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Structure and Multitasking of the c-di-GMP-Sensing Cellulose Secretion Regulator BcsE

机译:C-Di-GMP传感纤维素分泌稳压器BCSE的结构和多任务处理

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Most bacteria respond to surfaces by biogenesis of intracellular c-di-GMP, which inhibits motility and induces secretion of biofilm-promoting adherence factors. Bacterial cellulose is a widespread biofilm component whose secretion in Gram-negative species requires an inner membrane, c-di-GMP-dependent synthase tandem (BcsAB), an outer membrane porin (BcsC), and various accessory subunits that regulate synthase assembly and function as well as the exopolysaccharide’s chemical composition and mechanical properties. We recently showed that in Escherichia coli , most Bcs proteins form a megadalton-sized secretory nanomachine, but the role and structure of individual regulatory components remained enigmatic. Here, we demonstrate that essential-for-secretion BcsR and BcsQ regulate each other’s folding and stability and are recruited to the inner membrane via c-di-GMP-sensing BcsE and its intraoperon partner BcsF. Crystallographic and solution-based data show that BcsE’s predicted GIL domain is a degenerate receiver-GGDEF domain tandem (BcsE ~(REC)* ~(-GGDEF)*), where the divergent diguanylate cyclase module binds both dimeric c-di-GMP and BcsQ through mutually independent interfaces. In addition, we reveal that a third N-terminal domain (BcsE ~(NTD)) determines the protein’s homooligomerization and targeting of BcsERQ to the membrane as well as previously unreported interactions with transcription antitermination complex components. Together, the data suggest that BcsE acts on multiple levels to fine-tune bacterial cellulose secretion, from the early stages of secretion system assembly to the maintenance of a membrane-proximal pool of dimeric c-di-GMP for processive synthase activation.
机译:大多数细菌通过细胞内C-DI-GMP的生物发生反应表面,这抑制了活性并诱导生物膜促进粘附因子的分泌。细菌纤维素是一种广泛的生物膜组分,其分泌革兰氏阴性物质需要内膜,C-DI-GMP依赖性合成酶串联(BCSAB),外膜孔(BCSC),以及调节合成酶组装和功能的各种辅助亚基除了外奥基糖的化学成分和机械性能。我们最近表明,在大肠杆菌中,大多数BCS蛋白质形成梅加尔顿大小的分泌纳米机,但个体调节部件的作用和结构仍然是神秘的。在这里,我们证明了分泌基本基础BCSR和BCSQ调节彼此的折叠和稳定性,并通过C-DI-GMP感测BCSE及其脑内伴侣BCSF募集到内膜。基于晶体和基于解决方案的数据显示,BCSE预测的GIL结构域是一种简并接收器-GGDEF域串联(BCSE〜(REC)*〜(-GGDEF)*),其中发散的Diguantylate环酶模块结合二聚体C-Di-GMP和BCSQ通过相互独立的接口。此外,我们揭示第三N-末端结构域(BCSE〜(NTD))决定了蛋白质的常珠酮和靶向BCSERQ至膜的靶向,以及预先与转录抗氨酸复合组分的未报告的相互作用。这些数据表明,BCSE对微调细菌纤维素分泌的多水平作用,从分泌系统组件的早期阶段进行维持维持二聚体C-Di-GMP的膜近端池,用于加工合酶活化。

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