Sommergruber W, Seipelt J, Fessl F, Skern T, Liebig H D, Casari G
Department Cell Biology, Boehringer-Ingelheim Research Vienna, Bender and Co., Austria.
Virology. 1997 Aug 4;234(2):203-14. doi: 10.1006/viro.1997.8595.
The proteinase 2A of human rhinovirus 2 is a cysteine proteinase which contains a tightly bound Zn ion thought to be required for structural integrity. A three-dimensional model for human rhinovirus type 2 proteinase 2A (HRV2 2A) was established using sequence alignments with small trypsin-like Ser-proteinases and, for certain regions, elastase. The model was tested by expressing selected proteinase 2A mutants in bacteria and examining the effect on both intramolecular ("cis") and intermolecular ("trans") activities. The HRV2 proteinase 2A is proposed to have a two domain structure, with the catalytic site and substrate binding region on one face of the molecule and a Zn-binding motif on the opposite face. Residues Gly 123, Gly 124, Thr 121, and Cys 101 are proposed to be involved in the architecture of the substrate binding pocket and to provide the correct environment for the catalytic triad of His 18, Asp 35, and Cys 106. Residues Tyr 85 and Tyr 86 are thought to participate in substrate recognition. The presence of an extensive C-terminal helix, in which Asp 132, Arg 134, Phe 130, and Phe 136 play important roles, explains why mutations in this region are generally detrimental to proteinase activity. The proposed Zn-binding motif comprises Cys 52, Cys 54, Cys 112, and His 114. Exchange of these residues inactivates the enzyme. Furthermore, as measured by atom emission spectroscopy, Zn was absent from purified preparations of proteinase 2A in which His 114 had been replaced by Asn. The absence of disulphide bridges was confirmed by subjecting highly purified HRV2 proteinase 2A to one- and two-step alkylation procedures.
人鼻病毒2型的蛋白酶2A是一种半胱氨酸蛋白酶,它含有一个紧密结合的锌离子,该锌离子被认为是维持结构完整性所必需的。利用与小胰蛋白酶样丝氨酸蛋白酶以及某些区域的弹性蛋白酶的序列比对,建立了人鼻病毒2型蛋白酶2A(HRV2 2A)的三维模型。通过在细菌中表达选定的蛋白酶2A突变体并检测其对分子内(“顺式”)和分子间(“反式”)活性的影响来对该模型进行测试。HRV2蛋白酶2A被认为具有双结构域结构,其催化位点和底物结合区域位于分子的一个面上,而锌结合基序位于相对的面上。推测甘氨酸123、甘氨酸124、苏氨酸121和半胱氨酸101参与底物结合口袋的结构,并为组氨酸18、天冬氨酸35和半胱氨酸106的催化三联体提供正确的环境。酪氨酸85和酪氨酸86被认为参与底物识别。存在一个广泛的C末端螺旋,其中天冬氨酸132、精氨酸134、苯丙氨酸130和苯丙氨酸136发挥重要作用,这解释了该区域的突变为何通常对蛋白酶活性有害。推测的锌结合基序包括半胱氨酸52、半胱氨酸54、半胱氨酸112和组氨酸114。这些残基的交换会使酶失活。此外,通过原子发射光谱法测量,在组氨酸114被天冬酰胺取代的蛋白酶2A纯化制剂中不存在锌。通过对高度纯化的HRV2蛋白酶2A进行一步和两步烷基化程序,证实了不存在二硫键。