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Original Articles

Activation of Dormant Secondary Metabolism Neotrehalosadiamine Synthesis by an RNA Polymerase Mutation in Bacillus subtilis

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Pages 618-623 | Published online: 22 May 2014

  • 1) Demain AL, Med. Res. Rev., 29, 821–842 (2009).
  • 2) Bentley SD, Chater KF, Cerdeno-Tarraga AM, Challis GL, Thomson NR, James KD, Harris DE, Quail MA, Kieser H, Harper D, Bateman A, Brown S, Chandra G, Chen CW, Collins M, Cronin A, Fraser A, Goble A, Hidalgo J, Hornsby T, Howarth S, Huang CH, Kieser T, Larke L, Murphy L, Oliver K, O’Neil S, Rabbinowitsch E, Rajandream MA, Rutherford K, Rutter S, Seeger K, Saunders D, Sharp S, Squares R, Squares S, Taylor K, Warren T, Wietzorrek A, Woodward J, Barrell BG, Parkhill J, and Hopwood DA, Nature, 417, 141–147 (2002).
  • 3) Ikeda H, Ishikawa J, Hanamoto A, Shinose M, Kikuchi H, Shiba T, Sakaki Y, Hattori M, and Omura S, Nat. Biotechnol., 21, 526–531 (2003).
  • 4) Oliynyk M, Samborskyy M, Lester JB, Mironenko T, Scott N, Dickens S, Haydock SF, and Leadlay PF, Nat. Biotechnol., 25, 447–453 (2007).
  • 5) Ohnishi Y, Ishikawa J, Hara H, Suzuki H, Ikenoya M, Ikeda H, Yamashita A, Hattori M, and Horinouchi S, J. Bacteriol., 190, 4050–4060 (2008).
  • 6) Shima J, Hesketh A, Okamoto S, Kawamoto S, and Ochi K, J. Bacteriol., 178, 7276–7284 (1996).
  • 7) Okamoto-Hosoya Y, Sato T, and Ochi K, J. Antibiot. (Tokyo), 53, 1424–1427 (2000).
  • 8) Nishimura K, Hosaka T, Tokuyama S, Okamoto S, and Ochi K, J. Bacteriol., 189, 3876–3883 (2007).
  • 9) Wang G, Inaoka T, Okamoto S, and Ochi K, Antimicrobial Agents Chemother., 53, 1019–1026 (2009).
  • 10) Hosoya Y, Okamoto S, Muramatsu H, and Ochi K, Antimicrobial Agents Chemother., 42, 2041–2047 (1998).
  • 11) Hosaka T, Tamehiro N, Chumpolkulwong N, Hori-Takemoto C, Shirouzu M, Yokoyama S, and Ochi K, Mol. Genet. Genomics, 271, 317–324 (2004).
  • 12) Ochi K, Okamoto S, Tozawa Y, Inaoka T, Hosaka T, Xu J, and Kurosawa K, Adv. Appl. Microbiol., 56, 155–184 (2004).
  • 13) Kurosawa K, Hosaka T, Tamehiro N, Inaoka T, and Ochi K, Appl. Environ. Microbiol., 72, 71–77 (2006).
  • 14) Ochi K, Biosci. Biotechnol. Biochem., 71, 1373–1386 (2007).
  • 15) Hu H, Zhang Q, and Ochi K, J. Bacteriol., 184, 3984–3991 (2002).
  • 16) Lai C, Xu J, Tozawa Y, Okamoto-Hosoya Y, Yao X, and Ochi K, Microbiology, 148, 3365–3373 (2002).
  • 17) Tamehiro N, Hosaka T, Xu J, Hu H, Otake N, and Ochi K, Appl. Environ. Microbiol., 69, 6412–6417 (2003).
  • 18) Inaoka T, Takahashi K, Yada H, Yoshida M, and Ochi K, J. Biol. Chem., 279, 3885–3892 (2004).
  • 19) Wang G, Hosaka T, and Ochi K, Appl. Environ. Microbiol., 74, 2834–2840 (2008).
  • 20) Hosaka T, Ohnishi-Kameyama M, Muramatsu H, Murakami K, Tsurumi Y, Kodani S, Yoshida M, Fujie A, and Ochi K, Nat. Biotechnol., 27, 462–464 (2009).
  • 21) Xu J, Tozawa Y, Lai C, Hayashi H, and Ochi K, Mol. Genet. Genomics, 268, 179–189 (2002).
  • 22) Stein T, Mol. Microbiol., 56, 845–857 (2005).
  • 23) Wehrli W, Knusel F, Schmid K, and Staehelin M, Proc. Natl. Acad. Sci. USA, 61, 667–673 (1968).
  • 24) Campbell EA, Korzheva N, Mustaev A, Murakami K, Nair S, Goldfarb A, and Darst SA, Cell, 104, 901–912 (2001).
  • 25) Ezekiel DH and Hutchins JE, Nature, 220, 276–277 (1968).
  • 26) Wehrli W, Knusel F, and Staehelin M, Biochem. Biophys. Res. Commun., 32, 284–288 (1968).
  • 27) Ingham CJ and Furneaux PA, Microbiology, 146, 3041–3049 (2000).
  • 28) Nicholson WL and Maughan H, J. Bacteriol., 184, 4936–4940 (2002).
  • 29) Tsuno T, Ikeda C, Numata K, Tomita K, Konishi M, and Kawaguchi H, J. Antibiot. (Tokyo), 39, 1001–1003 (1986).
  • 30) Numata K, Satoh F, Hatori M, Miyaki T, and Kawaguchi H, J. Antibiot. (Tokyo), 39, 1346–1348 (1986).
  • 31) Inaoka T and Ochi K, J. Bacteriol., 189, 65–75 (2007).
  • 32) Inaoka T, Satomura T, Fujita Y, and Ochi K, FEMS Microbiol. Lett., 291, 151–156 (2009).
  • 33) Paulsen IT, Chauvaux S, Choi P, and Saier MHJ, J. Bacteriol., 180, 498–504 (1998).
  • 34) Henkin TM, FEMS Microbiol. Lett., 135, 9–15 (1996).
  • 35) Postma PW, Lengeler JW, and Jacobson GR, Microbiol. Rev., 57, 543–594 (1993).
  • 36) Saier MHJ, Chauvaux S, Cook GM, Deutscher J, Paulsen IT, Reizer J, and Ye JJ, Microbiology, 142, 217–230 (1996).
  • 37) Deutscher J, Reizer J, Fischer C, Galinier A, Saier MHJ, and Steinmetz M, J. Bacteriol., 176, 3336–3344 (1994).
  • 38) Aung-Hilbrich LM, Seidel G, Wagner A, and Hillen W, J. Mol. Biol., 319, 77–85 (2002).
  • 39) Fujita Y, Miwa Y, Galinier A, and Deutscher J, Mol. Microbiol., 17, 953–960 (1995).
  • 40) Galinier A, Haiech J, Kilhoffer MC, Jaquinod M, Stulke J, Deutscher J, and Martin-Verstraete I, Proc. Natl. Acad. Sci. USA, 94, 8439–8444 (1997).
  • 41) Deutscher J, Galinier A, and Martin-Verstraete I, “Bacillus subtilis and Its Closest Relatives: From Genes to Cells,” eds. Sonenshein AL, Hoch JA, and Losick R, ASM press, Washington, DC, pp. 129–150 (2002).
  • 42) Fujita Y, Biosci. Biotechnol. Biochem., 73, 245–259 (2009).
  • 43) Renna MC, Najimudin N, Winik LR, and Zahler SA, J. Bacteriol., 175, 3863–3875 (1993).
  • 44) Wei Y, Guffanti AA, Ito M, and Krulwich TA, J. Biol. Chem., 275, 30287–30292 (2000).
  • 45) Tobisch S, Glaser P, Krüger S, and Hecker M, J. Bacteriol., 179, 496–506 (1997).
  • 46) Inaoka T, Takahashi K, Ohnishi-Kameyama M, Yoshida M, and Ochi K, J. Biol. Chem., 278, 2169–2176 (2003).
  • 47) Perkins AE and Nicholson WL, J. Bacteriol., 190, 807–814 (2008).
  • 48) Dunny GM and Leonard BA, Annu. Rev. Microbiol., 51, 527–564 (1997).
  • 49) Fuqua C and Greenberg EP, Proc. Natl. Acad. Sci. USA, 95, 6571–6572 (1998).
  • 50) Fuqua C, Parsek MR, and Greenberg EP, Annu. Rev. Genet., 35, 439–468 (2001).
  • 51) Kleerebezem M and Quadri LE, Peptides, 22, 1579–1596 (2001).
  • 52) Lazazzera BA, Curr. Opin. Microbiol., 3, 177–182 (2000).
  • 53) Kleerebezem M, Quadri LE, Kuipers OP, and de Vos WM, Mol. Microbiol., 24, 895–904 (1997).
  • 54) Camilli A and Bassler BL, Science, 311, 1113–1116 (2006).
  • 55) Schauder S and Bassler BL, Genes Dev., 15, 1468–1480 (2001).
  • 56) Inaoka T and Ochi K, J. Bacteriol., 184, 3923–3930 (2002).
  • 57) Ratnayake-Lecamwasam M, Serror P, Wong KW, and Sonenshein AL, Genes Dev., 15, 1093–1103 (2001).

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