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非产细菌素的牛链球菌菌株结合博维菌素HC5并将其转移至其他敏感细菌的能力。

The ability of non-bacteriocin producing Streptococcus bovis strains to bind and transfer bovicin HC5 to other sensitive bacteria.

作者信息

Xavier Bruno M, Russell James B

机构信息

Department of Microbiology, Cornell University, 157A Wing Hall, Ithaca, NY 14853, USA.

出版信息

Anaerobe. 2009 Aug;15(4):168-72. doi: 10.1016/j.anaerobe.2008.10.002. Epub 2009 Jan 3.

DOI:10.1016/j.anaerobe.2008.10.002
PMID:19171197
Abstract

Streptococcus bovis HC5 produces a broad spectrum lantibiotic (bovicin HC5), but S. bovis JB1 does not have antimicrobial activity. Preliminary experiments revealed an anomaly. When S. bovis JB1 cells were washed in stationary phase S. bovis HC5 cell-free culture supernatant, the S. bovis JB1 cells were subsequently able to inhibit hyper-ammonia producing ruminal bacteria (Clostridium sticklandii, Clostridium aminophilum and Peptostreptococcus anaerobius). Other non-bacteriocin producing S. bovis strains also had the ability to bind and transfer semi-purified bovicin HC5. Bovicin HC5 that was bound to S. bovis JB1 was much more resistant to Pronase E than cell-free bovicin HC5, but it could be inactivated if the incubation period was 24 h. Acidic NaCl treatment (100 mM, pH 2.0) liberates half of the bovicin HC5 from S. bovis HC5, but it did not prevent bovicin HC5 from binding to S. bovis JB1. Acidic NaCl liberated some bovicin HC5 from S. bovis JB1, but the decrease in activity was only 2-fold. Bovicin HC5 is a positively charged peptide, and the ability of S. bovis JB1 to bind bovicin HC5 could be inhibited by either calcium or magnesium (100 mM). Acidic NaCl-treated S. bovis JB1 cells were unable to accumulate potassium, but they were still able to bind bovicin HC5 and prevent potassium accumulation by untreated S. bovis JB1 cells. Based on these results, bovicin HC5 bound to S. bovis JB1 cells still acts as a pore-forming lantibiotic.

摘要

牛链球菌HC5产生一种广谱羊毛硫抗生素(牛链菌素HC5),但牛链球菌JB1没有抗菌活性。初步实验揭示了一个异常现象。当在稳定期的牛链球菌HC5无细胞培养上清液中洗涤牛链球菌JB1细胞时,随后牛链球菌JB1细胞能够抑制产生高氨的瘤胃细菌(史氏梭菌、嗜氨基梭菌和厌氧消化链球菌)。其他不产生细菌素的牛链球菌菌株也有结合和转移半纯化牛链菌素HC5的能力。与牛链球菌JB1结合的牛链菌素HC5比无细胞的牛链菌素HC5对链霉蛋白酶E的抗性要强得多,但如果孵育时间为24小时,它会被灭活。酸性氯化钠处理(100 mM,pH 2.0)可从牛链球菌HC5中释放出一半的牛链菌素HC5,但这并不能阻止牛链菌素HC5与牛链球菌JB1结合。酸性氯化钠从牛链球菌JB1中释放出一些牛链菌素HC5,但活性降低仅2倍。牛链菌素HC5是一种带正电荷的肽,牛链球菌JB1结合牛链菌素HC5的能力可被钙或镁(100 mM)抑制。经酸性氯化钠处理的牛链球菌JB1细胞无法积累钾,但它们仍然能够结合牛链菌素HC5并阻止未处理的牛链球菌JB1细胞积累钾。基于这些结果,与牛链球菌JB1细胞结合的牛链菌素HC5仍然作为一种成孔羊毛硫抗生素发挥作用。

相似文献

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The ability of non-bacteriocin producing Streptococcus bovis strains to bind and transfer bovicin HC5 to other sensitive bacteria.非产细菌素的牛链球菌菌株结合博维菌素HC5并将其转移至其他敏感细菌的能力。
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Bovicin HC5, a lantibiotic produced by Streptococcus bovis HC5, catalyzes the efflux of intracellular potassium but not ATP.牛链球菌HC5产生的羊毛硫抗生素Bovicin HC5可催化细胞内钾离子外流,但不能催化ATP外流。
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