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细胞外基质蛋白腱生蛋白的分子弹性

The molecular elasticity of the extracellular matrix protein tenascin.

作者信息

Oberhauser A F, Marszalek P E, Erickson H P, Fernandez J M

机构信息

Department of Physiology and Biophysics, Mayo Foundation, Rochester, Minnesota 55905, USA.

出版信息

Nature. 1998 May 14;393(6681):181-5. doi: 10.1038/30270.

Abstract

Extracellular matrix proteins are thought to provide a rigid mechanical anchor that supports and guides migrating and rolling cells. Here we examine the mechanical properties of the extracellular matrix protein tenascin by using atomic-force-microscopy techniques. Our results indicate that tenascin is an elastic protein. Single molecules of tenascin could be stretched to several times their resting length. Force-extension curves showed a saw-tooth pattern, with peaks of force at 137pN. These peaks were approximately 25 nm apart. Similar results have been obtained by study of titin. We also found similar results by studying recombinant tenascin fragments encompassing the 15 fibronectin type III domains of tenascin. This indicates that the extensibility of tenascin may be due to the stretch-induced unfolding of its fibronectin type III domains. Refolding of tenascin after stretching, observed when the force was reduced to near zero, showed a double-exponential recovery with time constants of 42 domains refolded per second and 0.5 domains per second. The former speed of refolding is more than twice as fast as any previously reported speed of refolding of a fibronectin type III domain. We suggest that the extensibility of the modular fibronectin type III region may be important in allowing tenascin-ligand bonds to persist over long extensions. These properties of fibronectin type III modules may be of widespread use in extracellular proteins containing such domain.

摘要

细胞外基质蛋白被认为能提供一个刚性的机械锚,以支撑和引导迁移及滚动的细胞。在这里,我们使用原子力显微镜技术研究了细胞外基质蛋白腱生蛋白的力学特性。我们的结果表明腱生蛋白是一种弹性蛋白。单个腱生蛋白分子可以被拉伸至其静止长度的几倍。力-伸长曲线呈现出锯齿状模式,在137皮牛处有力的峰值。这些峰值相距约25纳米。通过对肌联蛋白的研究也获得了类似的结果。我们通过研究包含腱生蛋白15个III型纤连蛋白结构域的重组腱生蛋白片段也发现了类似的结果。这表明腱生蛋白的可伸展性可能是由于其III型纤连蛋白结构域的拉伸诱导解折叠。当力降至接近零时观察到的腱生蛋白拉伸后的重新折叠,呈现出双指数恢复,时间常数分别为每秒重新折叠42个结构域和每秒0.5个结构域。前一种重新折叠速度比之前报道的任何III型纤连蛋白结构域的重新折叠速度快两倍多。我们认为模块化的III型纤连蛋白区域的可伸展性在使腱生蛋白-配体键在长延伸过程中持续存在方面可能很重要。III型纤连蛋白模块的这些特性可能在含有此类结构域的细胞外蛋白中广泛应用。

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