首页> 外文期刊>Matrix biology: Journal of the International Society for Matrix Biology >Understanding the elasticity of fibronectin fibrils: unfolding strengths of FN-III and GFP domains measured by single molecule force spectroscopy.
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Understanding the elasticity of fibronectin fibrils: unfolding strengths of FN-III and GFP domains measured by single molecule force spectroscopy.

机译:了解纤连蛋白原纤维的弹性:通过单分子力光谱法测量的FN-III和GFP域的展开强度。

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摘要

While it is well established that fibronectin (FN) matrix fibrils are elastic, the mechanism of fibril elasticity during extension is still debated. To investigate the molecular origin of FN fibril elasticity, we used single molecule force spectroscopy (SMFS) to determine the unfolding behavior of a recombinant FN-III protein construct that contained eight FN-III domains ((1-8)FN-III) and two green fluorescent protein (GFP) domains. FN-III domains were distinguished from GFP domains by their shorter unfolding lengths. The unfolding strengths of both domains were determined for a wide range of pulling rates (50 to 1,745 nm/s). We found that the mechanical stabilities of FN-III and GFP domains were very similar to each other over the entire range of pulling speeds. FN fibrils containing GFP remain brightly fluorescent, even when stretched, meaning that GFP domains remain largely folded. Since GFP and FN-III have equal unfolding strengths, this suggests that FN-III domains are not extensively unraveled in stretched FN fibrils. Our results thus favor an alternative model, which invokes a conformational change from a compact to an extended conformation, as the basis for FN fibril elasticity.
机译:虽然已经很好地确定纤连蛋白(FN)基质纤丝是有弹性的,但在伸展过程中纤丝弹性的机制仍存在争议。为了研究FN纤维弹性的分子起源,我们使用单分子力谱(SMFS)确定了包含8个FN-III域((1-8)FN-III)和两个绿色荧光蛋白(GFP)域。 FN-III结构域与GFP结构域的区别在于其较短的展开长度。在宽范围的拉速(50至1,745 nm / s)下确定了两个区域的展开强度。我们发现FN-III和GFP域的机械稳定性在整个拉动速度范围内彼此非常相似。包含GFP的FN原纤维即使在拉伸时仍保持明亮的荧光,这意味着GFP结构域仍在很大程度上折叠。由于GFP和FN-III具有相同的展开强度,这表明FN-III结构域在拉伸的FN原纤维中并未广泛解开。因此,我们的结果偏向于一种替代模型,该模型调用从紧密构型到扩展构型的构象变化,作为FN原纤维弹性的基础。

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