Pohlschröder M, Leschine S B, Canale-Parola E
Department of Microbiology, University of Massachusetts, Amherst 01003.
J Bacteriol. 1994 Jan;176(1):70-6. doi: 10.1128/jb.176.1.70-76.1994.
The cellulase system of Clostridium papyrosolvens C7 was fractionated by means of ion-exchange chromatography into at least seven high-molecular-weight multiprotein complexes, each with different enzymatic and structural properties. The molecular weights of the complexes, as determined by gel filtration chromatography, ranged from 500,000 to 660,000, and the isoelectric points ranged from 4.40 to 4.85. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis of the complexes showed that each complex had a distinct polypeptide composition. Avicelase, carboxymethyl cellulase, and xylanase activity profiles differed from protein complex to protein complex. Three of the complexes hydrolyzed crystalline cellulose (Avicel). Activity zymograms of gels (following electrophoresis under mildly denaturing conditions) revealed different carboxymethyl cellulase-active proteins in all complexes but xylanase-active proteins in only two of the complexes. The xylanase specific activity of these two complexes was more than eightfold higher than that of the unfractionated cellulase preparation. A 125,000-M(r) glycoprotein with no apparent enzyme activity was the only polypeptide present in all seven complexes. Experiments involving recombination of samples eluted from the ion-exchange chromatography column indicated that synergistic interactions occurred in the hydrolysis of crystalline cellulose by the cellulase system. We propose that the C. papyrosolvens enzyme system responsible for the hydrolysis of crystalline cellulose and xylan is a multicomplex system comprising at least seven diverse protein complexes.
通过离子交换色谱法将纸解梭菌C7的纤维素酶系统分离成至少七种高分子量多蛋白复合物,每种复合物具有不同的酶学和结构特性。通过凝胶过滤色谱法测定,这些复合物的分子量在500,000至660,000之间,等电点在4.40至4.85之间。对这些复合物进行十二烷基硫酸钠-聚丙烯酰胺凝胶电泳分析表明,每种复合物都有独特的多肽组成。不同蛋白复合物之间的微晶纤维素酶、羧甲基纤维素酶和木聚糖酶活性谱不同。其中三种复合物能水解结晶纤维素(微晶纤维素)。凝胶活性酶谱(在温和变性条件下电泳后)显示,所有复合物中都有不同的羧甲基纤维素酶活性蛋白,但只有两种复合物中有木聚糖酶活性蛋白。这两种复合物的木聚糖酶比活性比未分级的纤维素酶制剂高八倍以上。一种分子量为125,000的无明显酶活性的糖蛋白是所有七种复合物中唯一存在的多肽。涉及从离子交换色谱柱洗脱的样品重组的实验表明,纤维素酶系统在水解结晶纤维素时存在协同相互作用。我们提出,负责水解结晶纤维素和木聚糖的纸解梭菌酶系统是一个多复合物系统,至少由七种不同的蛋白复合物组成。