PubMed HealthSearch

Biomedical subjects

H Engeser

Publications and source records attributed to H Engeser.

5 recordsLinked to original sources

Characterization of the protein kinase activity of avian sarcoma virus src gene product.

The avian sarcoma virus src gene product, p60src, has been purified 650-fold from cytoplasmic extracts of the rat tumor cell line RR1022 by using ammonium sulfate fractionation, hydrophobic chromatography on omega-aminohexyl agarose, and ion exchange chromatography on phosphocellulose. Partially purified p60src is a monomer, with a native molecular weight of about 60,000 and an apparent pI of 6.0. In immunoprecipitates, p60src catalyzed phosphorylation of anti-p60src IgG heavy chains within the variable (VH) domain, which contains the heavy chain portion of the antigen combining site. Crude preparations of p60src contained phosphatase activity able to cleave phosphate from IgG heavy chains; this activity was removed by the purification procedure, and partially purified p60src could phosphorylate the heavy chain of specific antibody in solution. Furthermore, purified p60src catalyzed phosphorylation in solution of the general protein kinase substrate, alpha-casein, strengthening the hypothesis that it may in fact function as a protein kinase in vivo.

Alpharetrovirus

Identity of malonyl and palmitoyl transferase of fatty acid synthetase from yeast. Functional interrelationships between the acyl transferases.

Functional interrelationships between the acyl transferases of yeast fatty acid synthetase were investigated. In binding assays with synthetase modified by 5,5'-dithiobis(2-nitrobenzoic acid), 4--5 malonyl transferase entities per multienzyme complex molecule could be titrated. In the presence of palmitoyl-CoA these malonyl transferases were found inaccessible to malonyl-CoA, whereas the acetyl transferases were reactive towards acetyl-CoA. Between four and five palmitoyl transferase entities per synthetase equivalent were found reactive towards palmitoyl-CoA, the palmitoyl binding being inhibited by malonyl-CoA. Following palmitoyl binding the acetyl transferases were found towards acetyl-CoA. Substrate model assays were consistent with these data. It is concluded that malonyl and palmitoyl transferases are closely coupled enzyme components of the multienzyme complex which are fairly independent of the acetyl transferase entities. The molecular basis for the observed coupling will be given in the following paper.

Acyltransferases

Identity of malonyl and palmitoyl transferase of fatty acid synthetase from yeast. 2. A comparison of active-site peptides.

Active-site peptides of malonyl and palmitoyl transferase from yeast fatty acid synthetase were isolated and sequenced to try to prove the hypothesis [J. Ayling, R. Pirson & F. Lynen (1979) Biochemistry 11, 526--533] that both enzymes are identical. For this purpose synthetase modified with 5,5'-dithiobis(2-nitrobenzoic acid) was labelled with either [14C]malonyl or [14C]palmitoyl residues followed by proteolytic digestion of the labelled protein. [14C]Malonyl-peptides were isolated by conventional purification procedures; their structures were determined by a combination of methods. [14C]Palmitoyl-peptide material was purified by high-performance liquid chromatography and the structure determined by solid-phase Edman degradation and other analytical methods. Serine was identified as the acyl acceptor group in both transferases. Comparison of the sequence data available shows that the sequence around the acyl acceptor group in both cases is identical. This proves the identity of malonyl and palmitoyl transferase.

Acyltransferases