Targets for the identification of antibiotics that are not susceptible to antibiotic resistance
View Patent ↗To identify conserved and variable regions of the 16 S rRNA, an instant evolution experiment was performed on the entire 16 S rRNA. Analysis of these mutants identified regions that are required for function. These conserved sequences may be used as targets for pharmaceuticals that are taxonomically specific and which are refractory to the development of drug resistance.
1. An isolated nucleic acid represented by formula VI:
Z 1 -[L] m -[T 1 ]-[L] n -[T 2 ]-[L] p -[T 3 ]-[L] q -Z 2
VI (5′→3′)
wherein, independently for each occurrence,
T 1 , T 2 and T 3 are selected from the group consisting of SEQ ID NO 29, 30 and 31;
L is a nucleic acid selected from the group consisting of adenosine, cytidine, guanosine and uridine; optionally substituted with one substituent selected from the group consisting of biotin, fluorescein, tetrachlorofluorescein, hexachlorofluorescein, Cy3 amidite, Cy5 amidite, digoxigenin, TEXAS RED® maleimide and tetramethylrhodamine;
Z 1 and Z 2 are selected from the group consisting of hydrogen, (C 1 -C 5 )alkyl, biotin, fluorescein, tetrachlorofluorescein, hexachlorofluorescein, Cy3 amidite, Cy5 amidite, digoxigenin and resin beads; and
m, n, p and q are integers from 0-40.
2. The nucleic acid of claim 1 , wherein T 1 is SEQ ID NO 29; T 2 is SEQ ID NO 30; and T 3 is SEQ ID NO 31.
3. The nucleic acid of claim 2 , wherein n is 7.
4. The nucleic acid of claim 2 , wherein p is 4.
5. A method of identifying an agent which binds to a nucleic acid of claim 1 , comprising the steps of:
measuring the fluorescence of said nucleic acid, thereby establishing a first fluorescence reading;
contacting a test compound with said nucleic acid, and measuring the resulting fluorescence, thereby establishing a second fluorescence reading;
determining the difference between said first fluorescence reading and said second fluorescence reading; and
selecting the compound wherein the difference between said first fluorescence reading and said second fluorescence reading is non-zero, thereby identifying said agent.
6. A method of identifying an inhibitor of protein synthesis comprising
measuring the fluorescence of a nucleic acid of claim 1 , thereby establishing a first fluorescence reading;
contacting a test compound with said nucleic acid, and measuring the resulting fluorescence, thereby establishing a second fluorescence reading;
determining the difference between said first fluorescence reading and said second fluorescence reading;
selecting the compound wherein the difference between said first fluorescence reading and said second fluorescence reading is non-zero, thereby identifying said agent;
assaying the inhibitory properties of the agent by administering it to a cell, a cell extract or purified ribosomes; and
detecting protein synthesis; wherein a decrease in protein synthesis indicates that the agent is an inhibitor of protein synthesis.
7. The nucleic acid of claim 1 wherein Z 1 is fluorescein.
8. The nucleic acid of claim 1 wherein Z 2 is biotin.
9. The nucleic acid of claim 1 wherein L is selected from the group consisting of unsubstituted adenosine, unsubstituted cytidine, unsubstituted guanosine and unsubstituted uridine.
10. The nucleic acid of claim 1 wherein m and q are integers from 0-25.
11. The nucleic acid of claim 1 wherein T 1 is SEQ ID NO 29; T 2 is SEQ ID NO 30; and T 3 is SEQ ID NO 31; Z 1 is fluorescein; Z 2 is biotin; each L is, independently for each occurrence, selected from the group consisting of unsubstituted adenosine, unsubstituted cytidine, unsubstituted guanosine and unsubstituted uridine; n is 7; p is 4; and m and q are integers from 0-25.