Bioorganic Analytics, Institute for Inorganic and Analytical Chemistry, Friedrich Schiller University Jena, D-07743 Jena, Germany.
Matthias Schleiden Institute for Genetics, Bioinformatics and Molecular Botany, Friedrich Schiller University Jena, Dornburgerstr. 159, D-07743 Jena, Germany.
Biol Chem. 2020 Oct 12;402(1):39-54. doi: 10.1515/hsz-2020-0247. Print 2020 Nov 18.
Cyanobacteria are ubiquitous oxygenic photosynthetic bacteria with a versatile metabolism that is highly dependent on effective protein targeting. Protein sorting in diderm bacteria is not trivial and, in cyanobacteria, even less so due to the presence of a complex membrane system: the outer membrane, the plasma membrane and the thylakoid membrane. In cyanobacteria, protein import into the thylakoids is essential for photosynthesis, export to the periplasm fulfills a multifunctional role in maintaining cell homeostasis, and secretion mediates motility, DNA uptake and environmental interactions. Intriguingly, only one set of genes for the general secretory and the twin-arginine translocation pathways seem to be present. However, these systems have to operate in both plasma and thylakoid membranes. This raises the question of how substrates are recognized and targeted to their correct, final destination. Additional complexities arise when a protein has to be secreted across the outer membrane, where very little is known regarding the mechanisms involved. Given their ecological importance and biotechnological interest, a better understanding of protein targeting in cyanobacteria is of great value. This review will provide insights into the known knowns of protein targeting, propose hypotheses based on available genomic sequences and discuss future directions.
蓝细菌是无处不在的产氧光合细菌,具有多样的代谢途径,高度依赖于有效的蛋白质靶向。二型细菌中的蛋白质分拣并不简单,而在蓝细菌中由于存在复杂的膜系统:外膜、质膜和类囊体膜,情况就更复杂了。在蓝细菌中,蛋白质向类囊体的输入对于光合作用至关重要,向周质的输出在维持细胞内稳态方面具有多种功能,而分泌则介导运动、DNA 摄取和环境相互作用。有趣的是,似乎只存在一套用于一般分泌和双精氨酸易位途径的基因。然而,这些系统必须在质膜和类囊体膜中都发挥作用。这就提出了一个问题,即如何识别底物并将其靶向到正确的最终目的地。当蛋白质必须穿过外膜分泌时,情况会更加复杂,而对于涉及的机制,我们知之甚少。鉴于它们在生态和生物技术方面的重要性,更好地了解蓝细菌中的蛋白质靶向具有重要价值。本文综述了蛋白质靶向的已知知识,基于现有基因组序列提出了假设,并讨论了未来的方向。