Ye Feng, Liu Jun, Winkler Hanspeter, Taylor Kenneth A
Institute of Molecular Biophysics, Florida State University, Tallahassee, FL 32306-4380, USA.
J Mol Biol. 2008 May 16;378(5):976-86. doi: 10.1016/j.jmb.2008.03.014. Epub 2008 Mar 14.
Integrins perform the critical function of signalling cell attachment to the extracellular matrix or to other cells. This signalling is done through a structural change propagated bidirectionally across the plasma membrane. Integrin activation has been extensively studied with ectodomain constructs, but the structural change within intact, membrane-bound molecules remains a subject of live debate. Using cryoelectron tomography, we examined the simplest predication of the different integrin activation models, i.e., the change in height of the molecules. Analysis using techniques that compensate for the missing wedge during alignment and averaging and that search for patterns in the structure of the aligned molecular subvolumes extracted from the tomogram reveals that the vast majority of molecules show no dramatic height change upon Mn(2+)-induced activation of membrane-bound integrins when compared with an inactive integrin control group. Thus, the result is inconsistent with the switchblade activation model.
整合素执行将细胞附着于细胞外基质或其他细胞的关键信号传导功能。这种信号传导是通过在质膜上双向传播的结构变化来完成的。整合素激活已通过胞外域构建体进行了广泛研究,但完整的膜结合分子内的结构变化仍然是一个激烈争论的话题。使用冷冻电子断层扫描技术,我们研究了不同整合素激活模型的最简单预测,即分子高度的变化。使用在对齐和平均过程中补偿缺失楔形区域以及在从断层扫描中提取的对齐分子子体积结构中搜索模式的技术进行分析后发现,与非活性整合素对照组相比,在Mn(2+)诱导膜结合整合素激活时,绝大多数分子的高度没有显著变化。因此,该结果与弹簧刀激活模型不一致。