2024
Look for the Scaffold: Multifaceted Regulation of Enzyme Activity by 14-3-3 Proteins
Physiol Res 73 (Suppl. 1). 2024
IF = 1.9
The cryo-EM structure of ASK1 reveals an asymmetric architecture allosterically modulated by TRX1
eLife13:RP95199. 2024
IF = 6.4
The yeast 14-3-3 proteins Bmh1 and Bmh2 regulate key signaling pathways
Front. Mol. Biosci. 11:1327014. 2024
IF = 3.9
2023
14-3-3 protein inhibits CaMKK1 by blocking the kinase active site with its last two C-terminal helices
Protein Sci. 32(11):e4805. 2023
IF = 4.5
The second intracellular loop of the yeast Trk1 potassium transporter is involved in regulation of activity, and interaction with 14-3-3 proteins
Comput Struct Biotechnol J. 21(2705-2716). 2023
IF = 4.4
2022
Structural insights into the functional roles of 14-3-3 proteins
Front. Mol. Biosci. 9:1016071. 2022
IF = 6.113
Lengthening the Guanidine-Aryl Linker of Phenylpyrimidinylguanidines Increases Their Potency as Inhibitors of FOXO3-Induced Gene Transcription
ACS Omega. 7(38):34632-34646. 2022
IF = 4.132
Nedd4-2 binding to 14-3-3 modulates the accessibility of its catalytic site and WW domains
Biophys. J. 121(7):1299-1311. 2022
IF = 4.033
FOXO4 interacts with p53 TAD and CRD and inhibits its binding to DNA
Protein Sci. 31:e4287. 2022
IF = 8
2021
Structural Insights Support Targeting ASK1 Kinase for Therapeutic Interventions
Int. J. Mol. Sci. 22(24):13395. 2021
IF = 5.923
14-3-3 proteins inactivate DAPK2 by promoting its dimerization and protecting key regulatory phosphosites
Commun. Biol. 4(1):986. 2021
IF = 6.268
14-3-3-protein regulates Nedd4-2 by modulating interactions between HECT and WW domains
Commun. Biol. 4(1):899. 2021
IF = 6.268
Phosphorylated full-length Tau interacts with 14-3-3 proteins via two short phosphorylated sequences, each occupying a binding groove of 14-3-3 dimer
FEBS J. 288(6):1918-1934. 2021
IF = 4.739
2020
The 14-3-3 Proteins as Important Allosteric Regulators of Protein Kinases
Int. J. Mol. Sci. 21(22):8824. 2020
IF = 4.556
Stabilization of protein-protein interactions between CaMKK2 and 14-3-3 by fusicoccins
ACS Chem Biol. 15(11):3060-3071. 2020
IF = 4.434
A new role for 14-3-3 protein in steroidogenesis
FEBS J. 287(18):3921-3924. 2020
IF = 4.739
14-3-3 protein binding blocks the dimerization interface of caspase-2
FEBS J. 287(16):3494-3510. 2020
IF = 4.739
The redox active site of thioredoxin is directly involved in apoptosis signal-regulating kinase 1 binding that is modulated by oxidative stress.
FEBS J. 287(8):1626-1644. 2020
IF = 4.739
2019
Set-up and screening of a fragment library targeting the 14-3-3 protein interface
Medchemcomm. 10(10):1796-1802. 2019
IF = 2.807
Modulating FOXO3 transcriptional activity by small, DBD-binding molecules
Elife. 8. pii: e48876. 2019
IF = 7.551
Forkhead Domains of FOXO Transcription Factors Differ in both Overall Conformation and Dynamics.
Cells. 8(9). pii: E966. 2019
IF = 5.656
The activity of Saccharomyces cerevisiae Na+, K+/H+ antiporter Nha1 is negatively regulated by 14-3-3 protein binding at serine 481
Biochim Biophys Acta Mol Cell Res. 1866(12):118534. 2019
IF = 4.739
Allosteric activation of yeast enzyme neutral trehalase by calcium and 14-3-3 protein
Physiol Res. 68(2):147-160. 2019
IF = 1.324
2018
14-3-3 protein masks the nuclear localization sequence of caspase-2
FEBS J. 285(22):4196-4213. 2018
IF = 4.739
CaMKK2 kinase domain interacts with the autoinhibitory region through the N-terminal lobe including the RP insert
Biochim. Biophys. Acta-Gen. Subj. 1862(10):2304-2313. 2018
IF = 3.681
14-3-3 protein directly interacts with the kinase domain of calcium/calmodulin-dependent protein kinase kinase (CaMKK2)
Biochim. Biophys. Acta-Gen. Subj. 1862(7):1612-1625. 2018
IF = 3.681
2017
Molecular basis of the 14-3-3 protein-dependent activation of yeast neutral trehalase Nth1.
Proc Natl Acad Sci U S A. 114(46):E9811-E9820. 2017
IF = 9.504
Structural aspects of protein kinase ASK1 regulation.
Adv Biol Regul. 66:31-36. 2017
IF = 0
Human procaspase-2 phosphorylation at both S139 and S164 is required for 14-3-3 binding.
Biochem Biophys Res Commun. 493(2):940-945. 2017
IF = 2.559
Structural Basis for the 14-3-3 Protein-Dependent Inhibition of Phosducin Function
Biophys J. 112(7):1339-1349. 2017
IF = 3.495
2016
Cysteine residues mediate high-affinity binding of thioredoxin to ASK1
FEBS J. 283(20):3821-3838. 2016
IF = 3.902
Structural Insight into the 14-3-3 Protein-Dependent Inhibition of Protein Kinase ASK1
J Biol Chem. 291(39):20753-65. 2016
IF = 4.125
The characterization of a novel S100A1 binding site in the N-terminus of TRPM1.
Int J Biochem Cell Biol. 78:186-193. 2016
IF = 3.505
Artificial proteins as allosteric modulators of PDZ3 and SH3 in two-domain constructs: A computational characterization of novel chimeric proteins.
Proteins. 84(10):1358-74. 2016
IF = 2.289
2015
Characterization of the part of N-terminal PIP2 binding site of the TRPM1 channel
Biophys Chem. 207:135-42. 2015
IF = 2.363
PIP2 and PIP3 interact with N-terminus region of TRPM4 channel
Biophys Chem. 205:24-32. 2015
IF = 2.363
Structural Characterization of Phosducin and its Complex with the 14-3-3 Protein
J Biol Chem 290(26):16246-60. 2015
IF = 4.258
Ca2+ Binding Protein S100A1 Competes with Calmodulin and PIP2 for Binding Site on the C-Terminus of the TPRV1 Receptor
ACS Chemical Neuroscience 6(3):386-92. 2015
IF = 4.348
2014
Biophysical and Structural Characterization of the Thioredoxin-Binding Domain of Protein Kinase ASK1 and its Interaction with Reduced Thioredoxin
J Biol Chem 289(35):24463-24474. 2014
IF = 4.6
Role of the EF-hand like motif in the 14-3-3 protein-mediated activation of yeast neutral trehalase Nth1
J Biol Chem 289(20):13948-13961. 2014
IF = 4.6
Mechanisms of the 14-3-3 protein function: regulation of protein function through conformational modulation.
Physiol Res. 63 Suppl 1:S155-64. 2014
IF = 1.531
2013
Detailed kinetic analysis of the interaction between the FOXO4–DNA-binding domain and DNA.
Biophysical Chemistry 184:68-78. 2013
IF = 2.283
Structural basis of the 14-3-3 protein-dependent activation of yeast neutral trehalase Nth1
Biochimica Et Biophysica Acta-General Subjects 1830(10):4491-4499. 2013
IF = 3.848
Protons stabilize the closed conformation of gain-of-function mutants of the TRPV1 channel
Biochimica Et Biophysica Acta-Molecular Cell Research 1833(3):520-8. 2013
IF = 4.808
Characterization of the S100A1 Protein Binding Site on TRPC6 C-Terminus
PLoS One. 8(5):e62677. 2013
IF = 3.73
2012
Structural modulation of phosducin by the phosphorylation and the 14-3-3 protein binding
Biophysical Journal 103(9):1960–1969. 2012
IF = 3.668
Integrative Binding Sites within Intracellular Termini of TRPV1 Receptor.
PLoS One. 7(10):e48437. 2012
IF = 3.73
PtdIns(4,5)P 2 interacts with CaM binding domains on TRPM3 N-terminus
Channels (Austin). 6(6). 2012
IF = 2.159
In-situ enrichment of phosphopeptides on MALDI plates modified by ambient ion landing.
J Mass Spectrom. 47(10):1294–1302. 2012
IF = 3.214
The combination of hydrogen/deuterium exchange or chemical cross-linking techniques with mass spectrometry: mapping of human 14-3-3ζ homodimer interface.
J Struct Biol. 179(1):10-7. 2012
IF = 3.361
Calmodulin and S100A1 interact with N-terminus of TRPM3 channel.
J Biol Chem. 287(20):16645-55. 2012
IF = 4.651
Role of individual phosphorylation sites for the 14-3-3 protein-dependent activation of yeast neutral trehalase Nth1.
Biochem J. 443(3):663-70. 2012
IF = 4.654
2011
Structural basis for the 14-3-3 protein-dependent inhibition of the regulator of G-Protein signaling 3 (RGS3) function.
J Biol Chem. 286(50):43527-36. 2011
IF = 5.328
Structural basis of 14-3-3 protein functions.
Semin Cell Dev Biol. 22(7):663-72. 2011
IF = 6.342
Structural basis for DNA recognition by FOXO proteins.
Biochim Biophys Acta. 1813(11):1946-53. 2011
IF = 4.374
Activation and regulation of purinergic P2X receptor channels.
Pharmacol Rev. 63(3):641-83. 2011
IF = 18.861
Hippo/Mst1 stimulates transcription of the proapoptotic mediator NOXA in a FoxO1-dependent manner.
Cancer Res. 71(3):946-54. 2011
IF = 7.543
A "Cute" Desensitization of TRPV1.
Curr Pharm Biotechnol. 12(1):122-9. Review. 2011
IF = 3.455
The C-terminal basic residues contribute to the chemical and voltage-dependent activation of TRPA1.
Biochem J. 433(1):197-204. 2011
IF = 5.016
Characterization of calmodulin binding domains in TRPV2 and TRPV5 C-tails.
Amino Acids 40(2):741-8. 2011
IF = 4.106
2010
Structural insights into the function of P2X4: an ATP-gated cation channel of neuroendocrine cells.
Cell Mol Neurobiol. 30(8):1251-8, 2010.
IF = 3.226
C-terminal segment of yeast BMH proteins exhibits different structure compared to other 14-3-3 protein isoforms.
Biochemistry 49(18), 3853-3861, 2010
IF = 3.226
14-3-3 protein interacts with and affects the structure of RGS domain of regulator of G-protein signaling 3 (RGS3).
J. Struct. Biol. 170(3), 451-461, 2010
IF = 3.673
Crystal structure of human FOXO4-DBD/DNA complex at 1.9 A resolution reveals new details on FOXO binding to the DNA
Acta Crystallogr D Biol Crystallogr. 66(Pt 12):1351-7, 2010.
IF = 14.103
The interactions of the C-terminal region of the TRPC6 channel with calmodulin.
Neurochem Int. 56(2):363-6, 2010.
IF = 3.541
Conserved residues within the putative S4-S5 region serve distinct functions among thermosensitive TRPV channels.
Physiol Res. 59(6):927-35, 2010
IF = 1.653
2009
ATP and magnesium drive conformational changes of the Na+/K+-ATPase cytoplasmic headpiece.
Biochimica Et Biophysica Acta-Biomembranes, 1788(5), 1081-1091, 2009
IF = 4.18
Essential role for the putative S6 inner pore region in the activation gating of the human TRPA1 channel.
Biochimica Et Biophysica Acta-Molecular Cell Research, 1793(7), 1279-1288, 2009
IF = 4.893
Changes in electrostatic surface potential of Na+/K+-ATPase cytoplasmic headpiece induced by cytoplasmic ligand(s) binding.
Biophysical Journal, 97(6), 1756-1764, 2009
IF = 4.683
14-3-3 protein masks the DNA binding interface of forkhead transcription factor FOXO4.
Journal of Biological Chemistry, 284(29), 19349-19360, 2009
IF = 5.52
Functional relevance of aromatic residues in the first transmembrane domain of P2X receptors.
Journal of Neurochemistry, 109(3), 923-934, 2009
IF = 4.5
2008
Ionic interactions are essential for TRPV1 C-terminus binding to calmodulin.
Biochemical and Biophysical Research Communications, 375(4), 680-683, 2008
IF = 2.648
The 14-3-3 protein affects the conformation of the regulatory domain of human tyrosine hydroxylase.
Biochemistry, 47(6), 1768-1777, 2008
IF = 3.379
The role of proline residues in the structure and function of human MT2 melatonin receptor
Journal of Pineal Research, 45(4), 361-372, 2008
IF = 5.056
Structure/function relationships underlying regulation of FOXO transcription factors.
Oncogene, 27(16), 2263-2275, 2008
IF = 7.216
Identification of P2X(4) receptor transmembrane residues contributing to channel gating and interaction with ivermectin.
Pflügers Archiv, 465(5), 939-950, 2008
IF = 3.526
14-3-3 proteins: a family of versatile molecular regulators.
Physiol Res. 57 Suppl 3:S11-21, 2008. Review.
IF = 1.653
Subcellular redistribution of trimeric G-proteins--potential mechanism of desensitization of hormone response: internalization, solubilization, down-regulation.
Physiological Research, 57, S1-S10, 2008
IF = 1.653
2007
ATP binding site on the C-terminus of the vanilloid receptor.
Archives of Biochemistry and Biophysics, 465(2), 389-398, 2007
IF = 2.578
Both the N-terminal loop and wing W2 of the forkhead domain of transcription factor Foxo4 are important for DNA binding.
Journal of Biological Chemistry, 282(11), 8265-8275, 2007
IF = 5.581
Ethanol inhibits cold-menthol receptor TRPM8 by modulating its interaction with membrane phosphatidylinositol 4,5-bisphosphate.
Journal of Neurochemistry, 100(1), 211-224, 2007
IF = 4.451
Role of aromatic and charged ectodomain residues in the P2X(4) receptor functions.
Journal of Neurochemistry, 102(4), 1139-1150, 2007
IF = 4.451
Contribution of the putative inner-pore region to the gating of the transient receptor potential vanilloid subtype 1 channel (TRPV1).
Journal of Neuroscience, 27(28), 7578-7585, 2007
IF = 7.49
Functional changes in the vanilloid receptor subtype 1 channel during and after acute desensitization.
Neuroscience, 149(1), 144-154, 2007
IF = 3.352
2006
Identification of P2X4 receptor-specific residues contributing to the ivermectin effects on channel deactivation.
Biochemical and Biophysical Research Communications, 349(2), 619-625, 2006
IF = 2.855
Reducing and oxidizing agents sensitize heat-activated vanilloid receptor (TRPV1) current.
Molecular Pharmacology, 70(1), 383-394, 2006
IF = 4.469
2005
Ligand binding to the human MT2 melatonin receptor: the role of residues in transmembrane domains 3, 6, and 7.
Biochemical and Biophysical Research Communications, 332(3), 726-734, 2005
IF = 3
14-3-3 Protein interacts with nuclear localization sequence of forkhead transcription factor FoxO4.
Biochemistry, 44(34), 11608-11617, 2005
IF = 3.848
2004
The hydrogen bonds between Arg423 and Glu472 and other key residues, Asp443, Ser477, and Pro489, are responsible for the formation and a different positioning of TNP-ATP and ATP within the nucleotide-binding site of Na(+)/K(+)-ATPase.
Biochemistry, 43(26), 8303-8311, 2004
IF = 4.008
14-3-3zeta C-terminal stretch changes its conformation upon ligand binding and phosphorylation at Thr232.
Journal of Biological Chemistry, 279(6), 4531-4540, 2004
IF = 6.355
14-3-3 protein C-terminal stretch occupies ligand binding groove and is displaced by phosphopeptide binding.
Journal of Biological Chemistry, 279(47), 49113-49119, 2004
IF = 6.355
Molecular modeling of human MT2 melatonin receptor: the role of Val204, Leu272 and Tyr298 in ligand binding.
Journal of Neurochemistry, 91(4), 836-842, 2004
IF = 4.824
Oxidizing reagent copper-o-phenanthroline is an open channel blocker of the vanilloid receptor TRPV1.
Neuropharmacology, 47(2), 273-285, 2004
IF = 3.734
Protein modeling combined with spectroscopic techniques: an attractive quick alternative to obtain structural information.
Physiological Research, 53(Suppl. 1), S187-S197, 2004
IF = 1.14