Marino Marco, Zou Peijian, Svergun Dmitri, Garcia Pilar, Edlich Christian, Simon Bernd, Wilmanns Matthias, Muhle-Goll Claudia, Mayans Olga
Division of Structural Biology, Biozentrum, University of Basel, Klingelbergstrasse 70, CH-4056 Basel, Switzerland.
Structure. 2006 Sep;14(9):1437-47. doi: 10.1016/j.str.2006.07.009.
Titin is a gigantic elastic filament that determines sarcomere ultrastructure and stretch response in vertebrate muscle. It folds into numerous Ig and FnIII domains connected in tandem. Data on interdomain arrangements and dynamics are essential for understanding the function of this filament. Here, we report a mechanistic analysis of the conformational dynamics of two Ig domains from the N terminus of titin, Z1Z2, by using X-ray crystallography, SAXS, NMR relaxation data, and residual dipolar couplings in combination. Z1Z2 preferentially adopts semiextended conformations in solution, with close-hinge arrangements representing low-probability states. Although interdomain contacts are not observed, the linker appears to acquire moderate rigidity via small, local hydrophobic interactions. Thus, Z1Z2 constitutes an adaptable modular system with restricted dynamics. We speculate that its preexistent conformation contributes to the selective recruitment of the binding partner telethonin onto the repetitive surface of the filament. The structural interconversion of four Z1Z2 conformers is analyzed.
肌联蛋白是一种巨大的弹性细丝,它决定了脊椎动物肌肉中的肌节超微结构和拉伸反应。它折叠成许多串联连接的免疫球蛋白(Ig)和III型纤连蛋白(FnIII)结构域。关于结构域间排列和动力学的数据对于理解这种细丝的功能至关重要。在这里,我们结合使用X射线晶体学、小角X射线散射(SAXS)、核磁共振弛豫数据和残余偶极耦合,对肌联蛋白N端的两个Ig结构域Z1Z2的构象动力学进行了机理分析。Z1Z2在溶液中优先采用半伸展构象,紧密铰链排列代表低概率状态。虽然未观察到结构域间的接触,但连接子似乎通过小的局部疏水相互作用获得了适度的刚性。因此,Z1Z2构成了一个具有受限动力学的适应性模块化系统。我们推测其预先存在的构象有助于将结合伴侣肌联蛋白选择性募集到细丝的重复表面上。分析了四种Z1Z2构象的结构相互转化。