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1.
Article in English | MEDLINE | ID: mdl-18607098

ABSTRACT

Polygalacturonases are pectate-degrading enzymes that belong to glycoside hydrolase family 28 and hydrolyze the alpha-1,4 glycosidic bond between neighboring galacturonasyl residues of the homogalacturonan substrate. The acidic polygalacturonase PehA from Agrobacterium vitis was overexpressed in Escherichia coli, where it accumulated in the periplasmic fraction. It was purified to homogeneity via a two-step chromatography procedure and crystallized using the hanging-drop vapour-diffusion technique. PehA crystals belonged to space group P2(1), with unit-cell parameters a = 52.387, b = 62.738, c = 149.165 A, beta = 89.98 degrees . Crystals diffracted to 1.59 A resolution and contained two molecules per asymmetric unit. An initial structure determination by molecular replacement indicated a right-handed parallel beta-helix fold.


Subject(s)
Bacterial Proteins/chemistry , Polygalacturonase/chemistry , Rhizobium/enzymology , X-Ray Diffraction , Bacterial Proteins/genetics , Crystallization/methods , Polygalacturonase/genetics , Rhizobium/genetics
2.
Biochemistry ; 44(45): 14760-71, 2005 Nov 15.
Article in English | MEDLINE | ID: mdl-16274224

ABSTRACT

Phosphatidylinositol transfer protein (PITP) is a ubiquitous eukaryotic protein that preferentially binds either phosphatidylinositol or phosphatidylcholine and catalyzes the exchange of these lipids between membranes. Mammalian cytosolic PITPs include the ubiquitously expressed PITPalpha and PITPbeta isoforms (269-270 residues). The crystal structure of rat PITPbeta complexed to dioleoylphosphatidylcholine was determined to 2.18 A resolution with molecular replacement using rat PITPalpha (77% sequence identify) as the phasing model. A structure comparison of the alpha and beta isoforms reveals minimal differences in protein conformation, differences in acyl conformation in the two isoforms, and remarkable conservation of solvent structure around the bound lipid. A comparison of transfer activity by human and rat PITPs, using small unilamellar vesicles with carefully controlled phospholipid composition, indicates that the beta isoforms have minimal differences in transfer preference between PtdIns and PtdCho when donor vesicles contain predominantly PtdCho. When PtdCho and PtdIns are present in equivalent concentrations in donor vesicles, PtdIns transfer occurs at approximately 3-fold the rate of PtdCho. The rat PITPbeta isoform clearly has the most diminished transfer rate of the four proteins studied. With the two rat isoforms, site-directed mutations of two locations within the lipid binding cavity that possess differing biochemical properties were characterized: I84alpha/F83beta and F225alpha/L224beta. The 225/224 locus is more critical in determining substrate specificity. Following the mutation of this locus to the other amino acid, the PtdCho transfer specific activity became PITPalpha (F225L) approximately PITPbeta and PITPbeta (L224F) approximately PITPalpha. The 225alpha/224beta locus plays a modest role in the specificity of both isoforms toward CerPCho.


Subject(s)
Phosphatidylcholines/chemistry , Phospholipid Transfer Proteins/chemistry , Phospholipids/metabolism , Amino Acid Sequence , Animals , Conserved Sequence , Crystallography, X-Ray , Humans , Models, Molecular , Mutagenesis, Site-Directed , Phosphatidylcholines/metabolism , Phospholipid Transfer Proteins/genetics , Phospholipid Transfer Proteins/metabolism , Phospholipids/chemistry , Protein Isoforms/chemistry , Protein Isoforms/genetics , Protein Isoforms/metabolism , Rats
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