Claims
- 1. An isolated polynucleotide segment comprising a first polynucleotide sequence or the full complement of the entire length of the first polynucleotide sequence, wherein the first polynucleotide sequence is identical to SEQ ID NO:1, except that up to five nucleotides may be substituted, deleted or inserted for every 100 nucleotides of SEQ ID NO:1; and wherein the first polynucleotide sequence detects Streptococcus pneumoniae by hybridization.
- 2. A vector comprising the isolated polynucleotide segment of claim 1.
- 3. An isolated host cell comprising the vector of claim 2.
- 4. The isolated polynucleotide segment of claim 1, wherein the first polynucleotide sequence is identical to SEQ ID NO:1, except that up to three nucleotides may be substituted, deleted or inserted for every 100 nucleotides of SEQ ID NO:1.
- 5. The isolated polynucleotide segment of claim 1, wherein the first polynucleotide sequence is identical to SEQ ID NO:1, except that up to two nucleotides may be substituted, deleted or inserted for every 100 nucleotides of SEQ ID NO:1.
- 6. The isolated polynucleotide segment of claim 1, wherein the first polynucleotide sequence is identical to SEQ ID NO:1, except that up to one nucleotide may be substituted, deleted or inserted for every 100 nucleotides of SEQ ID NO:1.
- 7. An isolated polynucleotide segment comprising a first polynucleotide sequence or the full complement of the entire length of the first polynucleotide sequence, wherein the first polynucleotide sequence hybridizes to the full complement of SEQ ID NO:1, wherein the hybridization conditions comprise incubation at 42° C. in a solution comprising: 50% formamide, 5×SSC (150 mM NaCl, 15 mM trisodium citrate), 50 mM sodium phosphate (pH7.6), 5×Denhardt's solution, 10% dextran sulfate, and 20 micrograms/ml denatured, sheared salmon sperm DNA, followed by washing in 0.1×SSC at 65° C.; and wherein the first polynucleotide sequence is identical to SEQ ID NO:1, except that up to five nucleotides may be substituted, inserted or deleted for every 100 nucleotides of SEQ ID NO:1; and wherein the first polynucleotide sequence detects Streptococcus pneumoniae by hybridization.
- 8. The isolated polynucleotide segment of claim 7, wherein the first polynucleotide sequence is identical to SEQ ID NO:1, except that up to three nucleotides may be substituted, inserted or deleted for every 100 nucleotides of SEQ ID NO:1.
Priority Claims (1)
Number |
Date |
Country |
Kind |
9607992 |
Apr 1996 |
GB |
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Parent Case Info
This application is a divisional of U.S. application Ser. No. 08/962,203 filed Oct. 31, 1997, now U.S. Pat. No. 5,976,840, which is a continuation-in-part of 08/844,153, filed Apr. 18, 1997, now U.S. Pat. No. 5,958,734.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
5976840 |
Jaworski et al. |
Nov 1999 |
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Non-Patent Literature Citations (5)
Entry |
R. Calendar et al., “Purification and Physical Characterization of Tyrosyl Ribonucleic Acid Synthetases from Escerichia coli and Bacillus subtilis”, Biochemistry, 5(5) p. 1681-1690 (1966). |
J. Hughes et al., “How Does Pseudomonas Fluorescens, the Producing Organism of the Antibiotic Pseudomonic Acid A, Avoid Siucide?”, FEBS Letters, 122(2) p. 322-324 (1980). |
Fraser et al., “The Minimal Gene Complement of Mycoplasma gentialium”, Science, 270 p. 397-403 (1995). |
Breton et al., Glutamyl-tRNA Synthetases of Bacillus subtilis 168T and of Bacillus stearothemopilus:, Journal of Biological Chemistry, 265(30) p. 18348-18255 (1990). |
Brun et al., “Closely Spaced and Divergent Promoters for an Aminoacyl-tRNA Synthetase Gene and a tRNA Operon in Escherichia coli”, Journal of Molecular Biology, 214 p. 845-864 (1990). |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
08/844153 |
Apr 1997 |
US |
Child |
08/962203 |
|
US |