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B J Ambrose

Publications and source records attributed to B J Ambrose.

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Sequence analysis of end-labeled DNA fragments by solvolysis in hot aqueous piperidine solutions.

One-lane DNA sequencing by solvolysis in hot aqueous piperidine solutions, originally described for 5'-32P-labeled DNA (B. Ambrose and R. Pless (1985) Biochemistry 24, 6194-6200), is extended to 3'-labeled fragments. A salt-free sample for electrophoresis can be obtained by using 1 M LiCl in the solvolysis mixture and removing this salt from the dried hydrolysate by washing with ethanol. Rate and distribution of DNA cleavage in hot aqueous piperidine, containing 0.3 M NaCl, are studied in dependence of temperature, solvent, amine concentration, and reaction time. An increase in temperature strongly accelerates overall DNA degradation, but leaves the distribution of cleavage essentially unchanged. When 50% aqueous ethanol is substituted for water as the reaction solvent, the overall cleavage is slower, and scission at G-sites is enhanced relative to cleavage at the other bases. A rise in the piperidine concentration strongly accelerates the reaction, except at very high amine concentration. Cleavage at A-, G-, and C-sites increases steadily with reaction time, while the T-cleavage observed takes place primarily at the very beginning of the solvolysis.

Autoradiography↗

One-lane sequence analysis of oligodeoxyribonucleotides.

Treatment of 5'-end 32P-labeled oligodeoxyribonucleotides with 0.4 M aqueous piperidinium formate, pH 2, at 37 degrees C for 6 h, followed by treatment with 1 M aqueous piperidine at 90 degrees C for 6 h, produces, after electrophoresis through 27% polyacrylamide sequencing gels, one-dimensional distributions of radioactivity from which the base sequences can be deduced. The order of intensities for the bands signaling the various bases is G greater than A greater than C greater than T. The spacing from a given band to the next higher band in the ladder was base characteristic, the order of band spacings being G greater than T greater than or equal to A greater than C. In contrast to the one-cleavage one-lane DNA sequencing method reported earlier (B. J. B. Ambrose and R. C. Pless, 1985, Biochemistry 24, 6194-6200), which was based on treatment of end-labeled DNA with hot aqueous piperidine in the presence of sodium chloride, the present method produces a salt-free hydrolysate, thus minimizing electrophoretic irregularities in the fastest moving bands.

Autoradiography↗

Analysis of DNA sequences using a single chemical cleavage procedure.

A novel approach to sequence analysis of end-labeled, defined DNA fragments, using a single chemical cleavage procedure and electrophoretic separation in a single lane, has been developed. Prolonged treatment with hot aqueous piperidine results in partial cleavage of the DNA at all positions; the relative propensity for this cleavage is different for the various bases in the DNA. The hydrolysate is resolved on a DNA sequencing gel, and the distribution of radioactivity in the electrophoretic lane is analyzed (a) in terms of differential peak heights of the radioactive bands and (b) in terms of the spacings between successive bands. Simultaneous application of these two base-characteristic criteria allows the deduction of the nucleotide sequence with an accuracy approaching that of the established four-lane methods of DNA sequencing.

Base Sequence↗