Department of Microbiology, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, Kraków, Poland.
Proteolysis Laboratory, Department of Structural Biology, Molecular Biology Institute of Barcelona (CSIC), Barcelona, Catalonia 08028, Spain.
Open Biol. 2024 Jun;14(6):230448. doi: 10.1098/rsob.230448. Epub 2024 Jun 12.
Gram-negative bacteria from the Bacteroidota phylum possess a type-IX secretion system (T9SS) for protein secretion, which requires cargoes to have a C-terminal domain (CTD). Structurally analysed CTDs are from proteins RgpB, HBP35, PorU and PorZ, which share a compact immunoglobulin-like antiparallel 3+4 β-sandwich (β1-β7). This architecture is essential as a strain with a single-point mutant of RgpB disrupting the interaction of the CTD with its preceding domain prevented secretion of the protein. Next, we identified the C-terminus ('motif C-t.') and the loop connecting strands β3 and β4 ('motif Lβ3β4') as conserved. We generated two strains with insertion and replacement mutants of PorU, as well as three strains with ablation and point mutants of RgpB, which revealed both motifs to be relevant for T9SS function. Furthermore, we determined the crystal structure of the CTD of mirolase, a cargo of the T9SS which shares the same general topology as in CTDs. However, motif Lβ3β4 was not conserved. Consistently, could not properly secrete a chimaeric protein with the CTD of peptidylarginine deiminase replaced with this foreign CTD. Thus, the incompatibility of the CTDs between these species prevents potential interference between their T9SSs.
拟杆菌门的革兰氏阴性菌拥有一种用于蛋白质分泌的九型分泌系统(T9SS),该系统要求货物具有 C 端结构域(CTD)。经过结构分析的 CTD 来自 RgpB、HBP35、PorU 和 PorZ 等 蛋白,它们共享一个紧凑的免疫球蛋白样反平行 3+4 β-三明治(β1-β7)。这种结构对于一个 株至关重要,该 株中 RgpB 的单点突变破坏了 CTD 与其前导结构域的相互作用,从而阻止了蛋白质的分泌。接下来,我们确定了 C 端(“motif C-t.”)和连接β3 和β4 链的环(“motif Lβ3β4”)是保守的。我们生成了具有 PorU 插入和替换突变的两个菌株,以及具有 RgpB 消融和点突变的三个菌株,这表明这两个基序都与 T9SS 功能相关。此外,我们确定了 mirolase 的 CTD 的晶体结构,mirolase 是 T9SS 的一种货物,其与 CTD 具有相同的总体拓扑结构。然而,motif Lβ3β4 并不保守。一致地, 不能正确分泌一种嵌合蛋白,该蛋白的 CTD 被肽基精氨酸脱亚氨酶的 CTD 取代。因此,这些物种之间的 CTD 不兼容防止了它们的 T9SS 之间潜在的干扰。