Selected Publications
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R.K. MacNeal and D.L. Purich (1978) Stoichiometry and Role
of GTP Hydrolysis in Bovine Microtubule Assembly, Journal of Biological
Chemistry 253, 4683-4687.
[Citation Format]
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T.L.Karr, H.D. White and D.L. Purich (1979) Characterization
of Brain Microtubule Proteins Prepared by Selective Removal of Mitochondrial
and Synaptosomal Components, Journal of Biological Chemistry 254,
6107-6111.
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T.L. Karr and D.L. Purich (1979) A Microtubule Assembly/Disassembly
Model Based on Drug Effects and Depolymerization Kinetics after Rapid Dilution,
Journal
of Biological Chemistry 254, 10885-10888.
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B.J. Terry and D.L. Purich (1979) Nucleotide Release from
Tubulin and Nucleoside 5'-Diphosphate Kinase Action in Microtubule Assembly,
Journal
of Biological Chemistry 254, 9469-9476.
[Citation Format]
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T.L. Karr, A.E. Podrasky and D.L. Purich (1979) Participation
of Guanine Nucleotides in Nucleation and Elongation Steps of Microtubule
Assembly, Proceedings of the National Academy of Sciences USA 76,
5475-5479.[Citation
Format]
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H.D. White, B.A. Coughlin and D.L. Purich (1980) Adenosine
Triphosphatase Activity of Bovine Brain Microtubule Protein, Journal
of Biological Chemistry 255, 486-491.
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D.L. Purich and R.D. Allison (1980) Isotope Exchange Methods
for Elucidating Enzymic Catalysis, in "Enzyme Kinetics and Mechanism",
Part B,Methods in Enzymology, vol. 64, Academic Press, New York,
1-46. [Citation
Format]
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T.L. Karr and D.L. Purich (1980) A Rapid Dilution Cuvette
for Kinetic Studies of Microtubule Disassembly, Analytical Biochemistry
104,
311-314.
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B.J. Terry and D.L. Purich (1980) Assembly and Disassembly
Properties of Microtubules Formed in the Presence of GTP, 5'-Guanylyl Imidodiphosphate,
and 5'-Guanylyl Methylene diphosphate, Journal of Biological Chemistry
255,
10532-10536. [Citation
Format]
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T.L. Karr, D. Kristofferson and D.L. Purich (1980) Mechanism
of Microtubule Depolymerization: Correlation of Rapid Induced Disassembly
Experiments with a Kinetic Model for Endwise Depolymerization, Journal
of Biological Chemistry 255:18, 8560-8566 (includes a miniprint supplement
on the kinetics of cold-induced depolymerization using a rapid heat-exchanger)
[Citation
Format].
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D. Kristofferson, T.L. Karr and D.L. Purich (1980) Dynamics
of Linear Protein Polymer Disassembly, Journal of Biological Chemistry
255, 8567-8572 [Citation
Format].
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T.L. Karr, D. Kristofferson and D.L. Purich (1980) Calcium
Ion Induces Endwise Depolymerization of Bovine Brain Microtubules, Journal
of Biological Chemistry 255, 11853-11856 [Citation
Format].
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D. Kristofferson and D.L. Purich (1981) A Quantitative Treatment
of Reversible Monomer-Polymer Exchange Reactions with Microtubules and
Other Biopolymers, Journal of Theoretical Biology 92, 85-96.
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D.L. Purich, B.J. Terry, H.D. White, B.A. Coughlin, T.L.
Karr and D. Kristofferson (1981) Microtubule Associated Protein Phosphorylation
and Calcium Ion Regulation of Bovine Brain Microtubule Self-Assembly, vol.
8, Protein Phosphorylation, (0. M. Rosen and E.G. Krebs, eds.) Cold
Spring Harbor Conferences on Cell Proliferation, 1143-1155.
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D. Kristofferson and D.L. Purich (1981) Time Scale of Microtubule
Length Redistribution, Archives of Biochemistry and Biophysics 211,
222-226.
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W.C. Thompson, L. Wilson and D.L. Purich (1981) Taxol Induces
Microtubule Assembly at Low Temperature, Cell Motility l, 445-454.
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A. Sanders, D.L. Purich and D.S. Cannell (1981) Oxygenation
of Hemoglobin: Correspondence of Crystal and Solution Properties Using
Translational Diffusion Constant Measurements, Journal of Molecular
Biology 147, 583-595.
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D. Kristofferson, S.-H. Lee, B.J. Terry, A. Cimino Saucier,
T.L. Karr and D.L. Purich (1982) Evaluation of Potential Roles for GDP
in Microtubule Assembly and Disassembly in Biological Functions of Microtubules
and Related Structures (H. Mohri, H. Sakai, and G. G. Borisy, eds.),
Academic Press, New York, 49-60.
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B.J. Terry and D.L. Purich (1982) Nucleotide-Dependent Enzymes
in Microtubule Systems, Advances in Enzymology (A. Meister, ed.)
53, 113-161.
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D.L. Purich and D. Kristofferson (1984) Microtubule Assembly:
A Review of Progress, Principles and Perspectives, Advances in Protein
Chemistry (C. B. Anfinsen, J. T. Edsall and F. M. Richards, eds.) vol.
36, Academic Press, New York, 133-212.
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D.G. Neal, D.L. Purich and D.S. Cannell (1984) Osmotic Susceptibility
and Diffusion Coefficient of Charged Bovine Serum Albumin, Journal of
Chemical Physics 80, 3469-3477.
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D.L. Purich and R.M. Scaife (1985) Microtubule Cytoskeletal
Proteins as Targets for Covalent Interconverting Enzymes, Current Topics
in Cellular Regulation 27, 107-116.
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L. Wilson, H.P. Miller, K.W. Farrell, K.B. Snyder, W.C. Thompson
and D.L. Purich (1985) Taxol Stabilization of Microtubules In Vitro: Dynamics
of Tubulin Addition and Loss at Opposite Microtubule Ends, Biochemistry
24, 5254-5262. [Citation
Format]
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D.J. Asai, W.C. Thompson, L. Wilson, C.F. Dresden, H. Schulman
and D.L. Purich (1985) Microtubule-Associated Proteins (MAPs): A Monoclonal
Antibody to MAP-1 Decorates Microtubules In Vitro But Stains Stress Fibers
and Not Microtubules In Vivo, Proceedings of the National Academy of
Sciences USA 82, 1434-1438. [Citation
Format]
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P.S. Yamauchi and D.L. Purich (1987) Modulation of Microtubule
Assembly and Stability by Phosphatidyl Inositol Action on Microtubule-Associated
Protein-2, Journal of Biological Chemistry 262, 3369-3375. [Citation
Format]
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G. Flynn and D.L. Purich (1987) GTP Regeneration Influences
Interactions of Microtubules, Neurofilaments, and Microtubule-Associated
Proteins In Vitro, Journal of Biological Chemistry 262, 15443-15447.
[Citation
Format]
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G. Flynn, J.C. Joly and D.L. Purich (1987) The 28,000 Mr
Microtubule-Binding Domain of Microtubule-Associated Protein-2 Also Contains
A Neurofilament-Binding Site, Biochemical and Biophysical Research Communications
148,
1453-1459. [Citation
Format]
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D.L. Purich and R.M. Scaife (1987) Enzymatic Modulation of
Cytoskeletal Self-Assembly: ADP Ribosylation of Microtubule Protein Components,
Enzyme
Dynamics and Regulation (P.B. Chock, C.Y. Huang, C.L. Tsou, and J.H.
Wang, eds.) Springer-Verlag, New York, 217-223.
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J.C. Joly, G. Flynn and D.L. Purich (1989) The Microtubule-Binding
Fragment of Microtubule Associated Protein-2: Location of the Protease-Accessible
Site and Identification of an Assembly-Promoting Peptide, Journal of
Cell Biology 109, 2289-2294. [Citation
Format]
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J.M. Angelastro and D.L. Purich (1990) Apparently Irreversible
GTP Hydrolysis Attends Tubulin Self-Assembly, European Journal of Biochemistry
191, 507-511. [Citation
Format]
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J.C. Joly and D.L. Purich (1990) Peptides Corresponding to
the Second Repeated Sequence in MAP-2 Inhibit Binding of Microtubule-Associated
Proteins to Microtubules, Biochemistry 29, 8916-8920.[Citation
Format]
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R.M. Scaife, L. Wilson and D.L. Purich (1992) Microtubule
Protein ADP-Ribosylation In Vitro Leads to Assembly Inhibition and Rapid
Depolymerization, Biochemistry 31, 310-316. [Citation
Format]
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N. Raffaelli, P.S. Yamauchi and D.L. Purich (1992) Microtubule-Associated
Protein Autophosphorylation Alters In Vitro Microtubule Dynamic Instability,
FEBS
Letters 296, 21-24. [Citation
Format]
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N. Raffaelli, R.M. Scaife and D.L. Purich (1992) ADPRibosylation
of Chicken Red Cell Tubulin and Inhibition of Microtubule Self-Assembly
In Vitro by the NAD+-Dependent Avian ADP Ribosyl Transferase, Biochemical
and Biophysical Research Communications 184, 414-418. [Citation
Format]
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N.L. Deans, R.D. Allison and D.L. Purich (1992) Steady-State
Kinetic Mechanism of Bovine Brain Tubulin: Tyrosine Ligase, Biochemical
Journal 286, 243-251. [Citation
Format]
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A.M. Ainsztein and D.L. Purich (1992) Bovine Brain Microtubule-Associated
Protein-2 Cleavage by Human Immunodeficiency Virus Proteinase, Journal
of Neurochemistry 59, 874-880. [Citation
Format]
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J.M. Angelastro and D.L. Purich (1992) Adenine and Guanine
Nucleotide Content of Triton Extracted Cytoskeletal Fractions of Nonmuscle
Cells, Analytical Biochemistry 204, 47-52.
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P.A. Antinozzi, C.M. Brown and D.L. Purich (1992) Calcium
Oxalate Monohydrate Crystallization: Citrate Inhibition of Nucleation and
Growth Steps, Journal of Crystal Growth 125, 215-222.
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J.M. Angelastro and D.L. Purich (1992) 2'-dGTP in the Microtubule
Cytoskeleton of Neuronal Cells Cultured with Nerve Growth Factor, Journal
of Biological Chemistry 267, 25685-25689. [Citation
Format]
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P.S. Yamauchi, G. Flynn, R.L. Marsh and D.L. Purich (1993)
Reduction in Microtubule Dynamics In Vitro by Brain Microtubule-Associated
Proteins and by a Microtubule-Associated Protein-2 Second Repeat Sequence
Analogue, Journal of Neurochemistry 60, 817-826. [Citation
Format]
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P.S. Yamauchi and D.L. Purich (1993) Microtubule-Associated
Protein Interactions with Actin Filaments: Evidence for Differential Behavior
of Neuronal MAP-2 and Tau in the Presence of Phosphatidyl-Inositol, Biochemical
and Biophysical Research Communications 190, 710-715. [Citation
Format]
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P.S. Yamauchi and D.L. Purich (1993) Absence of 2'-Deoxy-GTP
in Adult Brain Tubulin, Biochemical and Biophysical Research Communications
192,
268-272 [Citation
Format].
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D.L. Purich and J.M. Angelastro (1994) Microtubule Dynamics:
Bioenergetics and Control, Advances in Enzymology (A. Meister, ed.)
69, 121-154.
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J.M. Angelastro and D.L. Purich (1994) Phosphorylation States
of Actin Filament Adenine Nucleotides in Detergent-Extracted Neuronal Cytoskeletal
Fraction, Biochemical & Biophysical Research Communications,
201, 1490-1494.[Citation
Format]
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F.S. Southwick and D.L. Purich (1994) Arrest of Listeria
Movement in Host Cells by a Bacterial ActA Analogue: Implications for Actin-Based
Motility, Proceedings National Academy of Sciences U.S.A. 91, 5168-5172.
[Citation
Format]
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C.M. Brown, F. Novin, and D.L. Purich (1994) Calcium Oxalate
Crystal Morphology: Influence of Phospholipid Micelles with Composition
Based on Each Leaflet of the Erythrocyte Membrane, Journal of Crystal
Growth, 135, 523-532.
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F.S. Southwick and D.L. Purich (1994) Dynamic Remodeling
of the Actin Cytoskeleton: Lessons Learned from Listeria Locomotion, BioEssays,
16, 885-891.[Citation
Format]
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R.L. Coffey, J.C. Joly, B.D. Cain and D.L. Purich (1994)
Exploring the Microtubule-Binding Region of Bovine Microtubule-Associated
Protein-2: cDNA Sequencing, Bacterial Expression and Site-Directed Mutagenesis,
Biochemistry,
33, 13199-13207.[Citation
Format]
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A.M. Ainsztein and D.L. Purich (1994) Stimulation of Tubulin
Polymerization by MAP-2: Control by Protein Kinase C-Mediated Phosphorylation
at Specific Sites in the Microtubule-Binding Region, Journal of Biological
Chemistry, 269, 28465-28471 [Citation
Format]
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R.L. Coffey and D.L. Purich (1995) Non-Cooperative Binding
of the MAP-2 Microtubule Binding Region to Microtubules, Journal of
Biological Chemistry, 270, 1035-1040.[Citation
Format]
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F.S. Southwick and D.L. Purich (1995) Inhibition of Listeria
Locomotion by Mosquito Oostatic Factor, a Natural Oligoproline Peptide
Uncoupler of Profilin Action, Infection & Immunity, 63, 182-190[Citation
Format].
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W. Zeile, D. L. Purich, and F. S. Southwick (1996) Oligoproline
Sequence Recognition in Profilin-Mediated Acceleration of Actin-Based Shigella
Motility, Journal of Cell Biology, 133, 49-59. [Citation
Format]
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F.S. Southwick and D.L. Purich (1996) Intracellular Pathogenesis
of Listeriosis, New England Journal of Medicine 334, 770-776.
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E.Y. Zhang, M.A. DeTure, M.R. Bubb, T.L. Caviston, G.W. Erdos,
S.D. Whittaker, and D.L. Purich (1996) Self-Assembly of the Brain MAP-2
Microtubule-Binding Region into Polymeric Structures Resembling Alzheimer
Filaments, Biochemical & Biophysical Research Communications,
229, 176-181.
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M. DeTure, E. Zhang, M.R. Bubb, and D.L. Purich (1996) Assembly
of MAP-2c and MTBR Fragments into Polymers Resembling Paired Helical Filaments,
Journal
of Biological Chemistry, 271, 32702-32706.
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D.L. Purich and F.S. Southwick (1997) ABM-1 and ABM-2 Homology
Sequences: Consensus Docking Sites for Actin-Based Motility Defined by
Oligoproline Regions in Listeria ActA Surface Protein and Human VASP, Biochemical
& Biophysical Research Communications, 231, 686-691.
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F. Kang, R.O. Laine, M.R. Bubb, F.S. Southwick, and D.L.
Purich (1997) Profilin Interacts with the GPPPPP Sequences of Vasodilator-
Stimulated Phosphoprotein (VASP): Implications for Actin-Based Listeria
Motility, Biochemistry, 36, 8384-8392.
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D.L. Purich (1998) Advances in the Enzymology of Glutamine
Synthesis. Advances in Enzymology (D.L. Purich, ed.) vol.
72, 9-42.
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L. DiNoto, M. DeTure, and D.L. Purich (1999) Disulfide-linked
MAP2-MAP2 Dimers Still Promote Tubulin Polymerization and Stabilize Microtubules,
Molecular
Cell Biology Research Communications, 2, 71-76.
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D.L. Purich & F.S. Southwick (1999) Energetics of Nucleotide
Hydrolysis in Polymer Assembly/Disassembly: The Cases of Actin and Tubulin
"Enzyme Kinetics & Mechanism, Part E" Methods in Enzymology,
(V.L. Schramm and D.L. Purich, eds.), 308, 93-110.
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F.S. Southwick and D.L. Purich (1999) Actin-Based Motility
of the Intracellular Pathogen Listeria monocytogenes: Assessing the Inhibitory
Specificity of ABM-1 S Peptide Analogues, Molecular Cell Biology Research
Communications, 1, 176-181.
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W.L. Zeile, D.L. Purich, and F.S. Southwick (2000) Video
Microscopy: Protocols for Examining the Actin-Based Motility of Listeria,
Shigella, Vaccinia, and Lanthanum-Induced Endosomes, Laboratory Protocols
in Cell Biology, 7, 125-158.
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F. Kang, D.L. Purich, and F.S. Southwick (1999) Profilin
Promotes Barbed-End Actin Filament Assembly without Lowering the Critical
Concentration, J. Biol. Chem., in press.