Identification of the bacterial-inhibitory molecules from Streptococcus parasanguinis FW213

碩士 === 長庚大學 === 生物醫學研究所 === 100 === Oral microbes can gain advantages in the oral cavity by producing inhibitory substances against competitors. This study demonstrated that Streptococcus parasanguinis FW213 inhibits the growth of S. mutans GS5 and UA159 by producing H2O2. The majority of H2O2 is...

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Main Authors: Yen Yu Chou, 周晏羽
Other Authors: Y. Y. Chen
Format: Others
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/04609214368315573842
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spelling ndltd-TW-100CGU051140012016-04-04T04:16:53Z http://ndltd.ncl.edu.tw/handle/04609214368315573842 Identification of the bacterial-inhibitory molecules from Streptococcus parasanguinis FW213 探討副血鏈球菌FW213抑菌物質之分泌 Yen Yu Chou 周晏羽 碩士 長庚大學 生物醫學研究所 100 Oral microbes can gain advantages in the oral cavity by producing inhibitory substances against competitors. This study demonstrated that Streptococcus parasanguinis FW213 inhibits the growth of S. mutans GS5 and UA159 by producing H2O2. The majority of H2O2 is produced by pyruvate oxidase (Pox) in FW213. An enhanced H2O2 production in mutant Spa_1971_241, a mutant containing a 241-nt deletion in Spa_1971, causes self-death and extracellular DNA (eDNA) production, but the eDNA is not related to biofilm formation in FW213. Furthermore, 3 open reading frames (Spa_1056, Spa_1859 and Spa_1970) that encode putative bacteriocin-related products were identified in FW213 genome. Mutant deficient in Spa_1859, encoding a putative bacteriocin, showed a stronger inhibition phenotype against S. mutans than the wild-type FW213 and the mutant deficient in Spa_1859-1862, and it is likely that an enhanced H2O2 production is responsible for this phenotype. On the other hand, truncated Spa_1971 (encoding a transcriptional regulator), the first gene of the Spa_1971-1969 operon, led to higher H2O2 production. Spa_1971 is a S-adenosylmethionine superfamily protein characterized by a conserved CxxxCxxC motif. Its truncated form may act as a powerful oxidant. Taken together, H2O2 is the primary substance that S. parasanguinis produced to inhibit the growth of S. mutans. Whether S. parasanguinis produces a bacteriocin and the targets of the possible bacteriocin remain to be determined. Y. Y. Chen 陳怡原 2011 學位論文 ; thesis 57
collection NDLTD
format Others
sources NDLTD
description 碩士 === 長庚大學 === 生物醫學研究所 === 100 === Oral microbes can gain advantages in the oral cavity by producing inhibitory substances against competitors. This study demonstrated that Streptococcus parasanguinis FW213 inhibits the growth of S. mutans GS5 and UA159 by producing H2O2. The majority of H2O2 is produced by pyruvate oxidase (Pox) in FW213. An enhanced H2O2 production in mutant Spa_1971_241, a mutant containing a 241-nt deletion in Spa_1971, causes self-death and extracellular DNA (eDNA) production, but the eDNA is not related to biofilm formation in FW213. Furthermore, 3 open reading frames (Spa_1056, Spa_1859 and Spa_1970) that encode putative bacteriocin-related products were identified in FW213 genome. Mutant deficient in Spa_1859, encoding a putative bacteriocin, showed a stronger inhibition phenotype against S. mutans than the wild-type FW213 and the mutant deficient in Spa_1859-1862, and it is likely that an enhanced H2O2 production is responsible for this phenotype. On the other hand, truncated Spa_1971 (encoding a transcriptional regulator), the first gene of the Spa_1971-1969 operon, led to higher H2O2 production. Spa_1971 is a S-adenosylmethionine superfamily protein characterized by a conserved CxxxCxxC motif. Its truncated form may act as a powerful oxidant. Taken together, H2O2 is the primary substance that S. parasanguinis produced to inhibit the growth of S. mutans. Whether S. parasanguinis produces a bacteriocin and the targets of the possible bacteriocin remain to be determined.
author2 Y. Y. Chen
author_facet Y. Y. Chen
Yen Yu Chou
周晏羽
author Yen Yu Chou
周晏羽
spellingShingle Yen Yu Chou
周晏羽
Identification of the bacterial-inhibitory molecules from Streptococcus parasanguinis FW213
author_sort Yen Yu Chou
title Identification of the bacterial-inhibitory molecules from Streptococcus parasanguinis FW213
title_short Identification of the bacterial-inhibitory molecules from Streptococcus parasanguinis FW213
title_full Identification of the bacterial-inhibitory molecules from Streptococcus parasanguinis FW213
title_fullStr Identification of the bacterial-inhibitory molecules from Streptococcus parasanguinis FW213
title_full_unstemmed Identification of the bacterial-inhibitory molecules from Streptococcus parasanguinis FW213
title_sort identification of the bacterial-inhibitory molecules from streptococcus parasanguinis fw213
publishDate 2011
url http://ndltd.ncl.edu.tw/handle/04609214368315573842
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