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从纤维素分解厌氧瘤胃细菌白色瘤胃球菌制备纤维素酶及其从细菌细胞壁的释放。

Preparation of the cellulase from the cellulolytic anaerobic rumen bacterium Ruminococcus albus and its release from the bacterial cell wall.

作者信息

Wood T M, Wilson C A, Stewart C S

出版信息

Biochem J. 1982 Jul 1;205(1):129-37. doi: 10.1042/bj2050129.

DOI:10.1042/bj2050129
PMID:7126173
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1158455/
Abstract
  1. Most of the cellulase (CM-cellulase) elaborated by the rumen bacterium Ruminococcus albus strain SY3, which was isolated from a sheep, was cell-wall-bound. 2. The enzyme could be released readily by washing either with phosphate buffer or with water. 3. The amount of enzyme released was affected by the pH and ionic strength of the phosphate buffer. 4. The cell-wall-bound enzyme was of very high molecular weight (>>1.5x10(6)) as judged by its chromatographic behaviour on Sephacryl S-300. 5. The molecular weight of the extracellular enzyme was variable and depended on the culture conditions. 6. When cellobiose was used as the energy source and the medium contained rumen fluid (30%), the extracellular enzyme was, in the main, of high molecular weight. 7. When cellulose replaced the cellobiose, the cell-free culture filtrate contained only low-molecular-weight enzyme (M(r) approx. 30000) in late-stationary-phase cultures (7 days). 8. Cultures that did not contain rumen fluid contained mainly low-molecular-weight enzyme. 9. Under some conditions the high-molecular-weight enzyme could be broken down to some extent into low-molecular-weight enzyme by treatment with dissociating agents. 10. Cell-free and cell-wall-bound enzymes showed the same relationship when the change in fluidity effected by them on a solution of CM-cellulose was plotted against the corresponding increase in reducing sugars, suggesting that the enzymes were the same. 11. It is possible that R. albus cellulase exists as an aggregate of low-molecular-weight cellulase components on the bacterial cell wall and in solution under certain conditions.
摘要
  1. 从绵羊体内分离出的瘤胃细菌白色瘤胃球菌SY3菌株所产生的大部分纤维素酶(CM - 纤维素酶)都与细胞壁结合。2. 用磷酸盐缓冲液或水洗涤即可轻易释放出该酶。3. 释放出的酶量受磷酸盐缓冲液的pH值和离子强度影响。4. 根据其在Sephacryl S - 300上的色谱行为判断,与细胞壁结合的酶分子量非常高(>>1.5×10⁶)。5. 胞外酶的分子量可变,取决于培养条件。6. 当以纤维二糖作为能源且培养基中含有瘤胃液(30%)时,胞外酶主要是高分子量的。7. 当纤维素取代纤维二糖时,在稳定期后期培养(7天)的无细胞培养滤液中仅含有低分子量的酶(分子量约为30000)。8. 不含瘤胃液的培养物主要含有低分子量的酶。9. 在某些条件下,通过用解离剂处理,高分子量的酶可在一定程度上分解为低分子量的酶。10. 当将无细胞酶和与细胞壁结合的酶对CM - 纤维素溶液流动性的影响与还原糖相应增加量作图时,它们显示出相同的关系,这表明这些酶是相同的。11. 在某些条件下,白色瘤胃球菌纤维素酶可能以低分子量纤维素酶组分的聚集体形式存在于细菌细胞壁上以及溶液中。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85a3/1158455/5d4d761fc803/biochemj00372-0136-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85a3/1158455/5d4d761fc803/biochemj00372-0136-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85a3/1158455/5d4d761fc803/biochemj00372-0136-a.jpg

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Appl Environ Microbiol. 1978 Jan;35(1):156-65. doi: 10.1128/aem.35.1.156-165.1978.
3
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9
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10
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