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Computational Exploration of Putative LuxR Solos in Archaea and Their Functional Implications in Quorum Sensing

机译:古细菌中假定的LuxR独奏的计算探索及其在群体感应中的功能意义

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摘要

LuxR solos are unexplored in Archaea, despite their vital role in the bacterial regulatory network. They assist bacteria in perceiving acyl homoserine lactones (AHLs) and/or non-AHLs signaling molecules for establishing intraspecies, interspecies, and interkingdom communication. In this study, we explored the potential LuxR solos of Archaea from InterPro v62.0 meta-database employing taxonomic, probable function, distribution, and evolutionary aspects to decipher their role in quorum sensing (QS). Our bioinformatics analyses showed that putative LuxR solos of Archaea shared few conserved domains with bacterial LuxR despite having less similarity within proteins. Functional characterization revealed their ability to bind various AHLs and/or non-AHLs signaling molecules that involve in QS cascades alike bacteria. Further, the phylogenetic study indicates that Archaeal LuxR solos (with less substitution per site) evolved divergently from bacteria and share distant homology along with instances of horizontal gene transfer. Moreover, Archaea possessing putative LuxR solos, exhibit the correlation between taxonomy and ecological niche despite being the inhabitant of diverse habitats like halophilic, thermophilic, barophilic, methanogenic, and chemolithotrophic. Therefore, this study would shed light in deciphering the role of the putative LuxR solos of Archaea to adapt varied habitats via multilevel communication with other organisms using QS.
机译:尽管LuxR solos在细菌调控网络中起着至关重要的作用,但它们在古细菌中尚未被探索。它们帮助细菌感知酰基高丝氨酸内酯(AHL)和/或非AHL信号分子,以建立种内,种间和种间交流。在这项研究中,我们从InterPro v62.0元数据库中利用分类学,可能的功能,分布和进化方面来探讨古细菌的潜在LuxR孤岛,以破译它们在群体感应(QS)中的作用。我们的生物信息学分析表明,尽管蛋白质之间的相似性较低,但推测的古细菌的LuxR孤岛与细菌LuxR共享的保守域很少。功能表征揭示了它们结合包括QS级联细菌的各种AHL和/或非AHL信号分子的能力。此外,系统发育研究表明,古细菌LuxR菌落(每个位点具有较少的取代)从细菌分化而来,并具有远距离同源性以及水平基因转移的情况。此外,古细菌虽然具有嗜盐,嗜热,嗜温,产甲烷和化营养等多种生境,但拥有假定的LuxR单体,却显示出分类学与生态位之间的相关性。因此,这项研究将揭示破译的古细菌LuxR独奏通过使用QS与其他生物进行多层次交流来适应各种生境的作用。

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