Conti Elena, Müller Christoph W, Stewart Murray
EMBL, Meyerhofstrasse 1, D-69117 Heidelberg, Germany.
Curr Opin Struct Biol. 2006 Apr;16(2):237-44. doi: 10.1016/j.sbi.2006.03.010. Epub 2006 Mar 29.
Recent structural work on nuclear transport factors of the importin-beta superfamily of karyopherins has shown that these proteins are superhelices of HEAT repeats that are able to assume different conformations in different functional states. The inherent flexibility of these helicoids facilitates the accommodation of different binding partners by an induced-fit type of mechanism. Moreover, the energy stored by distorting these molecules may partially balance binding energies to enable assembly and disassembly of their complexes with relatively small energy changes. Flexibility appears to be an intrinsic feature of such superhelices and might be functionally important not only for karyopherins and nuclear transport, but also for HEAT repeat proteins from other biological systems.
近期针对核转运蛋白β亚家族核转运因子的结构研究表明,这些蛋白质是HEAT重复序列的超螺旋结构,能够在不同功能状态下呈现不同构象。这些螺旋状结构固有的灵活性通过诱导契合机制促进了与不同结合伴侣的适配。此外,扭曲这些分子所储存的能量可能部分平衡结合能,从而以相对较小的能量变化实现其复合物的组装和解离。灵活性似乎是此类超螺旋结构的固有特征,不仅对核转运蛋白和核转运功能具有重要意义,对其他生物系统中的HEAT重复序列蛋白也可能具有重要功能。