Center for Synthetic and Systems Biology, School of Life Science, Tsinghua-Peking Center for Life Sciences, Tsinghua University, Beijing 100084, China.
Key Laboratory of Cancer Prevention and Therapy, National Clinical Research Center for Cancer, Tianjin Medical University Cancer Institute and Hospital, Tianjin, China.
Sci Rep. 2016 Dec 23;6:39424. doi: 10.1038/srep39424.
Phasins or PhaPs are a group of amphiphilic proteins that are found attached to the surface of microbial polyhydroxyalkanoate (PHA) granules. They have both structural and regulatory functions and can affect intracellular PHA accumulation and mediate protein folding. The molecular basis for the diverse functions of the PhaPs has not been fully understood due to the lack of the structural knowledge. Here we report the structural and biochemical studies of the PhaP cloned from Aeromonas hydrophila (PhaP), which is utilized in protein and tissue engineering. The crystal structure of PhaP was revealed to be a tetramer with 8 α-helices adopting a coiled-coil structure. Each monomer has a hydrophobic and a hydrophilic surface, rendering the surfactant properties of the PhaP monomer. Based on the crystal structure, we predicted three key amino acid residues and obtained mutants with enhanced stability and improved emulsification properties. The first PhaP crystal structure, as reported in this study, is an important step towards a mechanistic understanding of how PHA is formed in vivo and why PhaP has such unique surfactant properties. At the same time, it will facilitate the study of other PhaP members that may have significant biotechnological potential as bio-surfactants and amphipathic coatings.
类蛋白或 PhaPs 是一组存在于微生物聚羟基烷酸(PHA)颗粒表面的两亲性蛋白。它们具有结构和调节功能,可以影响细胞内 PHA 的积累并介导蛋白质折叠。由于缺乏结构知识,PhaPs 的多种功能的分子基础尚未完全理解。在这里,我们报告了从嗜水气单胞菌(PhaP)克隆的 PhaP 的结构和生化研究,该蛋白用于蛋白质和组织工程。揭示了 PhaP 的晶体结构为四聚体,具有 8 个α-螺旋,采用卷曲螺旋结构。每个单体都有疏水和亲水表面,赋予 PhaP 单体表面活性剂性质。基于晶体结构,我们预测了三个关键氨基酸残基,并获得了稳定性增强和乳化性能提高的突变体。本研究报道的第一个 PhaP 晶体结构是朝着理解 PHA 如何在体内形成以及为什么 PhaP 具有如此独特的表面活性剂性质的机制理解迈出的重要一步。同时,它将有助于研究其他 PhaP 成员,它们可能具有作为生物表面活性剂和两亲涂层的重要生物技术潜力。