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细菌环二鸟苷酸通过 STING 受体触发贻贝幼虫变态。

Bacterial c-di-GMP triggers metamorphosis of mussel larvae through a STING receptor.

机构信息

International Research Center for Marine Biosciences, Ministry of Science and Technology, Shanghai Ocean University, Shanghai, China.

Shanghai Collaborative Innovation Center for Cultivating Elite Breeds and Green-Culture of Aquaculture Animals, Shanghai, 201306, China.

出版信息

NPJ Biofilms Microbiomes. 2024 Jun 20;10(1):51. doi: 10.1038/s41522-024-00523-7.

Abstract

Bacteria induced metamorphosis observed in nearly all marine invertebrates. However, the mechanism of bacteria regulating the larvae-juvenile metamorphosis remains unknown. Here, we test the hypothesis that c-di-GMP, a ubiquitous bacterial second-messenger molecule, directly triggers the mollusc Mytilus coruscus larval metamorphosis via the stimulator of interferon genes (STING) receptor. We determined that the deletion of c-di-GMP synthesis genes resulted in reduced c-di-GMP levels and biofilm-inducing activity on larval metamorphosis, accompanied by alterations in extracellular polymeric substances. Additionally, c-di-GMP extracted from tested varying marine bacteria all exhibited inducing activity on larval metamorphosis. Simultaneously, through pharmacological and molecular experiments, we demonstrated that M. coruscus STING (McSTING) participates in larval metamorphosis by binding with c-di-GMP. Our findings reveal that new role of bacterial c-di-GMP that triggers mussel larval metamorphosis transition, and extend knowledge in the interaction of bacteria and host development in marine ecosystems.

摘要

细菌诱导的近乎所有海洋无脊椎动物的变态现象。然而,细菌调节幼虫-幼体变态的机制尚不清楚。在这里,我们测试了以下假设:细菌普遍存在的第二信使分子 c-di-GMP 通过干扰素基因刺激物 (STING) 受体直接触发贻贝 Mytilus coruscus 幼虫变态。我们确定 c-di-GMP 合成基因的缺失导致 c-di-GMP 水平降低,并对幼虫变态的生物膜诱导活性降低,同时细胞外聚合物发生变化。此外,从测试的各种海洋细菌中提取的 c-di-GMP 均表现出对幼虫变态的诱导活性。同时,通过药理学和分子实验,我们证明了贻贝 STING(McSTING)通过与 c-di-GMP 结合参与幼虫变态。我们的研究结果揭示了细菌 c-di-GMP 触发贻贝幼虫变态过渡的新作用,并扩展了海洋生态系统中细菌和宿主发育相互作用的知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39f3/11190208/f3eecaab4026/41522_2024_523_Fig1_HTML.jpg

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