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Helen D Barrie

Publications and source records attributed to Helen D Barrie.

2 recordsLinked to original sources

Denaturing gradient gel electrophoretic multilocus sequence typing of Staphylococcus aureus isolates.

To obviate the need for multilocus sequencing, a method using denaturing gradient gel electrophoresis (DGGE) was developed for the multilocus sequence typing (MLST) of Staphylococcus aureus isolates. Sequence types (STs) were obtained on the basis of sequences of polymerase chain reaction (PCR) products from seven housekeeping genes and compared to the reference MLST database. The melt curves, sequences and DGGE profiles were compared for 100 STs (i) to determine PCR conditions with 40-mer GC-clamps attached to the forward and reverse primers; (ii) to choose single restriction enzyme sites for digestion of PCR products into two fragments each with a GC-clamp attached and (iii) to optimize DGGE conditions. When the DGGE types (DT) were analyzed, the majority of DTs (76/100) were accurately classified into one ST (95% of nucleotide changes were detected), 10 DTs were classified into one of two STs corresponding to a single nucleotide ambiguity and 14 DTs were classified into 3 or 4 STs corresponding to 4 or 5 nucleotide ambiguities. A combination of STs and DTs were used to obtain septuplet sets of STs (7-ST) for 25 S. aureus isolates. When compared to the reference MLST database, one methicillin-resistant S. aureus (MRSA) isolate had the same genotype as the first MRSA clone. The DGGE-MLST method can be used as a rapid, accurate and 20-fold less expensive method than DNA sequencing for the detection of all sequence types. This combined laboratory and in silico approach could have wide applicability not only to MLST methods for other bacteria but to the screening of multilocus nucleotide differences deposited in other mutation databases.

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Typing of Staphylococcus aureus strains by PCR-amplification of variable-length 16S-23S rDNA spacer regions: characterization of spacer sequences.

To develop a rapid and accurate method of typing large numbers of clinical isolates of Staphylococcus aureus, the spacer region C of the rRNA operon [1391-507 (16S-23S)] was enzymically amplified from 322 strains. When the products were separated by denaturing PAGE, 15 variable-length rrn alleles were demonstrated, ranging in size from 906 to 1223 bp. The variable-length HpaII-digested region C [(region E; 1446-196 (16S-23S)] amplification products were cloned into M13mp18RF to sequence separate variable-length alleles. A total of 17 region E inserts were sequenced, aligned and divided into nine alleles by length (938-1174) and sequence properties. The 16S-23S spacer rDNA varied in length (303-551 bp) and in properties; three alleles contained a tRNAIle gene alone, two alleles contained a tRNAIle and a tRNAAla gene, and four alleles lacked tRNA genes. The sequences of two alleles showed less than 1% variation when isolated from two or three S. aureus strains. The 48 penicillin- and methicillin-sensitive strains were divided into 26 ribotypes; in contrast, the 274 methicillin-resistant S. aureus (MRSA) strains were divided into nine ribotypes (A-I) with 97% typing as either ribotype A or B (rrnL was missing in B). The sequence conservation of the rrn operons argues for the use of the 16S-23S spacer region as a stable and direct indicator of the evolutionary divergence of S. aureus strains.

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