Sakon J, Irwin D, Wilson D B, Karplus P A
Section of Biochemistry, Molecular and Cell Biology, Cornell University, Ithaca, New York 14853, USA.
Nat Struct Biol. 1997 Oct;4(10):810-8. doi: 10.1038/nsb1097-810.
Cellulase E4 from Thermomonospora fusca is unusual in that it has characteristics of both exo- and endo-cellulases. Here we report the crystal structure of a 68K M(r) fragment of E4 (E4-68) at 1.9 A resolution. E4-68 contains both a family 9 catalytic domain, exhibiting an (alpha/alpha)6 barrel fold, and a family III cellulose binding domain, having an antiparallel beta-sandwich fold. While neither of these folds is novel, E4-68 provides the first cellulase structure having interacting catalytic and cellulose binding domains. The complexes of E4-68 with cellopentaose, cellotriose and cellobiose reveal conformational changes associated with ligand binding and allow us to propose a catalytic mechanism for family 9 enzymes. We also provide evidence that E4 has two novel characteristics: first it combines exo- and endo-activities and second, when it functions as an exo-cellulase, it cleaves off cellotetraose units.
来自栖热单孢菌的纤维素酶E4不同寻常,因为它兼具外切和内切纤维素酶的特性。在此我们报道了E4的一个68K M(r)片段(E4-68)在1.9埃分辨率下的晶体结构。E4-68既包含一个具有(α/α)6桶状折叠的第9家族催化结构域,也包含一个具有反平行β-折叠片层结构的第III家族纤维素结合结构域。虽然这些折叠结构都不是新颖的,但E4-68提供了首个具有相互作用的催化结构域和纤维素结合结构域的纤维素酶结构。E4-68与纤维五糖、纤维三糖和纤维二糖的复合物揭示了与配体结合相关的构象变化,并使我们能够提出第9家族酶的催化机制。我们还提供证据表明E4有两个新特性:其一,它兼具外切和内切活性;其二,当它作为外切纤维素酶发挥作用时,它会切下纤维四糖单元。