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Biomedical subjects

K K Han

Publications and source records attributed to K K Han.

At least 73 records · Page 4Linked to original sources

[Sequential Edman degredation].

Since Edman's first publication in 1950, the stepwise degradation of proteins and peptides is universally performed by protein chemists. We extensively reviewed the different manual degradations. We take two examples of manual degradation: a semi-micromethod and a micromethod in order to illustrate the evolution of manual degradation. The "dansyl-Edman" procedure proposed by Hartley in 1963 completes the manual N-terminal determination of peptides. We describe the different procedures of identification of PTH-amino acids: paper chromatography, thin layer chromatography, gas chromatography and liquid chromatography under high pressure and various modified Edman degradation procedures. Possibilities and limits of the liquid phase Sequenator of Edman reported in 1967 and the solid phase Sequencer of Laursen reported in 1971 are also considered in detail.

Amino Acids↗

Amino acid sequence of a cyanogen bromide fragment containing the two tryptophanyl residues of lobster arginine kinase (Homarus vulgaris).

Lobster arginine kinase [EC 2.7.3.3] contains 2 tryptophanyl residues and 9 methionyl residues. The whole carboxymethylated protein was first subjected to CNBr cleavage and the resulting fragments were isolated by gel filtration and other experimental approaches. One fragment, CB5, which contains 60 residues including the two tryptophanyl residues and two of the five cysteinyl residues of the protein, was characterized and the results are reported inthis paper. The overall strategy for the establishment of the complete sequence of this fragment was based on the use of three types of peptides: (a) whole cyanogen bromide peptide CB5 which was partially characterized by automatic Edman degradation using a sequencer: 42 steps were performed out of 60 residues, (b) tryptic peptides of CB5, (c) peptides formed by cleavage of S-carboxymethylated arginine kinase (whole protein) at the two tryptophanyl residues with BNPS-skatole. The complete amino acid sequence of the CNBr polypeptide (CB5) which contains the two tryptophanyl residues of the whole protein was established.

Amino Acid Sequence↗

Isolation and characterization of highly purified alpha-1-antitrypsin.

Highly purified human alpha-1-antitrypsin (phenotype MM) was obtained by an original method of preparative electrophoresis. The criteria of homogeneity were assured by one arc in crossed immunoelectrophoresis and one band on polyacrylamide gel. A unique N-terminal amino acid (pyroglutamic acid) and a unique C-terminal residue (lysine) were identified. Determined by gel electrophoresis, its molecular weight was 47,000 daltons.

Amino Acid Sequence↗

Primary sequence of the beta-chain of Badger haemoglobin.

Badger (Meles meles) haemoglobin was purified by paper electrophoresis and converted into globin. Chain separation was carried out on a CM-cellulose column in the presence of 8 M urea. The beta-chain was aminoethylated, purified by gel filtration and submitted to tryptic digestion. A fingerprint obtained with the enzymic digests showed 17 distinct ninhydrin-positive spots from which 20 pure peptides were isolated by further electrochromatographic separations. These peptides were sequenced using Dansyl-Edman and Ptc-Edman degradation techniques. The presence of amide residues was confirmed after aminopeptidase M hydrolysis. Taking human haemoglobin beta-chain as a model, the covalent structure could be completely resolved without the help of any further overlapping technique. The following substitutions were noted (badger/human, position): Ala/Pro5, Ser/Ala13, Tyr/Phe41, Asp/Glu43, Ser/Ala70, Glu/Asp73, Lys/Ala76, Asn/His77, Lys/Thr87, Lys/Arg104 and Gln/Pro125. A comparison with other haemoglobin beta-chains already sequenced shows a greater similarity with dog haemoglobin, the only example of beta-chain of known structure in the order of Carnivores.

Amino Acid Sequence↗

Purification of a lysinonorleucine cross-linked peptide fraction from porcine aorta elastin.

Highly purified elastin from porcine aorta was submitted to elastase digestion. The enzymic products were subjected to gel filtration on Sephadex G 25. The excluded fraction was then submitted to thermolysin digestion and gel filtration. The excluded fraction was submitted to partial acid hydrolysis and gel filtration. Several sub-fractions were obtained. The F3 subfraction containing cross-linking agents (desmosines and lysinonorleucine) was finally subjected to ion exchange chromatography. A highly enriched peptide fraction containing lysinomorleucine was obtained and then purified by preparative electrophoresis. The ratio of enrichment passed from 2 residues of lysinonorleucine (expressed as lysine) from starting material (elastin) to 178 out of 1,000 residues in the final step. In this peptide fraction, if we express in molar ratio and consider the amount of lysinonorleucine is one residue, the following amino-acid composition is Pro:3, Gly:1, Ala:2, LNL:1, Lys:2. No traces of desmosines are detected. The role of lysinonorleucine in bridging functions in elastin is discussed.

Amino Acids↗

[Characterization and physico-chemical properties of human transcortin].

The molecular weight of human transcortin, calculated from the sedimentation coefficient, was found to be 49,500, thus slightly lower than previously reported values. After purification, human transcortin trended to polymerize rapidly, with participation of both non covalent bonds and one disulfide bridge per dimer. The physicochemical parameters, the amino-acid and carbohydrate composition were determined; its stability was studied under different conditions. Preliminary structural studies showed that the N-terminal sequence of the polypeptide chain was: Met-Asp-Pro-Asn-Ala-Ala-Tyr-Val and that the C-terminal amino acid was leucine.

Amino Acid Sequence↗

Isolation and characterization of the cyanogen bromide fragments of lobster arginine kinase (homarus vulgaris).

Arginine kinase was aminoethylated in order to block the five free thiol groups on the native enzyme, and then submitted to BrCN cleavage. The BrCN resulting peptides were soluble in propionic acid (10 percent) and subsequently submitted to gel-filtration. The large polypeptide subfractions were citraconylated and resubmitted to differnt gelchromatographies, whereas the short peptide subfractions were submitted to preparative paper electrochromatographies. Eight peptides of 2, 11, 17, 25, 61, 82, 86 and 132 amino acid residues were isolated, one of which is the overlapping of two peptides. The amino acid composition and the end group of all the isolated peptides were established. The short peptides (2, 11 and 17 residues) were sequenced. All peptides possess homoserine at C-terminal position because one methionyl residue is situated at the C-terminal position in the native protein. The polypeptide with 132 residues possessed N-acetylated residue at N-terminal position: therefore this polypeptide is located at the N-terminal position in the protein. The sum and account of each amino acid of the seven isolated peptides were compared to those of the intact protein: the sum of the seven peptides is 331 amino acid residues, whereas the whole protein contains 342 residues. The molecular weight of arginine kinase is revised and calculated on the basis of the present results (37, 687).

Amino Acid Sequence↗