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B Moffat

Publications and source records attributed to B Moffat.

32 records · Page 2Linked to original sources

Human tumor necrosis factor. Production, purification, and characterization.

Human tumor necrosis factor (TNF) was purified to homogeneity from serum-free tissue culture supernatants of the HL-60 promyelocytic leukemia cell line induced by 4 beta-phorbol 12-myristate 13-acetate. The purification scheme consisted of controlled-pore glass and DEAE-cellulose chromatography, Mono Q-fast-protein liquid chromatography, and reverse-phase high performance liquid chromatography. The purified protein was homogeneous by the criteria of sodium dodecyl sulfate-polyacrylamide gel electrophoresis and NH2-terminal sequence analysis. The specific activity of purified tumor necrosis factor is approximately 10(8) units/mg. The protein has a molecular weight of approximately 17,000, an isoelectric point of 5.3, and contains two cysteines involved in a disulfide bridge. Approximately 50% homology between TNF and another cytolytic lymphokine, lymphotoxin, exists when the NH2-terminal 34 residues of TNF and internal sequence generated by tryptic, Staphylococcus aureus V8 protease, and chymotryptic digests of TNF are aligned with the complete amino acid sequence of lymphotoxin.

Amino Acid Sequence↗

Primary structure of human lymphotoxin derived from 1788 lymphoblastoid cell line.

The amino acid sequence of human lymphotoxin derived from a 1788 lymphoblastoid cell line was determined. Peptide fragments obtained by trypsin, lysine-C peptidase, cyanogen bromide, and acetic acid cleavage of the intact protein were purified by reverse-phase high performance liquid chromatography and analyzed by amino acid composition and by automated Edman degradation. The protein is 171 amino acids long with a molecular weight of 18,664. It contains one asparagine-linked glycosylation site and lacks cysteine. The salient features of the amino acid sequence of lymphotoxin are described.

Acetates↗

Human lymphotoxin. Production by a lymphoblastoid cell line, purification, and initial characterization.

Human lymphotoxin was purified to homogeneity from a serum-free tissue culture supernatant of a lymphoblastoid 1788 cell line. The purification scheme consisted of DEAE-cellulose chromatography, preparative isoelectric focusing, lentil lectin-Sepharose chromatography, and preparative polyacrylamide gel electrophoresis. The purified glycoprotein was homogeneous by the criteria of high pressure liquid chromatography and polyacrylamide gel electrophoresis run under both nondenaturing and denaturing conditions. The specific activity of the purified lymphotoxin is approximately 40 X 10(6) units/mg. The protein has an apparent molecular weight of approximately 20,000, and RF of 0.33 on 7.5% polyacrylamide gels at pH 8.8 and an isoelectric point of 5.8. A tryptic digest of the purified native material produced two major fragments of approximately 15,000 and 5,000 Da. The amino acid compositions of the intact molecule and of the tryptic fragments are presented.

Amino Acids↗

Partial purification of dog angiotensinogen.

Dog angiotensinogen was purified 450-fold from the plasma of nephrectomized dogs by a simple four-step procedure involving precipitation between 1.5 and 2.3 M ammonium sulfate, gel filtration on Sephadex G-150, ion-exchange chromatography on DE-52 cellulose, and affinity chromatography on Concanavalin A-Sepharose. The purity of the final preparation was over 50%. The preparation of dog angiotensinogen had an apparent molecular weight of 80,000 determined by gel filtration on Sephadex G-100. Kinetic studies indicated that the Km of the reaction of dog renin with partially purified dog angiotensinogen (1,840 pmol/ml) was similar to that for the reaction with angiotensinogen in diluted dog plasma (1,820 pmol/ml). Thus the purification procedures employed did not alter the affinity of dog renin for the Leu10-Leu11 bond of dog angiotensinogen. Because the concentration of angiotensinogen in dog plasma is about 700 pmol/ml, a first order reaction with respect to substrate is indicated in vivo.

Angiotensinogen↗

Angiotensin II concentration in cerebrospinal fluid after intraventricular injection of angiotensinogen or renin.

To determine if the brain enzyme which has renin-like activity in vitro can form angiotensin in vivo, angiotensin II concentration in cerebrospinal fluid (CSF) was measured before and at various intervals after injection of partially purified renin substrate (angiotensinogen) into the third cerebral ventricle of anesthetized dogs. The injection increased CSF angiotensinogen concentration 3-fold, but despite this, CSF angiotensin II concentration, which was undetectable (less than 6.25 fmol/ml) before injection, did not change. Arterial blood pressure was also unchanged after the injection. In contrast, both CSF angiotensin II concentration and arterial pressure increased after an inventricular injection of renin. These results demonstrate that angiotensin II is formed centrally after administration of exogenous renin but not after injection of angiotensinogen. The results thus fail to demonstrate renin activity in the brain in vivo.

Angiotensin II↗

Effects of ions on amylase release by dissociated pancreatic acinar cells.

Dissociated acinar cells prepared from guinea pig and mouse pancreas were intact on the basis of structure, ion content, and their ability to increase release of amylase in response to bethanechol and the calcium ionophore A23187. Guinea pig but not mouse acinar cells increased amylase release in response to caerulein. An increase in the concentration of K+ in the medium, which increases amylase release from whole pancreas, did not increase release. The effect of varying the ionic content of the medium on basal and stimulated amylase release was studied. Bethanechol and caerulein were still able to stimulate amylase release when Ca2+ was omitted from the medium, whereas stimulation induced by A23187 was abolished. Elevation of the concentration of Mg2+ did not affect basal or stimulated amylase release. Removal of Na+ from the medium initially had no effect on amylase release although bethanechol-stimulated release by mouse cells was inion of the HCO3- or Cl- content of the medium did not affect cholinergic stimulation of secretion. It is concluded that stimulated amylase release by isolated acinar cells is relatively independent of the ionic constituency of the bathing medium.

Amylases↗