화학공학소재연구정보센터
Applied Chemistry for Engineering, Vol.22, No.2, 119-124, April, 2011
항생펩타이드의 기능과 적용분야
The Function and Application of Antibiotic Peptides
E-mail:
초록
현재, 사람들은 많은 병에 노출되어 있다. 산업화의 빠른 변화는 생산시설의 자동화, 정보.통신 산업기술의 발달로 삶의 질이 향상되었으나, 신체활동의 감소와 환경오염으로 인해 환경적 스트레스와 병원균 감염 반응에 대한 인간의 면역체계가 악화되었다. 아울러 현재 약물의 오.남용으로 다재약물내성을 갖는 미생물들(multidrug-resistant microbes)과 암세포(tumor)의 출현으로 인해 새로운 항생제 개발이 시급하다. 그들 중 하나가 항생 펩타이드(antibiotic peptide)로 기존 약물과 비교하면 약물저항성이 거의 일어나지 않는다. 여러 가지 항생활성을 가지는 펩타이드들은 다양한 생명체로부터 동정되고 있다. 이 논문은 항생 펩타이드들의 활성과 적용분야에 대해 논하려 한다.
Currently, people are exposed to many harmful diseases. Therefore, there are many schemes, such as automation of productive facilities, development of information and communication technology, enhanced the quality of human life and wealth. However, these processes lead to weakened immune system. Thus, people are more vulnerable to infections from pathogens and environmental stress. Misuse and abuse of drugs resulted in the rapid emergence of multidrug-resistant microbes and tumors, therefore, to find new antibiotics are urgently needed. One of them is a peptide-antibiotic, that is not or less occurred a drug-resistance, comparing to conventional drugs. Peptides with various antibiotic activities have been identified from life organisms. The present review provides an overview of activities and application of peptide antibiotics.
  1. Oyston PC, Fox MA, Richards SJ, Clark GC, Journal of Medical Microbiology., 58, 977 (2009)
  2. Tadokoro T, Yamaguchi Y, Batzer J et al, J. Invest. Dermatol., 124, 1326 (2005)
  3. Peters BM, Shirtliff ME, Jabra-Rizk MA, PloS pathog., 6 (2010)
  4. Rhee CH, Woo GJ, J. Food Prot., 73, 2285 (2010)
  5. National institutes of health. Minutes of the national advisory dental and craniofacial research council-153rd meeting. Available at: www.nidcr.nig.gov/AboutNIDCR/council and committees/NADCRC/inutes/Minutes 53.htm. Accessed (2007)
  6. Costerton JW, DeMeo P, Plast. Reconstr. Surg., 1, 36 (2011)
  7. Bray F, Møller B, Nat. Rev. Cancer., 6, 63 (2006)
  8. Anand P, Kunnumakkara AB, Sundaram C, Harikumar KB, Tharakan ST, Lai OS, Sung B, Aggarwal BB, Pharm. Res., 25, 2097 (2008)
  9. Salem AH, Elkhatib WF, Noreddin AM, J. Pharm. Pharmacol., 63, 73 (2011)
  10. Mariievsky VF, Poliachenko I, Salmanov AH, Shpak IV, Doan SI, Klin Khir., 9, 31 (2010)
  11. Neonakis IK, Spandidos DA, Petinaki E, Int. J. Antimicrob. Agents., 37, 102 (2011)
  12. Hancock RE, Lancet., 349, 418 (1997)
  13. Shai Y, Biopolymers., 66, 236 (2002)
  14. Huang Y, Huang J, Chen Y, Protein Cell., 1, 143 (2010)
  15. Kim AB, Nat. Rev. Microbiol., 3, 238 (2005)
  16. Manuel NM, Ferre R, Castanho MA, Nat. Rev. Microbial., 7, 245 (2009)
  17. Brogden KA, Nat. Rev. Microbiaol., 3, 238 (2005)
  18. MeloM N, Ferre R, Castanho MA, Nat. Rev. Microbiol., 7, 245 (2009)
  19. Huang Y, Huang J, Chen Y, Protein Cell., 1, 143 (2010)
  20. William C, Wimley, Hristova K, J. Membrane Biol., 239, 27 (2011)
  21. Raghuraman H, Chattopadhyay A, Biosci. Rep., 27, 189 (2007)
  22. Hall K, Lee TH, Aguilar MI, J. Mol. Recognit., 24, 108 (2011)
  23. Pandey BK, Ahmad A, Asthana N, Azmi S, Srivastava RM, Srivastava S, Verma R, Vishwakarma AL, Ghosh JK, Biochemistry., 49, 7920 (2010)
  24. Park MH, Choi MS, Oh KW, Yoon DY, Han SB, Song MJ, Hong JT, Prostate. (2010)
  25. Zasloff M, Proc. Natl. Acad. Sci., USA, 5449 (1987)
  26. Tamba Y, Ariyama H, Levadny V, Yamazaki M, J. Phys. Chem. B., 114, 12018 (2010)
  27. Tachi T, Epand RF, Epand RM, Matsuzaki K, Biochemistry., 27, 10723 (2002)
  28. Ge Y, MacDonald D, Henry MM, Hait HI, Nelson KA, Lipsky BA, Zasloff MA, Holroyd KJ, Diagn Microbiol Infect Dis., 35, 45 (1999)
  29. Gottler LM, Ramammorthy A, Biochim Biophys Acta., 1778, 1680 (2009)
  30. Rinaldi AC, Mangoni ML, Rufo A, Luzi C, Barra D, Zhao H, Kinnunen PK, Bozzi A, Di Giulio A, Simmaco M, Biochem. J., 386, 91 (2002)
  31. Conlon JM, Kolodziejek J, Nowotny N, Biochim Biophys Acta., 14, 1 (2004)
  32. Mangoni ML, Saugar JM, Dellisanti M, Barra D, Simmaco M, Rivas L, J. Biol. Chem., 14, 984 (2005)
  33. Rosenfeld Y, Barra D, Simmaco M, Shai Y, Mangoni ML, J. Biol. Chem., 29, 28565 (2006)
  34. Mangoni ML, Shai Y, Biochimcal et Biophysica Acta., 1788, 1610 (2009)
  35. Capparelli R, Romanelli A, Iannaccone M, Nocerino N, Ripa R, Pensato S, Pedone C, Iannelli D, PLos One., 28, 7191 (2009)
  36. Jemal A, Siegel R, Ward E, Murray T, Xu J, Thun MJ, CA Cancer J. Clin., 57, 43 (2007)
  37. McCracken M, Olsen M, Chen MS Jr., Jemal A, Thun M, Cokkinides V, Deapen D, Ward E, CA Cancer J. Clin., 57, 190 (2007)
  38. Stewart BW, Kleihues PL, France, IARC Press (2003)
  39. Ahn YO, Jpn. J. Clin. Oncol., 32 (2002)
  40. Shin SY, Lee SH, Yang ST, Park EJ, Lee DG, Lee MK, Eom SH, Song WK, Kim Y, Hahm KS, Kim JI, J. Peptide Res., 58, 504 (2001)
  41. Huang W, Lu L, Shao X, Tang C, Zhao X, Biotechnol. Lett., 32, 463 (2009)
  42. Tang C, Shao X, Sun B, Huang W, Qiu F, Chen Y, Shi YK, Zhang EY, Wang C, Zhao X, Orq. Biomol. Chem., 7, 984 (2010)
  43. Tang C, Shao X, Sun B, Huang W, Qiu F, Chen Y, Shi YK, Zhang EY, Wang C, Zhao X, Orq. Biomole. Chem., 8, 984 (2010)
  44. Smolarczyk R, Cichon T, Kamysz W, Glowala-Kosinka M, Szydlo A, Szultka L, Sieron AL, Szala S, Lab Invest., 90, 9 (2010)
  45. Hoess A, Watson S, Siber GR, Liddington R, Embo J., 12, 3351 (1993)
  46. Vallespi MG, Fernandez JR, Torrens I, Garcia I, Garay H, Mendoza O, Granadillo M, Falcon V, Acevedo B, Ubieta R, Guillen GE, Reyes O, J. Pept. Sci., 16, 40 (2010)
  47. Wolcott R, Dowd S, Plast Reconstr. Surg., 1, 28 (2011)
  48. Smith AW, Advanced Drug Delivery., 57, 1539 (2005)
  49. Høiby N, Bjarnsholt T, Givskov M, Molin S, Ciofu O, Int. J. Antimicrob. Agents., 35, 322 (2010)
  50. Hong SY, Oh JE, Kwon M, Choi MJ, Lee JH, Lee BL, Moon HM, Lee KH, Antimicrobial Agents Chemotheraty., 42, 2534 (1998)
  51. Liu Y, Wang L, Zhou X, Hu S, Zhang S, Wu H, Int. J. Antimicrob. Agents., 37, 33 (2011)
  52. Mader JS, Marcet-Palacios M, Hancock RE, Bleackley RC, Exp. Cell Res., 15, 531 (2011)
  53. Bucki R, Leszczynka K, Namiot A, Sokolowski W, Arch. Immunol. Ther. Exp. (Warsz)., 58 (2010)
  54. Overhage J, Campisano A, Bains M, Torfs EC, Rehm BH, Hancock RE, Infect. Immun., 76, 4176 (2008)
  55. Willcox MDP, Hume EBH, Aliwarga Y, Kumar N, Cole N, J. Appl. Microbiol., 105(6), 1817 (2008)
  56. Gabriel M, Nazmi K, Veerman EC, Nieuw Amerongen AV, Zentner A, Bioconjug. Chem., 17, 548 (2006)
  57. Haynie SL, Crum GA, Doele BA, Antimicrob Agents Chemother., 39, 301 (1995)
  58. Yamaguchi Y, Takahashi K, Zmudzka BZ et al, Faseb J., 20, 1486 (2006)
  59. Maeda K, Hatao M, J. Inverst. Dermatol., 122, 503 (2004)
  60. Passeron T, Valencia JC, Bertolotto C et al, Proc. Natl. Acad. Sci. USA., 104, 13984 (2007)
  61. Choi W, Miyamura Y, Wolber R, Smuda C, Reinhold W, Liu H, Kolbe L, Hearing VJ, J. Invest. Dermatol., 130, 1685 (2010)
  62. Cui R, Widlund HR, Feige E, Lin JY, Wilensky DL, Igras VE, D’Orazio J, Fung CY, Schanbacher CF, Granter SR, Fisher DE, Cell., 128, 853 (2007)
  63. Lupo MP, Cole AL, Dermatologic Theratpy., 20, 343 (2007)
  64. Maquart FX, Bellon G, Pasco S, Monboisse JC, J. Biol.Chem., 268, 9941 (1993)
  65. Lupo MP, Cole AL, Dermatol. Ther., 20, 343 (2007)
  66. Chirita RI, Chaimbault P, Archambault JC, Robert I, Elfakir C, Anal. Chim. Acta., 641, 95 (2009)
  67. Sachs DL, Voorhees JJ, Clin. Pharmacol. Ther., 89, 34 (2011)
  68. Maquart FX, Simeon A, Pasco S, Monboisse JC, J. Soc. Biol., 193, 423 (1999)
  69. Blanes-Mira C, Clemente J, Jodas G, Gil A, Fernandez-Ballester G, Ponsati B, Gutierrez L, Perez-Paya E, Ferrer-Montiel A, Int. J. Cosmet. Sci., 24, 303 (2002)
  70. Sarmadi BH, Ismail A, Peptides., 31, 1949 (2010)
  71. Elias RJ, Kellerby SS, Decker EA, Crit. Rev. Food. Sci. Nutr., 48, 430 (2008)
  72. Togashi S, Takahashi N, Iwama M, Watanabe S, Tamagawa K, Fukui T, Placenta., 23, 497 (2002)