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Biomedical subjects

A H Reisner

Publications and source records attributed to A H Reisner.

34 records · Page 2Linked to original sources

The in vivo effect of dimethyl sulphoxide (DMSO) on protein synthesis and the polyribosome profile in Paramecium.

When Paramecium tetraurelia in log phase growth is treated with 4% dimethyl sulphoxide (DMSO) for five minutes the amount of polyribosomes is reduced 3- to 4-fold while there is a corresponding increase in 80s ribosomal material. Reducing the concentration of DMSO to 1% allows immediate reversal of the condition. Paramecium polyribosomes subjected to 4% DMSO either in whole cell homogenates or during purification through sucrose density gradients appear unaffected while cycloheximide at concentrations up to 100 mug/ml did not prevent DMSO from exerting its effect in vivo. Analyses of 14C amino acid incorporation experiments indicated a strict correspondence between the effect of DMSO on polyribosomes and overall protein synthesis. The reduction of acid precipitable radioactivity in the polyribosomal region after DMSO treatment was associated with a corresponding increase in radioactivity in the 80s region. There was no comparable increase in the acid precipitable radioactivity in the soluble fraction. The overall results of the study suggest that DMSO acts on polyribosommes indirectly through some unknown primary reaction with cell constitutents, and that the mode of action is such as to cause the release of ribosomes from messenger RNA (mRNA) rather than to prevent initiation of the ribosome-mRNA complex. Our data suggest that the effect may be selective. Finally, it is of interest that high concentrations of DMSO (above 8%) appear to have the opposite effect of lower concentrations of DMSO, i.e., they appear to "freeze" the ribosomes to mRNA.

Animals↗

Determination of the relatedness of the soluble surface proteins of Trypanosoma brucei and Paramecium aurelia.

The soluble surface proteins isolated by Cross (1975) from Trypanosoma brucei are compared to those which occur on Paramecium aurelia. Calculations based on the amino acid residue data and the molecular weights of these surface antigens indicate that there is a considerable degree of similarity between the T. brucei and the P. aurelia proteins, and that in neither case can simple mutation be responsible for the differences of molecules within each family of antigens. The analyses are consistent with the suggestion that the P. aurelia system can serve as a model for the phenomenon of phase transformation (relapse syndrome) which occurs in trypanosomiasis.

Amino Acids↗

Similarity between the vaccinia virus 19K early protein and epidermal growth factor.

An analysis of the 1,217-amino acid residue sequence of the precursor of mouse epidermal growth factor (mEGF) revealed regions of considerable similarity with bovine factor X, a blood coagulation factor. Similarities of mEGF itself with factor X, pancreatic secretory trypsin inhibitor and, most strikingly, transforming growth factor I (TGF-I) have been observed. On the basis of the comparisons described here, it seems that the presumptive 140-residue 19K early protein (relative molecular mass (Mr) 19,000) of vaccinia virus from residues 40-91 shows an overall identity of 36% (19/53 residues) with both mEGF and urogastrone (human epidermal growth factor, hEGF); a single deletion is assumed for vaccinia virus 19K protein which allows the six Cys residues (positions 45-80) to be aligned with those of mEGF or hEGF. This protein is encoded in the 10.3-kilobase (kb) inverted terminal repeat. Because it is an early protein with an EGF-like central portion, the 19K vaccinia virus protein may have an autocrine function and may be required for DNA synthesis.

Amino Acid Sequence↗