Guzmán C, Jeney S, Kreplak L, Kasas S, Kulik A J, Aebi U, Forró L
Institut de Physique de la Matière Complexe, Ecole Polytechnique Fédérale de Lausanne (EPFL), CH-1015 Lausanne, Switzerland.
J Mol Biol. 2006 Jul 14;360(3):623-30. doi: 10.1016/j.jmb.2006.05.030.
Intermediate filaments (IFs), together with actin filaments and microtubules, compose the cytoskeleton. Among other functions, IFs impart mechanical stability to cells when exposed to mechanical stress and act as a support when the other cytoskeletal filaments cannot keep the structural integrity of the cells. Here we present a study on the bending properties of single vimentin IFs in which we used an atomic force microscopy (AFM) tip to elastically deform single filaments hanging over a porous membrane. We obtained a value for the bending modulus of non-stabilized IFs between 300 MPa and 400 MPa. Our results together with previous ones suggest that IFs present axial sliding between their constitutive building blocks and therefore have a bending modulus that depends on the filament length. Measurements of glutaraldehyde-stabilized filaments were also performed to reduce the axial sliding between subunits and therefore provide a lower limit estimate of the Young's modulus of the filaments. The results show an increment of two to three times in the bending modulus for the stabilized IFs with respect to the non-stabilized ones, suggesting that the Young's modulus of vimentin IFs should be around 900 MPa or higher.
中间丝(IFs)与肌动蛋白丝和微管一起构成细胞骨架。在其他功能中,当细胞受到机械应力时,中间丝赋予细胞机械稳定性,并且当其他细胞骨架丝无法维持细胞的结构完整性时,中间丝起到支撑作用。在此,我们展示了一项关于单个波形蛋白中间丝弯曲特性的研究,其中我们使用原子力显微镜(AFM)尖端使悬挂在多孔膜上的单根丝发生弹性变形。我们获得了非稳定化中间丝的弯曲模量值在300兆帕至400兆帕之间。我们的结果与先前的结果共同表明,中间丝在其组成结构单元之间存在轴向滑动,因此其弯曲模量取决于丝的长度。还对戊二醛稳定化的丝进行了测量,以减少亚基之间的轴向滑动,从而提供丝的杨氏模量的下限估计。结果表明,稳定化中间丝的弯曲模量相对于非稳定化中间丝增加了两到三倍,这表明波形蛋白中间丝的杨氏模量应该在900兆帕或更高。