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应激状态下小蛋白如何调节蓝藻的新陈代谢:小蛋白在蓝藻应激反应中的作用

How Small Proteins Adjust the Metabolism of Cyanobacteria Under Stress: The Role of Small Proteins in Cyanobacterial Stress Responses.

作者信息

Kraus Alexander, Hess Wolfgang R

机构信息

Genetics and Experimental Bioinformatics, Faculty of Biology, University of Freiburg, Freiburg, Germany.

出版信息

Bioessays. 2025 Mar;47(3):e202400245. doi: 10.1002/bies.202400245. Epub 2024 Dec 12.

Abstract

Several recently discovered small proteins of less than 100 amino acids control important, but sometimes surprising, steps in the metabolism of cyanobacteria. There is mounting evidence that a large number of small protein genes have also been overlooked in the genome annotation of many other microorganisms. Although too short for enzymatic activity, their functional characterization has frequently revealed the involvement in processes such as signaling and sensing, interspecies communication, stress responses, metabolism, regulation of transcription and translation, and in the formation of multisubunit protein complexes. Cyanobacteria are the only prokaryotes that perform oxygenic photosynthesis. They thrive under a wide variety of conditions as long as there is light and must cope with dynamic changes in the environment. To acclimate to these fluctuations, frequently small regulatory proteins become expressed that target key enzymes and metabolic processes. The consequences of their actions are profound and can even impact the surrounding microbiome. This review highlights the diverse functions of recently discovered small proteins that control cyanobacterial metabolism. It also addresses why many of these proteins have been overlooked so far and explores the potential for implementing metabolic engineering strategies to improve the use of cyanobacteria in biotechnological applications.

摘要

最近发现的几种氨基酸数量少于100个的小蛋白,控制着蓝细菌新陈代谢中重要但有时令人惊讶的步骤。越来越多的证据表明,许多其他微生物的基因组注释中也忽略了大量小蛋白基因。尽管它们太短而无法具有酶活性,但其功能表征常常揭示其参与信号传导与传感、种间通讯、应激反应、新陈代谢、转录和翻译调控以及多亚基蛋白复合物形成等过程。蓝细菌是唯一能进行产氧光合作用的原核生物。只要有光,它们就能在各种各样的条件下茁壮成长,并且必须应对环境中的动态变化。为了适应这些波动,常常会表达一些靶向关键酶和代谢过程的小调节蛋白。它们作用的后果是深远的,甚至会影响周围的微生物群落。这篇综述强调了最近发现的控制蓝细菌新陈代谢的小蛋白的多种功能。它还探讨了为何到目前为止这些蛋白中有许多被忽视,并探索了实施代谢工程策略以改善蓝细菌在生物技术应用中的利用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/63f3/11848123/693e22a5dbb1/BIES-47-e202400245-g004.jpg

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