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相思子毒素-a的晶体结构,分辨率为2.14埃。

Crystal structure of abrin-a at 2.14 A.

作者信息

Tahirov T H, Lu T H, Liaw Y C, Chen Y L, Lin J Y

机构信息

Department of Physics, National Tsing Hua University, Hsinchu, Taiwan, Republic of China.

出版信息

J Mol Biol. 1995 Jul 14;250(3):354-67. doi: 10.1006/jmbi.1995.0382.

Abstract

The crystal structure of abrin-a, a type II ribosome-inactivating protein from the seeds of Abrus precatorius, has been determined from a novel crystalline form by the molecular replacement method using the coordinates of ricin. The structure has been refined at 2.14 A to a R-factor of 18.9%. The root-mean-square deviations of bond lengths and angles from the standard values are 0.013 A and 1.82 degrees, respectively. The overall protein folding is similar to that of ricin, but there are differences in the secondary structure, mostly of the A-chain. Several parts of the molecular surface differ significantly; some of them are quite near the active site cleft, and probably influence ribosome recognition. The positions of invariant active site residues remain the same, except the position of Tyr74. Two water molecules of hydrogen-bonded active site residues have been located in the active site cleft. Both of them may be responsible for hydrolyzing the N-C glycosidic bond. The current abrin-a structure is lactose free; this is probably essential for abrin-a crystallization. The B-chain is a glycoprotein, and the positions of several sugar residues of two sugar chains linked to earlier predicted glycosylation sites were determined. One of the sugar chains is a bridge between two neighboring molecules, since one of its mannose residues is connected to the galactose binding site of the neighboring molecule. Another sugar chain covers the surface of the B-chain.

摘要

相思豆毒素a(Abrin-a)是一种来自相思豆种子的II型核糖体失活蛋白,其晶体结构已通过分子置换法,利用蓖麻毒素的坐标从一种新的晶体形式中确定。该结构在2.14埃分辨率下进行了精修,R因子为18.9%。键长和键角与标准值的均方根偏差分别为0.013埃和1.82度。蛋白质的整体折叠与蓖麻毒素相似,但二级结构存在差异,主要在A链。分子表面的几个部分有显著差异;其中一些非常靠近活性位点裂隙,可能影响核糖体识别。除了Tyr74的位置外,不变活性位点残基的位置保持不变。在活性位点裂隙中定位到了两个与活性位点残基形成氢键的水分子。它们可能都负责水解N-C糖苷键。目前的相思豆毒素a结构不含乳糖;这可能对相思豆毒素a的结晶至关重要。B链是一种糖蛋白,确定了与先前预测的糖基化位点相连的两条糖链中几个糖残基的位置。其中一条糖链是两个相邻分子之间的桥梁,因为其一个甘露糖残基与相邻分子的半乳糖结合位点相连。另一条糖链覆盖在B链表面。

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