Furuike S, Ito T, Yamazaki M
Materials Science, Graduate School of Science and Engineering, Shizuoka University, Japan.
FEBS Lett. 2001 Jun 1;498(1):72-5. doi: 10.1016/s0014-5793(01)02497-8.
Filamin A (ABP-280), which is an actin-binding protein of 560 kDa as a dimer, can, together with actin filaments, produce an isotropic cross-linked three-dimensional network (actin/filamin A gel) that plays an important role in mechanical responses of cells in processes such as maintenance of membrane stability and translational locomotion. In this study, we investigated the mechanical properties of single filamin A molecules using atomic force microscopy. In force-extension curves, we observed sawtooth patterns corresponding to the unfolding of individual immunoglobulin (Ig)-fold domains of filamin A. At a pulling speed of 0.37 microm/s, the unfolding interval was sharply distributed around 30 nm, while the unfolding force ranged from 50 to 220 pN. This wide distribution of the unfolding force can be explained by variation in values of activation energy and the width of activation barrier of 24 Ig-fold domains of the filamin A at the unfolding transition. This unfolding can endow filamin A with great extensibility. The refolding of the unfolded chain of filamin A occurred when the force applied to the protein was reduced to near zero, indicating that its unfolding is reversible. Based on these results, we discuss here the physiological implications of the mechanical properties of single filamin A molecules.
细丝蛋白A(ABP - 280)作为一种二聚体,是一种560 kDa的肌动蛋白结合蛋白,它能与肌动蛋白丝一起形成各向同性的交联三维网络(肌动蛋白/细丝蛋白A凝胶),在维持膜稳定性和平移运动等过程中细胞的机械反应中发挥重要作用。在本研究中,我们使用原子力显微镜研究了单个细丝蛋白A分子的力学性质。在力-伸长曲线中,我们观察到与细丝蛋白A单个免疫球蛋白(Ig)折叠结构域展开相对应的锯齿模式。在0.37微米/秒的拉伸速度下,展开间隔在30纳米左右急剧分布,而展开力范围为50至220皮牛。展开力的这种广泛分布可以通过细丝蛋白A的24个Ig折叠结构域在展开转变时的活化能值和活化势垒宽度的变化来解释。这种展开可赋予细丝蛋白A很大的可扩展性。当施加在蛋白质上的力降至接近零时,细丝蛋白A展开链发生重新折叠,表明其展开是可逆的。基于这些结果,我们在此讨论单个细丝蛋白A分子力学性质的生理意义。