Vallone Beatrice, Brunori Maurizio
Dipartimento di Scienze Biochimiche ," A. Rossi-Fanelli", Universita' di Roma "La Sapienza" Roma - Italy.
Ital J Biochem. 2004 Mar;53(1):46-52.
Atomic packing in proteins is not optimized, most structures containing internal cavities, which have been identified by molecular modelling and characterized experimentally. Cavities seem to play a role in assisting conformational changes between domains or subunit interfaces. Comparison between homologous proteins from thermophiles and mesophiles indicates that optimizing packing enhances stabilization at the expense of flexibility. For proteins which interact with small ligands or substrates, cavities seem to play a role in controlling binding and catalysis, rather than being mere "packing defects". We believe that a more complete analysis on the localization, conservation and role of cavities in protein structures (by modelling and site-directed mutagenesis), will reveal that rather than being randomly distributed, they are located in key positions to allow structural dynamics and thereby functional control.
蛋白质中的原子堆积并非最优,大多数结构含有内部空洞,这些空洞已通过分子建模得以识别并经实验表征。空洞似乎在辅助结构域或亚基界面之间的构象变化中发挥作用。嗜热菌和嗜温菌同源蛋白质之间的比较表明,优化堆积以牺牲灵活性为代价增强了稳定性。对于与小配体或底物相互作用的蛋白质,空洞似乎在控制结合和催化方面发挥作用,而不仅仅是“堆积缺陷”。我们相信,对蛋白质结构中空洞的定位、保守性和作用进行更全面的分析(通过建模和定点诱变)将揭示,它们并非随机分布,而是位于关键位置以允许结构动态变化,从而实现功能控制。