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Articles 1 - 13 of 13
Full-Text Articles in Medical Cell Biology
Interdependent Assembly Of Specific Regulatory Lipids And Membrane Fusion Proteins Into The Vertex Ring Domain Of Docked Vacuoles, Rutilio A. Fratti, Youngsoo Jun, Alexey J. Merz, Nathan Margolis, William Wickner
Interdependent Assembly Of Specific Regulatory Lipids And Membrane Fusion Proteins Into The Vertex Ring Domain Of Docked Vacuoles, Rutilio A. Fratti, Youngsoo Jun, Alexey J. Merz, Nathan Margolis, William Wickner
Dartmouth Scholarship
Membrane microdomains are assembled by lipid partitioning (e.g., rafts) or by protein-protein interactions (e.g., coated vesicles). During docking, yeast vacuoles assemble "vertex" ring-shaped microdomains around the periphery of their apposed membranes. Vertices are selectively enriched in the Rab GTPase Ypt7p, the homotypic fusion and vacuole protein sorting complex (HOPS)-VpsC Rab effector complex, SNAREs, and actin. Membrane fusion initiates at vertex microdomains. We now find that the "regulatory lipids" ergosterol, diacylglycerol and 3- and 4-phosphoinositides accumulate at vertices in a mutually interdependent manner. Regulatory lipids are also required for the vertex enrichment of SNAREs, Ypt7p, and HOPS. Conversely, SNAREs and actin …
Characterization Of The Chicken Inward Rectifier K+ Channel Irk1/Kir2.1 Gene., Hideki Mutai, Lawrence C Kenyon, Emily Locke, Nami Kikuchi, John Carl Oberholtzer
Characterization Of The Chicken Inward Rectifier K+ Channel Irk1/Kir2.1 Gene., Hideki Mutai, Lawrence C Kenyon, Emily Locke, Nami Kikuchi, John Carl Oberholtzer
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
BACKGROUND: Inward rectifier potassium channels (IRK) contribute to the normal function of skeletal and cardiac muscle cells. The chick inward rectifier K+ channel cIRK1/Kir2.1 is expressed in skeletal muscle, heart, brain, but not in liver; a distribution similar but not identical to that of mouse Kir2.1. We set out to explore regulatory domains of the cIRK1 promoter that enhance or inhibit expression of the gene in different cell types. RESULTS: We cloned and characterized the 5'-flanking region of cIRK1. cIRK1 contains two exons with splice sites in the 5'-untranslated region, a structure similar to mouse and human orthologs. cIRK1 has …
Control Of Mitochondrial Motility And Distribution By The Calcium Signal: A Homeostatic Circuit., Muqing Yi, David Weaver, György Hajnóczky
Control Of Mitochondrial Motility And Distribution By The Calcium Signal: A Homeostatic Circuit., Muqing Yi, David Weaver, György Hajnóczky
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Mitochondria are dynamic organelles in cells. The control of mitochondrial motility by signaling mechanisms and the significance of rapid changes in motility remains elusive. In cardiac myoblasts, mitochondria were observed close to the microtubular array and displayed both short- and long-range movements along microtubules. By clamping cytoplasmic [Ca2+] ([Ca2+]c) at various levels, mitochondrial motility was found to be regulated by Ca2+ in the physiological range. Maximal movement was obtained at resting [Ca2+]c with complete arrest at 1-2 microM. Movement was fully recovered by returning to resting [Ca2+]c, and inhibition could be repeated with no apparent desensitization. The inositol 1,4,5-trisphosphate- or …
Multiple Mechanisms Regulate Numa Dynamics At Spindle Poles, Olga Kisurina-Evgenieva, Gary Mack, Quansheng Du, Ian Macara, Alexey Khodjakov, Duane A. Compton
Multiple Mechanisms Regulate Numa Dynamics At Spindle Poles, Olga Kisurina-Evgenieva, Gary Mack, Quansheng Du, Ian Macara, Alexey Khodjakov, Duane A. Compton
Dartmouth Scholarship
The large coiled-coil protein NuMA plays an essential role in organizing microtubule minus ends at spindle poles in vertebrate cells. Here, we use both in vivo and in vitro methods to examine NuMA dynamics at mitotic spindle poles. Using fluorescence recovery after photobleaching, we show that an exogenously expressed green-fluorescent-protein/NuMA fusion undergoes continuous exchange between soluble and spindle-associated pools in living cells. These dynamics require cellular energy and display an average half-time for fluorescence recovery of approximately 3 minutes. To explore how NuMA dynamics at spindle poles is regulated, we exploited the association of NuMA with microtubule asters formed in …
Durable Cytotoxic Immune Responses Against Gp120 Elicited By Recombinant Sv40 Vectors Encoding Hiv-1 Gp120 +/- Il-15., Hayley J Mckee, Patricia Y T'Sao, Maria Vera, Puri Fortes, David S Strayer
Durable Cytotoxic Immune Responses Against Gp120 Elicited By Recombinant Sv40 Vectors Encoding Hiv-1 Gp120 +/- Il-15., Hayley J Mckee, Patricia Y T'Sao, Maria Vera, Puri Fortes, David S Strayer
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
BACKGROUND: A vaccine that elicits durable, powerful anti-HIV immunity remains an elusive goal. In these studies we tested whether multiple treatments with viral vector-delivered HIV envelope antigen (gp120), with and without IL-15, could help to approach that goal. For this purpose, we used recombinant Tag-deleted SV40-derived vectors (rSV40s), since they do not elicit neutralizing antibody responses, and so can be given multiply without loss of transduction efficiency. METHODS: SV(gp120) carried the coding sequences for HIV-1NL4-3 Env, and SV(mIL-15) carried the cDNA for mouse IL-15. Singly, and in combination, these two vectors were given monthly to BALB/cJ mice. Cytotoxic immunity and …
Biochemical Enrichment And Biophysical Characterization Of A Taste Receptor For L-Arginine From The Catfish, Ictalurus Puntatus., William Grosvenor, Yuri Kaulin, Andrew I Spielman, Douglas L Bayley, D Lynn Kalinoski, John H Teeter, Joseph G Brand
Biochemical Enrichment And Biophysical Characterization Of A Taste Receptor For L-Arginine From The Catfish, Ictalurus Puntatus., William Grosvenor, Yuri Kaulin, Andrew I Spielman, Douglas L Bayley, D Lynn Kalinoski, John H Teeter, Joseph G Brand
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
BACKGROUND: The channel catfish, Ictalurus punctatus, is invested with a high density of cutaneous taste receptors, particularly on the barbel appendages. Many of these receptors are sensitive to selected amino acids, one of these being a receptor for L-arginine (L-Arg). Previous neurophysiological and biophysical studies suggested that this taste receptor is coupled directly to a cation channel and behaves as a ligand-gated ion channel receptor (LGICR). Earlier studies demonstrated that two lectins, Ricinus communis agglutinin I (RCA-I) and Phaseolus vulgaris Erythroagglutinin (PHA-E), inhibited the binding of L-Arg to its presumed receptor sites, and that PHA-E inhibited the L-Arg-stimulated ion conductance …
The Cell Surface Receptor Slam Controls T Cell And Macrophage Functions, Ninghai Wang, Abhay Satoskar, William Faubion, Susumu Okamoto, Stefan Feske, Charles A. Gullo Phd, Kareem Clarke, Miriam Rodriguez Sosa, Arlene H. Sharpe, Cox Terhorst
The Cell Surface Receptor Slam Controls T Cell And Macrophage Functions, Ninghai Wang, Abhay Satoskar, William Faubion, Susumu Okamoto, Stefan Feske, Charles A. Gullo Phd, Kareem Clarke, Miriam Rodriguez Sosa, Arlene H. Sharpe, Cox Terhorst
Biochemistry and Microbiology
Signaling lymphocyte activation molecule (SLAM), a glycoprotein expressed on activated lymphocytes and antigen-presenting cells, has been shown to be a coregulator of antigen-driven T cell responses and is one of the two receptors for measles virus. Here we show that T cell receptor–induced interleukin (IL)-4 secretion by SLAM−/− CD4+ cells is down-regulated, whereas interferon γ production by CD4+ T cells is only slightly up-regulated. Although SLAM controls production of IL-12, tumor necrosis factor, and nitric oxide in response to lipopolysaccharide (LPS) by macrophages, SLAM does not regulate phagocytosis and responses to peptidoglycan or CpG. Thus, SLAM acts as a coreceptor …
Fibroblast Growth Factor 2 Endocytosis In Endothelial Cells Proceed Via Syndecan-4-Dependent Activation Of Rac1 And A Cdc42-Dependent Macropinocytic Pathway, Eugene Tkachenko, Esther Lutgens, Radu-Virgil Stan, Michael Simons
Fibroblast Growth Factor 2 Endocytosis In Endothelial Cells Proceed Via Syndecan-4-Dependent Activation Of Rac1 And A Cdc42-Dependent Macropinocytic Pathway, Eugene Tkachenko, Esther Lutgens, Radu-Virgil Stan, Michael Simons
Dartmouth Scholarship
Full activity of fibroblast growth factors (FGFs) requires their internalization in addition to the interaction with cell surface receptors. Recent studies have suggested that the transmembrane proteoglycan syndecan-4 functions as a FGF2 receptor. In this study we investigated the molecular basis of syndecan endocytosis and its role in FGF2 internalization in endothelial cells. We found that syndecan-4 uptake, induced either by treatment with FGF2 or by antibody clustering, requires the integrity of plasma membrane lipid rafts for its initiation, occurs in a non-clathrin-, non-dynamin-dependent manner and involves Rac1, which is activated by syndecan-4 clustering. FGF2 was internalized in a complex …
Signaling Switches And Bistability Arising From Multisite Phosphorylation In Protein Kinase Cascades., Nick I Markevich, Jan B. Hoek, Boris N. Kholodenko
Signaling Switches And Bistability Arising From Multisite Phosphorylation In Protein Kinase Cascades., Nick I Markevich, Jan B. Hoek, Boris N. Kholodenko
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Mitogen-activated protein kinase (MAPK) cascades can operate as bistable switches residing in either of two different stable states. MAPK cascades are often embedded in positive feedback loops, which are considered to be a prerequisite for bistable behavior. Here we demonstrate that in the absence of any imposed feedback regulation, bistability and hysteresis can arise solely from a distributive kinetic mechanism of the two-site MAPK phosphorylation and dephosphorylation. Importantly, the reported kinetic properties of the kinase (MEK) and phosphatase (MKP3) of extracellular signal-regulated kinase (ERK) fulfill the essential requirements for generating a bistable switch at a single MAPK cascade level. Likewise, …
Trans-Snare Interactions Elicit Ca2+ Efflux From The Yeast Vacuole Lumen, Alexey J. Merz, William T. Wickner
Trans-Snare Interactions Elicit Ca2+ Efflux From The Yeast Vacuole Lumen, Alexey J. Merz, William T. Wickner
Dartmouth Scholarship
Ca2+ transients trigger many SNARE-dependent membrane fusion events. The homotypic fusion of yeast vacuoles occurs after a release of lumenal Ca2+. Here, we show that trans-SNARE interactions promote the release of Ca2+ from the vacuole lumen. Ypt7p-GTP, the Sec1p/Munc18-protein Vps33p, and Rho GTPases, all of which function during docking, are required for Ca2+ release. Inhibitors of SNARE function prevent Ca2+ release. Recombinant Vam7p, a soluble Q-SNARE, stimulates Ca2+ release. Vacuoles lacking either of two complementary SNAREs, Vam3p or Nyv1p, fail to release Ca2+ upon tethering. Mixing these two vacuole populations together allows Vam3p and Nyv1p to interact in trans and …
Roles Of Pkc Isozymes In Retinoic Acid-Induced B16 Mouse Melanoma Cell Growth Inhibition And Differentiation, Jianming Han
Roles Of Pkc Isozymes In Retinoic Acid-Induced B16 Mouse Melanoma Cell Growth Inhibition And Differentiation, Jianming Han
Theses, Dissertations and Capstones
Protein Kinase C (PKC) has been implicated in many cellular responses. Of the 11 isotypes in this family, seven are expressed in B16 mouse melanoma cells − PKCα, PKCδ, PKCε, PKCθ, PKCλ, PKCζ, and PKCµ.
Treatment of B16 cells with retinoic acid (RA) results in growth inhibition and differentiation. Simultaneously, RA induces a 6-8 fold increase of PKC α protein level, but only about 2-fold increase of PKC enzyme activity. The over- expression of wild type PKCα in B16 cells mimicked the action of RA. The over- expression of enzymatically inactive PKCα, either open or closed conformation, also inhibited B16 …
Docosahexaenoic Acid Modulates Class I Major Histocompatibility Complex Protein Function, Kaleb Marie Hypes
Docosahexaenoic Acid Modulates Class I Major Histocompatibility Complex Protein Function, Kaleb Marie Hypes
Theses, Dissertations and Capstones
Fatty acids influence immune responses, but how this occurs at the molecular level is not understood. Class I major histocompatibility complex molecules (MHC I), transmembrane proteins required for antigen presentation to T cell receptors, each consist of a 45kDa α chain noncovalently associated with a 12-kDa β2-microglobulin (β2m) molecule. Docosahexaenoic acid’s (DHA) effect on the binding of β2m and anti-MHC I monoclonal antibodies (Mab) was measured. EL4 and RMA-S cells were cultured 48 hours with 0-45µM DHA or oleic acid. Murine to human β2m exchange and Mab binding were assessed by fluorescence …
Creation Of Non-Human Primate Neurogenetic Disease Models By Gene Targeting And Nuclear Transfer, Robert B. Norgren
Creation Of Non-Human Primate Neurogenetic Disease Models By Gene Targeting And Nuclear Transfer, Robert B. Norgren
Journal Articles: Genetics, Cell Biology & Anatomy
Genetically modified rhesus macaques are necessary because mouse models are not suitable for a number of important neurogenetic disorders; for example, Kallmann's syndrome, Lesch-Nyhan's disease and Ataxia-Telangiectasia. Mouse models may not be suitable because there may be no mouse ortholog of the human gene of interest, as is the case for Kallmann's syndrome, or because mutant mice do not exhibit the same phenotype observed in humans, as is the the case for Lesch-Nyhan's disease and Ataxia-Telangiectasia. Non-human primate models of neurogenetic diseases are expected to more closely resemble human diseases than existing mouse models. Genetically modified rhesus macaques can be …