Department of Pathology, University of California San Francisco, San Francisco, CA, USA.
Department of Biochemistry and Biophysics, University of California San Francisco, San Francisco, CA, USA.
Nat Struct Mol Biol. 2018 Aug;25(8):698-704. doi: 10.1038/s41594-018-0093-x. Epub 2018 Jul 30.
Integrins are conformationally flexible cell surface receptors that survey the extracellular environment for their cognate ligands. Interactions with ligands are thought to be linked to global structural rearrangements involving transitions between bent, extended-closed and extended-open forms. Thus far, structural details are lacking for integrins in the extended conformations due to extensive flexibility between the headpiece and legs in this conformation. Here we present single-particle electron cryomicroscopy structures of human αvβ8 integrin in the extended-closed conformation, which has been considered to be a low-affinity intermediate. Our structures show the headpiece rotating about a flexible αv knee, suggesting a ligand surveillance mechanism for integrins in their extended-closed form. Our model predicts that the extended conformation is mainly stabilized by an interface formed between flexible loops in the upper and lower domains of the αv leg. Confirming these findings with the αvβ3 integrin suggests that our model of stabilizing the extended-closed conformation is generalizable to other integrins.
整合素是构象灵活的细胞表面受体,可检测细胞外环境中与其配体的相互作用。配体的相互作用被认为与涉及弯曲、延伸-关闭和延伸-开放形式之间转变的整体结构重排有关。到目前为止,由于在这种构象中头部和腿部之间的广泛灵活性,延伸构象中整合素的结构细节仍然缺乏。在这里,我们展示了人αvβ8 整合素在延伸-关闭构象中的单颗粒电子低温显微镜结构,该构象被认为是低亲和力的中间产物。我们的结构显示头部围绕着一个灵活的αv 膝部旋转,这表明整合素在延伸-关闭形式下存在一种配体监测机制。我们的模型预测,延伸构象主要由αv 腿的上下域中的柔性环之间形成的界面稳定。用αvβ3 整合素来证实这些发现表明,我们稳定延伸-关闭构象的模型可推广到其他整合素。