Takagi Junichi, Petre Benjamin M, Walz Thomas, Springer Timothy A
The Center for Blood Research, Departments of Pathology and Pediatrics, Harvard Medical School, Boston, MA 02115, USA.
Cell. 2002 Sep 6;110(5):599-11. doi: 10.1016/s0092-8674(02)00935-2.
How ligand binding alters integrin conformation in outside-in signaling, and how inside-out signals alter integrin affinity for ligand, have been mysterious. We address this with electron microscopy, physicochemical measurements, mutational introduction of disulfides, and ligand binding to alphaVbeta3 and alphaIIbbeta3 integrins. We show that a highly bent integrin conformation is physiological and has low affinity for biological ligands. Addition of a high affinity ligand mimetic peptide or Mn(2+) results in a switchblade-like opening to an extended structure. An outward swing of the hybrid domain at its junction with the I-like domain shows conformational change within the headpiece that is linked to ligand binding. Breakage of a C-terminal clasp between the alpha and beta subunits enhances Mn(2+)-induced unbending and ligand binding.
配体结合如何在外向内信号传导中改变整合素构象,以及内向内信号如何改变整合素对配体的亲和力,一直是个谜。我们通过电子显微镜、物理化学测量、二硫键的突变引入以及配体与αVβ3和αIIbβ3整合素的结合来解决这个问题。我们表明,高度弯曲的整合素构象是生理性的,对生物配体具有低亲和力。添加高亲和力配体模拟肽或Mn(2+)会导致类似弹簧刀的打开,形成伸展结构。杂合结构域在其与I样结构域交界处的向外摆动显示了头部内与配体结合相关的构象变化。α和β亚基之间C端扣环的断裂增强了Mn(2+)诱导的伸直和配体结合。