Watanabe Nobuhiko, Akiba Toshihiko, Kanai Ryuta, Harata Kazuaki
Biological Information Research Center, National Institute of Advanced Industrial Science and Technology (AIST), Central 6, 1-1-1 Higashi, Tsukuba, Ibaraki 305-8566, Japan.
Acta Crystallogr D Biol Crystallogr. 2006 Jul;62(Pt 7):784-92. doi: 10.1107/S0907444906017379. Epub 2006 Jun 20.
An orthorhombic crystal of xylanase II from Trichoderma reesei was grown in the presence of sodium iodide. Crystal structures at atomic resolution were determined at 100 and 293 K. Protein molecules were aligned along a crystallographic twofold screw axis, forming a helically extended polymer-like chain mediated by an iodide ion. The iodide ion connected main-chain peptide groups between two adjacent molecules by an N-H...I-...H-N hydrogen-bond bridge, thus contributing to regulation of the molecular arrangement and suppression of the rigid-body motion in the crystal with high diffraction quality. The structure at 293 K showed considerable thermal motion in the loop regions connecting the beta-strands that form the active-site cleft. TLS model analysis of the thermal motion and a comparison between this structure and that at 100 K suggest that the fluctuation of these loop regions is attributable to the hinge-like movement of the beta-strands.
里氏木霉木聚糖酶II的正交晶体在碘化钠存在的情况下生长。在100 K和293 K下测定了原子分辨率的晶体结构。蛋白质分子沿着晶体学二重螺旋轴排列,形成由碘离子介导的螺旋状延伸的聚合物样链。碘离子通过N-H...I-...H-N氢键桥连接两个相邻分子之间的主链肽基团,从而有助于调节分子排列并抑制具有高衍射质量的晶体中的刚体运动。293 K时的结构在连接形成活性位点裂隙的β链的环区域显示出相当大的热运动。对热运动的TLS模型分析以及该结构与100 K时结构的比较表明,这些环区域的波动归因于β链的铰链状运动。