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Mutation analysis of the cellulose-binding domain of the Clostridium cellulovorans cellulose-binding protein A.

机译:梭状芽胞杆菌纤维素结合蛋白A的纤维素结合域的突变分析。

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摘要

Cellulose-binding protein A (CbpA) has been previously shown to mediate the interaction between crystalline cellulose substrates and the cellulase enzyme complex of Clostridium cellulovorans. CbpA contains a family III cellulose-binding domain (CBD) which, when expressed independently, binds specifically to crystalline cellulose. A series of N- and C-terminal deletions and a series of small internal deletions of the CBD were created to determine whether the entire region previously described as a CBD is required for the cellulose-binding function. The N- and C-terminal deletions reduced binding affinity by 10- to 100-fold. Small internal deletions of the CBD resulted in substantial reduction of CBD function. Some, but not all, point mutations throughout the sequence had significant disruptive effects on the binding ability of the CBD. Thus, mutations in any region of the CBD had effects on the binding of the fragment to cellulose. The results indicate that the entire 163-amino-acid region of the CBD is required for maximal binding to crystalline cellulose.
机译:先前已显示纤维素结合蛋白A(CbpA)介导结晶纤维素底物与梭状芽胞杆菌纤维素酶复合物之间的相互作用。 CbpA包含III族纤维素结合域(CBD),当独立表达时,它与结晶纤维素特异性结合。创建了CBD的一系列N和C端缺失以及一系列小的内部缺失,以确定纤维素结合功能是否需要先前描述为CBD的整个区域。 N和C末端的缺失使结合亲和力降低了10到100倍。 CBD的少量内部缺失导致CBD功能的实质性降低。整个序列中的一些(但不是全部)点突变对CBD的结合能力具有明显的破坏作用。因此,CBD任何区域的突变都对片段与纤维素的结合有影响。结果表明,最大程度地结合结晶纤维素需要CBD的整个163个氨基酸区域。

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