博碩士論文 89224002 詳細資訊




以作者查詢圖書館館藏 以作者查詢臺灣博碩士 以作者查詢全國書目 勘誤回報 、線上人數:31 、訪客IP:3.141.24.134
姓名 郭銀杰(Yin-Chieh Kuo)  查詢紙本館藏   畢業系所 生命科學系
論文名稱 Triton X-100加氧酵素之純化與定性
(The purification of Triton X-100 oxygenase)
相關論文
★ 陰離子界面活性劑sodium dodecylbenzene sulfonate分解菌篩選與脫磺酸酵素研究★ 鄰苯二酚加氧酵素的熱穩定性提昇研究
★ Triton X-100 分解菌之分離和分解酵素之特性研究★ Lactobacillus reuteri於酸性與膽鹽環境中之蛋白質體研究
★ 蕃茄根部受銅逆境之基因調控★ Pseudomonas nitroreducens TX1 異化辛基苯酚聚氧乙基醇之功能性蛋白質體學:以二維電泳法分析等電點4-8之蛋白質表現
★ Pseudomonas nitroreducens TX1之具耗氧活性之麩胺酸合成酶之單離★ 人類細胞株生產含多種亞型的 干擾素-a之蛋白質體學研究
★ 辛基苯酚之分解:分解菌和生物復育之菌相研究★ 分解辛基苯酚聚氧乙基醇之耗氧酵素(二氫硫辛醯胺脫氫酶)的純化與定性
★ AtNPR1轉殖番茄之性狀分析及抗病機制研究★ Pseudomonas putida TX2分解辛基苯酚聚氧乙基醇及其具雌激素活性代謝物之研究
★ 以功能性蛋白質體學研究Pseudomonas nitroreducens TX1生長於辛基苯酚聚氧乙基醇之代謝與逆境反應★ 以功能性蛋白質體學研究Pseudomonas putida TX2生長於 辛基苯酚聚氧乙基醇與辛基苯酚之代謝與逆境反應
★ 以功能性基因體學研究細菌異化辛基苯酚 聚氧乙基醇及抗逆境之基因★ Pseudomonas nitroreducens TX1中二氫硫辛醯胺脫氫酶分解辛基苯酚聚氧乙基醇之研究
檔案 [Endnote RIS 格式]    [Bibtex 格式]    [相關文章]   [文章引用]   [完整記錄]   [館藏目錄]   至系統瀏覽論文 ( 永不開放)
摘要(中) Triton X-100的化學結構為苯環上的酚基在其對位上接一個八個碳的支鏈烷基及平均9.5個單位的聚氧乙烯鏈混合物。此類界面活性劑被廣泛應用於農業、工業以及一般家庭使用,除此之外對於環境中有原油污染時,亦會使用大量Triton X-100將其移除,因此這類物質便會殘留於環境中;會影響土壤中有機污染物的吸附與分佈,且其本身被分解至剩1~2個氧乙烯鏈時,在結構上類似雌激素,具環境荷爾蒙效力,會影響生物體內分泌系統作用。本實驗室從土壤中篩選出,依其在不同受質,Triton X-100、dodecyl octaethoxylate(AEO8)、octyl phenol、catechol與toluene下耗氧活性從37株菌中選擇1株了同時具有Triton X-100、dodecyl octaethoxylate(AEO8)耗氧活性的Pseudomonas sp.(82.10.6)定名為Pseudomonas sp. SH4,利用耗氧儀與LC/MS的研究結果發現Triton X-100在被Pseudomonas sp. SH4分解時主要從聚氧乙烯鏈一個個切除,且NADPH參與酵素反應,我們推測它是一個NADPH-dependent oxygenase;我們經過DEAE-Sepharose、硫酸銨沉澱、Pheny-Sepharose、Mono Q and gel filtraction等純化步驟,獲得一個分子量44 kD的蛋白質,但由於N端胺基酸遇到阻礙無法進行Edman反應,因此利用胰蛋白?將蛋白質切割後經Q-ToF質譜儀分析獲得胜?質量片段與部分胺基酸序列,進入資料庫比對後結果為elongation factor Tu (EF-Tu);EF-Tu在轉譯作用上研究很多,主要是促使aminoacyl-tRNA進入核醣體中的A區形成胜?鏈,而EF-Tu則利用EF-Ts將所帶的GDP與GTP置換,再與另一個帶有胺基酸的tRNA結合再次形成一個新的複合物,週而復始;但EF-Tu占微生物中全部蛋白的5~10 %,這麼多的蛋白質單單只進行轉譯作用似乎有點不合理,因此推測應該還有其他的功能(Kurland, et al., 1995),最近的研究發現,EF-Tu具有在逆境下重新摺疊蛋白質或使蛋白質復性類似chaperon的功能;在滲透壓的逆境下,EF-Tu與thioredoxin有類似功能;在玉米抗熱反應中,也發現EF-Tu有保護其他蛋白質的功能;因此我們所獲得之Triton X-100 oxygenase是否即是EF-Tu需大量純化此酵素,獲得更多序列與生化的特性研究後才能確認。
摘要(英) Triton X-100, octylphenol polyethoxylates, belongs to nonionic surfactant. Alkyl phenol polyethoxylates are used in numberous commercial and industrical products including detergent, dispersants and emalsifiers. Large quantity of surfactants released to the enviroment result in the influence of the fate of organic compound in soils. The degraded products, alkyl phenol derivative, were demonstrated environmental hormone effect. Our previous result suguessed that the degradation of this compound by a bacteria isolated by our lab is by a sequential cleavage of the ethoxylate chain. The enzyme activity involved in the scission of ethoxylate chain was monitored by oxygen uptake rate. The ether cleavage enzyme was demonstrated as a NADPH-dependent oxygenase. The purification of the bound enzyme was carried out by DEAE-Sepharose, ammonium sulfate precipitate, Phenyl-Sepharose, MonoQ. The molecular weight of purified enzyme was 44 kD,analyzed by SDS-PAGE. The N-terminal amino acid was blocked. Therefore a trypsin-digested peptide were sequenced by Q-ToF MS. The two peptides sequences matched to an elongation factor Tu (EF-Tu). EF-Tu has been studied for many year in translation. It promotes aminoacyl-tRNA into the ribosomal A site from an EF-Tu· GTP· aminoacyl-tRNA complex with hydrolysis of GTP. The 5-10 % of total cell protein is EF-Tu and the excess over the other proteins may have other function (Kurland, et al., 1995). The recent studies has been shown that this protein may function as chaperon and thioredoxin. It plays a role in the protection of other protein from heat and osmotic stress. Whether this protein show an enzymatic activity in the oxygenation of oxygen into Triton X-100 needs to be confirmed.
關鍵字(中) ★ 加氧酵素 關鍵字(英) ★ Triton X-100
論文目次 目錄………………………………………………………………….........I
表目錄……………………………………………………………….........Ⅱ
圖目錄….………………………………………………………….….......Ⅲ
壹、緒論………………………………………………………….…........1
一、界面活性劑……………………...............................1
二、界面活性劑對環境的影響………………………………...........2
三、界面活性劑之分解….…………………………………............2
四、環境荷爾蒙……………………….............................3
五、蛋白體學研究...............................................4
六、研究背景與大綱.............................................5
貳、材料與方法…………………………………………………….........8
一、細菌培養與培基…………………………………….................8
二、細菌形態…………………………………….....................9
三、酵素純化……………………………….........................9
四、胺基酸定序……………………………….......................12
五、二維電泳…………………………………….....................13
參、結果…………………………………………………………….........20
一、細菌形態…………………………...............................20
二、酵素純化與序……………………...............................20
三、二維電泳分析…………………………...........................22
肆、討論……………………………………………………….............23
一、菌種形態...................................................23
二、酵素純化……………………….................................23
伍、建議………………………………………………….................29
陸、參考文獻….................................................30
表…………………………………………………………………….........36
圖…………………………………………………………………….........40
附錄...........................................................56
參考文獻 陸. 參考文獻
賴耿陽 譯. 1994. 界面活性劑應用實務. 復漢出版. pp.375-358
楊嘉蓁. 2001.Triton X-100分解菌之分離與分解酵素之特性研究. 國立中央大學生命科學研究所碩士論文.
梁福翥. 2001. Pseudomonas putida SH1異化奈、酚和鄰-甲酚之蛋白體分析.國立中央大學生命科學研究所碩士論文.
Adamowicz, M., P. M. Kelley and K.W. Nickerson. 1991. Detergent (sodium dodecyl sulfate) shock proteins in Escherichia coli. J. Bacteriol. 173:229-233.
Antelmann H., C. Scharf and M. Hecker. 2000. Phosphate Starvation-Inducible Proteins of Bacillus subtilis: Proteomics and Transcriptional Analysis. J. Bacteriol. 182: 4478-4490.
Bernhardt, J., U. Volker, A. Volker, H. Antelmann, R. Schmid, H. Mach and M. Hecker. 1997. Specific and general stress proteins in Bacillus subtilis a two-dimensional electrophoresis study. Microbiol. 143:999-1017.
Berrier, C., G. Alexia, R. Gilbert and G. Alexandre. 2000. Elongation factor Tu and DnaK are transferred from the cytoplasm to the periplasm of Escherichia coli during osmotic downshock presumably via the mechanosensitive channel MscL. J. Bacteriol. 182:248-251.
Bhadula, S. K., T. E. Elthon, J. E. Habben, T. G. Helentjaris, S. Jiao and Z. Ristic. 2001. Heat-stress induced synthesis of chloroplast protein synthesis elongation factor(EF-Tu) in a heat-tolerant maize line. Planta. 212:359-366.
Caldas, T. D., A. EI Yaagoubi and G. Richarme. 1998. Chaperon properties of bacterial elongation factor EF-Tu. J. Biol. Chem. 273:11478-11482.
Chae, H. Z., K. Robison, L. B. Poole, G. Church, G. Storz and S. G. Rhee. 1994. Cloning and sequencing of thiol-specific antioxidant from mammalian brain: alkyl hydroperoxide reductase and thio-specific antioxidant define a large family of antioxidant enzyme. Proc.Natl. Acad. Sci. USA 91:7017-7021.
Dominic, M. J. and G. F. White. 1998. Mechanism for biotransformation of nonylphenol polyethoxylate to xezoesterogens in Pseudomonas putida. J. Bacteriol. 180:4332-4338.
Efroymson, R. A., and M. Alexander. 1991. Biodegradation by Arthrobacter species of hydrocarbons partitioned into an organic solvent. Appled and environmental microbiology. 57:1411-1447.
Eichhorn, E., and T. Leisinger. 2001. Escherichia coli. utilizes methanesulfonate and L-cysteate as sole sulfur source for growth. FEMS Microbiol Lett. 205:271-275
Eichhorn, E., JR., van der Ploeg and T. Leisinger. 1999. Characterization of a two-component alkanesulfonate monooxygenase from Escherichia coli. J. Biol. Chem. 274:26639-26646.
Eichhorn, E., JR., van der Ploeg and T. Leisinger. 2000. Deletion analysis of the Escherichia coli. taurine and alkanesulfonate transport systems. J. Bacteriol. 182:2687-2695.
Eymann, C., H. Mach, C. R. Harwood and M. Hecker. 1996. Phosphate-starvation- inducible proteins in Bacillus subtilis: a two-dimensional gel electrophoresis study. Microbiology. 142:3163-3170.
Flahout, S., J. Frere, P. Boutibonnes and Y. Auffray. 1996. Comparison of the Bile Salts and Sodium Dodecyl Sulfate Stress Responses in Enterococcus faecalis. Applied and Environmental Microbiology. 62:2416–2420.
Gonen, H., C. E. Smith, R. N. Siegel, C. Kahana, C. W. Merrick, K. Chakraburtty, A. L. Schwartz and A. Ciechanover. 1994. Proc. Natl. Acad. Sci. 91:7648-7652.
Gonen, H., D. Dickman, A. L. Schwartz and A. Ciechanover. 1996. Adv. Exp. Med. Biol. 389:209-219.
Gottschal, J. C. 1992. Substrate capturing and growth in various ecosystem. J. Appl. Bacteriol. Symp. Suppl. 73:39s-48s.
Hartke, A., J. C. Giard, J. M. Laplace and Y. Aufferray. 1998. Survival of Enterococcus faecalis in an oligotrophic microcosm: changes in morphology, development of general stress resistance, and analysis of protein synthesis. Appled and environmental microbiology. 64:4238-4245
Hauthal, H. G. 1992. Trends in surfactants. Chim. Oggi. 10:565-601.
Hecker, M., W. Schumann and U. Volker. 1996. Heat shock and general stress response in Bacillus subtilis. Mol. Microbiol. 19:417-428.
Jonker, N., T. P. Knepper and P. D. Voogt. 2001. Aerobic biodegradation studies of nonylphenol ethoxylates in river water using liquid chromatography-electrospray tandem mass spectrometry. Environ. Sci. Technol. 35:335-340.
Julio, J., O. Calvo and M. Alexander. 1994. Roles of bacterial attachment and spontaneous partitioning in the biodegradation of naphthalene initially present in nonaqueous-phase liquids. Appled and environmental microbiology. 60:2643-2646.
Karsa, D. R. in: Industrial applications of surfactants, The Royal Society of Chemistry, London, 1987.
Kawai, F. 1985. Existence of ether bond-cleaving enzyme in polyethylene glycol-utilizing symbiotic mixed culture. FEMS Microbiol. Lett. 30:273-276.
Kudlicki, W., A. Coffman, G. Kramer and B. Hardesty. 1997. Renaturation of rhodanese by translational elongation factor (EF) Tu. Protein refolding by EF-Tu flexing. J. Biol. Chem. 272:32206-32210.
Kurland, C. G., D. Hughes and H.Ehrenberg. 1995. in Escherichia coli and Salmonella typhimurium, (Neidhardt, F. C., ed) pp.979-1004, American Society for Microbiology, Washington, D. C.
Lin, E. M., S. D. Ehrlich, and E. Maguin. 2000. Identification of stress-inducible proteins in Lactobacillus delbrueckii subsp. bulgaricus. Elecrophoresis. 21:2557-2561.
Nickerson, K. W. and A. Aspedon. 1992. Detergent-shock response in enteric bacteria. Mol. Microbiol. 6:957-61. Review
Nimrod, A. C. and W. H. Benson. 1996. Environmental estrogenic effects of alkylphenol ethoxylates. Crit. Rev. Toxicol. 26:335-364.
Nimura, K., H. Takahashi and H. Yoshikawa. 2001. Characterization of the dnaK multigene family in the cyanobacterium Synechococcus sp. strain PCC7942. Journal of Bacteriology. 183:1320-1328.
Poole, L. B. 1996. Flavin-dependent alkyl hydroperoxide reductase from Salmonella typhimurium. 2. cystein disulfides involved in catalysis of peroxide reduction. Biochemistry. 35:65-75.
Poole, L. B. and H. R. Ellis. 1996. Flavin-dependent alkyl hydroperoxide reductase from Salmonella typhimurium. 1. purification and enzymatic activities of overexpressed AhpF and AhpC proteins. Biochemistry. 35:56-64.
Reezal, A., B. Mcneil and J. G. Anderson. 1998. Effect of low-osmolality nutrient media on growth and culturability of Campylobacter sp. Appled and environmental microbiology. 64:4643-4649.
Ren, L. S. K. Lewis and J. J. Lech. 1996. Effects of estrogen and nonylphenol on the post-transcriptional regulation of vitellogenin expression. Chem. Biol. Interact. 100:67-76.
Renner, R. 1997. European bans on surfactant trigger transatlantic debate. Environ. Sci. Technol. 31:316A-320A.
Richarme, G. 1998. Protein-disulfide isomerase activity of elongation factor EF-Tu. Biochem. Biophys. Res. Commun. 252:156-161.
Schmid, R., J. Bernhardt, H. Antelmenn, A. Volker, H. Mach, U. Volker, and M. Hecker. 1997. Identification of vegetative proteins for a two-dimensional protein index of Bacillus subtilis. Microbiology. 143:991–998.
Schulz, A. and S. Wolfgang. 1996. hrcA, the first gene of the Bacillus subtilis dnaK operon encodes a negative regulator of classΙheat shock genes. Journal of Bacteriology. 178:1088-1093.
Scott, M. J. and M. N. Jones. 2000. Review The biodegradation of surfactants in the environment. Biochimica et Biophysica Acta. 1508:235-251.
Stasyk, T., U. Hellman and S. Souchelnytskyi. 2001. Optimizing sample preparation for 2-D electrophoresis. Life Science New. 9:8-13.
Stelmack, P. L., M. R. Gray. and M. A. Pickard. 1999. Bacterial adhesion to soil contaminants in the presence of surfactants. Appled and environmental microbiology. 65:163-168.
Swisher, R. D. 1987. Surfactant biodegradation. Marcel Dekker, New York.
Talmage, S. S. 1994. Environmental and human safety of major surfactant: alcohol ethoxylates and alkylphenol ethoxylate. Lewis, Boca Raton.
Telxeira-Gomes, A., P. A. Cloeckaert and M. S. Zygmunt. 2000. Characterization of heat, oxidative, and acid stress responses in Brucella melitensis. Infec. Immun. 68:2954-2961.
Van Overbeek, L. S., L. Eberl, M. Givskov S. Molin and J. D. Van Elsas. 1995. Survial of, and induced stress resistance in carbon-starved Pseudomonas fluorescens cell residing in soil. Appled and environmental microbiology. 61:4202-4208.
Yuan, S. Y., S. H. Wei and B.V. Chang. 2000. Biodegradation of polycyclic aromatic hydrocarbons by a mixed culture. Chemosphere. 41:1463-1468.
指導教授 黃雪莉(Shir-Ly Huang) 審核日期 2002-7-15
推文 facebook   plurk   twitter   funp   google   live   udn   HD   myshare   reddit   netvibes   friend   youpush   delicious   baidu   
網路書籤 Google bookmarks   del.icio.us   hemidemi   myshare   

若有論文相關問題,請聯絡國立中央大學圖書館推廣服務組 TEL:(03)422-7151轉57407,或E-mail聯絡  - 隱私權政策聲明