Yang Wei, Shimaoka Motomu, Chen JianFeng, Springer Timothy A
CBR Institute for Biomedical Research and Department of Pathology, Harvard Medical School, 200 Longwood Avenue, Boston, MA 02115, USA.
Proc Natl Acad Sci U S A. 2004 Feb 24;101(8):2333-8. doi: 10.1073/pnas.0307291101.
Integrins contain two structurally homologous but distantly related domains: an I-like domain that is present in all beta-subunits and an I domain that is present in some alpha-subunits. Atomic resolution and mutagenesis studies of alpha I domains demonstrate a C-terminal, axial displacement of the alpha7-helix that allosterically regulates the shape and affinity of the ligand-binding site. Atomic resolution studies of beta I-like domains have thus far demonstrated no similar alpha7-helix displacement; however, other studies are consistent with the idea that alpha I and beta I-like domains undergo structurally analogous rearrangements. To test the hypothesis that C-terminal, axial displacement of the alpha7-helix, coupled with beta6-alpha7 loop reshaping, activates beta I-like domains, we have mimicked the effect of alpha7-helix displacement on the beta6-alpha7 loop by shortening the alpha7-helix by two independent, four-residue deletions of about one turn of alpha-helix. In the case of integrin alphaLbeta2, each mutant exhibits constitutively high affinity for the physiological ligand intercellular adhesion molecule 1 and full exposure of a beta I-like domain activation-dependent antibody epitope. In the case of analogous mutants in integrin alpha4beta7, each mutant shows the activated phenotype of firm adhesion, rather than rolling adhesion, in shear flow. The results show that integrins that contain or lack alpha I domains share a common pathway of beta I-like domain activation, and they suggest that beta I-like and alpha I domain activation involves structurally analogous alpha7-helix axial displacements.
一个存在于所有β亚基中的I样结构域和一个存在于一些α亚基中的I结构域。对αI结构域的原子分辨率和诱变研究表明,α7螺旋在C端发生轴向位移,该位移通过变构调节配体结合位点的形状和亲和力。迄今为止,对βI样结构域的原子分辨率研究尚未发现类似的α7螺旋位移;然而,其他研究与αI和βI样结构域经历结构类似重排的观点一致。为了验证α7螺旋的C端轴向位移与β6-α7环重塑相结合可激活βI样结构域这一假说,我们通过对α7螺旋进行两个独立的、四个残基的缺失(约为一圈α螺旋)来模拟α7螺旋位移对β6-α7环的影响,缺失后的α7螺旋缩短。就整合素αLβ2而言,每个突变体对生理配体细胞间黏附分子1均表现出组成性高亲和力,且βI样结构域激活依赖性抗体表位完全暴露。就整合素α4β7中的类似突变体而言,每个突变体在剪切流中均表现出牢固黏附而非滚动黏附的激活表型。结果表明,含有或缺乏αI结构域的整合素共享βI样结构域激活的共同途径,这表明βI样和αI结构域的激活涉及结构类似的α7螺旋轴向位移。