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Biomedical subjects

B Peeters

Publications and source records attributed to B Peeters.

At least 73 records · Page 4Linked to original sources

Isolation and partial characterization of an N-acetylgalactosamine-specific lectin from winter-aconite (Eranthis hyemalis) root tubers.

A lectin was isolated from root tubers of winter aconite (Eranthis hyemalis) by affinity chromatography on fetuin-agarose, and it was partially characterized with respect to its biochemical, physicochemical and carbohydrate-binding properties. The Eranthis hyemalis lectin is a dimeric protein (Mr 62000) composed of two different subunits of Mr 30000 and 32000, held together by disulphide bonds. It is especially rich in asparagine/aspartic acid, glutamine/glutamic acid and leucine, and contains 5% covalently bound carbohydrate. Hapten inhibition assays indicated that the winter-aconite lectin is specific for N-acetylgalactosamine. In addition, the lectin exhibits a pronounced specificity towards blood-group-O erythrocytes. The winter-aconite lectin is the first lectin to be isolated from a species belonging to the plant family Ranunculaceae. It appears to be different from all previously described plant lectins.

Acetylglucosamine↗

Production of monoclonal antibodies directed against antigenic determinants common to the alpha- and beta-chain of bovine brain S-100 protein.

BALB/c mice were immunized with S-100 protein, which was isolated from bovine brain. The first fusion resulted in the cloning of three stable hybridoma lines (S1-61-64, S1-61-65, S1-87-4) that produced monoclonal antibodies against S-100 protein. The hybridoma lines obtained from a second fusion (S2-20, S2-95) were not stable and antibody production ceased early during cloning. Immunoblotting results showed that all antibodies reacted with antigenic determinants shared by both the alpha- and beta-subunit of S-100 protein. These antigenic sites appeared to differ from the calcium-binding site since immunoblotting against other calcium-binding proteins sharing this site (calmodulin, carp parvalbumin, oncomodulin) was negative. Despite the fact that the immunoblotting reactions of the antibodies obtained from both fusions were indistinguishable, different immunohistologic labeling patterns could be observed. These antibodies have proven to be excellent reagents for the immunocytochemical detection of S-100 in normal and pathologic human tissue.

Animals↗

A lectin from elder (Sambucus nigra L.) bark.

A lectin was isolated from elder (Sambucus nigra) bark by affinity chromatography on fetuin-agarose. It is a tetrameric molecule (Mr 140000) composed of two different subunits of Mr 34500 and 37500 respectively, held together by intramolecular disulphide bridges. The lectin is a glycoprotein and is especially rich in asparagine/aspartic acid, glutamine/glutamic acid, valine and leucine. It is also the first lectin isolated from a species belonging to the plant family Caprifoliaceae.

Amino Acids↗

Proline-rich polypeptides bound to rat prostatic binding protein. The primary structure of the two main components, proline-rich polypeptides IV and V.

The complete primary structures of the two main forms, PRP-IV and PRP-V, of a proline-rich polypeptide bound in vivo to rat prostatic binding protein has been determined. Their sequences were established using manual Edman degradation of the native polypeptide and of purified fragments derived from trypsin and thermolysin digestions. Both polypeptides contain 38 amino acid residues (Mr = 4397 and 4339); cysteine, methionine, and serine are missing. In spite of the high proline content (21%), no polyproline stretches were detected. PRP-IV and PRP-V show an extensive structural homology and differ only by three substitutions. These amino acid replacements are located in the NH2-terminal part of the molecule at positions 6 (His leads to Pro), 10 (Pro leads to His), and 11 (Asp leads to Gly). Moreover, each component displays a microheterogeneity at several positions in the sequence which indicates that multiple structural variants exist for PRP-IV and PRP-V. These data not only suggest the existence in rat ventral prostate of a multigene family coding for the proline-rich polypeptides but also the occurrence of a pronounced genetic polymorphism for these components. In addition, a remarkable sequence homology is observed between the PRP components and the region of the B chain in the precursor of mouse renin.

Amino Acid Sequence↗

The nucleotide sequence of cDNA complementary to the C1 component of rat prostatic binding protein.

The mRNA for component C1 of rat prostatic binding protein has been cloned and characterized. A partially purified mRNA fraction for this complex protein was reverse-transcribed into double-stranded cDNA and cloned into the PstI site of plasmid pBR 322. The 426-base-pair insert of the recombinant plasmid pC1A75 was completely sequenced. The coding region corresponds precisely to the 88 amino acid residues of C1 and in addition contains the information of a signal peptide of 23 residues. The 5' non-coding region counts only 19 nucleotides and is incomplete but the 3'-terminal non-coding part of 60 nucleotides extends into the poly(A) tail. Sequence analysis of other C1-positive clones indicates the presence of sequence rearrangements which must have occurred during the cloning procedure. Possible mechanisms for the generation of these cloning artefacts are discussed.

Androgen-Binding Protein↗

Structural studies on rat prostatic binding protein. The primary structure of component C2 from subunit S.

The amino acid sequence of component C2, the polypeptide specific for subunit S of prostatic binding protein, the major secretory glycoprotein of the rat ventral prostate, has been determined. Its structure was established using the manual Edman degradation on the most relevant fragments obtained by enzymatic digestion of the S-carboxamidomethylated component C2 and the native subunit S and by chemical cleavage of the remaining undigestible 'cores' with cyanogen bromide. Component C2 contains 92 amino acids corresponding to a molecular weight of 10619. It is a slightly acidic polypeptide in which the acidic and basic residues are unevenly distributed. The N terminus is blocked and three cysteine residues are almost evenly distributed over the peptide chain. A highly polar region is found in position 23-34 and two hydrophobic segments are located in the C-terminal part of the molecule. Component C2 is compared with component C1 of subunit F and their high sequence homology reveals an evolutionary relationship.

Amino Acid Sequence↗

Multiple forms of the proline-rich polypeptide (PRP) bound to rat prostatic binding protein.

The proline-rich polypeptide, that is bound to rat prostatic binding protein displays a marked heterogeneity on isoelectric focusing, with major bands at pH 7.6 and pH 6.9. The same complex pattern is obtained for PRP prepared from prostates of individual rats from several strains. Using carboxymethylcellulose chromatography 6 different forms of PRP can be separated. Five of them have the same size (MW : 4000) and respectively glycine and lysine as N- and C-terminal amino acid. Their amino acid composition suggests that these forms differ by internal substitution respectively of aspartic acid and glycine and of proline and histidine. The sixth form (MW : 3500) lacks several amino acids at its N-terminal.

Amino Acids↗

Study of a proline-rich polypeptide bound to the prostatic binding protein of rat ventral prostate.

A proline-rich polypeptide is associated with prostatic binding protein, a major androgen-dependent protein described previously in the rat ventral prostate. This polypeptide has been purified. Its molecular weight estimated by gel filtration is about 8500, but a markedly lower value (3300) is obtained by sodium dodecyl sulfate-urea polyacrylamide gel electrophoresis. Isoelectric focusing on thin layer polyacrylamide gels yields two major forms with isoelectric points of, respectively, 7.75 and 7.05. The amino acid composition of proline-rich polypeptide is characterized by a high (19.5%) proline content and its NH2-terminal amino acid is glycine. Like prostatic binding protein, proline-rich polypeptide is a characteristic component of the rat ventral prostate and localized primarily in the intraluminal secretion of this gland. In intact adult male rats the cytosol of a whole gland contains 0.70 +/- 0.15 (S.D.) mg of the polypeptide, as measured by radial immunodiffusion or 2.6 +/- 0.5% of (S.D.) of the total protein. This amount decreases gradually after castration and becomes undetectable after 8 days. Androgen treatment, on the other hand, results in a rapid stimulation, while estradiol and progesterone are ineffective. Proline-rich polypeptide is markedly more androgen-dependent than prostatic binding protein, and promises to be an interesting end point for studies on the mechanism of action of androgens.

Amino Acids↗

Structural studies on rat prostatic binding protein. The primary structure of component C1 from subunit F.

The amino acid sequence of component C1, the polypeptide specific for subunit F of prostatic binding protein, the major secretory glycoprotein of the rat ventral prostate, has been determined. Its structure was established using the manual Edman degradation on the intact protein and on the most relevant fragments isolated from trypsin, chymotrypsin, thermolysin and Staphylococcus aureus protease digests of the 14C-labelled S-carboxamidomethylated component C1. Component C1 contains 88 amino acids corresponding to a molecular weight of 10246. It is an acidic polypeptide due to the presence of 17 acidic residues; its three cysteine residues are almost symmetrically distributed over the peptide chain. Highly polar regions are found in positions 17-27 and 37-47, while the C-terminal part of the molecule contains two hydrophobic segments.

Amino Acid Sequence↗

Structural studies on rat prostatic binding protein. The primary structure of its glycosylated component C3.

The amino acid sequence of the glycosylated component C3 of rat prostatic binding protein has been determined. The peptides obtained by digestion of the S-carboxamidomethylated or S-aminoethylated glycoprotein with trypsin and Staphylococcus aureus protease were sequenced by manual Edman degradation. The alignment of the fragments was further established with overlapping peptides obtained by enzymic hydrolysis of the modified protein with chymotrypsin and thermolysin, and by chemical cleavage with cyanogen bromide. The glycopeptide C3 contains 77 amino acids corresponding to a molecular weight of 8653. the oligosaccharide chain is attached to the peptide by an N-glycosidic bond to asparagine-17. C3 is an acidic polypeptide due to the presence of ten acidic residues; its three cysteine residues are located at both extremities and in the middle of the molecule.

Amino Acid Sequence↗

The wheat germ cell-free system possesses processing activity for the precursor of human placental lactogen.

1. Total RNA was extracted from human term placenta and mRNA purified by chromatography on oligo(dT)-cellulose. The poly(A)-containing fraction stimulated amino acid incorporation 5- to 10-fold in the wheat germ cell-free system. Immunoprecipitation with an anti-lactogen serum indicated that 14-27% of the peptides synthesized in vitro contained antigenic determinants of this hormone. 2. Analysis of the [3H]leucine labelled product in the immunoprecipitate on sodium dodecyl sulfate-polyacrylamide gels revealed a complex mixture of polypeptides. Two heavily labelled bands (I and III) were seen corresponding in mobility with pre-lactogen (Mr = 25 000) and native lactogen (Mr = 22 200), each accounting for about 30% of the immunoprecipitable radioactivity. Two additional bands with an intermediate mobility were also observed. 3. Synthesis of the hormone was inhibited by 7-methylguanosine-5'-monophosphate suggesting the presence of a 7-methylguanosine 'cap' on the 5'-end of the mRNA for lactogen. 4. Peptide analysis of the cyanogen bromide cleavage products of band I, band III and authentic lactogen showed marked similarities in their primary structure. The precursor molecule, however, was lacking the N-terminal peptide present in authentic hormone indicating the presence of an extension of 25 amino acids at this side of the molecule. 5. The presence of one or several processing enzymes in the wheat germ cell-free system was indicated by the effect of Triton X-100. Low concentrations of this detergent (0.04%) while inhibiting the protein synthesizing activity for only 15%, completely abolished the precursor cleavage activity. Under these conditions only pre-lactogen was detected in the immunoprecipitate.

Female↗

Translation of biologically active messenger RNA from human placenta in Xenopus oocytes.

Polysomal RNA was extracted from human term placenta and total poly(A)-containing RNA purified by affinity chromatography on oligo(dT)-cellulose. Poly(A)-containing RNA constituted approximately 1.2% of the total polysomal RNA and 8% of this purified preparation was able to anneal with [3H]poly(U). When injected into Xenopus oocytes, this poly(A)-rich RNA directed the synthesis of a polypeptide which is immunoprecipitable with a specific antiserum to human placental lactogen. The identity of authentic human placental lactogen and the immunoreactive polypeptide synthesized in the oocytes is suggested by their identical behaviour in dodecylsulfate gel electrophoresis and by the formation of identical cyanogen bromide peptides. No precursor of human placental lactogen can be detected in the oocytes. The messenger RNA for human placental lactogen is very stable in oocytes; it is translated efficiently for a period of at least 7 days.

Animals↗

Purification and characterisation of prostatic binding protein and its subunits.

The prostatic binding protein, previously described in rat ventral prostate, was isolated. The purified protein binds pregnenolone with an affinity of 1.2 X 10(6) M-1 and contains an average of 0.84 binding site per molecular. Its carbohydrate content is 3.2%. Its Mr, estimated by gel filtration, is 51 000 but in the presence of 6 M guanidine hydrochloride or 0.1% dodecylsulfate it dissociates into two subunits (S and F), which can be separated by polyacrylamide gel electrophoresis or by chromatography on hydroxyapatite. The Mr of these subunits is about 17 000, when estimated by gel filtration in 6 M guanidine hydrochloride, or 19 000 for subunit F and 20 000 for subunit S, when measured by dodecylsulfate/polyacrylamide gel electrophoresis. Their isoelectric points, estimated by isoelectric focusing in 8 M urea, are 4.6 for subunit F and 4.9 for subunit S. Prostatic binding protein and both subunits have a very similar amino acid composition. Upon reduction of disulfide bridges each subunit dissociates further into two components: one of these components is the same in both subunits.

Amino Acids↗