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Proteomic identification of CBM37-containing cellulases produced by the rumen cellulolytic bacterium Ruminococcus albus 20 and their putative involvement in bacterial adhesion to cellulose

机译:瘤胃纤维素分解细菌Ruminococcus albus 20产生的含CBM37的纤维素酶的蛋白质组学鉴定及其在细菌对纤维素的粘附中的可能作用

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The objective of this study was to identify and characterize other proteins than fimbrial proteins potentially involved in R. albus 20 adhesion to cellulose using an adhesion-related antiserum preparation (i.e. anti-Adh serum). From protein fractions of R. albus 20 grown on cellulose, the serum recognized at least 10 cellulose-binding proteins (CBPs), among which homologs of glycoside hydrolases (family 5, 9 and 48) of R. albus 8 (i.e. Cel5G, Cel9B and Cel48A) were identified by a proteomic approach. In strain 20, Cel9B and Cel48A were identified as two major CBPs and as bacterial cell-associated proteins. The anti-Adh serum was also shown to target the C-terminal family 37 carbohydrate-binding module (CBM37) of Cel9B and Cel48A, indicating that this module, unique to R. albus, may play a significant role in bacterial adhesion to cellulose as suggested previously for R. albus 8. Overall, our results support the hypothesis of an adhesion mechanism involving the CBM37 of Cel9B and Cel48A. This adhesion mechanism may not be restricted to these two enzymes but may also involve other CBM37-containing proteins such as Cel5G and the other uncharacterised proteins recognized by the anti-Adh serum.
机译:这项研究的目的是使用粘附相关的抗血清制剂(即抗Adh血清)来鉴定和表征除可能与阿氏杆菌20与纤维素粘附有关的纤维蛋白以外的其他蛋白质。从生长在纤维素上的白.20的蛋白质级分中,血清识别至少10种纤维素结合蛋白(CBP),其中白R8(即Cel5G,Cel9B)的糖苷水解酶(家族5、9和48)的同源物和Cel48A)是通过蛋白质组学方法鉴定的。在菌株20中,Cel9B和Cel48A被鉴定为两个主要CBP和细菌细胞相关蛋白。还显示了抗Adh血清靶向Cel9B和Cel48A的C末端家族37碳水化合物结合模块(CBM37),表明该模块是黄。特有的,可能在细菌与纤维素的粘附中起重要作用,例如总的来说,我们的结果支持了涉及Cel9B和Cel48A的CBM37的粘附机制的假说。这种粘附机制可能不仅限于这两种酶,还可能涉及其他含CBM37的蛋白质,例如Cel5G和抗Adh血清识别的其他未表征的蛋白质。

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