Biofuel Institute and Institute for Energy Research, School of Environment and Safety Engineering, Jiangsu University, 301 Xuefu Road, Zhenjiang, 212013, China.
Nanchang Key Laboratory of Microbial Resources Exploitation & Utilization from Poyang Lake Wetland, College of Life Sciences, Jiangxi Normal University, Nanchang, 330022, China.
Angew Chem Int Ed Engl. 2024 Jul 15;63(29):e202402318. doi: 10.1002/anie.202402318. Epub 2024 Jun 17.
Direct interspecies electron transfer (DIET) is essential for maintaining the function and stability of anaerobic microbial consortia. However, only limited natural DIET modes have been identified and DIET engineering remains highly challenging. In this study, an unnatural DIET between Shewanella oneidensis MR-1 (SO, electron donating partner) and Rhodopseudomonas palustris (RP, electron accepting partner) was artificially established by a facile living cell-cell click chemistry strategy. By introducing alkyne- or azide-modified monosaccharides onto the cell outer surface of the target species, precise covalent connections between different species in high proximity were realized through a fast click chemistry reaction. Remarkably, upon covalent connection, outer cell surface C-type cytochromes mediated DIET between SO and RP was achieved and identified, although this was never realized naturally. Moreover, this connection directly shifted the natural H mediated interspecies electron transfer (MIET) to DIET between SO and RP, which delivered superior interspecies electron exchange efficiency. Therefore, this work demonstrated a naturally unachievable DIET and an unprecedented MIET shift to DIET accomplished by cell-cell distance engineering, offering an efficient and versatile solution for DIET engineering, which extends our understanding of DIET and opens up new avenues for DIET exploration and applications.
直接种间电子转移 (DIET) 对于维持厌氧微生物群落的功能和稳定性至关重要。然而,目前仅鉴定出有限的自然 DIET 模式,而 DIET 工程仍然极具挑战性。在本研究中,通过一种简单的活细胞-细胞点击化学策略,在 Shewanella oneidensis MR-1 (SO,电子供体伙伴) 和 Rhodopseudomonas palustris (RP,电子受体伙伴) 之间人为地建立了一种非自然的 DIET。通过在目标物种的细胞外表面引入炔基或叠氮基修饰的单糖,通过快速点击化学反应实现了不同物种之间的精确共价连接。值得注意的是,通过共价连接,实现了 SO 和 RP 之间的外细胞表面 C 型细胞色素介导的 DIET,尽管这在自然界中从未实现过。此外,这种连接直接将自然的 H 介导的种间电子转移 (MIET) 转变为 SO 和 RP 之间的 DIET,从而提供了优越的种间电子交换效率。因此,这项工作展示了一种自然无法实现的 DIET 和一种前所未有的 MIET 向 DIET 的转变,这是通过细胞-细胞距离工程实现的,为 DIET 工程提供了一种高效且通用的解决方案,扩展了我们对 DIET 的理解,并为 DIET 的探索和应用开辟了新途径。