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夏威夷短尾乌贼的V型ATP酶产生的酸性微环境在费氏弧菌募集过程中促进特异性。

An acidic microenvironment produced by the V-type ATPase of Euprymna scolopes promotes specificity during Vibrio fischeri recruitment.

作者信息

Hargadon Alexis C, Viliunas Joani W, Koehler Sabrina, Thies Angus B, Chen Grischa Y, Ladinsky Mark S, Kuwabara Jill, Avila-Magana Viridiana, Ruby Edward G, Tresguerres Martin, McFall-Ngai Margaret J

机构信息

Division of Biosphere Sciences and Engineering, Carnegie Science, Pasadena, CA, USA.

Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, CA, USA.

出版信息

Commun Biol. 2024 Dec 18;7(1):1642. doi: 10.1038/s42003-024-07348-2.

Abstract

Animals often acquire their microbial symbionts from the environment, but the mechanisms underlying how specificity of the association is achieved are poorly understood. We demonstrate that the conserved proton pump, V-type ATPase (VHA), plays a key role in the establishment of the model light-organ symbiosis between the squid Euprymna scolopes and its bacterial partner, Vibrio fischeri. Recruitment of V. fischeri from the surrounding seawater is mediated by juvenile-specific ciliated fields on the organ's surface. These epithelia produce acidic mucus containing antimicrobials with low-pH optima, creating a chemical environment fostering specific recruitment of V. fischeri. We provide evidence that this critical acidic landscape is created by activity of VHA. VHA inhibition abolished epithelial-cell acidity, resulting in increased mucus pH and inefficient symbiont colonization. Thus, VHA provides a mechanistic link between host modulation of microenvironmental acidity, immune function, and selection of microbial symbionts, a strategy for specificity that may govern other symbioses.

摘要

动物通常从环境中获取其微生物共生体,但对于实现这种共生关系特异性的潜在机制,我们却知之甚少。我们证明,保守的质子泵——V型ATP酶(VHA),在乌贼Euprymna scolopes与其细菌伙伴费氏弧菌之间的模式发光器官共生关系的建立中起着关键作用。费氏弧菌从周围海水中的募集是由该器官表面的幼体特异性纤毛区域介导的。这些上皮细胞产生含有最适pH值较低的抗菌物质的酸性黏液,营造出有利于费氏弧菌特异性募集的化学环境。我们提供的证据表明,这种关键的酸性环境是由VHA的活性产生的。VHA抑制消除了上皮细胞的酸性,导致黏液pH值升高,共生体定植效率低下。因此,VHA在宿主对微环境酸度的调节、免疫功能和微生物共生体的选择之间提供了一种机制联系,这是一种可能支配其他共生关系的特异性策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57c8/11655667/8573e4a70ae1/42003_2024_7348_Fig1_HTML.jpg

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