Hildebrand Peter Werner, Rother Kristian, Goede Andrean, Preissner Robert, Frömmel Cornelius
Institute of Biochemistry Charité, University Medicine Berlin, 10117 Berlin, Germany.
Biophys J. 2005 Mar;88(3):1970-7. doi: 10.1529/biophysj.104.049585. Epub 2004 Nov 19.
The packing of helices spanning lipid bilayers is crucial for the stability and function of alpha-helical membrane proteins. Using a modified Voronoi procedure, we calculated packing densities for helix-helix contacts in membrane spanning domains. Our results show that the transmembrane helices of protein channels and transporters are significantly more loosely packed compared with helices in globular proteins. The observed packing deficiencies of these membrane proteins are also reflected by a higher amount of cavities at functionally important sites. The cavities positioned along the gated pores of membrane channels and transporters are noticeably lined by polar amino acids that should be exposed to the aqueous medium when the protein is in the open state. In contrast, nonpolar amino acids surround the cavities in those protein regions where large rearrangements are supposed to take place, as near the hinge regions of transporters or at restriction sites of protein channels. We presume that the observed deficiencies of helix-helix packing are essential for the helical mobility that sustains the function of many membrane protein channels and transporters.
跨越脂质双层的螺旋结构堆积对于α-螺旋膜蛋白的稳定性和功能至关重要。我们采用一种改进的Voronoi方法,计算了跨膜结构域中螺旋-螺旋接触的堆积密度。我们的结果表明,与球状蛋白中的螺旋相比,蛋白质通道和转运蛋白的跨膜螺旋堆积明显更为疏松。这些膜蛋白中观察到的堆积缺陷在功能重要位点也表现为更高数量的空洞。沿着膜通道和转运蛋白门控孔排列的空洞明显由极性氨基酸构成,当蛋白质处于开放状态时,这些氨基酸应暴露于水性介质中。相反,在那些预计会发生大的重排的蛋白质区域,如转运蛋白的铰链区附近或蛋白质通道的限制位点,非极性氨基酸围绕着空洞。我们推测,观察到的螺旋-螺旋堆积缺陷对于维持许多膜蛋白通道和转运蛋白功能的螺旋流动性至关重要。