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1.
Oncogene ; 29(42): 5755-60, 2010 Oct 21.
Article in English | MEDLINE | ID: mdl-20676144

ABSTRACT

The retinoblastoma protein (pRb) and the pRb-related proteins, p130 and p107, form the 'pocket protein' family of cell cycle regulatory factors. A well characterized function of these proteins is the cell cycle-dependent regulation of E2F-responsive genes. The biological activity of pocket proteins is regulated by phosphorylation and for the founding member pRb it has been shown that acetylation also has an important role in modulating its function during the cell cycle. Here, we show that hyperphosphorylated retinoblastoma 2 (Rb2)/p130 also exists in an acetylated form in NIH3T3 cells. Acetylated p130 is present in the nucleus but not in the cytoplasm. Acetylation is cell cycle dependent, starting in S-phase and persisting until late G(2)-period. Using recombinant p130 and truncated forms for in vitro acetylation by the acetyltransferase p300, we could identify K1079 in the C-terminal part as the major acetylation site by mass spectrometry. Minor acetylation sites were pinpointed to K1068 and K1111 in the C-terminus, and K128 and K130 in the N-terminus. The human papilloma virus 16 protein-E7 preferentially binds to acetylated p130 and significantly increases in vitro p130 acetylation by p300.


Subject(s)
Cell Cycle/physiology , Retinoblastoma-Like Protein p130/metabolism , Acetylation , Animals , Blotting, Western , Cell Cycle Proteins/metabolism , Cell Nucleus/metabolism , Cytoplasm/metabolism , Electrophoresis, Polyacrylamide Gel , Immunoprecipitation , Mice , NIH 3T3 Cells
2.
Arch Biochem Biophys ; 375(1): 111-8, 2000 Mar 01.
Article in English | MEDLINE | ID: mdl-10683255

ABSTRACT

A sialoglycoprotein fraction was isolated from chicken erythrocytes by two methods based on the phenol extraction or chloroform/2-propanol extraction of differently prepared erythrocyte membranes. Both preparations gave in SDS-PAGE two major PAS-stained bands (GP2 and GP3), which migrated as 60- and 33-kDa species, respectively, compared to reference proteins, or as 44- and 23-kDa molecules, compared to human glycophorins. Some less abundant slower migrating PAS-stained components, antigenically related to GP2 and GP3, also were detected. No evidence for the presence of antigenically distinct glycoproteins of leukosialin type was obtained. Interconversion in SDS-PAGE, similar carbohydrate composition, and similar antigenic properties of GP2 and GP3 indicated that they are a dimer and monomer, respectively, of the same glycoprotein which shows properties that allow it to be classified as a glycophorin. Lectin binding studies and methylation analysis of beta-elimination products of chicken glycophorin preparation showed the presence of O-glycans and N-glycans. The major O-glycans include sialylated Galbeta1-3GalNAc units and more complex GlcNAc-containing chains. Among the N-glycans, there are complex-type biantennary structures with a bisecting GlcNAc residue, accompanied by chains with additional antennas linked to alpha-mannose residues. A characteristic feature of the chicken glycophorin is a relatively high proportion of N-glycans to O-glycans, compared to the glycophorin A from human erythrocytes.


Subject(s)
Erythrocytes/chemistry , Glycophorins/chemistry , Glycophorins/isolation & purification , Animals , Carbohydrate Metabolism , Carbohydrates/analysis , Cell Membrane/metabolism , Chickens , Electrophoresis, Polyacrylamide Gel , Epitopes/immunology , Glycophorins/immunology , Glycosylation , Immunoblotting , Lectins/metabolism , Molecular Sequence Data , Molecular Weight , Sialoglycoproteins/chemistry , Sialoglycoproteins/isolation & purification , Subcellular Fractions/chemistry
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