PubMed HealthSearch

Biomedical subjects

S Awad

Publications and source records attributed to S Awad.

3 recordsLinked to original sources

Effects of trypanothione on the biological activity of irradiated transforming DNA.

Held et al. (1984a,b) demonstrated previously that glutathione (GSH), a negatively charged thiol, is significantly less efficient in the hydrogen atom donation repair reaction with radicals induced by radiation in transforming DNA (t-DNA) than are other thiol compounds. Fahey et al. (1991a,b) postulated that the charge on thiols can influence their ability to radioprotect DNA. GSH, which is excluded from the vicinity of DNA due to its negative charge, is less protective than neutral or positively charged thiols. We have investigated this phenomenon further with trypanothione, the conjugate of glutathione and spermidine, N1,N8-bis (L-gamma-glutamyl-L-hemicystinyl-glycyl)-spermidine. Trypanothione exists in aerobic solution largely as the disulphide (T(S)2) but is maintained in the cell in the reduced form (T(SH)2) by means of an NADPH-dependent flavo-enzyme, trypanothione reductase (TR). Experimental data show that T(S)2 in the presence of TR radioprotects t-DNA in the absence of oxygen much better than GSH or spermidine alone or in combination. Little radioprotection by T(S)2 is seen when TR is not present. The results obtained with reduced trypanothione at low concentrations suggest that radioprotection of t-DNA in hypoxia occurs predominantly by H atom donation and slightly by .OH radical scavenging, and the protection is greater than that by GSH or spermidine because the polyamine moiety in trypanothione allows a greater concentration of GSH near the DNA molecule.

Bacillus subtilis

Effects of polyamines and thiols on the radiation sensitivity of bacterial transforming DNA.

The effects of polyamines on the loss of biological activity of bacterial transforming DNA irradiated in the absence and presence of sulphydryl-containing compounds has been investigated. In both oxygenated and hypoxic conditions the polyamines (spermine, spermidine, putrescine and cadaverine) are radioprotectors with the degree of protection increasing with increasing polyamine concentration. When O2-saturated DNA solutions are irradiated, the degree of radioprotection by polyamines generally correlates with the efficiency of scavenging of OH. radicals. In N2 the protection does not show that correlation; several possible reasons are discussed. With the exception of spermine, the polyamines are slightly more protective of oxygenated DNA than of hypoxic DNA. When DNA is irradiated in the presence of both polyamines and thiols, the combined protection is usually greater than that exhibited by either agent alone. When irradiation is in oxygen, the combined agents appear to operate by the same mechanism, namely OH. radical scavenging. In N2-saturated solutions, polyamines and dithiothreitol appear to act by different, non-interacting mechanisms; however WR1065 and polyamines may radioprotect by the same mechanism. Also, the results suggest that polyamines may reduce the ability of some thiols to radioprotect DNA.

DNA, Bacterial

Acute glomerulonephritis with bacteriuria: a probable etiologic relationship.

Twenty-one cases of acute glomerulonephritis in children with no previous history of renal disease were studied. Urinary infection with a rising titre of serum agglutinins against the organisms isolated from urine was found in 5 cases. No evidence of previous streptococcal infection was found in these cases. In the meantime all 8 cases with post-streptococcal glomerulonephritis remained without bacteriuria. In one case acute glomerulonephritis followed virus hepatitis, and in the remaining 7 cases the cause of glomerulonephritis was unknown. It is suggested that in predisposed patients the bacteria present in urinary infections might act as antigens starting immunologic reactions in the glomeruli, leading to glomerulonephritis. The final proof of this theory awaits immunofluorescence identification of these antigens in the glomeruli.

Bacteriuria