Univ. Bordeaux, CNRS, Bordeaux INP, CBMN, UMR 5248, F-33600, Pessac, France.
Structural Biology of Biofilms Group, European Institute of Chemistry and Biology (IECB), 2 Rue Robert Escarpit, Pessac, F-33600, France.
Nat Commun. 2024 Oct 11;15(1):8799. doi: 10.1038/s41467-024-53113-8.
Bacterial cellulosic polymers constitute a prevalent class of biofilm matrix exopolysaccharides that are synthesized by several types of bacterial cellulose secretion (Bcs) systems, which include conserved cyclic diguanylate (c-di-GMP)-dependent cellulose synthase modules together with diverse accessory subunits. In E. coli, the biogenesis of phosphoethanolamine (pEtN)-modified cellulose relies on the BcsRQABEFG macrocomplex, encompassing inner-membrane and cytosolic subunits, and an outer membrane porin, BcsC. Here, we use cryogenic electron microscopy to shed light on the molecular mechanisms of BcsA-dependent recruitment and stabilization of a trimeric BcsG pEtN-transferase for polymer modification, and a dimeric BcsF-dependent recruitment of an otherwise cytosolic BcsERQ regulatory complex. We further demonstrate that BcsE, a secondary c-di-GMP sensor, can remain dinucleotide-bound and retain the essential-for-secretion BcsRQ partners onto the synthase even in the absence of direct c-di-GMP-synthase complexation, likely lowering the threshold for c-di-GMP-dependent synthase activation. Such activation-by-proxy mechanism could allow Bcs secretion system activity even in the absence of substantial intracellular c-di-GMP increase, and is reminiscent of other widespread synthase-dependent polysaccharide secretion systems where dinucleotide sensing and/or synthase stabilization are carried out by key co-polymerase subunits.
细菌纤维素聚合物构成了一类普遍存在的生物膜基质胞外多糖,它们由几种类型的细菌纤维素分泌(Bcs)系统合成,这些系统包括保守的环二鸟苷酸(c-di-GMP)依赖性纤维素合酶模块以及多种辅助亚基。在大肠杆菌中,磷酸乙醇胺(pEtN)修饰纤维素的生物发生依赖于 BcsRQABEFG 巨复合物,该复合物包含内膜和细胞质亚基以及外膜孔蛋白 BcsC。在这里,我们使用低温电子显微镜揭示了 BcsA 依赖性募集和稳定三聚体 BcsG pEtN 转移酶用于聚合物修饰的分子机制,以及 BcsF 依赖性募集否则位于细胞质中的 BcsERQ 调节复合物。我们进一步证明,作为二级 c-di-GMP 传感器的 BcsE 即使在没有直接 c-di-GMP 合酶复合物形成的情况下,也可以保持二核苷酸结合,并将必需的分泌 BcsRQ 伴侣保留在合酶上,这可能降低了 c-di-GMP 依赖性合酶激活的阈值。这种通过代理激活的机制可以允许 Bcs 分泌系统即使在细胞内 c-di-GMP 增加不显著的情况下也能发挥作用,这让人联想到其他广泛存在的依赖于合酶的多糖分泌系统,其中二核苷酸感应和/或合酶稳定由关键的共聚合酶亚基完成。