Vomund Anthony N, Stuhlsatz-Krouper Sarah, Dimitry Julie, Song Yuhua, Frazier William A
Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, 660 South Euclid Avenue, St. Louis, Missouri 63110, USA.
Biochemistry. 2008 Nov 4;47(44):11616-24. doi: 10.1021/bi8015108. Epub 2008 Oct 9.
Control of alphaIIb beta3 and alphav beta3 integrin activation is critical for cardiovascular homeostasis. Mutations that perturb association of integrin alpha and beta subunits in their transmembrane and cytoplasmic regions activate the integrin heterodimer, suggesting that a low-affinity or "off" conformation is the default state, likely corresponding to the bent conformation seen in the crystal structure of alphav beta3. In this bent structure, a segment of alphav (301-308) and beta3 (560-567) are juxtaposed. Here we provide evidence that these regions of alphav/alphaIIb and beta3 function as a novel extracellular clasp to restrain activation. Synthetic peptides representing the alphaIIb and beta3 clasp regions promote integrin activation as judged by cell adhesion, cell spreading, and exposure of epitopes for three beta3 LIBS antibodies. Mutation of the clasp region of alphav or beta3 results in a constitutively activated integrin, confirming the role of the extracellular clasp in restraining integrin activation. Molecular dynamics simulations of the alphav beta3 structure yield a refined model for the alphav beta3 clasp and provide plausible explanations for the effects of the activating mutations.
αIIbβ3和αvβ3整合素激活的调控对心血管稳态至关重要。在跨膜和细胞质区域干扰整合素α和β亚基结合的突变会激活整合素异二聚体,这表明低亲和力或“关闭”构象是默认状态,可能对应于αvβ3晶体结构中所见的弯曲构象。在这种弯曲结构中,αv的一段(301 - 308)和β3的一段(560 - 567)并列。在此我们提供证据表明,αv/αIIb和β3的这些区域作为一种新型的细胞外扣环来抑制激活。通过细胞黏附、细胞铺展以及三种β3 LIBS抗体表位的暴露判断,代表αIIb和β3扣环区域的合成肽促进整合素激活。αv或β3扣环区域的突变导致整合素组成性激活,证实了细胞外扣环在抑制整合素激活中的作用。αvβ3结构的分子动力学模拟产生了αvβ3扣环的优化模型,并为激活突变的作用提供了合理的解释。