• 제목/요약/키워드: yeast cell wall protein

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형광 리포터를 활용한 효모 단백질 잡종 기법 개발 (Yeast two-hybrid assay with fluorescence reporter)

  • 박성균;서수련;황병준
    • 미생물학회지
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    • 제55권3호
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    • pp.199-205
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    • 2019
  • Yeast two-hybrid는 특정 단백질에 대한 상호작용 파트너 단백질의 선별을 위한 방법으로 개발되었다. 하지만 대규모 단백질 상호작용체 분석을 수행하기에 요구되는 노동과 대량의 한천배지 사용에 따른 문제에 의해 널리 사용되지 못하고 있다. 따라서 본 연구에서는 새로운 리포터 시스템을 yeast two-hybrid 방법에 도입하여 fluorescence-activated cell sorting (FACS) 또는 magnetic-activated cell sorting (MACS)를 이용하여 상호작용 파트너 단백질을 포함하는 효모 클론을 손쉽게 선별할 수 있도록 하였다. 새로운 리포터 시스템은 c-myc 항원 결정기가 총 10번 반복되는 형태로 효모 표면에 발현되도록 하였으며, p53과 SV40 T항원을 이용한 실험을 통하여 리포터 단백질의 정상적인 발현을 flow cytometry 분석을 통하여 확인하였다. 따라서, 새로운 리포터 시스템을 도입한 yeast two-hybrid 방법은 대규모 상호작용체 분석을 위해 필요한 노력을 현저히 줄일 수 있을 것으로 기대한다.

Dicyma sp. YCH-37이 생산하는 효모세포벽 용해효소 I. 생산균주의 분리 및 효소의 정제

  • 정희철;함병권;배동훈;하세가와 토루;유주현
    • 한국미생물·생명공학회지
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    • 제24권4호
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    • pp.445-451
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    • 1996
  • The strain YCH-37, which produces yeast cell wall lytlc enzyme, was isolated from soil. From the microscopic observation, morphological and cultural characteristics, this strain was identified to fungus, Dicyma sp. So, we named this strain as Dicyma sp. YCH-37. The lytic enzyme effectively lysed Salmonella typhimurium among intact living bacteria and Torulopsis, Hansenula, Zygosaccharomyces among intact living yeast, as well as autoclaved yeast strains. The yeast cell wall lytic enzyme was succesively purified to 204 folds with 13% yields through yeast glucan affinity adsorption and DEAE-cellulose column chromatography. The enzyme was identified to monomeric protein with molecular weight of 25,000 daltons from the results of SDS-PAGE and gel filtration. The optimum pH and temperature for the yeast lytic activity were 8.0 and 50$\circ$C, respectively. The enzyme was stable up to 40$\circ$C, and between pH 4.0-pH 10.0.

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Cloning and Expression of a Yeast Cell Wall Hydrolase Gene (ycl) from Alkalophilic Bacillus alcalophilus subsp. YB380

  • Ohk, Seung-Ho;Yeo, Ik-Hyun;Yu, Yun-Jung;Kim, Byong-Ki;Bai, Dong-Hoon
    • Journal of Microbiology and Biotechnology
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    • 제11권3호
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    • pp.508-514
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    • 2001
  • A stuructural gene (ycl) encoding novel yeast cell wall hydrolase, YCL, was cloned from alkalophilic Bacillus alcalophilus subsp. YB380 by PCR, and transformed into E. coli JM83. Based on the N-terminal and internal amino acid sequences of the enzyme, primers were designed for PCr. The positive clone that harbors 1.8 kb of the yeast cell wall hydrolase gene was selected by the colony hybridization method with a PCR fragment as a probe. According to the computer analysis, this gene contained a 400-base-paired N-terminal domain of the enzyme. Based on nucletide homology of the cloned gene, a 850 bp fragment was amplified and the C-terminal domain of the enzyme was sequenced. With a combination of the two sequences, a full nucleotide sequence for YCL was obtained. This gene, ycl, consisted of 1,297 nucleotides with 27 nucleotides with 27 amino acids of signal sequence, 83 redundant amino acids of prosequence, and 265 amino acids of the mature protein. This gene was then cloned into the pJH27 shuttle vector and transformed into the Bacillus subtilis DB104 to express the enzyme. It was confirmed that the expressed cell wall hydrolase that was produced by Bacillus subtilis DB104 was the same as that of the donor strain, by Western blot using polyclonal antibody (IgY) prepared from White Leghorn hen. Purified yeast cell wall hydrolase and expressed recombinant protein showed a single band at the same position in the Western blot analysis.

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Chemical composition and standardized ileal digestibility of crude protein and amino acid in whole yeast and autolyzed yeast derived from sugarcane ethanol production fed to growing pigs

  • Kaewtapee, Chanwit;Jantra, Nontawut;Petchpoung, Krittaya;Rakangthong, Choawit;Bunchasak, Chaiyapoom
    • Animal Bioscience
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    • 제35권9호
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    • pp.1400-1407
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    • 2022
  • Objective: This research determined the chemical composition and the apparent and standardized ileal digestibility (AID and SID) of crude protein (CP) and amino acids (AA) in whole yeast and autolyzed yeast derived from sugarcane ethanol production fed to growing pigs. Methods: Six growing pigs were randomly allocated in a replicated 3×3 Latin square design with 3 diets and 3 periods of 7 days each, resulting in a total of 6 experimental replications. Three assay diets were formulated using whole yeast, autolyzed yeast, or soybean meal as the sole sources of dietary CP and AA. Pigs were allowed to adapt to the assay diets for 5 days. Thereafter, ileal digesta samples were collected continuously for 8 hours on days 6 and 7. Results: There was no difference in the chemical composition between whole yeast and autolyzed yeast, but whole yeast had low digestibility of CP and AA due to the presence of a rigid cell wall. As conducting autolysis can induce cell wall damage, the AID and SID of CP and AA were greater in autolyzed yeast than in whole yeast. Conclusion: The information obtained on the SID of CP and AA in both yeast products can be used for the accurate estimation of the bioavailability of CP and AA in feed formulations. The yeast products derived from sugarcane ethanol production are an alternative protein source in pig diets.

Leakage of Cellular Materials from Saccharomyces cerevisiae by Ohmic Heating

  • Yoon, Sung-Won;Lee, Chung-Young-J.;Kim, Ki-Myung;Lee, Cherl-Ho
    • Journal of Microbiology and Biotechnology
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    • 제12권2호
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    • pp.183-188
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    • 2002
  • The ohmic heating of foods for sterilization provides a shorter come-up time compared to conventional thermal processes. The electric fields as well as the heat generated by ohmic heating facilitate germicidal effects. In the present study, the effect of ohmic heating on the structure and permeability of the cell membrane of yeast cells, Saccharomyces cerevisae, isolated from Takju (a traditional Korean rice-beer), was investigated. The ohmic heating was found to translocate intracellular protein materials out of the cell wall, and the amount of exuded protein increased significantly as the electric field increased from 10 to 20 V/cm. As higher frequencies were applied, more materials were exuded. Compared to conventional heating, more amounts of proteins and nucleic acids were exuded when these cells were treated with ohmic heating. The molecular weights of the major exuded proteins ranged from 14 kDa to 18 kDa, as analyzed by Tricine-SDS PAGE. A TEM study also confirmed the leakage of cellular materials, thus indicating irreversible damage to the cell wall by ohmic heating. It was, therefore, concluded that the electric fields generated by ohmic heating induced electroporation, causing irreversible damage to the yeast cell wall and promoting the translocation of intracellular materials.

Characterization of Cell Wall Proteins from the soo1-1/ret1-1 Mutant of Saccharomyces cerevisiae

  • Lee, Dong-Won;Kim, Ki-Hyun;Chun, Se-Chul;Park, Hee-Moon
    • Journal of Microbiology
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    • 제40권3호
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    • pp.219-223
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    • 2002
  • In order to investigate the function of Soo1p/${\alpha}$-COP during post-translational modification and intra-cellular transport of cell wall proteins in Saccharomyces cerevisiae, cell wall proteins from the soo1-1/ret1-1 mutant cells were analyzed. SDS-PAGE analysis of biotin labeled cell wall proteins suggested that the soo1-1 mutation impairs post-translational modification of cell wall proteins, such as N- and/ or Ο-glycosylation. Analysis of cell wall proteins with antibodies against ${\beta}$-1,3-glucan and ${\beta}$-1,6-glucan revealed alteration of the linkage between cell wall proteins and ${\beta}$-glucans in the soo1-1 mutant cells. Compositional sugar analysis of the cell wall proteins also suggested that the soo1-1 mutation impairs glycosylation of cell wall protein in the ER, which is crucial for the maintenance of cell wall integrity.

A New Method of Extracting Whole Cell Proteins from Soil Microorganisms Using Pre-treatment of Ammonium Hydroxide

  • Kang, Han-Chul;Kim, Jong-Bum;Roh, Kyung Hee;Yoon, Sang-Hong
    • Journal of Applied Biological Chemistry
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    • 제56권3호
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    • pp.171-177
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    • 2013
  • Efficient extraction of total proteins from soil microorganisms is tedious because of small quantity. In this regard, an improved method for extraction of whole cell proteins is developed from soil microorganisms, Saccharomyces cerevisiae and Pichia pastoris. of which the cell wall are very strong. Pretreatment with NH4OH prior to the final extraction using NaOH/SDS was tried under the basis that ammonium ion was possible to enhance the permeability and/or to weaken the yeast cell walls. The pre-treatment of yeast cells with NH4OH drastically enhanced the protein extraction when it was compared with control (without NH4OH pre-treatment). At the pre-treatment of 0.04 N NH4OH at pH 9.0, about 3 fold of proteins was obtained from p. pastoris. Ammonium hydroxide appears to penetrate into the yeast cell walls more readily at basic pH. The effect of NH4OH pretreatment was pH dependent. The methods developed in this experiment might be applicable for an effective extraction of yeast proteins for the purpose of biochemical studies, especially proteomic analysis.

Yeast Single-Cell Protein Production Using Potato Processing Waste Water

  • Park, Eung-Yeal;Crawford, Don-L.;Korus, Roger-A.;Heimsch, Richard-D.
    • Journal of Microbiology and Biotechnology
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    • 제1권3호
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    • pp.212-219
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    • 1991
  • Four species of yeast, Saccharomyces cerevisiae, Candida utilis, Saccharomycopsis flbuligera, and Schwanniomyces castellii were evaluated for their ability to bioconvert potato processing waste water into microbial protein and the resulting single-cell proteins were evaluated as protein sources for rainbow trout, using in vitro analyses. The studies indicated that Schwanniomyces castellii, which utilizes starch dircetly and converts it into cell mass efficiently, was suitable for the bioconversion. In the single-stage continuous bioconversion, the yield S. castellii cell mass, which contained approximately 37% protein, was 77%, at dilution rate 0.25 $h^{-1}$. Reduction of total carbohydrate was 81%. During batch fermentations, cell mass yield was about 72% and total carbohydrate reduction was 81%. Among the yeasts tested, S. castellii possessed the most fragile cell wall and had a favorable amino acid profile for salmonid fish; protein score of 86% (Met). In an in vitro pepsin digestibility test 80% digestibility (23~38% above control) was observed when cells were pre-heated in a steam bath for 30 min. Results presented should be regarded as being preliminary in nature because they were derived from single experiments.

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Arthrobacter luteus가 생산하는 AL-Protease의 효모세포벽 용해 촉진작용 (The Synergistic Action of the AL-Protease from Arthrobacter luteus on the Lysis of Yeast Cell Walls)

  • 오홍록;선진승
    • 한국식품영양과학회지
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    • 제14권4호
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    • pp.401-408
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    • 1985
  • 효모세포벽 용해효소의 일종인 Zymolyase$(endo-{\beta}-1\;,3-glucanase)$와 더불어 Arthrobacter luteus로 부터 생산되었고, 또한 Zymolyase의 조효소중에서 발견된 바 있는 염기성 AL-protease의 효모세포벽 용해작용을 S. sake의 생세포와 그 세포벽 표품(標品)을 사용하여 조사하였다. AL-protease의 효모 생세포에 대한 용해활성은 그 단독작용만으로는 지극히 미약하였으나, Zymolyase와의 복합작용에 의해서 용해활성은 고도로 상승하였다. 효모생세포를 AL-protease와 Zymolyase로써 단계적인 처리를 할 경우, 효모세포는 AL-protease로 전처리된 뒤에 Zymolyase로 처리되는 처리 순서에 한하여 효과적으로 용해되었다. 이러한 AL-protease의 촉진적 작용은 AL-protease처럼 염기성이고 serine protease로 알려진 몇가지 시판의 효소들 중에서는 발견되지 않았으며, 또한 AL-protease의 이러한 작용은 실험에 사용된 효모들의 배양조건 및 균종에 따라서 커다란 영향을 받는 것으로 밝혀졌다. AL-protease는 효모세포벽 표품(標品)으로부터 일정량의 peptide와 상당량의 당을 유리시키고 있으나, 그 세포벽을 66% 이상은 용해시키지 못하였다. 반면에, Zymolyase는 그 단독작용으로도 효모세포벽을 거의 완전히 용해시킬 수 있었다. 이상의 실험결과를 기초로 하여, S. sake 세포벽의 용해에 있어서 AL-protease의 효소적 작용은, 먼저 AL-protease가 mannan과 단백질로 구성되는 세포벽 표층부에 결합하고, 이어서 그들의 구조를 변화시킴으로써, Zymolyase를 세포벽의 외부로 부터 알카리 불용성 glucan으로 구축되고 있는 세포벽 내부의 골격구조로까지의 침투를 촉진시키는 것으로 추론되었다.

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효모단백질내의 셀레늄 분포 및특정단백질내의 셀레노메티오닌 분석 (The Distribution of Selenium in Proteins of Saccaromyces Cerevisia and Analysis of Selenomethionine in Specific Protein)

  • 심희영;안상욱;안용현
    • 대한화학회지
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    • 제47권4호
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    • pp.363-369
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    • 2003
  • 효모를 최적 배양조건에서 키운후 $1.14{\times}10_-3 M$의 셀레늄을 배양액에 가하여 24시간 배양한 후 효모를 얻는다. 효모의 건조중량에 대하여 약 $0.1{\%}$(w/w)이상의 셀레늄을 함유하는 고농도의 셀레늄-효모를 얻었고 세포벽에 부착된 무기셀레늄은 세척후 MBRT과정으로 확인하였다. MBRT에서 15분 이상 푸른색이 지속되는 결과로 무기이온의 세포벽 흡착이 거의 없음을 확인하였다. 셀레늄이 함유된 효모를 초음파로 분해한 후 $80{\%}(NH_4)_2SO_4$ 용액을 이용하여 단백질을 부분 정제하였고 ICP-AES로 측정된 효모내의 셀레늄 농도와 비교하였을 때 약 $60.6{\%}$의 셀레늄이 단백질 내에 존재함을 확인하였다. 전기이동으로 단백질을 분리하여 확인한 결과 많은 양이 발현된 단백질 띠에서는 상대적으로 셀레늄의 농도가 높았다. 그중 47 kDa 단백질의 경우 69.5 ${\mu}$g Se/g의 농도로 가장 많은 함량을 보였다. 이 단백질을 PVDF 막에 electroblotting하여 분리하였고 이를 산으로 가수분해하여 얻어진 아미노산들을 PITC와 반응시켜 유도체를 얻었다. 아미노산유도체들을 HPLC로 분리 확인한 결과 셀레노메티오닌의 상대적인 비율이 총아미노산의 $2{\%}$로 얻어졌다. 이러한 셀레늄은 단백질과 킬레이트의 형태로 존재하는 것이 아니고 대부분이 셀레늄의 유기체인 셀레노메티오닌으로 효모 내에서 생합성 된다고 볼 수 있다.