Sigma binding region of RNA polymerase and uses thereof
The invention provides cells expressing the sigma binding region of the β′ subunit of RNA polymerase and a method to identify inhibitors of the formation of holoenzyme from core RNA polymerase and sigma.
1. A host cell comprising a recombinant DNA molecule comprising a promoter functional in the host cell operably linked to a DNA segment encoding a β′ subunit of RNA polymerase having at least one amino acid substitution in residues 260 to 309 which substitution alters binding of β′ to σ, wherein the chromosome of the host cell encodes an endogenous β′ subunit of RNA polymerase, the expression of which is regulatable.
2. The host cell of claim 1 wherein the DNA segment encodes a β′ subunit having a C-terminal deletion.
3. The host cell of claim 1 wherein the recombinant DNA molecule encodes a fusion protein.
4. A prokaryotic host cell comprising a recombinant DNA molecule comprising a promoter functional in the host cell operably linked to a DNA segment encoding a β′ subunit of A polymerase, wherein the chromosome of the host cell encodes an endogenous β′ subunit of A polymerase, the expression of which is regulatable, and wherein the DNA segment encode a β′ subunit of RNA polymerase having at least one amino acid substitution relative to the endogenous β′ subunit of RNA polymerase, wherein the at least one substitution is in residues 260 to 309.
5. The host cell of claim 4 wherein the DNA segment encodes a β′ subunit having a C-terminal deletion.
6. The host cell of claim 1 which is a prokaryotic cell.
7. The host cell of claim 1 wherein the at least one amino acid substitution is a region of the β′ subunit of RNA polymerase which binds σ in vivo.
8. The host cell of claim 1 or 4 wherein the expression of the endogenous β′ subunit of RNA polymerase is temperature sensitive.
9. The host cell of claim 1 or 4 wherein the at least one amino acid substitution is at position 266, 269, 275, 280, 293, 295, 297, 300, 302 or 309.
10. The host cell of claim 1 or 4 wherein the presence of the at least one amino acid substitution prevents the binding of σ to the β′ subunit of RNA polymerase having the substitution.
11. The host cell of claim 1 or 4 wherein the β′ subunit of RNA polymerase which is encoded by the DNA segment comprises residues 1-309.
12. The host cell of claim 1 or 4 wherein the β′ subunit of RNA polymerase which is encoded by the DNA segment has residues 1-319.