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首页> 外文期刊>Protein Science: A Publication of the Protein Society >An avidin-like domain that does not bind biotin is adopted for oligomerization by the extracellular mosaic protein fibropellin.
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An avidin-like domain that does not bind biotin is adopted for oligomerization by the extracellular mosaic protein fibropellin.

机译:不结合生物素的抗生物素蛋白样结构域被细胞外镶嵌蛋白纤丝蛋白原寡聚化。

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摘要

The protein avidin found in egg white seems optimized for binding the small vitamin biotin as a stable homotetramer. Indeed, along with its streptavidin ortholog in the bacterium Streptomyces avidinii, this protein shows the strongest known noncovalent bond of a protein with a small ligand. A third known member of the avidin family, as similar to avidin as is streptavidin, is found at the C-terminal ends of the multidomain fibropellin proteins found in sea urchin. The fibropellins form a layer known as the apical lamina that surrounds the sea urchin embryo throughout development. Based upon the structure of avidin, we deduced a structural model for the avidin-like domain of the fibropellins and found that computational modeling predicts a lack of biotin binding and the preservation of tetramerization. To test this prediction we expressed and purified the fibropellin avidin-like domain and found it indeed to be a homotetramer incapable of binding biotin. Several lines of evidence suggest that the avidin-like domain causes the entire fibropellin protein to tetramerize. We suggest that the presence of the avidin-like domain serves a structural (tetrameric form) rather than functional (biotin-binding) role and may therefore be a molecular instance of exaptation-the modification of an existing function toward a new function. Finally, based upon the oligomerization of the avidin-like domain, we propose a model for the overall structure of the apical lamina.
机译:蛋白中发现的抗生物素蛋白似乎已针对结合小的维生素生物素(一种稳定的同型四聚体)进行了优化。实际上,连同其在链霉菌链霉菌中的抗生蛋白链菌素直向同源物一起,该蛋白质显示了具有小配体的蛋白质中已知最强的非共价键。抗生物素蛋白家族的第三个已知成员,与抗生物素蛋白链霉亲和素相似,在海胆中发现的多结构域纤连蛋白的C末端被发现。纤丝蛋白形成了一层称为顶板的层,在整个发育过程中都围绕着海胆胚胎。基于抗生物素蛋白的结构,我们推导了纤维纤蛋白的抗生物素蛋白样结构域的结构模型,并发现计算模型预测缺乏生物素结合和四聚化的保存。为了检验这一预测,我们表达并纯化了纤维纤蛋白抗生物素蛋白样结构域,并发现它确实是不能结合生物素的同型四聚体。几条证据表明,类似抗生物素蛋白的域导致整个纤维丝蛋白原蛋白四聚化。我们建议,抗生物素蛋白样结构域的存在起结构(四聚体形式)而不是功能(生物素结合)的作用,因此可能是分子修饰的实例-现有功能向新功能的修饰。最后,基于抗生物素蛋白样结构域的低聚,我们提出了一个用于根尖薄层整体结构的模型。

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