Sogabe Yuri, Kitatani Tomoya, Yamaguchi Asako, Kinoshita Takayoshi, Adachi Hiroaki, Takano Kazufumi, Inoue Tsuyoshi, Mori Yusuke, Matsumura Hiroyoshi, Sakamoto Tatsuji, Tada Toshiji
Graduate School of Science, Osaka Prefecture University, Sakai, Osaka 599-8531, Japan.
Acta Crystallogr D Biol Crystallogr. 2011 May;67(Pt 5):415-22. doi: 10.1107/S0907444911006299. Epub 2011 Apr 13.
Arabinanase Abnx from Penicillium chrysogenum 31B, which belongs to the GH93 family, releases arabinobiose from the nonreducing terminus of α-1,5-L-arabinan, which is distributed in the primary cell walls of higher plants. Crystal structures of Abnx and of its complex with arabinobiose were determined at the high resolutions of 1.14 Å to an R(work) of 10.7% (R(free) = 12.8%) and 1.04 Å to an R(work) of 10.4% (R(free) = 12.5%). Abnx has a six-bladed β-propeller fold with a typical ring-closure mode called `Velcro', in which the last four-stranded β-sheet is completed by the incorporation of a strand from the N-terminus. Catalytic residues which act as a nucleophile and an acid/base were proposed from the structures and confirmed by site-directed mutagenesis. The substrate-binding groove is enclosed at one end by two residues, Glu64 and Tyr66, which contribute to the recognition of the nonreducing chain end of the polysaccharide. A comparison with the related enzyme Arb93A which has a quite similar overall structure suggested that Abnx has different mechanisms to funnel substrates to the active site and/or to stabilize the transition state.
产黄青霉31B的阿拉伯聚糖酶Abnx属于GH93家族,可从α-1,5-L-阿拉伯聚糖的非还原端释放阿拉伯二糖,α-1,5-L-阿拉伯聚糖分布于高等植物的初生细胞壁中。Abnx及其与阿拉伯二糖复合物的晶体结构分别在1.14 Å的高分辨率下测定,R(work)为10.7%(R(free)=12.8%),以及在1.04 Å的高分辨率下测定,R(work)为10.4%(R(free)=12.5%)。Abnx具有六叶β-螺旋桨折叠结构,带有一种名为“维可牢”的典型环闭合模式,其中最后一个四链β-折叠通过并入一条来自N端的链而完成。从结构中推测出作为亲核试剂和酸/碱的催化残基,并通过定点诱变得到证实。底物结合槽一端由两个残基Glu64和Tyr66封闭,这两个残基有助于识别多糖的非还原链端。与具有非常相似整体结构的相关酶Arb93A的比较表明,Abnx具有不同的机制将底物导向活性位点和/或稳定过渡态。