Crucial roles of intracellular cyclic di-GMP in impacting the genes important for extracellular electron transfer by Geobacter metallireducens.

IF 3.7 2区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Applied and Environmental Microbiology Pub Date : 2025-07-23 Epub Date: 2025-06-04 DOI:10.1128/aem.00727-25
Yongguang Jiang, Lin Sun, Lingyu Hou, Yidan Hu, Zhou Jiang, Yiran Dong, Hao Song, Liang Shi
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Abstract

To investigate the roles of intracellular c-di-GMP in bacterial extracellular electron transfer (EET), three Geobacter metallireducens strains with high (Gme-H), intermediate (Gme-C), and low (Gme-L) intracellular levels of c-di-GMP were constructed via the synthetic biology approach. Compared to Gme-C, Gme-H showed similar Fe(III) reduction rates, formed thicker biofilms on conductive and nonconductive surfaces, and produced more electricity, but showed delayed ability for electricity production. Gme-L formed thinner biofilms on nonconductive surfaces and reduced Fe(III)-citrate faster, but showed slower reduction of ferrihydrite in comparison to Gme-C. Although it produced electricity much faster, Gme-L produced less electricity and formed slightly less amounts of biofilms on anodes, as compared to Gme-C. The mRNA levels of multiple genes encoding c-type cytochromes (c-Cyts) and extracellular pilin protein PilA-N were differentially regulated in Gme-L or Gme-H in comparison to that in Gme-C. Expressions of the genes for PilA-N and extracellular c-Cyt Gmet2896 were increased by high c-di-GMP. Low c-di-GMP increased the gene expressions of the porin-cytochromes in the outer membrane. Further investigation also identified new c-di-GMP-regulated genes directly involved in the EET of G. metallireducens, such as those for the c-Cyts of extracellular Gmet0601, the periplasmic Gmet1703 and Gmet1809 on the cytoplasmic membrane, as deletions of these genes impaired bacterial reductions of extracellular ferrihydrite and anode. Thus, intracellular c-di-GMP impacted multiple genes of G. metallireducens whose protein products might transfer electrons from the cytoplasmic membrane, through the periplasm, across the outer membrane to and in the extracellular environment.IMPORTANCEBis-(3'-5')-cyclic dimeric guanosine monophosphate (c-di-GMP) is ubiquitous in bacterial cells where it regulates a variety of bacterial processes, which range from biofilm formation, bacterial virulence to cell cycle progression. However, its role in regulating bacterial extracellular electron transfer is much less characterized. This investigation shows the crucial roles of intracellular c-di-GMP in impacting the extracellular electron transfer of the Gram-negative bacterium Geobacter metallireducens. The gene expressions of the multiheme c-type cytochromes in the bacterial cytoplasmic membrane, periplasm, outer membrane, and extracellular environment, as well as the gene expression of extracellular pilin protein PilA-N, are all impacted by c-di-GMP. Although how it impacts the expression of these genes is currently unclear, c-di-GMP affects the entire extracellular electron transfer process of G. metallireducens from the cytoplasmic membrane, through the periplasm and across the outer membrane to and in the extracellular environment.

胞内环二gmp在影响金属还原杆菌胞外电子转移的重要基因中的重要作用。
为了研究胞内c-二gmp在细菌胞外电子转移(EET)中的作用,采用合成生物学方法构建了3株细胞内c-二gmp水平分别为高(Gme-H)、中(Gme-C)和低(Gme-L)的金属还原Geobacter metallireducens菌株。与Gme-C相比,Gme-H具有相似的Fe(III)还原速率,在导电和非导电表面形成更厚的生物膜,并产生更多的电,但表现出延迟的产电能力。与Gme-C相比,Gme-L在非导电表面形成更薄的生物膜,并更快地还原铁(III)-柠檬酸盐,但对水合铁的还原速度较慢。与Gme-C相比,Gme-L的发电速度要快得多,但其发电量更少,在阳极上形成的生物膜数量也略少。编码c型细胞色素(c-Cyts)和细胞外毛蛋白PilA-N的多个基因mRNA水平在Gme-L和Gme-H中与在Gme-C中相比存在差异。高c-di-GMP使皮拉- n和细胞外c-Cyt基因Gmet2896表达增加。低c-二gmp增加了外膜孔蛋白细胞色素的基因表达。进一步的研究还发现了新的c-di- gmp调节基因,这些基因直接参与G. metallireducens的EET,如胞外Gmet0601、胞外Gmet1703和细胞质膜上的Gmet1809的c-Cyts,因为这些基因的缺失会损害细菌对胞外铁酸盐和阳极的还原。因此,胞内c-di-GMP影响了G. metallireducens的多个基因,其蛋白产物可能将电子从细胞质膜转移,穿过周质,穿过外膜,进入细胞外环境。重要性双-(3'-5')-环二聚鸟苷单磷酸(c-di-GMP)在细菌细胞中普遍存在,它调节各种细菌过程,从生物膜形成,细菌毒力到细胞周期进程。然而,其在调节细菌胞外电子转移中的作用却鲜为人知。本研究显示胞内c-二gmp在影响革兰氏阴性菌金属还原地杆菌胞外电子转移中的关键作用。细菌胞质膜、周质、外膜和细胞外环境中多血红素c型细胞色素的基因表达以及细胞外pilin蛋白PilA-N的基因表达都受到c-di-GMP的影响。虽然目前尚不清楚c-di-GMP如何影响这些基因的表达,但可以确定的是,c-di-GMP影响了G. metallireducens从细胞质膜、通过周质、穿过外膜到细胞外环境的整个胞外电子传递过程。
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来源期刊
Applied and Environmental Microbiology
Applied and Environmental Microbiology 生物-生物工程与应用微生物
CiteScore
7.70
自引率
2.30%
发文量
730
审稿时长
1.9 months
期刊介绍: Applied and Environmental Microbiology (AEM) publishes papers that make significant contributions to (a) applied microbiology, including biotechnology, protein engineering, bioremediation, and food microbiology, (b) microbial ecology, including environmental, organismic, and genomic microbiology, and (c) interdisciplinary microbiology, including invertebrate microbiology, plant microbiology, aquatic microbiology, and geomicrobiology.
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