Madrid Institute for Advanced Studies (IMDEA-Nanoscience), Ciudad Universitaria de Cantoblanco, Madrid, Spain.
Protein Sci. 2024 Oct;33(10):e5164. doi: 10.1002/pro.5164.
This review aims to provide an overview of the progress in protein-based artificial photosystem design and their potential to uncover the underlying principles governing light-harvesting in photosynthesis. While significant advances have been made in this area, a gap persists in reviewing these advances. This review provides a perspective of the field, pinpointing knowledge gaps and unresolved challenges that warrant further inquiry. In particular, it delves into the key considerations when designing photosystems based on the chromophore and protein scaffold characteristics, presents the established strategies for artificial photosystems engineering with their advantages and disadvantages, and underscores the recent breakthroughs in understanding the molecular mechanisms governing light-harvesting, charge separation, and the role of the protein motions in the chromophore's excited state relaxation. By disseminating this knowledge, this article provides a foundational resource for defining the field of bio-hybrid photosystems and aims to inspire the continued exploration of artificial photosystems using protein design.
本篇综述旨在概述基于蛋白质的人工光合系统设计的进展,并探讨其揭示光合作用中光捕获基本原理的潜力。尽管在该领域已经取得了重大进展,但在综述这些进展方面仍存在差距。本综述提供了该领域的视角,指出了需要进一步研究的知识空白和未解决的挑战。具体而言,本文深入探讨了基于发色团和蛋白质支架特性设计光合系统时的关键考虑因素,介绍了人工光合系统工程的既定策略及其优缺点,并强调了在理解分子机制方面的最新突破,这些机制控制着光捕获、电荷分离以及蛋白质运动在发色团激发态弛豫中的作用。通过传播这些知识,本文为定义生物混合光合系统领域提供了基础资源,并旨在激发使用蛋白质设计继续探索人工光合系统。