Pagès S, Bélaïch A, Fierobe H P, Tardif C, Gaudin C, Bélaïch J P
Bioénergétique et Ingéniérie des Protéines, Centre National de la Recherche Scientifique, Marseilles, France.
J Bacteriol. 1999 Mar;181(6):1801-10. doi: 10.1128/JB.181.6.1801-1810.1999.
The gene encoding the scaffolding protein of the cellulosome from Clostridium cellulolyticum, whose partial sequence was published earlier (S. Pagès, A. Bélaïch, C. Tardif, C. Reverbel-Leroy, C. Gaudin, and J.-P. Bélaïch, J. Bacteriol. 178:2279-2286, 1996; C. Reverbel-Leroy, A. Bélaïch, A. Bernadac, C. Gaudin, J. P. Bélaïch, and C. Tardif, Microbiology 142:1013-1023, 1996), was completely sequenced. The corresponding protein, CipC, is composed of a cellulose binding domain at the N terminus followed by one hydrophilic domain (HD1), seven highly homologous cohesin domains (cohesin domains 1 to 7), a second hydrophilic domain, and a final cohesin domain (cohesin domain 8) which is only 57 to 60% identical to the seven other cohesin domains. In addition, a second gene located 8.89 kb downstream of cipC was found to encode a three-domain protein, called ORFXp, which includes a cohesin domain. By using antiserum raised against the latter, it was observed that ORFXp is associated with the membrane of C. cellulolyticum and is not detected in the cellulosome fraction. Western blot and BIAcore experiments indicate that cohesin domains 1 and 8 from CipC recognize the same dockerins and have similar affinity for CelA (Ka = 4.8 x 10(9) M-1) whereas the cohesin from ORFXp, although it is also able to bind all cellulosome components containing a dockerin, has a 19-fold lower Ka for CelA (2.6 x 10(8) M-1). Taken together, these data suggest that ORFXp may play a role in cellulosome assembly.
编码解纤维梭菌纤维小体支架蛋白的基因已被完全测序,其部分序列曾在早期发表(S. 帕热斯、A. 贝莱什、C. 塔尔迪夫、C. 勒韦尔 - 勒鲁瓦、C. 高丹和J.-P. 贝莱什,《细菌学杂志》178:2279 - 2286,1996;C. 勒韦尔 - 勒鲁瓦、A. 贝莱什、A. 贝尔纳达克、C. 高丹、J.P. 贝莱什和C. 塔尔迪夫,《微生物学》142:1013 - 1023,1996)。相应的蛋白CipC在N端由一个纤维素结合结构域组成,接着是一个亲水区(HD1)、七个高度同源的粘着蛋白结构域(粘着蛋白结构域1至7)、第二个亲水区以及最后一个粘着蛋白结构域(粘着蛋白结构域8),该结构域与其他七个粘着蛋白结构域的同一性仅为57%至60%。此外,在cipC下游8.89 kb处发现的第二个基因编码一种三结构域蛋白,称为ORFXp,其中包括一个粘着蛋白结构域。通过使用针对后者产生的抗血清,观察到ORFXp与解纤维梭菌的细胞膜相关,并且在纤维小体组分中未检测到。蛋白质印迹和生物传感器实验表明,CipC的粘着蛋白结构域1和8识别相同的锚定蛋白,并且对CelA具有相似的亲和力(Ka = 4.8×10⁹ M⁻¹),而ORFXp的粘着蛋白虽然也能够结合所有含有锚定蛋白的纤维小体组分,但对CelA的Ka低19倍(2.6×10⁸ M⁻¹)。综上所述,这些数据表明ORFXp可能在纤维小体组装中发挥作用。