Refolding and kinetic characterization of the phosphodiesterase-8A catalytic domain (original) (raw)

Kinetic and Structural Studies of Phosphodiesterase-8A and Implication on the Inhibitor Selectivity † ‡

Howard Robinson

Biochemistry, 2008

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Functions of the N-terminal Region of Cyclic Nucleotide Phosphodiesterase 3 (PDE 3) Isoforms

Yasmin Shakur

Journal of Biological Chemistry, 2000

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Intracellular Compartmentalization of PDE4 Cyclic AMP-Specific Phosphodiesterases

M Beard

Methods, 1998

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Paula Lario

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Occupancy of the catalytic site of the PDE4A4 cyclic AMP phosphodiesterase by rolipram triggers the dynamic redistribution of this specific isoform in living cells through a cyclic AMP independent process

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Cellular Signalling, 2003

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The Molecular Basis for Different Recognition of Substrates by Phosphodiesterase Families 4 and 10

Howard Robinson

Journal of Molecular Biology, 2007

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Cyclic AMP-specific phosphodiesterase, PDE8A1, is activated by protein kinase A-mediated phosphorylation

George Baillie

FEBS Letters, 2012

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Allosteric-site and catalytic-site ligand effects on PDE5 functions are associated with distinct changes in physical form of the enzyme

shahrzad yeganeh

Cellular Signalling, 2009

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Identification of Inhibitor Specificity Determinants in a Mammalian Phosphodiesterase

Daniel Susanto

Journal of Biological Chemistry, 1999

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Rod phosphodiesterase-6 PDE6A and PDE6B Subunits Are Enzymatically Equivalent

Kimberly Boyd

Journal of Biological Chemistry, 2010

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Expression, intracellular distribution and basis for lack of catalytic activity of the PDE4A7 isoform encoded by the human PDE4A cAMP-specific phosphodiesterase gene

George Baillie

Biochemical Journal, 2004

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Small-molecule allosteric activators of PDE4 long form cyclic AMP phosphodiesterases

Erik Schwiebert

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Ligand-Induced Conformational Changes in Cyclic Nucleotide Phosphodiesterases and Cyclic Nucleotide-Dependent Protein Kinases

Illarion Turko

Methods, 1998

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Human PDE4A8, a novel brain-expressed PDE4 cAMP-specific phosphodiesterase that has undergone rapid evolutionary change

Michael De Vivo

Biochemical Journal, 2008

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The Crystal Structure of AMP-Bound PDE4 Suggests a Mechanism for Phosphodiesterase Catalysis † , ‡

Hengming Ke

Biochemistry, 2003

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Activation of PDE10 and PDE11 Phosphodiesterases

Hans-gottfried Genieser

Journal of Biological Chemistry, 2011

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Dimerization of cAMP phosphodiesterase-4 (PDE4) in living cells requires interfaces located in both the UCR1 and catalytic unit domains

George Baillie

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Phosphodiesterase 3A binds to 14-3-3 proteins in response to PMA-induced phosphorylation of Ser428

N. Morrice

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Cloning and Characterization of the Human and Mouse PDE7B, a Novel cAMP-Specific Cyclic Nucleotide Phosphodiesterase

Mark Fidock

Biochemical and Biophysical Research Communications, 2000

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Molecular cloning and subcellular distribution of the novel PDE4B4 cAMP-specific phosphodiesterase isoform

Malcolm Shepherd

Biochemical Journal, 2003

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Cloning and characterization of novel PDE4D isoforms PDE4D6 and PDE4D7

Michael De Vivo

Cellular Signalling, 2003

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A new chemical tool for exploring the role of the PDE4D isozyme in leukocyte function

Robert Chambers

Bioorganic & medicinal …, 2006

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Structural insight into substrate specificity of phosphodiesterase 10

Hengming Ke

Proceedings of the National Academy of Sciences, 2007

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Heterologous Expression and Purification of Recombinant Rolipram-Sensitive Cyclic AMP-Specific Phosphodiesterases

Michele Salanova

Methods, 1998

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PDE4 cAMP phosphodiesterases: modular enzymes that orchestrate signalling cross-talk, desensitization and compartmentalization

David Adams

Biochemical Journal, 2003

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Mechanism for the allosteric regulation of phosphodiesterase 2A deduced from the X-ray structure of a near full-length construct

K. Dillman, Frank Menniti

Proceedings of the National Academy of Sciences, 2009

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Sequence, structure and functional diversity of PD-(D/E)XK phosphodiesterase superfamily

K. Steczkiewicz

Nucleic Acids Research, 2012

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Long PDE4 cAMP specific phosphodiesterases are activated by protein kinase A‐mediated phosphorylation of a single serine residue in Upstream Conserved Region 1 (UCR1)

George Baillie

British Journal of Pharmacology, 2002

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The upstream conserved regions (UCRs) mediate homo- and hetero-oligomerization of type 4 cyclic nucleotide phosphodiesterases (PDE4s)

Brigitte Blackman

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Identification of overlapping but distinct cAMP and cGMP interaction sites with cyclic nucleotide phosphodiesterase 3A by site-directed mutagenesis and molecular modeling based on crystalline PDE4B

Hengming Ke

Protein Science, 2001

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Cyclic nucleotide phosphodiesterases in Drosophila melanogaster

Julian Dow

Biochemical Journal, 2005

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Molecular cloning and characterization of a distinct human phosphodiesterase gene family: PDE11A

Ian Harrow

Proceedings of the National Academy of Sciences, 2000

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Complementary Interactions of the Rod PDE6 Inhibitory Subunit with the Catalytic Subunits and Transducin

Arnold Ruoho

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Structural requirements of the photoreceptor phosphodiesterase -subunit for inhibition of rod PDE6 holoenzyme and for its activation by transducin

Nikolai Skiba

J Biol Chem, 2009

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The cDNA of a human lymphocyte cyclic-AMP phosphodiesterase (PDE IV) reveals a multigene family

Robert Alvarez

1993

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