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Individual Globular Domains and Domain Unfolding Visualized in Overstretched Titin Molecules with Atomic Force Microscopy

机译:原子力显微镜在拉伸钛蛋白分子中可视化的单个球状结构域和域展开。

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摘要

Titin is a giant elastomeric protein responsible for the generation of passive muscle force. Mechanical force unfolds titin’s globular domains, but the exact structure of the overstretched titin molecule is not known. Here we analyzed, by using high-resolution atomic force microscopy, the structure of titin molecules overstretched with receding meniscus. The axial contour of the molecules was interrupted by topographical gaps with a mean width of 27.7 nm that corresponds well to the length of an unfolded globular (immunoglobulin and fibronectin) domain. The wide gap-width distribution suggests, however, that additional mechanisms such as partial domain unfolding and the unfolding of neighboring domain multimers may also be present. In the folded regions we resolved globules with an average spacing of 5.9 nm, which is consistent with a titin chain composed globular domains with extended interdomain linker regions. Topographical analysis allowed us to allocate the most distal unfolded titin region to the kinase domain, suggesting that this domain systematically unfolds when the molecule is exposed to overstretching forces. The observations support the prediction that upon the action of stretching forces the N-terminal ß-sheet of the titin kinase unfolds, thus exposing the enzyme’s ATP-binding site and hence contributing to the molecule’s mechanosensory function.
机译:Titin是一种巨大的弹性蛋白,负责产生被动的肌肉力量。机械力使titin的球状结构展开,但鲜为人知的titin分子的确切结构尚不清楚。在这里,我们使用高分辨率原子力显微镜分析了弯月形后退过度延伸的替丁分子的结构。分子的轴向轮廓被地形间隙中断,其平均宽度为27.7 nm,该宽度与未折叠的球状结构域(免疫球蛋白和纤连蛋白)的长度非常吻合。然而,宽的间隙宽度分布表明,也可能存在其他机制,例如部分结构域展开和相邻结构域多聚体的展开。在折叠的区域中,我们分辨出平均间隔为5.9 nm的小球,这与由具有由扩展的域间连接子区域组成的球状结构域的钛链组成。地形分析使我们能够将最远端的未折叠蛋白区域分配给激酶结构域,表明当分子暴露于过度拉伸力时,该结构域会系统地展开。这些观察结果支持这样的预测:在拉伸力的作用下,titin激酶的N末端ß-sheet展开,从而暴露了酶的ATP结合位点,从而有助于分子的机械感觉功能。

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