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C H Hirs

Publications and source records attributed to C H Hirs.

5 recordsLinked to original sources

A comparison by 220-MHz NMR of histidine hydronium ion titrations in porcine pancreatic ribonuclease and an extensively deglycosylated derivative.

220-MHz NMR was used to observe the titration behavior of the 5 histidine residues in porcine pancreatic ribonuclease (ribonucleate pyrimidine-nucleotido-2'-transferase (cyclizing), EC 3.1.4.22) and a derivative prepared by removal of 80% of the attached carbohydrate from this glycoprotein. Resonances due to histidine C-2 protons were observed over the full pH range for 3 of the residues; such resonances for the remaining 2 histidine residues broadened out as the pH was increased. Resonances due to histidine C-4 protons were also observed for 2 of the residues. The titration curves for both proteins were identical within experimental error. Resonances were assigned by comparison with histidine NMR titrations in ribonucleases from other species. Histidine 105, immediately adjacent to the site of attachment of a heterosaccharide side chain, has a C-2 proton chemical shift and pK that are insensitive to the large alteration in the bulk of the carbohydrate side chain. The chemical shifts of the C-2 proton of histidine 48 and of the C-4 proton of histidine 80, histidine residues that are close to one another and to another heterosaccharide side chain, show a similar insensitivity. The observations are direct evidence in support of the thesis that the heterosaccharides in porcine ribonuclease project away from the surface of the protein into the solution environment.

Animals

Identification of a binary complex of procarboxypeptidase A and a precursor of protease E in porcine pancreatic secretion.

In porcine pancreatic secretion procarboxypeptidase A exists in two states: as a monomer and as a binary complex of a type hitherto not observed in the pancreatic secretions of other species. This complex is shown to contain 1 molecule of procarboxypeptidase A and 1 molecule of a proteolytic zymogen we have designated as zymogen E. The two subunits of the complex have been separated by gel filtration in a denaturing solvent and the products used for compositional and NH2-terminal sequence analysis. We also fractionated the mixture obtained on activation of the binary complex and isolated homogenous preparations of porcine carboxypeptidase A and the diisopropylphosphoryl derivative of the enzyme formed from zymogen E. Zymogen E has an Mr of about 26,000 and on activation produces an enzyme of essentially the same Mr with properties very similar to those of human pancreatic protease E. It catalyzes the esterolysis of acetyl-L-alanyl-L-analyl-L-alanine methyl ester, but is inert towards acetyl-L-tyrosine ethyl ester and is readily inactivated by diisopropylophosphorofluoridate. Zymogen E has an amino acid composition different from those of porcine chymotrypsinogen A, B, or C. Its NH2-terminal sequence shows homology with the NH2-terminal sequence of lungfish proelastase A; yet, like human protease E, porcine protease E has relatively very low activity on intact elastin.

Amino Acid Sequence

Gel filtration.

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Chromatography, Gel