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E Ottolenghi-Nightingale

Publications and source records attributed to E Ottolenghi-Nightingale.

4 recordsLinked to original sources

Competence of pneumococcal isolates and bacterial transformations in man.

A survey of pneumococci isolated from 19 healthy carriers and from 23 patients with pneumococcal disease showed that, for both groups, 25 to 30% of the isolates were competent for transformation by soluble deoxyribonucleic acid (DNA) in vitro. Untransformable type 3 and type 8 pneumococci, whose capsules had been hydrolyzed by the Bacillus palustris enzymes prior to exposure to DNA, remained untransformable. Thus, at least for these isolates, it was not the presence of capsule that prevented transformation. Type 9 pneumococci in a healthy human carrier were transformed by DNA released from living unencapsulated pneumococci sprayed onto the pharynx. The donor bacteria were resistant to 1,000 mug of streptomycin/ml. Two types of streptomycin-resistant bacteria were recovered from the carrier's pharynx: a type 9 pneumococcus and an alpha-hemolytic streptococcus. No streptomycin-resistant, gram-positive cocci were isolated from this individual prior to inoculation of the pharynx with the resistant organisms. It seems possible that transformations can occur in the natural environment of some gram-positive cocci.

Journal Article↗

Induction of melanin synthesis in albino mouse skin by DNA from pigmented mice.

Skin cells from albino mouse embryos have been shown to synthesize melanin after exposure to a nucleoprotein fraction of cells from pigmented mice. Although transformed clones were not found in any of 37 control experiments, at least 15 transformations took place in 10 of a series of 49 experiments using undegraded DNA. The active component in the transforming material appears to be DNA because DNase-treated preparations did not induce melanin synthesis.

Albinism↗

Spontaneously occurring bacterial transformations in mice.

In 1963, it was reported that deoxyribonucleic acid (DNA)-mediated transformations could take place spontaneously between genetically distinguishable pneumococci growing in a living host, the mouse. It was found in the present study that such transformations could be increased in frequency if infected animals were treated with a drug which kills only one of the two infecting strains. The frequency of in vivo transformations was also increased if the infection was prolonged. Interspecific transformation between pneumococci and streptococci without the addition of purified DNA was demonstrated both in vitro and in vivo. These results make it seem more likely that DNA-mediated transformations occur in nature.

Animals↗