College of Science, National University of Defense Technology, Changsha 410073, China.
Int J Mol Sci. 2022 Dec 10;23(24):15679. doi: 10.3390/ijms232415679.
Some cephalopods (squids, octopuses, and cuttlefishes) produce dynamic structural colors, for camouflage or communication. The key to this remarkable capability is one group of specialized cells called iridocytes, which contain aligned membrane-enclosed platelets of high-reflective reflectins and work as intracellular Bragg reflectors. These reflectins have unusual amino acid compositions and sequential properties, which endows them with functional characteristics: an extremely high reflective index among natural proteins and the ability to answer various environmental stimuli. Based on their unique material composition and responsive self-organization properties, the material community has developed an impressive array of reflectin- or iridocyte-inspired optical systems with distinct tunable reflectance according to a series of internal and external factors. More recently, scientists have made creative attempts to engineer mammalian cells to explore the function potentials of reflectin proteins as well as their working mechanism in the cellular environment. Progress in wide scientific areas (biophysics, genomics, gene editing, etc.) brings in new opportunities to better understand reflectins and new approaches to fully utilize them. The work introduced the composition features, biochemical properties, the latest developments, future considerations of reflectins, and their inspiration applications to give newcomers a comprehensive understanding and mutually exchanged knowledge from different communities (e.g., biology and material).
一些头足类动物(鱿鱼、章鱼和墨鱼)会产生动态结构色,用于伪装或交流。这种非凡能力的关键是一组称为虹彩细胞的特殊细胞,它们包含排列整齐的高反射性反射蛋白的膜封闭血小板,作为细胞内布拉格反射器发挥作用。这些反射蛋白具有不寻常的氨基酸组成和序列特性,使它们具有功能性特征:在天然蛋白质中具有极高的反射率指数,并且能够响应各种环境刺激。基于其独特的材料组成和响应的自组织特性,材料界已经开发出一系列令人印象深刻的受虹彩细胞或反射蛋白启发的光学系统,根据一系列内部和外部因素具有独特的可调反射率。最近,科学家们进行了创造性的尝试,设计哺乳动物细胞来探索反射蛋白的功能潜力及其在细胞环境中的工作机制。广泛的科学领域(生物物理学、基因组学、基因编辑等)的进展为更好地理解反射蛋白及其充分利用它们的新方法带来了新的机会。该研究介绍了反射蛋白的组成特征、生化特性、最新进展、未来考虑因素以及它们的启发应用,使新进入者从不同的领域(例如生物学和材料)全面了解并相互交流知识。