali
Rowan-Virtua School of Osteopathic Medicine Departmental Research
During apoptosis, the process of mitochondrial outer membrane permeabilization (MOMP) represents a point-of-no-return as it commits the cell to death. Here we have assessed the role of caspases, Bcl-2 family members and the mitochondrial permeability transition pore on ER stress-induced MOMP and subsequent cell death. Induction of ER stress leads to upregulation of several genes such as Grp78, Edem1, Erp72, Atf4, Wars, Herp, p58ipk, and ERdj4 and leads to caspase activation, release of mitochondrial intermembrane proteins and dissipation of mitochondrial transmembrane potential (DeltaPsim). Mouse embryonic fibroblasts (MEFs) from caspase-9, -2 and, -3 knock-out mice were resistant to ER stress-induced apoptosis …
Real-Time Pcr Method For The Quantification Of Burkholderia Cepacia Complex Attached To Lung Epithelial Cells And Inhibitionn Of That Attachment, Ciara Wight, Gillian Herbert, Ruth Pilkington, Máire Callaghan, Siobhan Mcclean
Real-Time Pcr Method For The Quantification Of Burkholderia Cepacia Complex Attached To Lung Epithelial Cells And Inhibitionn Of That Attachment, Ciara Wight, Gillian Herbert, Ruth Pilkington, Máire Callaghan, Siobhan Mcclean
Articles
To develop a rapid method to quantify the attachment of the cystic fibrosis pathogen, Burkholderia multivorans, to lung epithelial cells (16HBE14o(-)) using real-time PCR with a view to monitoring potential inhibition of lung cell attachment. Mammalian and bacterial DNA were purified from bacteria attached to lung epithelial cells. The relative amount of bacteria attached was determined by amplification of the recA gene relative to the human GAPDH gene, in the presence of SYBR Green. The method was thoroughly validated and shown to correlate well with traditional plating techniques. Inhibition of bacterial attachment with simple sugars was then evaluated by real-time …
Induction And Regulation Of Autophagy By Novel Prenylation Inhibitors In Sts-26t Malignant Peripheral Nerve Sheath Tumor (Mpnst) Cells, Komal Madhukar Sane
Induction And Regulation Of Autophagy By Novel Prenylation Inhibitors In Sts-26t Malignant Peripheral Nerve Sheath Tumor (Mpnst) Cells, Komal Madhukar Sane
Wayne State University Dissertations
Prenylation pathways have been targeted via several different compounds that inhibit farnesyl transferase (FTase) and/or geranylgeranyl transferase (GGTase) enzymes in many cellular and animal models of cancer. Some of these have also been evaluated in clinical trials with limited success. Multiple mechanisms of action have been elucidated for such compounds, including cell cycle arrest, proteasome inhibition, apoptosis and most recently, autophagy. However, there is still an urgent need of effective agents of this class of anti-tumor therapeutics. In this dissertation, I sought to delve into this issue by characterizing our novel prenylation inhibitors and their potential as anti-tumor agents. Novel …
Comparing Models Of Evolution For Ordered And Disordered Proteins, Celeste J. Brown, Audra K. Johnson, Gary W. Daughdrill
Comparing Models Of Evolution For Ordered And Disordered Proteins, Celeste J. Brown, Audra K. Johnson, Gary W. Daughdrill
Molecular Biosciences Faculty Publications
Most models of protein evolution are based upon proteins that form relatively rigid 3D structures. A significant fraction of proteins, the so-called disordered proteins, do not form rigid 3D structures and sample a broad conformational ensemble. Disordered proteins do not typically maintain long-range interactions, so the constraints on their evolution should be different than ordered proteins. To test this hypothesis, we developed and compared models of evolution for disordered and ordered proteins. Substitution matrices were constructed using the sequences of putative homologs for sets of experimentally characterized disordered and ordered proteins. Separate matrices, at three levels of sequence similarity ( …
Animal Models Of Alzheimer's Disease, Gemma Casadesus, Gary Arendash, Frank Laferla, Mike Mcdonald
Animal Models Of Alzheimer's Disease, Gemma Casadesus, Gary Arendash, Frank Laferla, Mike Mcdonald
Molecular Biosciences Faculty Publications
No abstract provided.
Impaired M3 And Enhanced M2 Muscarinic Receptor Contractile Function In A Streptozotocin Model Of Mouse Diabetic Urinary Bladder, K. J. Pak, Rennolds S. Ostrom, M. Matsui, F. J. Ehlert
Impaired M3 And Enhanced M2 Muscarinic Receptor Contractile Function In A Streptozotocin Model Of Mouse Diabetic Urinary Bladder, K. J. Pak, Rennolds S. Ostrom, M. Matsui, F. J. Ehlert
Pharmacy Faculty Articles and Research
We investigated the contractile roles of M2 and M3 muscarinic receptors in urinary bladder from streptozotocin-treated mice. Wild-type and M2 muscarinic receptor knockout (M2 KO) mice were given a single injection of vehicle or streptozotocin (125 mg kg−1) 2–24 weeks prior to bladder assays. The effect of forskolin on contractions elicited to the muscarinic agonist, oxotremorine-M, was measured in isolated urinary bladder (intact or denuded of urothelium). Denuded urinary bladder from vehicle-treated wild-type and M2 KO mice exhibited similar contractile responses to oxotremorine-M, when contraction was normalized relative to that elicited by KCl (50 mM). Eight to 9 weeks after …
The Wheat Bzip Factor, Taabf1, Mediates Aba-Induced Gene Expression In Bombarded Barley Aleurone Layers, Benjamin R. Keyser
The Wheat Bzip Factor, Taabf1, Mediates Aba-Induced Gene Expression In Bombarded Barley Aleurone Layers, Benjamin R. Keyser
Honors Theses
The plant hormone Abscisic acid (ABA) plays a central role in maturation and germination in seeds, as well as mediating adaptive responses to abiotic environmental stresses. ABA induces the expression of many genes, including late-embryogenesis-abundant genes such as HVA1. To elucidate the ABA signaling pathway leading to HVA1 expression, we focus on the bZIP factor TaABF1. Analysis of the interplay between ABA and TaABF1 in the aleurone cells of imbibing cereal grains indicated that the two are not additive in their induction of the HVA1 promoter. A synthetic ABA analog, PBI-51, did not specifically inhibit the effect of exogenous ABA …
Apoptosis Initiation And Angiogenesis Inhibition: Melanoma Targets For Nanosecond Pulsed Electric Fields, Xinhua Chen, Juergen F. Kolb, R. James Swanson, Karl H. Schoenbach, Stephen J. Beebe
Apoptosis Initiation And Angiogenesis Inhibition: Melanoma Targets For Nanosecond Pulsed Electric Fields, Xinhua Chen, Juergen F. Kolb, R. James Swanson, Karl H. Schoenbach, Stephen J. Beebe
Bioelectrics Publications
Many effective anti-cancer strategies target apoptosis and angiogenesis mechanisms. Applications of non-ionizing, nanosecond pulsed electric fields (nsPEFs) induce apoptosis in vitro and eliminate cancer in vivo; however in vivo mechanisms require closer analysis. These studies investigate nsPEF-induced apoptosis and anti-angiogenesis examined by fluorescent microscopy, immunoblots, and morphology. Six hours after treatment with one hundred 300 ns pulses at 40 kV/cm, cells transiently expressed active caspases indicating that caspase-mediated mechanisms. Three hours after treatment transient peaks in Histone 2AX phosphorylation coincided with terminal deoxynucleotidyl transferase dUTP nick end labeling positive cells and pyknotic nuclei, suggesting caspase-independent mechanisms on nuclei/DNA. Large …
Chapter 26 – Multiple Color Single Molecule Tirf Imaging And Tracking Of Maps And Motors, Jennifer L. Ross, Ram Dixit
Chapter 26 – Multiple Color Single Molecule Tirf Imaging And Tracking Of Maps And Motors, Jennifer L. Ross, Ram Dixit
Biology Faculty Research
Microtubules are part of a complex mechano-chemical network inside cells. In order to understand how the components of these systems work together, careful in vitro experiments must be performed with added complexity. These experiments can ideally image all the interacting species. In order to image these molecules, multiple-color fluorescence imaging can be performed. In this chapter, we describe some methods for performing multiple-color single molecule fluorescence imaging using total internal reflection fluorescence microscopy. We give several specific examples of species of microtubule-associate proteins and motors that can be examined with detailed protocols for labeling, purification, and imaging.
Chapter 27 – Studying Plus-End Tracking At Single Molecule Resolution Using Tirf Microscopy, Ram Dixit, Jennifer L. Ross
Chapter 27 – Studying Plus-End Tracking At Single Molecule Resolution Using Tirf Microscopy, Ram Dixit, Jennifer L. Ross
Biology Faculty Research
The highly dynamic microtubule plus-ends are key sites of regulation that impact the organization and function of the microtubule cytoskeleton. Much of this regulation is performed by the microtubule plus-end tracking (+TIP) family of proteins. +TIPs are a structurally diverse group of proteins that bind to and track with growing microtubule plus-ends in cells. +TIPs regulate microtubule dynamics as well as mediate interactions between microtubule tips and other cellular structures. Most +TIPs can directly bind to microtubules in vitro; however, the mechanisms for their plus-end specificity are not fully understood. Cellular studies of +TIP activity are complicated by the fact …
A Chemical Genetics Approach To Elucidate Mechanisms Of The Fission Yeast Polo Kinase In Cell Division, Jennifer Phelan, Dawn Clifford Hart
A Chemical Genetics Approach To Elucidate Mechanisms Of The Fission Yeast Polo Kinase In Cell Division, Jennifer Phelan, Dawn Clifford Hart
Student Summer Scholars Manuscripts
Cell division is a fundamental biological event that underlies the growth and development of all organisms. Because human and fission yeast (Schizosaccharomyces pombe) cells divide symmetrically through constriction of the actomyosin ring, fission yeast provides an ideal model system to reveal conserved cell cycle properties. In fission yeast, an evolutionarily conserved protein, Mid1, plays a critical role in organizing the early steps of contractile ring formation. Mid1 functions as a scaffold to bridge the cell cortex with the contractile ring. Cells lacking mid1 form off-centered, highly disorganized ring structures and exhibit severe cell division defects. Our previous research …
Phosphorylation Of The Glycine Transporter 1, Javier Vargas Medrano
Phosphorylation Of The Glycine Transporter 1, Javier Vargas Medrano
Open Access Theses & Dissertations
The extracellular levels of the neurotransmitter glycine in the brain are tightly regulated by the high-affinity glycine transporter 1 (GlyT1) and the clearance of glycine depends on its rate of transport and the levels of cell surface GlyT1. Over the past years, it has been shown that PKC activation diminishes the activity and promoted phosphorylation of several neurotransmitter transporters including the dopamine, serotonin and norepinephrine transporters however, its role is unknown for the glycine transporter. To get insights into the role of PKC activation on GlyT1 regulation, we used three N-terminus GlyT1 isoforms stably expressed in porcine aortic endothelial (PAE) …