Mattinen M L, Kontteli M, Kerovuo J, Linder M, Annila A, Lindeberg G, Reinikainen T, Drakenberg T
VTT, Chemical Technology, Finaland.
Protein Sci. 1997 Feb;6(2):294-303. doi: 10.1002/pro.5560060204.
Three-dimensional solution structures for three engineered, synthetic CBDs (Y5A, Y31A, and Y32A) of cellobiohydrolase I (CBHI) from Trichoderma reesei were studied with nuclear magnetic resonance (NMR) and circular dichroism (CD) spectroscopy. According to CD measurements the antiparallel beta-sheet structure of the CBD fold was preserved in all engineered peptides. The three-dimensional NMR-based structures of Y31A and Y32A revealed only small local changes due to mutations in the flat face of CBD, which is expected to bind to crystalline cellulose. Therefore, the structural roles of Y31 and Y32 are minor, but their functional importance is obvious because these mutants do not bind strongly to cellulose. In the case of Y5A, the disruption of the structural framework at the N-terminus and the complete loss of binding affinity implies that Y5 has both structural and functional significance. The number of aromatic residues and their precise spatial arrangement in the flat face of the type I CBD fold appears to be critical for specific binding. A model for the CBD binding in which the three aligned aromatic rings stack onto every other glucose ring of the cellulose polymer is discussed.
利用核磁共振(NMR)和圆二色性(CD)光谱研究了里氏木霉纤维二糖水解酶I(CBHI)的三种工程化合成纤维素结合结构域(Y5A、Y31A和Y32A)的三维溶液结构。根据CD测量结果,所有工程化肽中纤维素结合结构域折叠的反平行β-折叠结构得以保留。基于三维核磁共振的Y31A和Y32A结构显示,由于纤维素结合结构域平面上的突变,仅出现了微小的局部变化,该平面预期会与结晶纤维素结合。因此,Y31和Y32的结构作用较小,但其功能重要性很明显,因为这些突变体与纤维素的结合不强。对于Y5A而言,N端结构框架的破坏以及结合亲和力的完全丧失意味着Y5具有结构和功能双重意义。I型纤维素结合结构域折叠平面上芳香族残基的数量及其精确的空间排列似乎对特异性结合至关重要。文中讨论了一种纤维素结合结构域结合模型,其中三个对齐的芳香环堆叠在纤维素聚合物的每隔一个葡萄糖环上。