Institute of Molecular Biology and Biophysics, ETH Zurich, Zurich, Switzerland.
Institute of Molecular Biology and Biophysics, ETH Zurich, Zurich, Switzerland
J Biol Chem. 2020 Aug 28;295(35):12437-12448. doi: 10.1074/jbc.RA120.014324. Epub 2020 Jul 10.
FimA is the main structural subunit of adhesive type 1 pili from uropathogenic strains. Up to 3000 copies of FimA assemble to the helical pilus rod through a mechanism termed donor strand complementation, in which the incomplete immunoglobulin-like fold of each FimA subunit is complemented by the N-terminal extension (Nte) of the next subunit. The Nte of FimA, which exhibits a pseudo-palindromic sequence, is inserted in an antiparallel orientation relative to the last β-strand of the preceding subunit in the pilus. The resulting subunit-subunit interactions are extraordinarily stable against dissociation and unfolding. Alternatively, FimA can fold to a self-complemented monomer with anti-apoptotic activity, in which the Nte inserts intramolecularly into the FimA core in the opposite, parallel orientation. The FimA monomers, however, show dramatically lower thermodynamic stability compared with FimA subunits in the assembled pilus. Using self-complemented FimA variants with reversed, pseudo-palindromic extensions, we demonstrate that the high stability of FimA polymers is primarily caused by the specific interactions between the side chains of the Nte residues and the FimA core and not by the antiparallel orientation of the donor strand alone. In addition, we demonstrate that nonequilibrium two-state folding, a hallmark of FimA with the Nte inserted in the pilus rod-like, antiparallel orientation, only depends on the identity of the inserted Nte side chains and not on Nte orientation.
FimA 是尿路致病性菌株粘附型 1 型菌毛的主要结构亚基。多达 3000 个 FimA 亚基通过一种称为供体链互补的机制组装到螺旋菌毛杆上,其中每个 FimA 亚基的不完整免疫球蛋白样折叠由下一个亚基的 N 端延伸(Nte)补充。FimA 的 Nte 具有拟似回文序列,相对于菌毛中前一个亚基的最后一个β-链以反平行的方式插入。由此产生的亚基-亚基相互作用非常稳定,不易解离和展开。或者,FimA 可以折叠成具有抗凋亡活性的自我互补单体,其中 Nte 分子内插入到 FimA 核心中,与前一个亚基的方向相反,呈平行排列。然而,与组装在菌毛中的 FimA 亚基相比,FimA 单体的热力学稳定性显著降低。使用具有反向拟似回文延伸的自我互补 FimA 变体,我们证明了 FimA 聚合物的高稳定性主要是由于 Nte 侧链与 FimA 核心之间的特异性相互作用所致,而不是仅由供体链的反平行取向引起的。此外,我们证明了非平衡两态折叠,即具有 Nte 插入菌毛杆状反平行取向的 FimA 的特征,仅取决于插入的 Nte 侧链的身份,而不取决于 Nte 取向。