Institute of Chemistry, The Hebrew University of Jerusalem, Jerusalem, 91904, Israel.
The Center for Nanoscience and Nanotechnology, The Hebrew University of Jerusalem, Jerusalem, 91904, Israel.
Chembiochem. 2019 Feb 1;20(3):355-359. doi: 10.1002/cbic.201800634. Epub 2018 Dec 13.
Biofilms are aggregates of microbial cells that form on surfaces and at interfaces, and are encased in an extracellular matrix. In biofilms made by the soil bacterium Bacillus subtilis, the protein TapA mediates the assembly of the functional amyloid protein TasA into extracellular fibers, and it anchors these fibers to the cell surface. We used circular dichroism and NMR spectroscopy to show that, unlike the structured TasA, TapA is disordered. In addition, TapA is composed of two weakly interacting domains: a disordered C-terminal domain and a more structured N-terminal domain. These two domains also exhibited different structural changes in response to changes in external conditions, such as increased temperatures and the presence of lipid vesicles. Although the two TapA domains weakly interacted in solution, their cooperative interaction with lipid vesicles prevented disruption of the vesicles. These findings therefore suggest that the two-domain composition of TapA is important in its interaction with single or multiple partners in the extracellular matrix in biofilms.
生物膜是微生物细胞在表面和界面上聚集形成的,并被细胞外基质包裹。在土壤细菌枯草芽孢杆菌形成的生物膜中,蛋白质 TapA 介导功能性淀粉样蛋白 TasA 组装成细胞外纤维,并将这些纤维锚定在细胞表面。我们使用圆二色性和 NMR 光谱表明,与结构 TasA 不同,TapA 是无规卷曲的。此外,TapA 由两个弱相互作用的结构域组成:无规卷曲的 C 端结构域和更具结构的 N 端结构域。这两个结构域在响应外部条件变化(如升高的温度和脂质体的存在)时也表现出不同的结构变化。尽管 TapA 在溶液中的两个结构域弱相互作用,但它们与脂质体的协同相互作用阻止了脂质体的破坏。因此,这些发现表明 TapA 的双结构域组成在其与生物膜中细胞外基质中的单个或多个伙伴的相互作用中很重要。