about
Thoughts on Sec14-like nanoreactors and phosphoinositide signalingFunctional anatomy of phospholipid binding and regulation of phosphoinositide homeostasis by proteins of the sec14 superfamilyResurrection of a functional phosphatidylinositol transfer protein from a pseudo-Sec14 scaffold by directed evolutionTrans-Golgi network and endosome dynamics connect ceramide homeostasis with regulation of the unfolded protein response and TOR signaling in yeast.Inositol Polyphosphate Binding Specificity of the Jasmonate Receptor Complex.Crystallization and preliminary X-ray diffraction analysis of Sfh3, a member of the Sec14 protein superfamily.Sec14-nodulin proteins and the patterning of phosphoinositide landmarks for developmental control of membrane morphogenesisLocal polarity and hydrogen bonding inside the Sec14p phospholipid-binding cavity: high-field multi-frequency electron paramagnetic resonance studiesDifferent transport mechanisms in plant and human AMT/Rh-type ammonium transportersThe diverse biological functions of phosphatidylinositol transfer proteins in eukaryotes.Crystallization and preliminary X-ray diffraction analysis of phospholipid-bound Sfh1p, a member of the Saccharomyces cerevisiae Sec14p-like phosphatidylinositol transfer protein familyPhosphatidylinositol transfer proteins and cellular nanoreactors for lipid signaling.Sphingolipid metabolism in trans-golgi/endosomal membranes and the regulation of intracellular homeostatic processes in eukaryotic cells.In vitro analysis of alpha-amanitin-resistant transcription from the rRNA, procyclic acidic repetitive protein, and variant surface glycoprotein gene promoters in Trypanosoma bruceiA blueprint for functional engineering: Single point mutations reconstitute phosphatidylinositol presentation in a pseudo-Sec14 protein.Iron acquisition by phytosiderophores contributes to cadmium tolerance.The chemistry of phospholipid binding by the Saccharomyces cerevisiae phosphatidylinositol transfer protein Sec14p as determined by EPR spectroscopy.Plant plasma membrane water channels conduct the signalling molecule H2O2.A 1-phytase type III effector interferes with plant hormone signaling.The regulation of cell polarity by lipid transfer proteins of the SEC14 family.A putative function for the arabidopsis Fe-Phytosiderophore transporter homolog AtYSL2 in Fe and Zn homeostasis.Prometabolites of 5-Diphospho-myo-inositol Pentakisphosphate.VIH2 Regulates the Synthesis of Inositol Pyrophosphate InsP8 and Jasmonate-Dependent Defenses in Arabidopsis.The Arabidopsis major intrinsic protein NIP5;1 is essential for efficient boron uptake and plant development under boron limitation.AtIREG2 encodes a tonoplast transport protein involved in iron-dependent nickel detoxification in Arabidopsis thaliana roots.Arabidopsis ITPK1 and ITPK2 Have an Evolutionarily Conserved Phytic Acid Kinase Activity
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description
hulumtues
@sq
onderzoeker
@nl
researcher
@en
ricercatore
@it
հետազոտող
@hy
name
Gabriel Schaaf
@ast
Gabriel Schaaf
@en
Gabriel Schaaf
@es
Gabriel Schaaf
@nl
Gabriel Schaaf
@sl
type
label
Gabriel Schaaf
@ast
Gabriel Schaaf
@en
Gabriel Schaaf
@es
Gabriel Schaaf
@nl
Gabriel Schaaf
@sl
prefLabel
Gabriel Schaaf
@ast
Gabriel Schaaf
@en
Gabriel Schaaf
@es
Gabriel Schaaf
@nl
Gabriel Schaaf
@sl
P214
P227
P244
P1053
F-1956-2014
P106
P21
P213
0000 0000 7736 4524
P214
P227
P244
n2010018442
P31
P3829
P496
0000-0001-9022-4515
P734
P735
P7859
lccn-n2010018442