Melcher Melanie, Facey Sandra J, Henkes Thorsten M, Subkowski Thomas, Hauer Bernhard
Institute of Technical Biochemistry, University of Stuttgart , Allmandring 31, 70569 Stuttgart, Germany.
Fine Chemicals Research, BASF SE, 67056 Ludwigshafen, Germany.
Biomacromolecules. 2016 May 9;17(5):1716-26. doi: 10.1021/acs.biomac.6b00135. Epub 2016 Apr 5.
Calcium phosphate mineralization is of particular interest in dental repair. A biomimetic approach using proteins or peptides is a highly promising way to reconstruct eroded teeth. In this study, the screening of several proteins is described for their binding and nucleating activities toward hydroxyapatite. Out of 27 tested candidates, only two hydrophobin fusion proteins showed binding abilities to hydroxyapatite in a mouthwash formulation and an increased nucleation in artificial saliva. Using a semirational approach, one of the two candidates (DEWA_5), a fusion protein consisting of a truncated section of the Bacillus subtilis synthase YaaD, the Aspergillus nidulans hydrophobin DEWA, and the rationally designed peptide P11-4 described in the literature, could be further engineered toward a faster mineral formation. The variants DEWA_5a (40aaYaaD-SDSDSD-DEWA) and DEWA_5b (40aaYaaD-RDRDRD-DEWA) were able to enhance the nucleation activity without losing the ability to form hydroxyapatite. In the case of variant DEWA_5b, an additional increase in the binding toward hydroxyapatite could be achieved. Especially with the variant DEWA_5a, the protein engineering of the rationally designed peptide sequence resulted in a resemblance of an amino acid motif that is found in nature. The engineered peptide resembles the amino acid motif in dentin phosphoprotein, one of the major proteins involved in dentinogenesis.
磷酸钙矿化在牙齿修复中备受关注。使用蛋白质或肽的仿生方法是重建受损牙齿的一种极具前景的方式。在本研究中,描述了对几种蛋白质针对羟基磷灰石的结合和成核活性的筛选。在27个测试候选物中,只有两种疏水蛋白融合蛋白在漱口水配方中显示出对羟基磷灰石的结合能力,并在人工唾液中增加了成核作用。使用半理性方法,两个候选物之一(DEWA_5),一种由枯草芽孢杆菌合酶YaaD的截短片段、构巢曲霉疏水蛋白DEWA以及文献中描述的合理设计的肽P11 - 4组成的融合蛋白,可以进一步改造以实现更快的矿物质形成。变体DEWA_5a(40aaYaaD - SDSDSD - DEWA)和DEWA_5b(40aaYaaD - RDRDRD - DEWA)能够增强成核活性,同时不丧失形成羟基磷灰石的能力。就变体DEWA_5b而言,可以实现对羟基磷灰石结合的额外增加。特别是对于变体DEWA_5a,对合理设计的肽序列进行蛋白质工程改造导致出现了一种在自然界中发现的氨基酸基序。工程化肽类似于牙本质磷蛋白中的氨基酸基序,牙本质磷蛋白是参与牙本质形成的主要蛋白质之一。