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Biomedical subjects

H Bates

Publications and source records attributed to H Bates.

21 records · Page 2Linked to original sources

Mutagenic DNA repair in Escherichia coli, XX. Overproduction of UmuD' protein results in suppression of the umuC36 mutation in excision defective bacteria.

Overproduction of Umu+ or UmuD' protein by means of a gene carried on a multicopy plasmid suppressed the umuC36 phenotype and permitted induction of mutations by ultraviolet light. The umuC122::Tn5 phenotype was not suppressed. Suppression of the umuC36 phenotype was only seen when excision repair was blocked by acriflavine or by an uvrA or uvrB mutation. Cleavage of UmuD to UmuD' in SOS-induced cells was not dependent upon the presence of UmuC protein. The results are interpreted in terms of a revised model in which UmuC protein is envisaged as guiding UmuD' to RecA protein which has recognized and become bound to an appropriate DNA lesion. It is suggested that the umuC36 mutation gives rise to a protein with reduced affinity for UmuD' and that the effect of this can be compensated by an excess of UmuD'.

Bacterial Proteins↗

Acute embryopathic effects of ethanol in the Long-Evans rat.

Thirty-two pregnant Long-Evans rats were divided into 10 groups of 3 or 4 pregnant rats, and each rat was given a single dose of 4 ml ethanol/kg (20 ml/kg of a 20% solution) between d 6 and 15 of gestation. An 11th group of 50 pregnant rats received distilled water and served as controls. Offspring body weights were decreased in groups of rats given ethanol as compared to controls (3.0-3.6 g, versus 3.9 g for controls). Total litter weight was decreased in dams given ethanol on d 6. Skeletal variants were seen in 13-78% of the offspring given ethanol, compared to 0.6% of the controls. Variations may be considered as additional signs of embryotoxicity. Malformations such as hydronephrosis, pelvic kidney, microcephalus, cranioschisis, and microphthalmia occurred in 72-100% of the ethanol treated offspring, as compared to 12% of controls. Hydronephrosis was most frequent on d 9 or 14, pelvic kidney on d 8 and 11, and microphthalmia from d 10-12. Cranioschisis was maximal on d 7, 11, and 15, and microcephalic offspring were most frequently born to dams given ethanol on d 7 or 14. Skeletal defects were usually single entities, while soft-tissue anomalies occurred in a consistent pattern. These results suggest that ethanol is a stage-specific teratogen in the rat at comparable exposure levels attained by many humans.

Abnormalities, Drug-Induced↗

Effects of various exposure levels of 2-phenylethanol on fetal development and survival in Long-Evans rats.

Phenylethanol was given at different levels (432, 43, or 4.3 mg/kg) by gavage to pregnant Long-Evans rats during the "critical period" of organogenesis. Examination of offspring revealed adverse reproductive and teratogenic effects in a dose-related manner. Intrauterine growth retardation occurred at levels of 432 and 4.3 mg/kg. Embryolethality was 18% at 43 mg/kg and 10% at 4.3 mg/kg. Malformations occurred in the following sequence: 100% at 432 mg/kg; 93% at 43 mg/kg, and 50% at 4.3 mg/kg. Noteworthy dose-related teratogenic effects of phenylethanol in offspring manifested themselves in increased incidences of malformed eyes, neural-tube defects, hydronephrosis, and limb defects.

Animals↗