Kannan N, Vishveshwara S
Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560 012, India.
Protein Eng. 2000 Nov;13(11):753-61. doi: 10.1093/protein/13.11.753.
A number of factors have been elucidated as responsible for the thermal stability of thermophilic proteins. However, the contribution of aromatic interactions to thermal stability has not been systematically studied. In the present investigation we used a graph spectral method to identify aromatic clusters in a dataset of 24 protein families for which the crystal structures of both the thermophilic and their mesophilic homologues are known. Our analysis shows a presence of additional aromatic clusters or enlarged aromatic networks in 17 different thermophilic protein families, which are absent in the corresponding mesophilic homologue. The additional aromatic clusters identified in the thermophiles are smaller in size and are largely found on the protein surface. The aromatic clusters are found to be relatively rigid regions of the surface and often the additional aromatic cluster is located close to the active site of the thermophilic enzyme. The residues in the additional aromatic clusters are preferably mutated to Leu, Ser or Ile in the mesophilic homologue. An analysis of the packing geometry of the pairwise aromatic interaction in the additional aromatic clusters shows a preference for a T-shaped orthogonal packing geometry. The present study also provides new insights for protein engineers to design thermostable and thermophilic proteins.
许多因素已被阐明是嗜热蛋白热稳定性的原因。然而,芳香族相互作用对热稳定性的贡献尚未得到系统研究。在本研究中,我们使用一种图谱方法,在一个包含24个蛋白质家族的数据集中识别芳香族簇,这些家族的嗜热蛋白及其嗜温同源物的晶体结构均已知。我们的分析表明,在17个不同的嗜热蛋白家族中存在额外的芳香族簇或扩大的芳香族网络,而在相应的嗜温同源物中则不存在。在嗜热菌中鉴定出的额外芳香族簇尺寸较小,且大多位于蛋白质表面。芳香族簇被发现是表面相对刚性的区域,并且额外的芳香族簇通常位于嗜热酶的活性位点附近。在嗜温同源物中,额外芳香族簇中的残基优先突变为亮氨酸、丝氨酸或异亮氨酸。对额外芳香族簇中两两芳香族相互作用的堆积几何结构分析表明,倾向于T形正交堆积几何结构。本研究还为蛋白质工程师设计耐热和嗜热蛋白提供了新的见解。