Brown Jerry H, Zhou Zhaocai, Reshetnikova Ludmilla, Robinson Howard, Yammani Rama D, Tobacman Larry S, Cohen Carolyn
Rosenstiel Basic Medical Sciences Research Center, Brandeis University, Waltham, MA 02454-9110, USA.
Proc Natl Acad Sci U S A. 2005 Dec 27;102(52):18878-83. doi: 10.1073/pnas.0509269102. Epub 2005 Dec 19.
Tropomyosin is a two-chain alpha-helical coiled coil whose periodic interactions with the F-actin helix are critical for thin filament stabilization and the regulation of muscle contraction. Here we deduce the mechanical and chemical basis of these interactions from the 2.3-A-resolution crystal structure of the middle three of tropomyosin's seven periods. Geometrically specific bends of the coiled coil, produced by clusters of core alanines, and variable bends about gaps in the core, produced by isolated alanines, occur along the molecule. The crystal packing is notable in signifying that the functionally important fifth period includes an especially favorable protein-binding site, comprising an unusual apolar patch on the surface together with surrounding charged residues. Based on these and other results, we have constructed a specific model of the thin filament, with the N-terminal halves of each period (i.e., the so-called "alpha zones") of tropomyosin axially aligned with subdomain 3 of each monomer in F-actin.
原肌球蛋白是一种由两条链组成的α-螺旋卷曲螺旋结构,其与F-肌动蛋白螺旋的周期性相互作用对于细肌丝的稳定和肌肉收缩的调节至关重要。在此,我们从原肌球蛋白七个周期中中间三个周期的2.3埃分辨率晶体结构推导出这些相互作用的力学和化学基础。由核心丙氨酸簇产生的卷曲螺旋的几何特异性弯曲,以及由孤立丙氨酸产生的围绕核心间隙的可变弯曲,沿着分子发生。晶体堆积值得注意的是,功能上重要的第五周期包括一个特别有利的蛋白质结合位点,该位点由表面上一个不寻常的非极性斑块以及周围的带电残基组成。基于这些及其他结果,我们构建了一个细肌丝的特定模型,其中原肌球蛋白每个周期的N端半部(即所谓的“α区”)与F-肌动蛋白中每个单体的亚结构域3轴向对齐。