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狗牙花半胱氨酸蛋白酶ervatamin C异常稳定性和底物特异性的结构基础,该酶来自狗牙花。

Structural basis of the unusual stability and substrate specificity of ervatamin C, a plant cysteine protease from Ervatamia coronaria.

作者信息

Thakurta Piyali Guha, Biswas Sampa, Chakrabarti Chandana, Sundd Monica, Jagannadham Medicherla V, Dattagupta Jiban K

机构信息

Crystallography and Molecular Biology Division, Saha Institute of Nuclear Physics, 1/AF Bidhannagar, Kolkata-700 064, India.

出版信息

Biochemistry. 2004 Feb 17;43(6):1532-40. doi: 10.1021/bi0357659.

Abstract

Ervatamin C is an unusually stable cysteine protease from the medicinal plant Ervatamia coronaria belonging to the papain family. Though it cleaves denatured natural proteins with high specific activity, its activity toward some small synthetic substrates is found to be insignificant. The three-dimensional structure and amino acid sequence of the protein have been determined from X-ray diffraction data at 1.9 A (R = 17.7% and R(free) = 19.0%). The overall structure of ervatamin C is similar to those of other homologous cysteine proteases of the family, folding into two distinct left and right domains separated by an active site cleft. However, substitution of a few amino acid residues, which are conserved in the other members of the family, has been observed in both the domains and also at the region of the interdomain cleft. Consequently, the number of intra- and interdomain hydrogen-bonding interactions is enhanced in the structure of ervatamin C. Moreover, a unique disulfide bond has been identified in the right domain of the structure, in addition to the three conserved disulfide bridges present in the papain family. All these factors contribute to an increase in the stability of ervatamin C. In this enzyme, the nature of the S2 subsite, which is the primary determinant of specificity of these proteases, is similar to that of papain, but at the S3 subsite, Ala67 replaces an aromatic residue, and has the effect of eliminating sufficient hydrophobic interactions required for S3-P3 stabilization. This provides the possible explanation for the lower activity of ervatamin C toward the small substrate/inhibitor. This substitution, however, does not affect the binding of denatured natural protein substrates to the enzyme significantly, as there exist a number of additional interactions at the enzyme-substrate interface outside the active site cleft.

摘要

埃娃他敏C是一种来自药用植物狗牙花(Ervatamia coronaria)的异常稳定的半胱氨酸蛋白酶,属于木瓜蛋白酶家族。尽管它能以高比活性切割变性的天然蛋白质,但发现它对一些小分子合成底物的活性微不足道。该蛋白质的三维结构和氨基酸序列已根据1.9埃的X射线衍射数据确定(R = 17.7%,R(free) = 19.0%)。埃娃他敏C的整体结构与该家族其他同源半胱氨酸蛋白酶的结构相似,折叠成由活性位点裂缝分隔的两个不同的左右结构域。然而,在两个结构域以及结构域间裂缝区域都观察到了一些在该家族其他成员中保守的氨基酸残基被取代。因此,埃娃他敏C结构中结构域内和结构域间的氢键相互作用数量增加。此外,除了木瓜蛋白酶家族中存在的三个保守二硫键外,在该结构的右结构域还鉴定出了一个独特的二硫键。所有这些因素都有助于提高埃娃他敏C的稳定性。在这种酶中,S2亚位点的性质是这些蛋白酶特异性的主要决定因素,与木瓜蛋白酶相似,但在S3亚位点,Ala67取代了一个芳香族残基,并且具有消除S3 - P3稳定所需的足够疏水相互作用的效果。这为埃娃他敏C对小分子底物/抑制剂活性较低提供了可能解释。然而,这种取代不会显著影响变性天然蛋白质底物与酶的结合,因为在活性位点裂缝外的酶 - 底物界面存在许多额外的相互作用。

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