A Novel Low Molecular Weight Endo-xylanase from Streptomyces sp. CS628 Cultivated in Wheat Bran
详细信息    查看全文
  • 作者:Md. Arifur Rahman (1)
    Yun Hee Choi (1)
    Pradeep G. C. (1)
    Yoon Seok Choi (1)
    Eun Joo Choi (1)
    Seung Sik Cho (2)
    Jin Cheol Yoo (1)
  • 关键词:Streptomyces ; Low molecular weight ; Xylooligosaccharides ; Agro ; waste ; Wheat bran
  • 刊名:Applied Biochemistry and Biotechnology
  • 出版年:2014
  • 出版时间:July 2014
  • 年:2014
  • 卷:173
  • 期:6
  • 页码:1469-1480
  • 全文大小:548 KB
  • 参考文献:1. Jayapal, N., Samanta, A., Kolte, A. P., Senani, S., Sridhar, M., Suresh, K., & Sampath, K. (2013). / Industrial Crops and Products, 42, 14-4. CrossRef
    2. Saha, B. C. (2003). / Journal of Industrial Microbiology and Biotechnology, 30, 279-91. CrossRef
    3. Beg, Q., Kapoor, M., Mahajan, L., & Hoondal, G. (2001). / Applied Microbiology and Biotechnology, 56, 326-38. CrossRef
    4. Collins, T., Gerday, C., & Feller, G. (2005). / FEMS Microbiology Reviews, 29, 3-3. CrossRef
    5. Carvalho, A., Neto, O., Silva, D. D., & Pastore, G. M. (2013). / Food Research International, 51, 75-5. CrossRef
    6. Dhiman, S. S., Sharma, J., & Battan, B. (2008). / BioResources, 3, 1377-402.
    7. Ko, C. H., Lin, Z. P., Tu, J., Tsai, C. H., Liu, C. C., Chen, H. T., & Wang, T. P. (2010). / International Biodeterioration & Biodegradation, 64, 13-9. CrossRef
    8. Joo, J. C., Pack, S. P., Kim, Y. H., & Yoo, Y. J. (2011). / Journal of Biotechnology, 151, 56-5. CrossRef
    9. Baraznenok, V., Becker, E., Ankudimova, N., & Okunev, N. (1999). / Enzyme and Microbial Technology, 25, 651-59. CrossRef
    10. Li, X., She, Y., Sun, B., Song, H., Zhu, Y., Lv, Y., & Song, H. (2010). / Biochemical Engineering Journal, 52, 71-8. CrossRef
    11. Ninawe, S., Kapoor, M., & Kuhad, R. C. (2008). / Bioresource Technology, 99, 1252-258. CrossRef
    12. Zhu, Y., Li, X., Sun, B., Song, H., & Li, E. (2012). / Journal of Food Science, 77, C506–C511. CrossRef
    13. Deesukon, W., Nishimura, Y., Harada, N., Sakamoto, T., & Sukhumsirichart, W. (2011). / Process Biochemistry, 46, 2255-262. CrossRef
    14. Simkhada, J., Yoo, H. Y., Choi, Y., Kim, S., & Yoo, J. (2012). / Applied Biochemistry and Biotechnology, 168, 2017-027. CrossRef
    15. Yan, Q., Hao, S., Jiang, Z., Zhai, Q., & Chen, W. (2009). / Journal of Molecular Catalysis B: Enzymatic, 58, 72-7. CrossRef
    16. Georis, J., Giannotta, F., De Buyl, E., Granier, B., & Frere, J. (2000). / Enzyme and Microbial Technology, 26, 178-86. CrossRef
    17. G.C, P., Choi, Y. H., Choi, Y. S., Seong, C. N., Cho, S. S., Lee, H. J., & Yoo, J. C. (2013). / Process Biochemistry, / 48, 1188-1196.
    18. Nanmori, T., Watanabe, T., Shinke, R., Kohno, A., & Kawamura, Y. (1990). / Journal of Bacteriology, 172, 6669-672.
    19. Simkhada, J., Cho, S., Choi, H., Kim, S., Lee, H., Sohng, J., & Yoo, J. (2010). / Biotechnology and Bioprocess Engineering, 15, 595-02. CrossRef
    20. Miller, G. L. (1959). / Analytical Chemistry, 31, 426-28. CrossRef
    21. Bradford, M. M. (1976). / Analytical Biochemistry, 72, 248-54. CrossRef
    22. Laemmli, U. K. (1970). / Nature, 227, 680-85. CrossRef
    23. Sriyapai, T., Somyoonsap, P., Matsui, K., Kawai, F., & Chansiri, K. (2011). / Journal of Bioscience and Bioengineering, 111, 528-36. CrossRef
    24. Ding, C. H., Jiang, Z. Q., Li, X. T., Li, L. T., & Kusakabe, I. (2004). / World Journal of Microbiology and Biotechnology, 20, 7-0. CrossRef
    25. Simkhada, J., Yoo, H., Park, D., Choi, Y., Lee, H., Kim, S., & Yoo, J. (2013). / Bioprocess and Biosystems Engineering, 819-825.
    26. Zhou, J., Shi, P., Zhang, R., Huang, H., Meng, K., Yang, P., & Yao, B. (2011). / Journal of Industrial Microbiology & Biotechnology, 38, 523-30. CrossRef
    27. Kim, D. Y., Han, M. K., Oh, H. W., Park, D. S., Kim, S. J., Lee, S. G., Shin, D. H., Son, K. H., Bae, K. S., & Park, H. Y. (2010). / Journal of Molecular Catalysis B: Enzymatic, 62, 32-9. CrossRef
    28. Elegir, G., Szakacs, G., & Jeffries, T. W. (1994). / Applied and Environmental Microbiology, 60, 2609-615.
    29. Sá–Pereira, P., Duarte, J., & Costa–Ferreira, M. (2000). / Enzyme and Microbial Technology, 27, 95-9. CrossRef
    30. Wang, S. L., Yen, Y. H., Shih, I. L., Chang, A. C., Chang, W. T., Wu, W. C., & Chai, Y. D. (2003). / Enzyme and Microbial Technology, 33, 917-25. CrossRef
    31. Vieille, C., & Zeikus, G. J. (2001). / Microbiology and Molecular Biology Reviews, 65, 1-3. CrossRef
    32. Verma, D., & Satyanarayana, T. (2012). / Bioresource Technology, 107, 333-38. CrossRef
    33. Goldman, N. R. (2009). / Basic Biotechnology eJournal, 5, 31-6.
    34. Kuhad, R. C., Singh, A., & Eriksson, K. E. L. (1997). / Biotechnology in the pulp and paper industry, pp 45-125, Springer.
  • 作者单位:Md. Arifur Rahman (1)
    Yun Hee Choi (1)
    Pradeep G. C. (1)
    Yoon Seok Choi (1)
    Eun Joo Choi (1)
    Seung Sik Cho (2)
    Jin Cheol Yoo (1)

    1. Department of Pharmacy, Chosun University, Gwangju, 501-759, Korea
    2. Department of Pharmacy, College of Pharmacy, Mokpo National University, Muan, Jeonnam, 534-729, Korea
  • ISSN:1559-0291
文摘
An extracellular low molecular weight xylanase (Xyn628) from Streptomyces sp. CS628 was isolated from Korean soil sample, produced in wheat bran medium, purified, and biochemically characterized. Xyn628 was purified 4.8-fold with a 33.78?% yield using Sepharose CL-6B column chromatography. The purified xylanase was ~18.1?kDa estimated by SDS-PAGE and xylan zymography. N-terminal amino acid sequences of Xyn628 were AYIKEVVSRAYM. The enzyme was found to be stable in a broad range of pH (5.0-3.0) and up to 60?°C and have optimal pH and temperature of pH?11.0 and 60?°C, respectively. Xyn628 activities were remarkable affected by various detergents, chelators, modulators, and metal ions. The xylanase produced xylobiose and xylotriose as principal hydrolyzed end products from the xylan. It was found to degrade agro-waste materials like corn cob and wheat bran by Xyn628 (20?U/g) as shown by electron microscopy. As being simple in purification, low molecular weight, alkaline, thermostable, and ability to produce xylooligosaccharides show that Xyn628 has potential applications in bioindustries as a biobleaching agent or/and xylooligosaccharides production with an appropriate utilization of agro-waste.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700