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Bacillus sp. K-1과 그의 변이주가 생산하는 Biopolymer의 물성에 관한 연구
김성호,임무현,정낙현,Kim, Sung-Ho,Yim, Moo-Hyun,Choung, Nack-Hyun 한국응용생명화학회 1996 Applied Biological Chemistry (Appl Biol Chem) Vol.44 No.1
볏짚으로부터 분리한 Bacillus sp. K-1과 그 변이주 KM-21과 KM-83이 생산하는 biopolymer들의 물성학적 성질을 비교 조사하였다. 은도에 따른 biopolymer의 겉보기 점도는 온도가 높아짐에 따라 감소하였으며, $20^{\circ}C$일 때에 비해 $80^{\circ}C$일 때 KM-21 균주가 생산하는 biopolymer는 1.7배, K-1균주의 biopolymer는 2.7배, KM-83 균주의 biopolymer는 1.9배 정도로 낮은 점성을 보였다. Biopolymer 용액의 점성은 농도가 증가함에 따라 크게 증가하여 6%의 농도에서 가장 높게 나타났으며, 2%, 4%, 6% 모두 pseudoplastic특성을 나타내어 농도에 대한 의존성이 매우 높았다. 6%의 농도일 때 2%의 농도와 비교해서 전단 속도가 $93\;sec^{-1}$ 일 때 KM-21은 26배, K-1은 56배, KM-83은 28배로 모균주의 biopolymer인 K-1이 가장 높은 점성을 보었다. pH에 따른 점도 변화는 pH7.0에서 최고를 보였으며, 알칼리성 조건일 때에 비해 산성조건에서 상대적으로 낮은 값의 점성을 보였다. The rheological properties of biopolymers produced by Bacillus sp. K-1 and its mutant strains(KM-21, KM-83) were studied. Apparent viscosity of biopolymers decreased as rising the temperature. The biopolymer produced by KM-21 strain showed 1.7 times low viscosity, 2.7 times low viscosity by K-1 and 1.9 times low viscosity by KM-83 at $80^{\circ}C$ compared with at $20^{\circ}C$ respectively. The viscosity of biopolymer solution also increased with increasing the polymer concentration and showed pseudoplastic characteristics which is high temperature dependency in all concentration. The change of the biopolymer viscosity on the pH showed the highest value at the pH 7.0 and it showed lower at acidic condition than at alkaline condition comparatively.
Bacillus sp . K - 1 과 그의 변이주가 생산하는 Biopolymer 의 물성에 관한 연구
정낙현(Nack Hyun Choung),김성호(Sung Ho Kim),임무현(Moo Hyun Yim) 한국응용생명화학회 1996 Applied Biological Chemistry (Appl Biol Chem) Vol.39 No.3
The rheological properties of biopolymers produced by Bacillus sp. K-1 and its mutant strains(KM-21, KM-83) were studied. Apparent viscosity of biopolymers decreased as rising the temperature. The biopolymer produced by KM-21 strain showed 1.7 times low viscosity, 2.7 times low viscosity by K-1 and 1.9 times low viscosity try KM-83 at 80℃ compared with at 20℃ respectively. The viscosity of biopolymer solution also increased with increasing the polymer concentration and showed pseudoplastic characteristics which is high temperature dependency in all concentration. The change of the biopolymer viscosity on the pH showed the highest value at the pH 7.0 and it showed lower at acidic condition than at alkaline condition comparatively.
홍성표(Seoung-Pyo Hong),임무현(Moo-Hyun Yim),주현규(Hyun-Kyu Joo) 한국생약학회 1976 생약학회지 Vol.7 No.2
The effect of alcohol extract of Ginseng orally administered on the changes of the body weight of rats was investigated. The body weight of rats during feeding with 0.1% Ginseng extract added in the diet was measured for 2 months and compared with that of normal rats. The result obtained in the experiment indicated that the change of body weight of rats (140∼170g) was not affected by Ginseng.
Bacillus subtilis YG-95가 생산하는 protease의 정제와 특성
변영각,김성호,주현규,이갑상,임무현,Byun, Young-Gag,Kim, Seong-Ho,Joo, Hyun-Kyu,Lee, Gap-Sang,Yim, Moo-Hyun 한국응용생명화학회 1998 Applied Biological Chemistry (Appl Biol Chem) Vol.43 No.4
Bacillus subtillis YG-95가 생산하는 protease를 ammonium sulfate$(35{\sim}85%)$ precipitation, DEAE-separose 6B, sephadex G-100을 통해 분리, 정제하였고 정제된 효소의 특성을 조사하였다. SDS-PAGE로 확인된 효소의 분자량은 약 43 kilodalton이었다. 효소반응의 최적 pH 및 최적온도는 각각 약 pH 10.0와 $55^{\circ}C$이었으며, 효소는 $pH\;5{\sim}12$ 까지 넓은 pH범위에서 안정성을 보였고, $45^{\circ}C$까지의 온도에서 안정하였다. 본 효소는 $Fe^{3+}$와 $Al^{3+}$에 의해서 활성이 저해되었으며, 저해제 중에서는 O-Phenanthroline, PMSF, SDS에 의해서 80%이상 저해를 받았고 SPI에 대한 기질 친화도는 $K_m$은 1.28 mg/mL이었다. The protease produced by Bacillus subtilis YG-95 was purified by precipitating with ammonium sulfate, DEAE-sepharose 6B and Sephadex G-100 column chromatogtaphies and its purified enzymological characteritics were investigated. The molecular weight of purified protease was estimated about 43kilodalton by SDS PAGE The optimum pH and temperature for the purified protease activity were pH 10.0 and $55^{\circ}C$, respectively. The enzyme was stable in broad range of pH 5.0 to 12.0. and at the below $45^{\circ}C$. The purified enzyme activty was inhibited by $Fe^{3+}$ and $Al^{3+}$. The activity was significantly inhibited more than 80% by O-Phenanthroline, PMSF and SDS. The $K_m$ value of the purified enzyme against Soy Protein Isolate as a substrate was 1.28 mg/ml.