Spencer Brady L, Job Alyx M, Robertson Clare M, Hameed Zainab A, Serchejian Camille, Wiafe-Kwakye Caitlin S, Mendonça Jéssica C, Apolonio Morgan A, Nagao Prescilla E, Neely Melody N, Korotkova Natalia, Korotkov Konstantin V, Patras Kathryn A, Doran Kelly S
University of Colorado-Anschutz, Department of Immunology and Microbiology, Aurora, CO, USA.
Department of Molecular Virology and Microbiology, Baylor College of Medicine, Houston, TX, USA.
bioRxiv. 2023 Jan 25:2023.01.25.525443. doi: 10.1101/2023.01.25.525443.
Type VIIb secretion systems (T7SSb) in Gram-positive bacteria facilitate physiology, interbacterial competition, and/or virulence via EssC ATPase-driven secretion of small ɑ-helical proteins and toxins. Recently, we characterized T7SSb in group B (GBS), a leading cause of infection in newborns and immunocompromised adults. GBS T7SS comprises four subtypes based on variation in the C-terminus of EssC and the repertoire of downstream effectors; however, the intra-species diversity of GBS T7SS and impact on GBS-host interactions remains unknown. Bioinformatic analysis indicates that GBS T7SS loci encode subtype-specific putative effectors, which have low inter-species and inter-subtype homology but contain similar domains/motifs and therefore may serve similar functions. We further identify orphaned GBS WXG100 proteins. Functionally, we show that GBS T7SS subtype I and III strains secrete EsxA and that in subtype I strain CJB111, appears to be differentially transcribed from the T7SS operon. Further, we observe subtype-specific effects of GBS T7SS on host colonization, as subtype I but not subtype III T7SS promotes GBS vaginal persistence. Finally, we observe that T7SS subtypes I and II are the predominant subtypes in clinical GBS isolates. This study highlights the potential impact of T7SS heterogeneity on host-GBS interactions.
革兰氏阳性菌中的VIIb型分泌系统(T7SSb)通过EssC ATP酶驱动的小α-螺旋蛋白和毒素分泌促进生理功能、细菌间竞争和/或毒力。最近,我们对B族链球菌(GBS)中的T7SSb进行了表征,GBS是新生儿和免疫功能低下成人感染的主要原因。基于EssC C末端的变异和下游效应子的组成,GBS T7SS包括四种亚型;然而,GBS T7SS的种内多样性及其对GBS与宿主相互作用的影响仍不清楚。生物信息学分析表明,GBS T7SS基因座编码亚型特异性的假定效应子,它们的种间和亚型间同源性较低,但包含相似的结构域/基序,因此可能具有相似的功能。我们进一步鉴定出了GBS孤儿WXG100蛋白。在功能方面,我们发现GBS T7SS I型和III型菌株分泌EsxA,并且在I型菌株CJB111中,EsxA似乎是从T7SS操纵子中差异转录而来。此外,我们观察到GBS T7SS对宿主定植具有亚型特异性影响,因为I型而非III型T7SS促进GBS在阴道中的持续存在。最后,我们观察到T7SS I型和II型是临床GBS分离株中的主要亚型。这项研究突出了T7SS异质性对GBS与宿主相互作用的潜在影响。