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C01B12
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471,332
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Carbobenzoxy-L-phenylalanyl-triethylenetetraminyl-Sepharose (Z-L-Phe-T-Sepharose) was found to be an effective affinity adsorbent for bovine pancreatic
alpha-chymotrypsin
[
EC 3.4.21.1
] as well as neutral [EC 3.4.24.4] and alkaline [EC 3.4.21.14] proteases of Bacillus species. These enzymes were adsorbed in the neutral pH range. alpha-Chymotrypsin was recovered by elution with 0.1 A acetic acid while neutral subtilopeptidase was eluted with 0.5 M NaCl at pH 0. Thermolysin and subtilisin were found in eluates with 1.5 and 2.0 M guanidine-HCl at pH 7.2, respectively. The resulting enzymes appeared homogeneous on disc-electrophoresis and showed higher specific activities than those of crystalline or highly purified preparations available commercially. Modifications of the active site serines of
alpha-chymotrypsin
and subtilisin by treatment with diisopropylfluorophosphate (DFP) or phenylmethanesulfonyl fluoride (PMSF) resulted in loss in their binding abilities to the adsorbent. Complexes of porcine alpha2-macroglobulin with each of these four enzymes and that of Streptomyces-subtilisin inhibitor (S-SI) with subtilisin were also found in nonadsorbed fractions.
...
PMID:Affinity chromatography of alpha-chymotrypsin, subtilism, and metalloendopeptidases on carbobenzoxy-L-phenylalanyl-triehtylenetetraminyl-sepharose. 23 66
The interactions of benzeneboronic acid (BBA) as a transition state analog with subtilisin (EC 3.4.21.4) and with
alpha-chymotrypsin
(
EC 3.4.21.1
) were investigated kinetically by the temperature-jump method using pH indicators. For both enzymes, the concentration dependence of the relaxation time was consistent with a two-step mechanism involving a fast bimolecular association followed by a slow, unimolecular process. The possibility of a trigonal-tetrahedral interconversion of BBA at the active site of the enzyme is discussed.
...
PMID:Temperature-jump studies on benzeneboronic acid-serine protease interactions. Subtilisin and alpha-chymotrypsin. 23 70
The possible role of histidine residues in the catalytic function of carboxypeptidase Y from bakers' yeast has been investigated using site-specific reagents. Among the reagents tested, benzyloxy-L-phenylalanylchloromethane (Z-PheCH2Cl) was the most powerful inhibitor of the enzyme. It irreversibly inactivated both the peptidase and esterase activities with an apparent second order rate constant of 3.8 M-minus 1 S-minus 1; the D isomer caused essentially no effect on either activity. Inhibition by L-Z-PheCH2Cl, the reaction retarded by certain competitive inhibitors of the enzyme. Using radioactive L-Z-PheCH2Cl, the reaction with the enzyme was shown to be essentially stoichiometric. Diisopropylphosphorofluoridate (iPr2PF)-inactivated enzyme failed to react with Z-PheCH2Cl, and conversely, the Z-PheCH2Cl-inhibited enzyme failed to react with radioactive iPr2PF. Amino acid analyses of the Z-PheCH2Cl-inactivated enzyme revealed the loss of essentially 1 residue, with a concomitant yield of a 0.62 residue of N-t-carboxymethylhistidine. Since carboxypeptidase Y has a reactive serine at its active center, we concluded from these results that the mechanism involves a charge-relay system in the hydrolysis of peptide and ester substrates, as in
chymotrypsin
. An -SH group of carboxypeptidase Y was not affected during the reaction with L-Z-PheCH2Cl. The generic name "serine carboxypeptidase" has been proposed for carboxypeptidase Y and for the iPr2PF-sensitive carboxypeptidases from plants, molds, and animal tissues, in order to distinguish them from "metal carboxypeptidase" to which carboxypeptidase A (EC 3.4.12.2) and B (EC 3.4.12.3) belong.
...
PMID:Evidence for an essential histidine in carboxypeptidase Y. Reaction with the chloromethyl ketone derivative of benzyloxycarbonyl-L-phenylalanine. 23 80
The steady-state kinetics of plasmin (EC 3.4.21.7) catalysed reactions with some alpha-N-benzoyl-L-arginine compounds is investigated in the pH range 5.8--9.0. The results are interpreted in terms of a three-step mechanism, which involves enzyme-substrate complex formation, followed by acylation and deacylation of the enzyme. Alpha-N-Benzoyl-L-arginine methyl ester and ethyl ester show the same pH behaviour. The kinetic parameter kc/Km is influenced by two groups with pK values of 6.5 and 8.4, respectively. kc is affected only by the group with pK equal to 6.5 and Km only by the group with pK equal to 8.4. It is suggested that the group with pK equal to 6.5 is the 1-chloro-3-tosyl-amido-7-amino-2-heptanone-sensitive histidine residue in the active site and that the group with pK equal to 8.4 is perhaps the alpha-amino group of the N-terminus in analogy to trypsin and
chymotrypsin
. alpha-N-Benzoyl-L-arginine amide is not hydrolysed by plasmin, but proves to be a competitive inhibitor, Ki = 12.8 +/- 1.8 mM, pH = 7.8. Also the product alpha-N-benzoyl-L-arginine is a competitive inhibitor, Ki = 26 +/- 3.1 mM, pH = 7.8. Estimates of individual rate constants are compared with similar trypsin data.
...
PMID:pH effects in plasmin-catalysed hydrolysis of alpha-N-benzoyl-L-arginine compounds. 23 53
A chymotrypsin-like esterase was purified from beef lung. This lysosomal enzyme, not previously characterized, seemed to be composed of two or more forms with molecular weights of about 52 000. It hydrolysed N-benzoyl-DL-phenylalanine beta-naphthol ester at acid and neutral pH; it polymerized L-phenylalanine methyl ester(Phe-OMe) at neutral pH; and it transferred the Phe-residue from Phe-OMe to hydroxylamine at neutral pH. Phenylmethanesulfonyl fluoride, an inhibitor of hydrolytic enzymes with serine in their catalytic site, inhibited this enzyme, but pepstatin, the cathepsin D (EC 3.4.4.23) inhibitor, did not. Sulfhydryl reagents were not required for activity. Macrophages, especially pulmonary alveolar macrophages, were a rich source of this esterase, so it is likely that the enzyme purified from lung came from its macrophages. The esterase hydrolysed and transferred monoamino acid esters, especially those of the aromatic type. Cathepsin C, the dipeptidyl peptide hydrolase (EC 3.4.14.1), acted only on dipeptide esters and amides. Pancreatic
chymotrypsin
acted on both monoamino acid and dipeptide esters. The chymotrypsin-like esterase did not hydrolyse hemoglobin, casein, or plasma albumin. Thus its proteolytic activity, if present, must be limited to specific substrates, as yet unknown.
...
PMID:Macrophage esterase: identification, purification and properties of a chymotrypsin-like esterase from lung that hydrolyses and transfers nonpolar amino acid esters. 24 Apr 26
Human milk contains a mitogenic factor that stimulates DNA synthesis and cell division in mouse and human fibroblasts in vitro. Milk at a concentration of 1% (vol/vol) is as active in stimulating DNA synthesis as is 5% (vol/vol) human serum and 10% (vol/vol) calf serum. The mitogenic activity of human milk is destroyed by incubation with trypsin and
chymotrypsin
. However, neither urea, guanidine hydrochloride-dithiothreitol, nor exposure to pH 1 will inactivate the milk-derived growth factor. Gel filtration and isoelectric focusing indicate that the mitogenic activity of human milk has a molecular weight between 14,000 and 18,000 and an isoelectric point between 4.4 and 4.7.
...
PMID:Human milk stimulates DNA synthesis and cellular proliferation in cultured fibroblasts. 28 15
The biosynthesis in vivo of rat intestinal sucrase-isomaltase [a complex of sucrose alpha-glucohydrolase, EC 3.2.1.48, and oligo-1,6-glucosidase (dextrin 6-alpha-D-glucanohydrolase), EC 3.2.1.10] has been studied by following the incorporation of L-[6-(3)H]fucose into the enzyme with time. Immunoprecipitation of sucrase-isomaltase from Triton-X-100-solubilized Golgi or basolateral membranes and subsequent polyacrylamide gel electrophoresis revealed the presence of an immunoreactive glycoprotein with an apparent molecular weight approximately twice that of the separated sucrase-isomaltase subunits, but no active subunits were found in these membranes. This glycoprotein was also found in the microvillus membrane in addition to the subunits of sucrase-isomaltase. Kinetic studies showed a maximal labeling of this glycoprotein in Golgi membranes at 15 min, in basolateral membranes at 30 min, and in microvillus membranes at 45 min and a half-life of less than 30 min in each membrane. However, the radioactivity of the sucrase-isomaltase subunits in the microvillus membrane reached a plateau after 60 min. These data suggest that sucrase-isomaltase is synthesized as a one-chain polypeptide precursor that is split into the subunits after its transfer to the microvillus membrane. Elastase (EC 3.4.21.11), but not trypsin (EC 3.4.21.4) or
alpha-chymotrypsin
(
EC 3.4.21.1
), split the putative precursor into two polypeptides that had electrophoretic behaviors similar to those of the active enzyme subunits. These studies suggest that pancreatic proteases may play an important role in the late posttranslational processing of sucrase-isomaltase in vivo.
...
PMID:Biogenesis of intestinal plasma membrane: posttranslational route and cleavage of sucrase-isomaltase. 29 33
The oral dose of 2g 4-(N-acetyl-L-tyrosyl) aminobenzoic acid was used to establish the secretion of pancreatic
chymotrypsin
after stimulation with Lundh's test-meal in 45 persons. By action of
chymotrypsin
4-aminobenzoic acid is split in the small intestine. The extent of its excretion in the urine serves as an indicator of exocrine pancreatic secretion. The 4-aminobenzoic acid in the urine is estimated after acid hydrolysis by the diazotation reaction. The average value (x +/- SE) of 4-aminobenzoic acid excreted in an 8-hr urine sample amounts to 69.4 +/- 3.0% with the lower limit of the normal values (x - 2 SD) 49.6%. The corresponding values in patients with pancreatic maldigestion were significantly decreased (25.1 +/- 3.6%). Reduction of the collection period of urine to 6 hrs is sufficient for the demonstration of more advanced forms of pancreatic insufficiency. In cases of disturbances of absorption in the small intestine an extension of the urine collection period to 8 hrs is recommended. We consider this oral test to be a suitable screening method which can be conveniently used in out-patient practice.
...
PMID:Functional examination of the pancreatic secretion with 4-(n-acetyl-l-tyrosyl)aminobenzoic acid. 30 23
P-Amino-benzoic acid (PABA) is split specifically by pancreatic
chymotrypsin
from the synthetic tripeptide N-benzoyl-L-tyrosyl-PABA. The urinary excretion of absorbed PABA serves as an index for exocrine pancreatic function. The peptide (0.015 g/kg) was administered orally to 20 controls (aged between 5 months and 16 years), 6 patients with exocrine pancreatic insufficiency caused by cystic fibrosis (CF), and 9 newborn infants. In the controls the mean 6-hour PABA recovery was 58.5% (+/- 11.2 SD). Recovery in patients with CF was lower (P less than 0.001) with no overlap. In newborn infants the mean 6-hour PABA recovery was 23.4 (+/- 17.7 SD); overlapping in 3 instances with the results in CF patients. This simple, noninvasive test thus appears promising and merits further investigation in younger infants, especially newborns.
...
PMID:PABA screening test for exocrine pancreatic function in infants and children. 30 17
The LAF produced by the mouse macrophage cell line, P388D1, is a single polypeptide chain of m.w. 12,000 to 16,000 daltons. Native LAF was destroyed by Streptomyces griseus protease, but not by trypsin,
chymotrypsin
, and papain, although in the presence of 8 M urea, papain completely destroyed LAF activity. LAF did not bind to concanavalin A-Sepharose, suggesting that LAF does not contain significant amounts of mannosyl or glycosyl residues. Since LAF activity was not inactivated by a treatment of reduction and alkylation the active conformation of LAF does not appear to be dependent on disulfide linkages. LAF was not irreversibly denatured by 8 M urea or 0.1 to 0.5% SDS. On SDS-polyacrylamide gels, the m.w. of LAF was 12,000 daltons, as compared to a value of 16,000 daltons, as determined by gel filtration. The isoelectric point of LAF was 5.0 to 5.4 as determined on 7.5% acrylamide gels (pH 3 to 10). On the basis of these results it appears that the P388D1 cell line-derived LAF is a relatively stable molecule that shares several physicochemical properties with normal human and mouse macrophage-derived LAF.
...
PMID:Physicochemical characterization of lymphocyte-activating factor (LAF). 31 60
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