The present invention relates to polynucleotide molecules comprising nucleotide sequences encoding an aveC gene product, which polynucleotide molecules can be used to alter the ratio or amount of class 2:1 avermectins produced in fermentation cultures of S. avermitilis . The present invention further relates to vectors, host cells, and mutant strains of S. avermitilis in which the aveC gene has been inactivated, or mutated so as to change the ratio or amount of class 2:1 avermectins produced.
1. An isolated polynucleotide molecule comprising a nucleotide sequence that is otherwise the same as the Streptomyces avermitilis aveC allele, the S. avermitilis AveC gene product-encoding sequence of plasmid pSE186 (ATCC 209604) or the nucleotide sequence of the AveC ORF of S. avermitilis as presented in FIG. 1 (SEQ ID NO:1), or a degenerate variant thereof, which nucleotide encodes a functionally equivalent aveC gene product and which nucleotide sequence further comprises mutations encoding one or more amino acid substitutions in the amino acid sequence of SEQ ID NO:2, such that cells of S. avermitilis strain ATCC 53692 in which the wild-type aveC allele has been inactivated and that express the polynucleotide molecule comprising the mutated nucleotide sequence produce a class 2:1 ratio of avermetins that is reduced compared to the ratio produced by cells of S. avermitilis strain ATCC 53692 that instead express only the wild-type aveC allele, wherein when the class 2:1 avermectins are cyclohexyl B2: cyclohexyl B1 avermectins the ratio of class 2:1 avermectins is 0.35:1 of less, wherein the combinations of amino acid substitutions comprise substitutions at both D48 and G179.
2. An isolated polynucleotide molecule comprising a nucleotide sequence that is otherwise the same as the Streptomyces avermitllis aveC allele, the S. avermitilis aveC gene product-encoding sequence of plasmid pSE186 (ATCC 209604) or the nucleotide sequence of the aveC ORF of S. avermitilis as presented in FIG. 1 (SEQ ID NO:1), or a degenerate variant thereof, which nucleotide sequence further comprises mutations encoding one or more amino acid substitutions in the amino acid sequence of SEQ ID NO:2, such chat cells of S. avermitilis strain ATCC 53692 in which the wild-type aveC allele has been inactivated and that express the polynucleotide molecule comprising the mutated nocleotide sequence produce a class 2:1 ratio of avermectins that is reduced compared to the ratio produced by cells of S. avermitilis strain ATCC 53692 that instead express only the wild type aveC allele, wherein when the class 2:1 avermectins are cyclohexyl B2:cyclohexyl B1 avermectins the ratio of class 2:1 avermectins is 0.35:1 or less, wherein the combinations of amino acid substitutions comprise substitution selected from the group consisting of:
(a) D48E, A61T, A89T, S138T, G139T, G179S, A198G, P289L;
(b) G40S, D48E, L136P, G179S, E238D;
(c) D48E, L136P, R163Q, G179S;
(d) D48E, L136P, R163Q, G179S, E238D;
(e) D48E, L136P, R163Q, G179S, A200G, E238D;
(f) D48E, L136P, G179S, E238D;
(g) D48E, A61T, L136P, G179S, E238D;
(h) D48E, A61T, L136P, G179S;
(i) D48E, A89T, S138T, A139T, G179S;
(j) D48E, A61T, L136P, G179S, A198G, P202S, E238D, P289L;
(k) D48E, A61T, L136P, S138T, A139F, G179S, E238D, P289L;
(l) D48E, L136P, G179S, A198G, E238D, P289L;
(m) D48E, A61T, S138T, A139F, G179S, A198G, P289l;
(n) D48E, L84P, G111V, S138T, A139T, G179S, A198G, P289L;
(o) Y28C, D48E, A61T, A89T, A89T, S138T, A139T, G179S, E238D;
(p) D48E, A61T, A107T, S108G, L136P, G179S, S192A, E238D, P289L;
(q) D48E, L136P, G179S, R250W;
(r) D48E, A89T, S138T, A139T, R163Q, G179S;
(s) D48E, L136P, G179S, A198G, P289L;
(t) D48E, F78L, A89T, L136P, G179S;
(u) D48E, A89T, S138T, A139T, G179S, E238D, F278L;
(v) D48E, A89T, L136P, R163Q, G179S;
(w) D48E, A61T, A89T, G111V, S138T, A139F, G179S, E238D, P289L;
(x) D25G, D48E, A89T, l136P, S138T, A139T, V141A, I159T, R163Q, G179S;
(y) D48E, A89T, S90G, L136P, R163Q, G179S, E238D;
(z) D48E, A61T, A89T, G111V, S138T, A139T, G179S, E238D, P289L;
(aa) D48E, A89T, S138T, A139T, G179S;
(ab) D48E, L136P, R163Q, G179S, S231L;
(ac) D48E, L136P, S138T, A139F, G179S, V196A, E238D;
(ad) D48E, A61T, A89T, F99S, S138T, A139T, G179S, E238D;
(ae) G35S, D48E, A89T, S138T, A139T, G179S, D289L;
(af) D48E, A61T, A89T, S138T, A139T, G179S, V196A, E238D;
(ag) D48E, A89T, G111V, S138T, A139T, G179S, A198G, E238D;
(ah) S41G, D48E, A89T, L136P, G179S;
(ai) D48E, A89T, l136P, R163Q, G179S, D252S;
(aj) D48E, A89T, L136P, G179S, F234S;
(ak) D48E, A89T, L136P, R163Q, G179S, E238D;
(al) Q36R, D48E, A89T, L136P, G179S, E238D;
(am) D48E, A89T, L136P, R163Q, G179S;
(an) D48E, A89T, S138T, G179S;
(ao) D48E, A89T, L136P, G179S, E238D;
(ap) D48E, A89T, L136P, K154E, G179S, E238D;
(aq) D48E, A89T, S138T, A139T, K154R, G179S, V196A, P289L;
(ar) D48E, A89T, S138T, A139F, G179S, V196A, E238D;
(as) D48E, A61T, A89T, L136P, G179S, V196A, A198G, P289L;
(at) D48E, A61T, S138T, A139F, G179S, G196A, E238D, P289L;
(au) D48E, A89T, L136P, G179S;
(av) D48E, A89T, V120A, L136P, G179S;
(aw) D48E, A61T, A89T, S138T, A139F, G179S, V196A, A198G, E238D;
(ax) D48E, A61T, A89T, G111V, S138T, A139F, G179S, V196A, E238D;
(ay) D48E, A61T, A89T, S138T, A139T, G179S, V196A, E238D, P289L;
(az) D48E, A61T, A89T, L136P, S138T, A139F, G179S, A198G, E238D;
(ba) D48E, A89T, S138T, A139F, G179S, A198G, V220A;
(bb) D48E, A61T, A89T, S138T, A139T, G179S, V196A, E238D, R239H, D289L;
(bc) D48E, A61T, A89T, L136P, G179S, P289L;
(bd) D48E, A89T, S138T, A139T, G179S, V196A, E238D, D289L;
(be) D48E, A61T, A89T, S138T, A139F, G179S, V196A, E238D;
(da) S41G, D46E, A61T, R71L, A89T, L136M, S138T, A139T, T149S, G179S, V196A, E238D, F278L, P289L;
(db) S41G, D48E, A61T, R71L, A89T, L136M, S138T, A139T, T149S, F176C, G179S, V196A, E238D, P289L;
(dc) D48E, R71L, A89T, L136P, T149S, F176C, G119S, E238D, I280V;
(dd) D48E, A61T, R71L, W110L, T149S, G179S, V196A, L206M, E238D, V271A, I280V;
(de) D48E, A61T, R71L, A89T, L136M, S138T, A139T, T149S, G179S, V196A, E238D, H279Q, P289L;
(df) D48E, A61T, R71L, A89T, L136M, S138T, A139T, T149S, G179S, V196A, E238D, G287E, P289Q;
(dg) D48E, A61T, R71L, A89T, L136M, S138T, A139T, T149S, G179S, V196A, E238D, P289L;
(dh) D48E, A61T, R71L, A89T, A139T, T149S, F176C, G179S, V196A, E238D, V285G, D289L;
(di) Q38R, D48E, A61T, R71L, L87V, A89T, L136M, S138T, A139T, T149S, G179S, V196A, E238D, P289L;
(dj) D48E, A61T, L87V, A89T, W110L, S138T, A139T, T149S, G179S, V196A, E238D, D289L;
(dk) D48E, A61T, R71L, A89T, L136M, S138T, A139T, T149S, G179S, V196A, E238D, D289L;
(dl) D48E, A89T, L136P, K154E, G179S, S231L, E238D;
(ea) D48E, A61T, R71L, A89T, L136P, T149S, F176C, G179S, V196A, E238D, I280V;
(eb) D48E, R71L, A89T, L136P, T149S, F176C, G179S, E238D, I280V;
(ec) Q36P, D48E, A61T, R71L, A89T, L136P, T149S, F176C, G179S, V196A, E238D, I280V;
(ed) D48E, A61T, R71L, A89T, A139T, T149S, F176C, G179S, V196A, E238D, I280V;
(ee) V2M, D48E, A61T, R71L, A89T, L136P, T149S, F176C, G179S, V196A, E238D, I280V;
(ef) D48E, A61T, R71L, A89T, L136P, T149S, F176C, G179S, V196A, E238D, I280V, A302T;
(eg) D48E, R71L, A89T, L136P, T149S, F176C, G179S, E238D, P289L;
(eh) D48E, R71L, A89T, L136P, T149S, F176C, G179S, E238D, A302T;
(ei) D48E, R71L, A89T, L136P, T149S, F176C, G179S, V196A, E238D, I280V;
(ej) D48E, A61T, R71L, A89T, L136P, T149S, F176C, G179S, V196A, E238D;
(ek) V2M, D48E, R71L, A89T; L136P, T149S, F176C, G179S, V196A, E238D, I280V;
(el) D48E, A61T, R71L, A89T, L136P, T149S, R162H, F176C, G179S, V196A, E238D, I280V;
(em) D48E, R71L, A89T, V120A, L136P, T149S, K154E, G179S, S231L, E238D;
(en) D48E, R71L, A89T, V120A, L136P, T149S, F176C, G179S, S231L, E238D, I280V;
(eo) D48E, A61T, R71L, L87V, A89T, A139T, T149S, F176C, G179S, V196A, E238D, V285G, D289L;
(ep) D48E, A61T, R71L, L87V, A89T, S90N, A139T, T149S, F176C, G179S, V196A, E238D, V285G, D289L;
(eq) D48E, R71L, A89T, L136P, K154E, G179S, S231L, E238D;
(er) D48E, R71L, A89T, V120A, L136P, K154E, F176C, G179S, S231L, E238D; and
(es) D48E, R71L, A89T, V120A, L136P, T149S, K154E, F176C, G179S, S231L, E238D.
3. The polynucleotide molecule of claim 2 , wherein the ratio of cyclohexyl B2:cyclohexyl B1 avermectins is about 0.20:1 or less.
4. The polynucleotide molecule of claim 2 , wherein the ratio of cyclohexyl B2:cyclohexyl B1 avermectins is about 0.10:1 or less.
5. A recombinant vector comprising a polynucleotide molecule of claim 2 .
6. An isolated host cell comprising the recombinant vector of claim 5 .
7. The host cell of claim 6 , which is a Streptomyces cell.
8. The host cell of claim 7 , which is a cell of Streptomyces avermitilis .