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Interfacial Self-Assembly of a Fungal Hydrophobin into a Hydrophobic Rodlet Layer.

机译:真菌疏水蛋白到疏水性小杆层的界面自组装。

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摘要

The Sc3p hydrophobin of the basidiomycete Schizophyllum commune is a small hydrophobic protein (100 to 101 amino acids) containing eight cysteine residues. Large amounts of the protein are excreted into the culture medium as monomers, but in the walls of aerial hyphae, the protein is present as an SDS-insoluble complex. In this study, we show that the Sc3p hydrophobin spontaneously assembles into an SDS-insoluble protein membrane on the surface of gas bubbles or when dried down on a hydrophilic surface. Electron microscopy of the assembled hydrophobin shows a surface consisting of rodlets spaced 10 nm apart, which is similar to those rodlets seen on the surface of aerial hyphae. When the purified Sc3p hydrophobin assembles on a hydrophilic surface, a surface is exposed with high hydrophobicity, similar to that of aerial hyphae. The rodlet layer, assembled in vivo and in vitro, can be disassembled by dissolution in trifluoroacetic acid and, after removal of the acid, reassembled into a rodlet layer. We propose, therefore, that the hydrophobic rodlet layer on aerial hyphae arises by interfacial self-assembly of Sc3p hydrophobin monomers, involving noncovalent interactions only. Submerged hyphae merely excrete monomers because these hyphae are not exposed to a water-air interface. The generally observed rodlet layers on fungal spores may arise in a similar way.
机译:担子菌Schizophyllum com的Sc3p疏水蛋白是一种小的疏水蛋白(100至101个氨基酸),含有八个半胱氨酸残基。大量蛋白质作为单体排泄到培养基中,但是在气生菌丝壁中,蛋白质以SDS不溶性复合物的形式存在。在这项研究中,我们表明,Sc3p疏水蛋白在气泡表面上或在亲水性表面上干燥时自发组装成SDS不溶蛋白膜。组装的疏水蛋白的电子显微镜检查显示了一个表面,该表面由相距10 nm的小棒组成,与气生菌丝表面上的小棒相似。当纯化的Sc3p疏水蛋白在亲水性表面上组装时,表面暴露的疏水性很高,类似于气生菌丝的疏水性。体内和体外组装的小杆层可通过溶解在三氟乙酸中而分解,并在除去酸后重新组装成小杆层。因此,我们提出,气生菌丝上的疏水性小杆层是由Sc3p疏水蛋白单体的界面自组装产生的,仅涉及非共价相互作用。淹没的菌丝仅排泄单体,因为这些菌丝没有暴露于水-空气界面。通常观察到的真菌孢子上的小杆层可能以类似的方式出现。

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