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[A micro method for the determination of the configuration of histidine in peptides: evidence for partial racemization during peptide synthesis (author's transl)].

A gas chromatographic method for the determination of small portions of D-histidine together with an excess of L-histidine (or vice versa) is described. Histidine is degraded to aspartic acid by reaction with ozone. The enantiomers are esterified with (+)-3-methyl-2-butanol. After N-trifluoroacetylation the volatile diastereoisomers are separated in glass capillaries coated with a chiral stationary phase and determined quantitatively. For precise evaluations the partial racemization during peptide hydrolysis must be accounted for. The method was applied to some histidine peptides and about 5% racemization was measured.

Chromatography, Gas

[Basic peptides in bee venom, II. Synthesis of two pentapeptides from the sequence of the mast-cell-degrading peptide (author's transl)].

The synthesis of two protected pentapeptides is described. The peptides are fragments of the sequence of a mast-cell degranulating peptide from bee venom. The fragments Boc-Lys(Z)-Ile-Cys(SiPr)-Gly-Lys(Z)(I) and Boc-Pro-His(Trt)-Ile-Cys(Trt)-Arg(Tos) (II) were synthesized conventionally. The deprotection of the alpha-amino group by HCl/acetic acid of Boc-Ile-Cys(SiPr)-Gly-Lys(Z) was accompanied by a disulfide exchange at the cysteine residue. After the hydrolysis of fragment II with 6N HCl, allo-isoleucine could be detected by gas chromatography and amino-acid analysis.

Amino Acid Sequence

[The rule of antibody structure. The primary structure of a monoclonal IgG1 immunoglobulin (myeloma protein Nie). III. The chymotryptic peptides of the H-chain, alignment of the tryptic peptides and discussion of the complete structure].

In this final paper the complete primary structure of the H-chain of immunoglobulin Nie (IgG1, Gm1+, 17+) is established by overlapping tryptic fragments with chymotryptic peptides. The preceding papers dealt with the purification of the protein, the characterization of the light and heavy chains, the purification and characterization of the cyanogen bromide cleavage products, the location of the disulfide bonds, the isolation of the tryptic peptides and their sequence determination. The gamma1-chain Nie comprises 448 amino acid residues. When the protein is compared with other H-chains, the switch from the variable to the constant part occurs at position 119/120. Based on the amino acid sequence of the variable part, protein Nie belongs to subgroup III of the H-chains. It was the first protein of this subgroup to be sequenced. In the meantime several other proteins are known which have been assigned to the same subgroup on the basis of linked amino acid exchanges in comparison to members of other subgroups. This confirms the evolutionary origin of antibody variability and hence the genetically fixed antibody specific. Furthermore protein Nie is the first completely determined chain with the genetic factors Gm1+, 17+. These factors are inherited codominantly and are localized on the constant part of the gamma1-chain. By comparison with protein Eu, which is Gml-, 4+ and therefore an allele of Nie, these serologically defined factors are correlated with Eu. Besides the amino acid exchanges caused by the Gm-factors we elucidated a series of differences to the constant part of the protein Eu. These differences include 6 amide postions and the sequence from residues 387 to 391. Using the structure of IgG1 Nie as an example some rules for the evolution of immunoglobulin sequences have been described. In particular the "elongation-rule" and the "Disulfide-rule" are discussed. While chain-elongation of the H-chains can simply be explained by repeated gene duplications of a basic unit containing ca 110 amino acids, the location of disulfide bonds is determined partly by gene duplication, which implies multiplication of evolutionary "old" cystein residues and partly by the relatively recent acquisition of "new" cystein in appropriate sites. Most evident is the origin of the "hindge-region" by partial gene duplication on the C-terminal residues of the first homology region.

Amino Acid Sequence

[Conformational aspects of peptide interaction with proteolytic enzymes. Pepsin-catalyzed hydrolysis of cyclic peptides, containing leucyl-tyrosine fragments].

Pepsin was found capable of splitting cycloota- and cyclodecapeptides cyclo (-L-leucyl-L-tyrosyl-glycln-), n=6 or 8. The 18-membered peptides cyclo(-L-leucyl-L-tyrosyl-glycyl4-) and cyclo(-L-leucyl-L-tyrosy-delta-aminovaleroyl2-) were found stable to the effect of pepsin. To study the kinectics of hydrolysis for tyrosine-containing substrates of pepsin, a method of isolation of the unsplit substrate using ion-exchange resins and quantitative spectrophotometric estimation by absortion of tyysis of cycoocta and cyclodecapeptides was characterized by Km and kcat values.

Hydrolysis

Amino acid sequence of the carboxy-terminal cyanogen bromide peptide of the human fibrinogen beta-chain: homology with the corresponding gamma-chain peptide and presence in fragment D.

The carboxy-terminal cyanogen bromide fragment of the human fibrinogen beta-chain has been isolated and its structure determined. It is a nonapeptide with the sequence Lys-Ile-Arg-Pro-Phe-Phe-Pro-Gln-Gln and is homologous with a portion of the carboxy-terminal cyanogen bromide fragment of the gamma-chain. The peptide has also been isolated in full yield from cyanogen bromide digests of the plasmin-derived fragment D, indicating that the carboxy-terminal region of the beta-chain is resistant to plasmin digestion. In contrast, a small portion of the corresponding gamma-chain carboxy-terminal region was missing in the same fragment D.

Amino Acid Sequence

Bonded peptide stationary phases for the separation of amino acids and peptides using liquid chromatography.

Bonded optically active tripeptides have been applied as stationary phases for liquid chromatography. Significant retention variations are shown for some UV absorbing amino acids when compared to a silica gel column using the same mobile phase. The separation of certain isomeric dipeptides has been accomplished using the bonded optically active tripeptide stationary phases. It is shown that these separations are superior to those possible on silica gel, although the efficiencies of the column are low. Phenylthiohydatoin (PTH)-amino acids have also been analyzed using the bonded tripeptide L-Val-L-Ala-L-Ser on silica gel CT and 1% citric acid-water as the mobile phase. No two PTH-amino acids showed the same capacity ratio out of 25 tested and the separation of 15 in one isocratic run is presented. The implications and future for the use of bonded opitcally active peptides as stationary phases for liquid chromatography are discussed.

Amino Acids

[Preparative electrophoresis of peptidic glycosaminoglycans. Application to the fractionation of peptidic glycosaminoglycans of arterial wall (author's transl)].

A new procedure for the fractionation of glycosaminoglycans by electrophoresis on Pevikon has been described. Mixtures of glycosaminoglycans were fractionated by preparative electrophoresis on Pevikon in pyridine formate or glycine-HCl buffers. By this procedure, 200 mg of a mixture of hyaluronic acid, heparan sulphate, dermatan sulphate and chondroitin sulphate isolated from arterial wall could be successfully separated without loss of material. The purified fractions were analysed by enzymatic and chemical procedures. The molar ratios of uronic acid to hexosamine and of sulphate to hexosamine and the amino acid content of each glycosaminoglycan have been determined. The peptidic content (less than 1%) is represented by five amino acids, viz. serine, glycine, alanine, aspartic acid, and glutamic acid.

Amino Acids

Reincorporation of iodinated peptides in vivo and the comparative effectiveness of tungstic and trichloroacetic acids in peptide separation.

The absorption of 125I-bovine IgG after oral administration to young rats has been followed by gel filtration and quantitatively by TCA precipitation. The wide spectrum of protein derivatives crossing the gut wall have been utilised to compare the relative effectiveness of 10% TCA, and 1% tungstic acid, as reagents for the quantitative assessment of radioactive proteins and peptides. Radioactive iodide was the chief radioactive metabolite when 125I-labelled bovine IgG was fed to young rats, there was no significant incorporation of small radioactive metabolites into protein during a second exposure to the gut wall.

Acids

Side reactions in peptide synthesis. VII. Sequence dependence in the formation of aminosuccinyl derivatives from beta-benzyl-aspartyl peptides.

The base catalyzed ring closure in t-Boc-Asp-X beta-napthylamides was examined in a series of 2-peptide derivatives in which position X was occupied by the neutral and acidic amino acid residues that occur in proteins. Bulkiness and functional groups in the side chain of X have a major effect on the rate of cyclization, e.g. acidic groups slow down the formation of aminosuccinyl derivatives. Rate-enhancing effect can be observed in serine and threonine, while the side reaction is unexpectedly slow when X is methionine.

Amino Acids

Catalysis of the peptide bond formation by 50 S subunits of E. coli ribosomes with N-(formyl) methionine ester of adenylic acid as peptide donor.

50 S subunits of E. coli ribosomes catalyze the reaction of the 2'(3')-N-(formyl) methionine ester of adenosine 5'-phosphate and Phe-tRNA resulting in peptide bond synthesis. Cytidine 5'-phosphate stimulates this process on 50 S ribosomal subunits as well as on intact ribosomes. The obtained data show that the areas of the peptidyltransferase donor site which binds the 3'-terminal fragment of peptidyl-tRNA possess completely formed structures on 50 S ribosomal subunits.

Acyltransferases