Lin Yi-An, Ou Yu-Chuan, Cheetham Andrew G, Cui Honggang
Department of Chemical and Biomolecular Engineering and ‡Institute for NanoBiotechnology, The Johns Hopkins University 3400 North Charles Street, Baltimore, Maryland 21218, United States.
Biomacromolecules. 2014 Apr 14;15(4):1419-27. doi: 10.1021/bm500020j. Epub 2014 Mar 24.
One-dimensional nanostructures formed by self-assembly of small molecule peptides have been extensively explored for use as biomaterials in various biomedical contexts. However, unlike individual peptides that can be designed to be specifically degradable by enzymes/proteases of interest, their self-assembled nanostructures, particularly those rich in β-sheets, are generally resistant to enzymatic degradation because the specific cleavage sites are often embedded inside the nanostructures. We report here on the rational design of β-sheet rich supramolecular filaments that can specifically dissociate into less stable micellar assemblies and monomers upon treatment with matrix metalloproteases-2 (MMP-2). Through linkage of an oligoproline segment to an amyloid-derived peptide sequence, we first synthesized an amphiphilic peptide that can undergo a rapid morphological transition in response to pH variations. We then used MMP-2 specific peptide substrates as multivalent cross-linkers to covalently fix the amyloid-like filaments in the self-assembled state at pH 4.5. Our results show that the cross-linked filaments are stable at pH 7.5 but gradually break down into much shorter filaments upon cleavage of the peptidic cross-linkers by MMP-2. We believe that the reported work presents a new design platform for the creation of amyloid-like supramolecular filaments responsive to enzymatic degradation.
由小分子肽自组装形成的一维纳米结构已被广泛探索用作各种生物医学环境中的生物材料。然而,与可设计为由感兴趣的酶/蛋白酶特异性降解的单个肽不同,它们的自组装纳米结构,特别是那些富含β-折叠的结构,通常对酶促降解具有抗性,因为特定的切割位点往往嵌入纳米结构内部。我们在此报告了富含β-折叠的超分子细丝的合理设计,该细丝在用基质金属蛋白酶-2(MMP-2)处理后可特异性解离成稳定性较低的胶束聚集体和单体。通过将寡聚脯氨酸片段连接到淀粉样蛋白衍生的肽序列上,我们首先合成了一种两亲性肽,它可以响应pH变化而经历快速的形态转变。然后,我们使用MMP-2特异性肽底物作为多价交联剂,在pH 4.5下将淀粉样样细丝共价固定在自组装状态。我们的结果表明,交联细丝在pH 7.5时稳定,但在MMP-2切割肽交联剂后会逐渐分解成更短的细丝。我们相信,所报道的工作为创建对酶促降解有响应的淀粉样样超分子细丝提供了一个新的设计平台。