• 제목/요약/키워드: strain-specific condition

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Bacillus subtilis JS-17이 생산하는 Collagenase의 정제 및 특성 (Purification and Characterization of Bacillus subtilis JS-17 Collagenase.)

  • 임경숙;손승희;강호영;전홍기
    • 생명과학회지
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    • 제15권4호
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    • pp.657-663
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    • 2005
  • Collagnase는 천연 collagen의 triple-stranded helix를 분해할 수 있는 protease로서 조직의 수복과 재생 과정에서 collagen의 재형성과 세포의 이동에 아주 중요한 역할을 하고, 숙주 감염시에는 collagen 기질을 빠르게 분해함으로써 감염을 돕는다. 본 연구에서는 일반가정에서 식용하는 김치로부터 collagenase를 생산하는 균주를 분리하여 Bacillus subtilis로 동정하였으며 이를 Bacillus subtilis JS-17이라 명명하였다. Bacillus subtilis JS-17이 생산하는 collagenase의 최적 생산 조건은 $1.5\%$ fructose, $1\%$ yeast extract, $0.5\%\;K_2HPO_4,\;0.4\%\;KH_2PO_4,\;0.01\%\;MgSO_4{\cdot}4H_2O,\;0.1\%\;citrate,\;0.1\%\;CaCl_2(pH\;7.0)$의 배지에서 $30^{\circ}C$, 200 rpm으로 72시간 동안 배양하는 것이다. 최적 조건에서 Bacillus subtilis JS-17이 생산하는 collagenase를 Amberlite IRA-900 column chromatography, Sephacryl S-300 HR column chromatography, DEAE-Sephadex A-30 column chromatography를 거쳐 분리 정제하고, 얻어진 정제 효소의 특성에 대하여 검토하였다. 정제된 collagenase의 비활성은 growth medium에서 192.1 units/mg였고, $1.1\%$의 수율로 얻어졌으며 분자량은 28 kDa이었다. 정제된 collagenase는 $55^{\circ}C$까지는 $100\%$의 활성을 유지하였고 $65^{\circ}C$에서도 $60\%$ 정도의 활성을 유지하였다. 또한 pH $6.0\~9.8$에서 $60\%$ 이상의 활성을 유지하였다. 정제된 collagenase는 metalloprotease inhibitor인 EDTA와 O-phenanthroline에 의해 효소 활성이 감소하였을 뿐만 아니라 Ammoninum persulfate, L-cysteine, N-ethylmaleimide, SDS, $NaN_3$, NaF, $KMnO_4$, PMSF에 대해서도 활성이 감소하였다. 정제된 collagenase를 여러 가지 기질에 대해 효소 활성을 비교한 결과 collagen (type I)에 대해 기질 특이성을 가지고 있었다.

어미 쥐의 $\omega$3계 및 $\omega$6계 지방산 식이가 제2세대 쥐의 뇌조직 지방산 성분에 미치는 영향 (Effect of Maternal Dietary $\omega$3 and $\omega$6 Polyunsaturated Fatty Acids on the Fatty Acid Composition of the Second Generation Rat Brain)

  • 김미경
    • Journal of Nutrition and Health
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    • 제26권6호
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    • pp.661-671
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    • 1993
  • The change in fatty acid composition in brain tissue of the second generation rats(Sprague-Dawley strain) was studied using four different fat diets(Corn oil=CO, Soybean oil=SO, Perilla oil=PO, Fish oil=FO, 10% by Wt). The experimental diets were started from pregnancy in four different groups, each consisting of 9 rats. The seound generation rats were fed the same diet as their mothers. Animals were anesthetized with ether at 0, 3, 9 & 16 weeks of age. Whole brains were dissected out, brain tissues were, then, homogenized and lipids were extracted from brain tissues. The fatty acid compositions were measured after methylation by gas-liquid chromatography at 0, 3, 9 and 16 weeks of age of offspring. The changes in the relative concentrations of polyunsaturated fatty acids(PUFA) or more specifically docosahexaenoic acid(22 : 6, $\omega$3, DHA), the major $\omega$3 fatty acid component in rat brain at different age were similar to changes in the amount of DNA in brain tissue showing the maximum value during the lactation. The changes in saturated fatty acid(SFA) content showed a contrasting patten to those of PUFA, while monounsaturated fatty acid(MUFA) increased steadily throughout the experimental period. At birth, the relative concentrations of $\omega$3 series fatty acids the relative concentrations of PUFA, MUFA and SFA converged to very similar values respectively regardless of the dietary fatty acid compositions. In brain tissue, it is of value to note that while changes in relative concentrations of linoleic acid (18 : 2, $\omega$6, LA) and arachidonic acid(20 : 4, $\omega$6, AA) showed a precursor-product-like relationship, $\alpha$-linolenic acid(18 : 3, $\omega$3, $\alpha$-LnA) and DHA showed a different pattern. Even when the $\omega$3 fatty acid content in very low in maternal diet(CO), the second generation rat brain tissues appeared to secure DHA content, suggesting an essential role of this fatty acid in the brain. The fact that a large amount of $\alpha$-LnA in the maternal diet did not have a significant effect on the second generation rat brain $\alpha$-LnA content, indicated that DHA seemed essential component for the brain development in our experimental condition. In all groups, the relative content of $\alpha$-LnA in the brain tissues remained relatively constant throughout the experimental period at the very low level. The study of the specific concentrations and essential role(s) of DHA in each parts of brain tissue is needed in more details.

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L-글루타민산 생산균 Brevibacterium lactofermentum의 Bacteriophag에 관한 연구 (Studies on the Bacteriophages of Brevibacterium lactofermentum)

  • 이태우
    • 미생물학회지
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    • 제17권3호
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    • pp.97-130
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    • 1979
  • Many industrial processes those employ bacteria are subjected to phage infestations. In L-glutamic acid fermentions using acetic acid, the phage infestations of the organisms have been recently recognized. In efforts to elucidate the sources of phage contamination involved in the abnormal fermentation, a series of study was conducted to isolate the phages both from the contents of abnormally fermented tanks and the soil or sewage samples from the surroundings of a fermentation factory, to define major charateristics of the phage isolates, and finally to determine the correlation between the phage isolates and temperate phages originating from the miscellaneous bacterial species isolated from the soil or sewage samples. The results are summarized as follows; 1) All phages were isolated from the irregular fermentation tanks and soil or sewage samples, and they were designated as phage PR-1, PR-2, PR-3, PR-4, PR-5, PR-6, and PR-7, in the order of isolation. These PR-series phages were proved to be highly specific for the variant strains of Br. lactofermentum only, namely, phage PR-1 and PR-2 for Br. lactofermentum No. 468-5 and phage PR-3~PR-7 for Br. lactofemrentum No. 2256. By cross-neutralization test, the 7 phagescould be subdivided into 3 groups, i. e., phage PR-I and PR-2 the first, phage PR-3, PR-4, PR-5, PR-6 the second, and the phage PR-7 the third. 2) The 7 phages were virulent under the experimental conditions. They produced plaques with clear and relatively sharp margins without distinct halo. The mean sizes of plaques were 1.5mm in diameter for phage PR-1 and PR-2, and 1. Omm for phages PR-3~PR-7. Double layer technique modified by Hongo and described by Adams, was applied to assay of the PR-series phages. The factors influencing the plaques were as follows;young age cells of host bacteria cultured for 3-6 hours represented the largest number and size, optimum was pH 7.0, incubation temperature was $30^{\circ}C$, and agar concentration and amount of overlayer medium were 0.6% and 0.2ml, respectively. 3) PR-series phages were stable in 0.05M tris buffer and 0.1M ammonium acetate buffer solution. The addition of $5{\times}10^{-3}M$ magnesium ion effectively increased the stability. Thermostability experiments indicated that PR-series phages were stable at the teinperture between $50^{\circ}{\sim}55^{\circ}C$ in nutrient medium, $45^{\circ}{\sim}50^{\circ}C$ in buffer solution. However, the phages mere completely inactivated at 603C and 65$^{\circ}$C within 10 minutes. The phages were stable at the range of pH6~9 in nutrient medium and of pH 8-9 in buffer solution, respectively. Exposure of the phages to UV for 25, 60 and 100 seconds resulted in the complete loss of infectivily, respectively. 4) Electron microscopy showed that PR-series phage particles exhibited rather similar morphology, differing in the size All of PR-series phages had a multilateral head and had a simple long tiil about three to five times long as compared with head. By the size, phage PR-1 and PR-2, PR-3, PR-4, PR-5, and PR-6 and PR-7 were classified into same groups, respectively. The head and tail size of phage PR-1, PR-5, PR-5(T) and PR-7 were 85nm, 74nm and 235nm and 350mm, and 72nm and 210nm, respectively. 5) Nucleic acids of PR-series phages were double stranded DNA. The G+C contents of phage PR-1, PR-5 and PR-7 were 56.1, 52.9 and 53.7, respectively. The values of G+C contents derived from the $T_m$ were in agreement with the chemically determined values. 6) PR-series phages effectively adsorbed on their host bacteria at the rate of more than 90% during 5 min. K value for phage PR-1, PR-5 and PR-7 were calculated to be $6{\times}10^9 ml$ per minute, respectiveky. The pH of the medium did effect adsorption rate, but both temperature and age of host cells did not. Generally, optimum adsorption condition of phages seemed to be almost same as optimum growth conditions of host bacteria. 7) In one-step growth experiments, the latent periods at $30^{\circ}C$ for PR-1, and PR-7 were about 70, 50 and 55 min, respectively. The corresponding average burst size was 200, 70 and 90, respectively. Lpsis period according to the multiplicity of infection and a phage series. In case of m. o. i. 100, strain No. 2256 (PR-5) and No. 468-5(PR-1) failed to grow and turbidity decreased after 50 and 70min, respectively. 8) In the lysate of a plaque purified phage PR-5 infected bacteria, there observed 2 types ofphage particles, i. e., phage PR-5 and PR-5 (T) of similar morphology but differing at the length of phage tail, and phage tail like particles. The phage taillike particles could be divided into 4 types by the length. Induction experiments of Br. lactofermentum with UV irradiation, mitomycin C or bacitracin treatment produced neither phage PR-5 (T) or phage tail-like particles. 9) No lysis occured when the growth of 7 strains of miscellaneous bacteria, isolated from soil and sewage samples, were inoculated with either phage PR-5 (T) or phage tail-like particles the inoculation of phage PR-5 pellet resulted in the growth inhibition of the orgainsms in the spot test. The lysates obtained from 3 miscellaneous soil derived bacteria following mitomycin C treatment the growth of Br. lactofermentum, but did not lyze the bacterium.

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