Streptomyces halstedii
Streptomyces halstedii | |
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Scientific classification | |
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Species: | S. halstedii |
Binomial name | |
Streptomyces halstedii Waksman and Henrici 1948[1] | |
Type strain | |
ATCC 10897, ATCC 19770, BCRC 13680, CBS 508.68, CCRC 13680, CECT 3328, CGMCC 4.1358, DSM 40068, DSMZ 40068, ETH 13080, ETH 15972, HAMBI 993, HMGB B938, IAW 95, ICMP 480, IFO 12783, IFO 13274, IMET 40322, IMRU 3328, IMSNU 20216, ISP 5068, JCM 4584, KACC 20015, KCC S-0052, KCC S-0584, KCC S-0794, KCCS-0584, NBRC 12783, NBRC 13274, NCIB 9839, NCIMB 9839, NRRL B-1238, NRRL-ISP 5068, RIA 1050, RIA 79, UNIQEM 156, VKM Ac-1768, VTT E-991422, Waksman 3328, WaksmanSET 3328[2] | |
Synonyms[3][4] | |
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Streptomyces halstedii is a bacterium species from the genus of Streptomyces which has been isolated from deeper soil layers.[1][3][4] Streptomyces halstedii produces magnamycin B, vicenistatin deltamycin A2, deltamycin A3, bafilomycin B1 and bafilomycin C1.[5][6][7][8][9] Streptomyces halstedii also produces complex antifungal antibiotics like oligomycins (oligomycin A, oligomycin B, oligomycin C) and the antibiotics anisomycin and sinefungin.[10][11][12][13]
Further reading
- Tohyama, Shigehiro; Kakinuma, Katsumi; Eguchi, Tadashi (January 2006). "The Complete Biosynthetic Gene Cluster of the 28-Membered Polyketide Macrolactones, Halstoctacosanolides, from Streptomyces halstedii HC34". The Journal of Antibiotics. 59 (1): 44–52. doi:10.1038/ja.2006.7. PMID 16568718.
- Blanco, Gloria; Pereda, Ana; Méndez, Carmen; Salas, JoséA. (March 1992). "Cloning and disruption of a fragment of Streptomyces halstedii DNA involved in the biosynthesis of a spore pigment". Gene. 112 (1): 59–65. doi:10.1016/0378-1119(92)90303-7. PMID 1551599.
- Canals, Albert; Vega, M. Cristina; Gomis-Rüth, F. Xavier; Díaz, Margarita; Santamaría, Ramón I.; Coll, Miquel (23 July 2003). "Structure of xylanase Xys1Δ from" (PDF). Acta Crystallographica Section D. 59 (8): 1447–1453. doi:10.1107/S0907444903012629. hdl:10261/104687. PMID 12876348.
- Blevins, W (1995). "Comparative physiology of geosmin production by Streptomyces halstedii and Anabaena sp". Water Science and Technology. 31 (11): 127–133. doi:10.1016/0273-1223(95)00466-Z.
- Fernandez-Abalos, J. M. (1 July 2003). "Posttranslational processing of the xylanase Xys1L from Streptomyces halstedii JM8 is carried out by secreted serine proteases" (PDF). Microbiology. 149 (7): 1623–1632. doi:10.1099/mic.0.26113-0. hdl:10261/66723. PMID 12855715.
- Ruiz-Arribas, Alberto; Zhadan, Galina G.; Kutyshenko, Victor P.; Santamaria, Ramon I.; Cortijo, Manuel; Villar, Enrique; Fernandez-Abalos, Jose M.; Calvete, Juan J.; Shnyrov, Valery L. (15 April 1998). "Thermodynamic stability of two variants of xylanase (Xys1) from Streptomyces halstedii JM8". European Journal of Biochemistry. 253 (2): 462–468. doi:10.1046/j.1432-1327.1998.2530462.x. PMID 9654097.
- Frändberg, E; Petersson, C; Lundgren, LN; Schnürer, J (August 2000). "Streptomyces halstedii K122 produces the antifungal compounds bafilomycin B1 and C1". Canadian Journal of Microbiology. 46 (8): 753–8. doi:10.1139/w00-050. PMID 10941524.
- Joo, Gil-Jae (October 2005). "Purification and Characterization of an Extracellular Chitinase from the Antifungal Biocontrol Agent Streptomyces halstedii". Biotechnology Letters. 27 (19): 1483–1486. doi:10.1007/s10529-005-1315-y. PMID 16231220. S2CID 2246431.
- (eds.), S. Grabley ... (1999). Drug discovery from nature. Berlin [u.a.]: Springer. ISBN 3-540-64844-5.
{{cite book}}
:|last1=
has generic name (help) - Karlheinz Drauz, ed. (2010). Enzyme catalysis in organic synthesis : a comprehensive handbook (New ed.). Weinheim: Wiley-VCH. ISBN 978-3-527-32547-4.
- M., Capek; O., Hanc; M., Tadra (1966). Microbial Transformations of Steroids. Dordrecht: Springer Netherlands. ISBN 94-011-7603-5.
- Mordarski, edited by M. Goodfellow, S.T. Williams, M. (1988). Actinomycetes in Biotechnology. Oxford: Elsevier Science. ISBN 0-08-098433-9.
{{cite book}}
:|first1=
has generic name (help)
See also
References
- 1 2 LPSN bacterio.net
- ↑ Straininfo of Streptomyces halstedii
- 1 2 Deutsche Sammlung von Mikroorganismen und Zellkulturen
- 1 2 UniProt
- ↑ Frändberg, E; Petersson, C; Lundgren, LN; Schnürer, J (August 2000). "Streptomyces halstedii K122 produces the antifungal compounds bafilomycin B1 and C1". Canadian Journal of Microbiology. 46 (8): 753–8. doi:10.1139/w00-050. PMID 10941524.
- ↑ Hochstein, F. A.; Murai, Kotaro (October 1954). "Magnamycin B, a Second Antibiotic from Streptomyces halstedii". Journal of the American Chemical Society. 76 (20): 5080–5083. doi:10.1021/ja01649a020.
- ↑ Roberts, edited by B.W. Bycroft ; contributors, A.A. Higton, A.D. (1988). Dictionary of antibiotics and related substances. London: Chapman and Hall. ISBN 0-412-25450-6.
{{cite book}}
:|first1=
has generic name (help) - ↑ Collins, Peter M., ed. (2006). Dictionary of carbohydrates with CD-ROM (2nd ed.). Boca Raton: CRC/Taylor & Francis. ISBN 0-8493-7765-X.
- ↑ SHINDO, KAZUTOSHI; KAMISHOHARA, MASARU; ODAGAWA, ATSUO; MATSUOKA, MICHIKO; KAWAI, HIROYUKI (1993). "Vicenistatin, a novel 20-membered macrocyclic lactam antitumor antibiotic". The Journal of Antibiotics. 46 (7): 1076–1081. doi:10.7164/antibiotics.46.1076. PMID 8360102.
- ↑ Grammatikova, NE; Bibikova, MV; Spiridonova, IA; Kabanov, AE; Katlinskiĭ, AV (2003). "[Streptomyces griseolus # 182--a novel organism producing oligomycin antibiotics. Taxonomy, fermentation, and isolation]". Antibiotiki I Khimioterapiia. 48 (6): 11–5. PMID 14558413.
- ↑ Fügedi, edited by Daniel E. Levy, Péter (2006). The organic chemistry of sugars. Boca Raton: Taylor & Francis. ISBN 1-4200-2795-6.
{{cite book}}
:|first1=
has generic name (help) - ↑ Borchardt, Ronald T.; Eiden, Lee E.; Wu, BiShia; Rutledge, Charles O. (August 1979). "Sinefungin, a potent inhibitor of S-adenosylmethionine: Protein O-methyltransferase". Biochemical and Biophysical Research Communications. 89 (3): 919–924. doi:10.1016/0006-291X(79)91866-7. PMID 486211.
- ↑ Perlman, David, ed. (1979). Advances in Applied Microbiology, 25. Burlington: Elsevier. ISBN 0-08-056439-9.
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